Coverage Report

Created: 2026-08-08 07:07

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/bloaty/third_party/capstone/arch/M68K/M68KDisassembler.c
Line
Count
Source
1
/* ======================================================================== */
2
/* ========================= LICENSING & COPYRIGHT ======================== */
3
/* ======================================================================== */
4
/*
5
 *                                  MUSASHI
6
 *                                Version 3.4
7
 *
8
 * A portable Motorola M680x0 processor emulation engine.
9
 * Copyright 1998-2001 Karl Stenerud.  All rights reserved.
10
 *
11
 * Permission is hereby granted, free of charge, to any person obtaining a copy
12
 * of this software and associated documentation files (the "Software"), to deal
13
 * in the Software without restriction, including without limitation the rights
14
 * to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
15
 * copies of the Software, and to permit persons to whom the Software is
16
 * furnished to do so, subject to the following conditions:
17
 *
18
 * The above copyright notice and this permission notice shall be included in
19
 * all copies or substantial portions of the Software.
20
21
 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
22
 * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
23
 * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
24
 * AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
25
 * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
26
 * OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
27
 * THE SOFTWARE.
28
 */
29
30
/* The code below is based on MUSASHI but has been heavily modified for Capstone by
31
 * Daniel Collin <daniel@collin.com> 2015-2019 */
32
33
/* ======================================================================== */
34
/* ================================ INCLUDES ============================== */
35
/* ======================================================================== */
36
37
#include <stdlib.h>
38
#include <stdio.h>
39
#include <string.h>
40
41
#include "../../cs_priv.h"
42
#include "../../utils.h"
43
44
#include "../../MCInst.h"
45
#include "../../MCInstrDesc.h"
46
#include "../../MCRegisterInfo.h"
47
#include "M68KInstPrinter.h"
48
#include "M68KDisassembler.h"
49
50
/* ======================================================================== */
51
/* ============================ GENERAL DEFINES =========================== */
52
/* ======================================================================== */
53
54
/* Bit Isolation Functions */
55
0
#define BIT_0(A)  ((A) & 0x00000001)
56
#define BIT_1(A)  ((A) & 0x00000002)
57
#define BIT_2(A)  ((A) & 0x00000004)
58
0
#define BIT_3(A)  ((A) & 0x00000008)
59
#define BIT_4(A)  ((A) & 0x00000010)
60
0
#define BIT_5(A)  ((A) & 0x00000020)
61
0
#define BIT_6(A)  ((A) & 0x00000040)
62
0
#define BIT_7(A)  ((A) & 0x00000080)
63
0
#define BIT_8(A)  ((A) & 0x00000100)
64
#define BIT_9(A)  ((A) & 0x00000200)
65
0
#define BIT_A(A)  ((A) & 0x00000400)
66
0
#define BIT_B(A)  ((A) & 0x00000800)
67
#define BIT_C(A)  ((A) & 0x00001000)
68
#define BIT_D(A)  ((A) & 0x00002000)
69
#define BIT_E(A)  ((A) & 0x00004000)
70
0
#define BIT_F(A)  ((A) & 0x00008000)
71
#define BIT_10(A) ((A) & 0x00010000)
72
#define BIT_11(A) ((A) & 0x00020000)
73
#define BIT_12(A) ((A) & 0x00040000)
74
#define BIT_13(A) ((A) & 0x00080000)
75
#define BIT_14(A) ((A) & 0x00100000)
76
#define BIT_15(A) ((A) & 0x00200000)
77
#define BIT_16(A) ((A) & 0x00400000)
78
#define BIT_17(A) ((A) & 0x00800000)
79
#define BIT_18(A) ((A) & 0x01000000)
80
#define BIT_19(A) ((A) & 0x02000000)
81
#define BIT_1A(A) ((A) & 0x04000000)
82
#define BIT_1B(A) ((A) & 0x08000000)
83
#define BIT_1C(A) ((A) & 0x10000000)
84
#define BIT_1D(A) ((A) & 0x20000000)
85
#define BIT_1E(A) ((A) & 0x40000000)
86
0
#define BIT_1F(A) ((A) & 0x80000000)
87
88
/* These are the CPU types understood by this disassembler */
89
0
#define TYPE_68000 1
90
0
#define TYPE_68010 2
91
0
#define TYPE_68020 4
92
0
#define TYPE_68030 8
93
0
#define TYPE_68040 16
94
95
#define M68000_ONLY   TYPE_68000
96
97
#define M68010_ONLY   TYPE_68010
98
#define M68010_LESS   (TYPE_68000 | TYPE_68010)
99
#define M68010_PLUS   (TYPE_68010 | TYPE_68020 | TYPE_68030 | TYPE_68040)
100
101
#define M68020_ONLY   TYPE_68020
102
#define M68020_LESS   (TYPE_68010 | TYPE_68020)
103
#define M68020_PLUS   (TYPE_68020 | TYPE_68030 | TYPE_68040)
104
105
#define M68030_ONLY   TYPE_68030
106
#define M68030_LESS   (TYPE_68010 | TYPE_68020 | TYPE_68030)
107
#define M68030_PLUS   (TYPE_68030 | TYPE_68040)
108
109
#define M68040_PLUS   TYPE_68040
110
111
enum {
112
  M68K_CPU_TYPE_INVALID,
113
  M68K_CPU_TYPE_68000,
114
  M68K_CPU_TYPE_68010,
115
  M68K_CPU_TYPE_68EC020,
116
  M68K_CPU_TYPE_68020,
117
  M68K_CPU_TYPE_68030,  /* Supported by disassembler ONLY */
118
  M68K_CPU_TYPE_68040   /* Supported by disassembler ONLY */
119
};
120
121
/* Extension word formats */
122
0
#define EXT_8BIT_DISPLACEMENT(A)          ((A)&0xff)
123
0
#define EXT_FULL(A)                       BIT_8(A)
124
#define EXT_EFFECTIVE_ZERO(A)             (((A)&0xe4) == 0xc4 || ((A)&0xe2) == 0xc0)
125
0
#define EXT_BASE_REGISTER_PRESENT(A)      (!BIT_7(A))
126
0
#define EXT_INDEX_REGISTER_PRESENT(A)     (!BIT_6(A))
127
0
#define EXT_INDEX_REGISTER(A)             (((A)>>12)&7)
128
#define EXT_INDEX_PRE_POST(A)             (EXT_INDEX_PRESENT(A) && (A)&3)
129
#define EXT_INDEX_PRE(A)                  (EXT_INDEX_PRESENT(A) && ((A)&7) < 4 && ((A)&7) != 0)
130
#define EXT_INDEX_POST(A)                 (EXT_INDEX_PRESENT(A) && ((A)&7) > 4)
131
0
#define EXT_INDEX_SCALE(A)                (((A)>>9)&3)
132
0
#define EXT_INDEX_LONG(A)                 BIT_B(A)
133
0
#define EXT_INDEX_AR(A)                   BIT_F(A)
134
0
#define EXT_BASE_DISPLACEMENT_PRESENT(A)  (((A)&0x30) > 0x10)
135
#define EXT_BASE_DISPLACEMENT_WORD(A)     (((A)&0x30) == 0x20)
136
0
#define EXT_BASE_DISPLACEMENT_LONG(A)     (((A)&0x30) == 0x30)
137
0
#define EXT_OUTER_DISPLACEMENT_PRESENT(A) (((A)&3) > 1 && ((A)&0x47) < 0x44)
138
#define EXT_OUTER_DISPLACEMENT_WORD(A)    (((A)&3) == 2 && ((A)&0x47) < 0x44)
139
0
#define EXT_OUTER_DISPLACEMENT_LONG(A)    (((A)&3) == 3 && ((A)&0x47) < 0x44)
140
141
#define IS_BITSET(val,b) ((val) & (1 << (b)))
142
0
#define BITFIELD_MASK(sb,eb)  (((1 << ((sb) + 1))-1) & (~((1 << (eb))-1)))
143
0
#define BITFIELD(val,sb,eb) ((BITFIELD_MASK(sb,eb) & (val)) >> (eb))
144
145
///////////////////////////////////////////////////////////////////////////////////////////////////////////////////////
146
147
static unsigned int m68k_read_disassembler_16(const m68k_info *info, const uint64_t addr)
148
0
{
149
0
  const uint16_t v0 = info->code[addr + 0];
150
0
  const uint16_t v1 = info->code[addr + 1];
151
0
  return (v0 << 8) | v1;
152
0
}
153
154
static unsigned int m68k_read_disassembler_32(const m68k_info *info, const uint64_t addr)
155
0
{
156
0
  const uint32_t v0 = info->code[addr + 0];
157
0
  const uint32_t v1 = info->code[addr + 1];
158
0
  const uint32_t v2 = info->code[addr + 2];
159
0
  const uint32_t v3 = info->code[addr + 3];
160
0
  return (v0 << 24) | (v1 << 16) | (v2 << 8) | v3;
161
0
}
162
163
static uint64_t m68k_read_disassembler_64(const m68k_info *info, const uint64_t addr)
164
0
{
165
0
  const uint64_t v0 = info->code[addr + 0];
166
0
  const uint64_t v1 = info->code[addr + 1];
167
0
  const uint64_t v2 = info->code[addr + 2];
168
0
  const uint64_t v3 = info->code[addr + 3];
169
0
  const uint64_t v4 = info->code[addr + 4];
170
0
  const uint64_t v5 = info->code[addr + 5];
171
0
  const uint64_t v6 = info->code[addr + 6];
172
0
  const uint64_t v7 = info->code[addr + 7];
173
0
  return (v0 << 56) | (v1 << 48) | (v2 << 40) | (v3 << 32) | (v4 << 24) | (v5 << 16) | (v6 << 8) | v7;
174
0
}
175
176
static unsigned int m68k_read_safe_16(const m68k_info *info, const uint64_t address)
177
0
{
178
0
  const uint64_t addr = (address - info->baseAddress) & info->address_mask;
179
0
  if (info->code_len < addr + 2) {
180
0
    return 0xaaaa;
181
0
  }
182
0
  return m68k_read_disassembler_16(info, addr);
183
0
}
184
185
static unsigned int m68k_read_safe_32(const m68k_info *info, const uint64_t address)
186
0
{
187
0
  const uint64_t addr = (address - info->baseAddress) & info->address_mask;
188
0
  if (info->code_len < addr + 4) {
189
0
    return 0xaaaaaaaa;
190
0
  }
191
0
  return m68k_read_disassembler_32(info, addr);
192
0
}
193
194
static uint64_t m68k_read_safe_64(const m68k_info *info, const uint64_t address)
195
0
{
196
0
  const uint64_t addr = (address - info->baseAddress) & info->address_mask;
197
0
  if (info->code_len < addr + 8) {
198
0
    return 0xaaaaaaaaaaaaaaaaLL;
199
0
  }
200
0
  return m68k_read_disassembler_64(info, addr);
201
0
}
202
203
/* ======================================================================== */
204
/* =============================== PROTOTYPES ============================= */
205
/* ======================================================================== */
206
207
/* make signed integers 100% portably */
208
static int make_int_8(int value);
209
static int make_int_16(int value);
210
211
/* Stuff to build the opcode handler jump table */
212
static void d68000_invalid(m68k_info *info);
213
static int instruction_is_valid(m68k_info *info, const unsigned int word_check);
214
215
typedef struct {
216
  void (*instruction)(m68k_info *info);   /* handler function */
217
  uint16_t word2_mask;                  /* mask the 2nd word */
218
  uint16_t word2_match;                 /* what to match after masking */
219
} instruction_struct;
220
221
/* ======================================================================== */
222
/* ================================= DATA ================================= */
223
/* ======================================================================== */
224
225
static const instruction_struct g_instruction_table[0x10000];
226
227
/* used by ops like asr, ror, addq, etc */
228
static const uint32_t g_3bit_qdata_table[8] = {8, 1, 2, 3, 4, 5, 6, 7};
229
230
static const uint32_t g_5bit_data_table[32] = {
231
  32,  1,  2,  3,  4,  5,  6,  7,  8,  9, 10, 11, 12, 13, 14, 15,
232
  16, 17, 18, 19, 20, 21, 22, 23, 24, 25, 26, 27, 28, 29, 30, 31
233
};
234
235
static const m68k_insn s_branch_lut[] = {
236
  M68K_INS_INVALID, M68K_INS_INVALID, M68K_INS_BHI, M68K_INS_BLS,
237
  M68K_INS_BCC, M68K_INS_BCS, M68K_INS_BNE, M68K_INS_BEQ,
238
  M68K_INS_BVC, M68K_INS_BVS, M68K_INS_BPL, M68K_INS_BMI,
239
  M68K_INS_BGE, M68K_INS_BLT, M68K_INS_BGT, M68K_INS_BLE,
240
};
241
242
static const m68k_insn s_dbcc_lut[] = {
243
  M68K_INS_DBT, M68K_INS_DBF, M68K_INS_DBHI, M68K_INS_DBLS,
244
  M68K_INS_DBCC, M68K_INS_DBCS, M68K_INS_DBNE, M68K_INS_DBEQ,
245
  M68K_INS_DBVC, M68K_INS_DBVS, M68K_INS_DBPL, M68K_INS_DBMI,
246
  M68K_INS_DBGE, M68K_INS_DBLT, M68K_INS_DBGT, M68K_INS_DBLE,
247
};
248
249
static const m68k_insn s_scc_lut[] = {
250
  M68K_INS_ST, M68K_INS_SF, M68K_INS_SHI, M68K_INS_SLS,
251
  M68K_INS_SCC, M68K_INS_SCS, M68K_INS_SNE, M68K_INS_SEQ,
252
  M68K_INS_SVC, M68K_INS_SVS, M68K_INS_SPL, M68K_INS_SMI,
253
  M68K_INS_SGE, M68K_INS_SLT, M68K_INS_SGT, M68K_INS_SLE,
254
};
255
256
static const m68k_insn s_trap_lut[] = {
257
  M68K_INS_TRAPT, M68K_INS_TRAPF, M68K_INS_TRAPHI, M68K_INS_TRAPLS,
258
  M68K_INS_TRAPCC, M68K_INS_TRAPCS, M68K_INS_TRAPNE, M68K_INS_TRAPEQ,
259
  M68K_INS_TRAPVC, M68K_INS_TRAPVS, M68K_INS_TRAPPL, M68K_INS_TRAPMI,
260
  M68K_INS_TRAPGE, M68K_INS_TRAPLT, M68K_INS_TRAPGT, M68K_INS_TRAPLE,
261
};
262
263
/* ======================================================================== */
264
/* =========================== UTILITY FUNCTIONS ========================== */
265
/* ======================================================================== */
266
267
#define LIMIT_CPU_TYPES(info, ALLOWED_CPU_TYPES)  \
268
0
  do {           \
269
0
    if (!(info->type & ALLOWED_CPU_TYPES)) { \
270
0
      d68000_invalid(info);   \
271
0
      return;       \
272
0
    }          \
273
0
  } while (0)
274
275
0
static unsigned int peek_imm_8(const m68k_info *info)  { return (m68k_read_safe_16((info), (info)->pc)&0xff); }
276
0
static unsigned int peek_imm_16(const m68k_info *info) { return m68k_read_safe_16((info), (info)->pc); }
277
0
static unsigned int peek_imm_32(const m68k_info *info) { return m68k_read_safe_32((info), (info)->pc); }
278
0
static unsigned long long peek_imm_64(const m68k_info *info) { return m68k_read_safe_64((info), (info)->pc); }
279
280
0
static unsigned int read_imm_8(m68k_info *info)  { const unsigned int value = peek_imm_8(info);  (info)->pc+=2; return value; }
281
0
static unsigned int read_imm_16(m68k_info *info) { const unsigned int value = peek_imm_16(info); (info)->pc+=2; return value; }
282
0
static unsigned int read_imm_32(m68k_info *info) { const unsigned int value = peek_imm_32(info); (info)->pc+=4; return value; }
283
0
static unsigned long long read_imm_64(m68k_info *info) { const unsigned long long value = peek_imm_64(info); (info)->pc+=8; return value; }
284
285
/* Fake a split interface */
286
#define get_ea_mode_str_8(instruction) get_ea_mode_str(instruction, 0)
287
#define get_ea_mode_str_16(instruction) get_ea_mode_str(instruction, 1)
288
#define get_ea_mode_str_32(instruction) get_ea_mode_str(instruction, 2)
289
290
#define get_imm_str_s8() get_imm_str_s(0)
291
#define get_imm_str_s16() get_imm_str_s(1)
292
#define get_imm_str_s32() get_imm_str_s(2)
293
294
#define get_imm_str_u8() get_imm_str_u(0)
295
#define get_imm_str_u16() get_imm_str_u(1)
296
#define get_imm_str_u32() get_imm_str_u(2)
297
298
299
/* 100% portable signed int generators */
300
static int make_int_8(int value)
301
0
{
302
0
  return (value & 0x80) ? value | ~0xff : value & 0xff;
303
0
}
304
305
static int make_int_16(int value)
306
0
{
307
0
  return (value & 0x8000) ? value | ~0xffff : value & 0xffff;
308
0
}
309
310
static void get_with_index_address_mode(m68k_info *info, cs_m68k_op* op, uint32_t instruction, uint32_t size, bool is_pc)
311
0
{
312
0
  uint32_t extension = read_imm_16(info);
313
314
0
  op->address_mode = M68K_AM_AREGI_INDEX_BASE_DISP;
315
316
0
  if (EXT_FULL(extension)) {
317
0
    uint32_t preindex;
318
0
    uint32_t postindex;
319
320
0
    op->mem.base_reg = M68K_REG_INVALID;
321
0
    op->mem.index_reg = M68K_REG_INVALID;
322
323
    /* Not sure how to deal with this?
324
       if (EXT_EFFECTIVE_ZERO(extension)) {
325
       strcpy(mode, "0");
326
       break;
327
       }
328
     */
329
330
0
    op->mem.in_disp = EXT_BASE_DISPLACEMENT_PRESENT(extension) ? (EXT_BASE_DISPLACEMENT_LONG(extension) ? read_imm_32(info) : read_imm_16(info)) : 0;
331
0
    op->mem.out_disp = EXT_OUTER_DISPLACEMENT_PRESENT(extension) ? (EXT_OUTER_DISPLACEMENT_LONG(extension) ? read_imm_32(info) : read_imm_16(info)) : 0;
332
333
0
    if (EXT_BASE_REGISTER_PRESENT(extension)) {
334
0
      if (is_pc) {
335
0
        op->mem.base_reg = M68K_REG_PC;
336
0
      } else {
337
0
        op->mem.base_reg = M68K_REG_A0 + (instruction & 7);
338
0
      }
339
0
    }
340
341
0
    if (EXT_INDEX_REGISTER_PRESENT(extension)) {
342
0
      if (EXT_INDEX_AR(extension)) {
343
0
        op->mem.index_reg = M68K_REG_A0 + EXT_INDEX_REGISTER(extension);
344
0
      } else {
345
0
        op->mem.index_reg = M68K_REG_D0 + EXT_INDEX_REGISTER(extension);
346
0
      }
347
348
0
      op->mem.index_size = EXT_INDEX_LONG(extension) ? 1 : 0;
349
350
0
      if (EXT_INDEX_SCALE(extension)) {
351
0
        op->mem.scale = 1 << EXT_INDEX_SCALE(extension);
352
0
      }
353
0
    }
354
355
0
    preindex = (extension & 7) > 0 && (extension & 7) < 4;
356
0
    postindex = (extension & 7) > 4;
357
358
0
    if (preindex) {
359
0
      op->address_mode = is_pc ? M68K_AM_PC_MEMI_PRE_INDEX : M68K_AM_MEMI_PRE_INDEX;
360
0
    } else if (postindex) {
361
0
      op->address_mode = is_pc ? M68K_AM_PC_MEMI_POST_INDEX : M68K_AM_MEMI_POST_INDEX;
362
0
    }
363
364
0
    return;
365
0
  }
366
367
0
  op->mem.index_reg = (EXT_INDEX_AR(extension) ? M68K_REG_A0 : M68K_REG_D0) + EXT_INDEX_REGISTER(extension);
368
0
  op->mem.index_size = EXT_INDEX_LONG(extension) ? 1 : 0;
369
370
0
  if (EXT_8BIT_DISPLACEMENT(extension) == 0) {
371
0
    if (is_pc) {
372
0
      op->mem.base_reg = M68K_REG_PC;
373
0
      op->address_mode = M68K_AM_PCI_INDEX_BASE_DISP;
374
0
    } else {
375
0
      op->mem.base_reg = M68K_REG_A0 + (instruction & 7);
376
0
    }
377
0
  } else {
378
0
    if (is_pc) {
379
0
      op->mem.base_reg = M68K_REG_PC;
380
0
      op->address_mode = M68K_AM_PCI_INDEX_8_BIT_DISP;
381
0
    } else {
382
0
      op->mem.base_reg = M68K_REG_A0 + (instruction & 7);
383
0
      op->address_mode = M68K_AM_AREGI_INDEX_8_BIT_DISP;
384
0
    }
385
386
0
    op->mem.disp = (int8_t)(extension & 0xff);
387
0
  }
388
389
0
  if (EXT_INDEX_SCALE(extension)) {
390
0
    op->mem.scale = 1 << EXT_INDEX_SCALE(extension);
391
0
  }
392
0
}
393
394
/* Make string of effective address mode */
395
static void get_ea_mode_op(m68k_info *info, cs_m68k_op* op, uint32_t instruction, uint32_t size)
396
0
{
397
  // default to memory
398
399
0
  op->type = M68K_OP_MEM;
400
401
0
  switch (instruction & 0x3f) {
402
0
    case 0x00: case 0x01: case 0x02: case 0x03: case 0x04: case 0x05: case 0x06: case 0x07:
403
      /* data register direct */
404
0
      op->address_mode = M68K_AM_REG_DIRECT_DATA;
405
0
      op->reg = M68K_REG_D0 + (instruction & 7);
406
0
      op->type = M68K_OP_REG;
407
0
      break;
408
409
0
    case 0x08: case 0x09: case 0x0a: case 0x0b: case 0x0c: case 0x0d: case 0x0e: case 0x0f:
410
      /* address register direct */
411
0
      op->address_mode = M68K_AM_REG_DIRECT_ADDR;
412
0
      op->reg = M68K_REG_A0 + (instruction & 7);
413
0
      op->type = M68K_OP_REG;
414
0
      break;
415
416
0
    case 0x10: case 0x11: case 0x12: case 0x13: case 0x14: case 0x15: case 0x16: case 0x17:
417
      /* address register indirect */
418
0
      op->address_mode = M68K_AM_REGI_ADDR;
419
0
      op->reg = M68K_REG_A0 + (instruction & 7);
420
0
      break;
421
422
0
    case 0x18: case 0x19: case 0x1a: case 0x1b: case 0x1c: case 0x1d: case 0x1e: case 0x1f:
423
      /* address register indirect with postincrement */
424
0
      op->address_mode = M68K_AM_REGI_ADDR_POST_INC;
425
0
      op->reg = M68K_REG_A0 + (instruction & 7);
426
0
      break;
427
428
0
    case 0x20: case 0x21: case 0x22: case 0x23: case 0x24: case 0x25: case 0x26: case 0x27:
429
      /* address register indirect with predecrement */
430
0
      op->address_mode = M68K_AM_REGI_ADDR_PRE_DEC;
431
0
      op->reg = M68K_REG_A0 + (instruction & 7);
432
0
      break;
433
434
0
    case 0x28: case 0x29: case 0x2a: case 0x2b: case 0x2c: case 0x2d: case 0x2e: case 0x2f:
435
      /* address register indirect with displacement*/
436
0
      op->address_mode = M68K_AM_REGI_ADDR_DISP;
437
0
      op->mem.base_reg = M68K_REG_A0 + (instruction & 7);
438
0
      op->mem.disp = (int16_t)read_imm_16(info);
439
0
      break;
440
441
0
    case 0x30: case 0x31: case 0x32: case 0x33: case 0x34: case 0x35: case 0x36: case 0x37:
442
      /* address register indirect with index */
443
0
      get_with_index_address_mode(info, op, instruction, size, false);
444
0
      break;
445
446
0
    case 0x38:
447
      /* absolute short address */
448
0
      op->address_mode = M68K_AM_ABSOLUTE_DATA_SHORT;
449
0
      op->imm = read_imm_16(info);
450
0
      break;
451
452
0
    case 0x39:
453
      /* absolute long address */
454
0
      op->address_mode = M68K_AM_ABSOLUTE_DATA_LONG;
455
0
      op->imm = read_imm_32(info);
456
0
      break;
457
458
0
    case 0x3a:
459
      /* program counter with displacement */
460
0
      op->address_mode = M68K_AM_PCI_DISP;
461
0
      op->mem.disp = (int16_t)read_imm_16(info);
462
0
      break;
463
464
0
    case 0x3b:
465
      /* program counter with index */
466
0
      get_with_index_address_mode(info, op, instruction, size, true);
467
0
      break;
468
469
0
    case 0x3c:
470
0
      op->address_mode = M68K_AM_IMMEDIATE;
471
0
      op->type = M68K_OP_IMM;
472
473
0
      if (size == 1)
474
0
        op->imm = read_imm_8(info) & 0xff;
475
0
      else if (size == 2)
476
0
        op->imm = read_imm_16(info) & 0xffff;
477
0
      else if (size == 4)
478
0
        op->imm = read_imm_32(info);
479
0
      else
480
0
        op->imm = read_imm_64(info);
481
482
0
      break;
483
484
0
    default:
485
0
      break;
486
0
  }
487
0
}
488
489
static void set_insn_group(m68k_info *info, m68k_group_type group)
490
0
{
491
0
  info->groups[info->groups_count++] = (uint8_t)group;
492
0
}
493
494
static cs_m68k* build_init_op(m68k_info *info, int opcode, int count, int size)
495
0
{
496
0
  cs_m68k* ext;
497
498
0
  MCInst_setOpcode(info->inst, opcode);
499
500
0
  ext = &info->extension;
501
502
0
  ext->op_count = (uint8_t)count;
503
0
  ext->op_size.type = M68K_SIZE_TYPE_CPU;
504
0
  ext->op_size.cpu_size = size;
505
506
0
  return ext;
507
0
}
508
509
static void build_re_gen_1(m68k_info *info, bool isDreg, int opcode, uint8_t size)
510
0
{
511
0
  cs_m68k_op* op0;
512
0
  cs_m68k_op* op1;
513
0
  cs_m68k* ext = build_init_op(info, opcode, 2, size);
514
515
0
  op0 = &ext->operands[0];
516
0
  op1 = &ext->operands[1];
517
518
0
  if (isDreg) {
519
0
    op0->address_mode = M68K_AM_REG_DIRECT_DATA;
520
0
    op0->reg = M68K_REG_D0 + ((info->ir >> 9 ) & 7);
521
0
  } else {
522
0
    op0->address_mode = M68K_AM_REG_DIRECT_ADDR;
523
0
    op0->reg = M68K_REG_A0 + ((info->ir >> 9 ) & 7);
524
0
  }
525
526
0
  get_ea_mode_op(info, op1, info->ir, size);
527
0
}
528
529
static void build_re_1(m68k_info *info, int opcode, uint8_t size)
530
0
{
531
0
  build_re_gen_1(info, true, opcode, size);
532
0
}
533
534
static void build_er_gen_1(m68k_info *info, bool isDreg, int opcode, uint8_t size)
535
0
{
536
0
  cs_m68k_op* op0;
537
0
  cs_m68k_op* op1;
538
0
  cs_m68k* ext = build_init_op(info, opcode, 2, size);
539
540
0
  op0 = &ext->operands[0];
541
0
  op1 = &ext->operands[1];
542
543
0
  get_ea_mode_op(info, op0, info->ir, size);
544
545
0
  if (isDreg) {
546
0
    op1->address_mode = M68K_AM_REG_DIRECT_DATA;
547
0
    op1->reg = M68K_REG_D0 + ((info->ir >> 9) & 7);
548
0
  } else {
549
0
    op1->address_mode = M68K_AM_REG_DIRECT_ADDR;
550
0
    op1->reg = M68K_REG_A0 + ((info->ir >> 9) & 7);
551
0
  }
552
0
}
553
554
static void build_rr(m68k_info *info, int opcode, uint8_t size, int imm)
555
0
{
556
0
  cs_m68k_op* op0;
557
0
  cs_m68k_op* op1;
558
0
  cs_m68k_op* op2;
559
0
  cs_m68k* ext = build_init_op(info, opcode, 2, size);
560
561
0
  op0 = &ext->operands[0];
562
0
  op1 = &ext->operands[1];
563
0
  op2 = &ext->operands[2];
564
565
0
  op0->address_mode = M68K_AM_REG_DIRECT_DATA;
566
0
  op0->reg = M68K_REG_D0 + (info->ir & 7);
567
568
0
  op1->address_mode = M68K_AM_REG_DIRECT_DATA;
569
0
  op1->reg = M68K_REG_D0 + ((info->ir >> 9) & 7);
570
571
0
  if (imm > 0) {
572
0
    ext->op_count = 3;
573
0
    op2->type = M68K_OP_IMM;
574
0
    op2->address_mode = M68K_AM_IMMEDIATE;
575
0
    op2->imm = imm;
576
0
  }
577
0
}
578
579
static void build_r(m68k_info *info, int opcode, uint8_t size)
580
0
{
581
0
  cs_m68k_op* op0;
582
0
  cs_m68k_op* op1;
583
0
  cs_m68k* ext = build_init_op(info, opcode, 2, size);
584
585
0
  op0 = &ext->operands[0];
586
0
  op1 = &ext->operands[1];
587
588
0
  op0->address_mode = M68K_AM_REG_DIRECT_DATA;
589
0
  op0->reg = M68K_REG_D0 + ((info->ir >> 9) & 7);
590
591
0
  op1->address_mode = M68K_AM_REG_DIRECT_DATA;
592
0
  op1->reg = M68K_REG_D0 + (info->ir & 7);
593
0
}
594
595
static void build_imm_ea(m68k_info *info, int opcode, uint8_t size, int imm)
596
0
{
597
0
  cs_m68k_op* op0;
598
0
  cs_m68k_op* op1;
599
0
  cs_m68k* ext = build_init_op(info, opcode, 2, size);
600
601
0
  op0 = &ext->operands[0];
602
0
  op1 = &ext->operands[1];
603
604
0
  op0->type = M68K_OP_IMM;
605
0
  op0->address_mode = M68K_AM_IMMEDIATE;
606
0
  op0->imm = imm;
607
608
0
  get_ea_mode_op(info, op1, info->ir, size);
609
0
}
610
611
static void build_3bit_d(m68k_info *info, int opcode, int size)
612
0
{
613
0
  cs_m68k_op* op0;
614
0
  cs_m68k_op* op1;
615
0
  cs_m68k* ext = build_init_op(info, opcode, 2, size);
616
617
0
  op0 = &ext->operands[0];
618
0
  op1 = &ext->operands[1];
619
620
0
  op0->type = M68K_OP_IMM;
621
0
  op0->address_mode = M68K_AM_IMMEDIATE;
622
0
  op0->imm = g_3bit_qdata_table[(info->ir >> 9) & 7];
623
624
0
  op1->address_mode = M68K_AM_REG_DIRECT_DATA;
625
0
  op1->reg = M68K_REG_D0 + (info->ir & 7);
626
0
}
627
628
static void build_3bit_ea(m68k_info *info, int opcode, int size)
629
0
{
630
0
  cs_m68k_op* op0;
631
0
  cs_m68k_op* op1;
632
0
  cs_m68k* ext = build_init_op(info, opcode, 2, size);
633
634
0
  op0 = &ext->operands[0];
635
0
  op1 = &ext->operands[1];
636
637
0
  op0->type = M68K_OP_IMM;
638
0
  op0->address_mode = M68K_AM_IMMEDIATE;
639
0
  op0->imm = g_3bit_qdata_table[(info->ir >> 9) & 7];
640
641
0
  get_ea_mode_op(info, op1, info->ir, size);
642
0
}
643
644
static void build_mm(m68k_info *info, int opcode, uint8_t size, int imm)
645
0
{
646
0
  cs_m68k_op* op0;
647
0
  cs_m68k_op* op1;
648
0
  cs_m68k_op* op2;
649
0
  cs_m68k* ext = build_init_op(info, opcode, 2, size);
650
651
0
  op0 = &ext->operands[0];
652
0
  op1 = &ext->operands[1];
653
0
  op2 = &ext->operands[2];
654
655
0
  op0->address_mode = M68K_AM_REGI_ADDR_PRE_DEC;
656
0
  op0->reg = M68K_REG_A0 + (info->ir & 7);
657
658
0
  op1->address_mode = M68K_AM_REGI_ADDR_PRE_DEC;
659
0
  op1->reg = M68K_REG_A0 + ((info->ir >> 9) & 7);
660
661
0
  if (imm > 0) {
662
0
    ext->op_count = 3;
663
0
    op2->type = M68K_OP_IMM;
664
0
    op2->address_mode = M68K_AM_IMMEDIATE;
665
0
    op2->imm = imm;
666
0
  }
667
0
}
668
669
static void build_ea(m68k_info *info, int opcode, uint8_t size)
670
0
{
671
0
  cs_m68k* ext = build_init_op(info, opcode, 1, size);
672
0
  get_ea_mode_op(info, &ext->operands[0], info->ir, size);
673
0
}
674
675
static void build_ea_a(m68k_info *info, int opcode, uint8_t size)
676
0
{
677
0
  cs_m68k_op* op0;
678
0
  cs_m68k_op* op1;
679
0
  cs_m68k* ext = build_init_op(info, opcode, 2, size);
680
681
0
  op0 = &ext->operands[0];
682
0
  op1 = &ext->operands[1];
683
684
0
  get_ea_mode_op(info, op0, info->ir, size);
685
686
0
  op1->address_mode = M68K_AM_REG_DIRECT_ADDR;
687
0
  op1->reg = M68K_REG_A0 + ((info->ir >> 9) & 7);
688
0
}
689
690
static void build_ea_ea(m68k_info *info, int opcode, int size)
691
0
{
692
0
  cs_m68k_op* op0;
693
0
  cs_m68k_op* op1;
694
0
  cs_m68k* ext = build_init_op(info, opcode, 2, size);
695
696
0
  op0 = &ext->operands[0];
697
0
  op1 = &ext->operands[1];
698
699
0
  get_ea_mode_op(info, op0, info->ir, size);
700
0
  get_ea_mode_op(info, op1, (((info->ir>>9) & 7) | ((info->ir>>3) & 0x38)), size);
701
0
}
702
703
static void build_pi_pi(m68k_info *info, int opcode, int size)
704
0
{
705
0
  cs_m68k_op* op0;
706
0
  cs_m68k_op* op1;
707
0
  cs_m68k* ext = build_init_op(info, opcode, 2, size);
708
709
0
  op0 = &ext->operands[0];
710
0
  op1 = &ext->operands[1];
711
712
0
  op0->address_mode = M68K_AM_REGI_ADDR_POST_INC;
713
0
  op0->reg = M68K_REG_A0 + (info->ir & 7);
714
715
0
  op1->address_mode = M68K_AM_REGI_ADDR_POST_INC;
716
0
  op1->reg = M68K_REG_A0 + ((info->ir >> 9) & 7);
717
0
}
718
719
static void build_imm_special_reg(m68k_info *info, int opcode, int imm, int size, m68k_reg reg)
720
0
{
721
0
  cs_m68k_op* op0;
722
0
  cs_m68k_op* op1;
723
0
  cs_m68k* ext = build_init_op(info, opcode, 2, size);
724
725
0
  op0 = &ext->operands[0];
726
0
  op1 = &ext->operands[1];
727
728
0
  op0->type = M68K_OP_IMM;
729
0
  op0->address_mode = M68K_AM_IMMEDIATE;
730
0
  op0->imm = imm;
731
732
0
  op1->address_mode = M68K_AM_NONE;
733
0
  op1->reg = reg;
734
0
}
735
736
static void build_relative_branch(m68k_info *info, int opcode, int size, int displacement)
737
0
{
738
0
  cs_m68k_op* op;
739
0
  cs_m68k* ext = build_init_op(info, opcode, 1, size);
740
741
0
  op = &ext->operands[0];
742
743
0
  op->type = M68K_OP_BR_DISP;
744
0
  op->address_mode = M68K_AM_BRANCH_DISPLACEMENT;
745
0
  op->br_disp.disp = displacement;
746
0
  op->br_disp.disp_size = size;
747
748
0
  set_insn_group(info, M68K_GRP_JUMP);
749
0
  set_insn_group(info, M68K_GRP_BRANCH_RELATIVE);
750
0
}
751
752
static void build_absolute_jump_with_immediate(m68k_info *info, int opcode, int size, int immediate)
753
0
{
754
0
  cs_m68k_op* op;
755
0
  cs_m68k* ext = build_init_op(info, opcode, 1, size);
756
757
0
  op = &ext->operands[0];
758
759
0
  op->type = M68K_OP_IMM;
760
0
  op->address_mode = M68K_AM_IMMEDIATE;
761
0
  op->imm = immediate;
762
763
0
  set_insn_group(info, M68K_GRP_JUMP);
764
0
}
765
766
static void build_bcc(m68k_info *info, int size, int displacement)
767
0
{
768
0
  build_relative_branch(info, s_branch_lut[(info->ir >> 8) & 0xf], size, displacement);
769
0
}
770
771
static void build_trap(m68k_info *info, int size, int immediate)
772
0
{
773
0
  build_absolute_jump_with_immediate(info, s_trap_lut[(info->ir >> 8) & 0xf], size, immediate);
774
0
}
775
776
static void build_dbxx(m68k_info *info, int opcode, int size, int displacement)
777
0
{
778
0
  cs_m68k_op* op0;
779
0
  cs_m68k_op* op1;
780
0
  cs_m68k* ext = build_init_op(info, opcode, 2, size);
781
782
0
  op0 = &ext->operands[0];
783
0
  op1 = &ext->operands[1];
784
785
0
  op0->address_mode = M68K_AM_REG_DIRECT_DATA;
786
0
  op0->reg = M68K_REG_D0 + (info->ir & 7);
787
788
0
  op1->type = M68K_OP_BR_DISP;
789
0
  op1->address_mode = M68K_AM_BRANCH_DISPLACEMENT;
790
0
  op1->br_disp.disp = displacement;
791
0
  op1->br_disp.disp_size = M68K_OP_BR_DISP_SIZE_LONG;
792
793
0
  set_insn_group(info, M68K_GRP_JUMP);
794
0
  set_insn_group(info, M68K_GRP_BRANCH_RELATIVE);
795
0
}
796
797
static void build_dbcc(m68k_info *info, int size, int displacement)
798
0
{
799
0
  build_dbxx(info, s_dbcc_lut[(info->ir >> 8) & 0xf], size, displacement);
800
0
}
801
802
static void build_d_d_ea(m68k_info *info, int opcode, int size)
803
0
{
804
0
  cs_m68k_op* op0;
805
0
  cs_m68k_op* op1;
806
0
  cs_m68k_op* op2;
807
0
  uint32_t extension = read_imm_16(info);
808
0
  cs_m68k* ext = build_init_op(info, opcode, 3, size);
809
810
0
  op0 = &ext->operands[0];
811
0
  op1 = &ext->operands[1];
812
0
  op2 = &ext->operands[2];
813
814
0
  op0->address_mode = M68K_AM_REG_DIRECT_DATA;
815
0
  op0->reg = M68K_REG_D0 + (extension & 7);
816
817
0
  op1->address_mode = M68K_AM_REG_DIRECT_DATA;
818
0
  op1->reg = M68K_REG_D0 + ((extension >> 6) & 7);
819
820
0
  get_ea_mode_op(info, op2, info->ir, size);
821
0
}
822
823
static void build_bitfield_ins(m68k_info *info, int opcode, int has_d_arg)
824
0
{
825
0
  uint8_t offset;
826
0
  uint8_t width;
827
0
  cs_m68k_op* op_ea;
828
0
  cs_m68k_op* op1;
829
0
  cs_m68k* ext = build_init_op(info, opcode, 1, 0);
830
0
  uint32_t extension = read_imm_16(info);
831
832
0
  op_ea = &ext->operands[0];
833
0
  op1 = &ext->operands[1];
834
835
0
  if (BIT_B(extension))
836
0
    offset = (extension >> 6) & 7;
837
0
  else
838
0
    offset = (extension >> 6) & 31;
839
840
0
  if (BIT_5(extension))
841
0
    width = extension & 7;
842
0
  else
843
0
    width = (uint8_t)g_5bit_data_table[extension & 31];
844
845
0
  if (has_d_arg) {
846
0
    ext->op_count = 2;
847
0
    op1->address_mode = M68K_AM_REG_DIRECT_DATA;
848
0
    op1->reg = M68K_REG_D0 + ((extension >> 12) & 7);
849
0
  }
850
851
0
  get_ea_mode_op(info, op_ea, info->ir, 1);
852
853
0
  op_ea->mem.bitfield = 1;
854
0
  op_ea->mem.width = width;
855
0
  op_ea->mem.offset = offset;
856
0
}
857
858
static void build_d(m68k_info *info, int opcode, int size)
859
0
{
860
0
  cs_m68k* ext = build_init_op(info, opcode, 1, size);
861
0
  cs_m68k_op* op;
862
863
0
  op = &ext->operands[0];
864
865
0
  op->address_mode = M68K_AM_REG_DIRECT_DATA;
866
0
  op->reg = M68K_REG_D0 + (info->ir & 7);
867
0
}
868
869
static uint16_t reverse_bits(uint32_t v)
870
0
{
871
0
  uint32_t r = v; // r will be reversed bits of v; first get LSB of v
872
0
  uint32_t s = 16 - 1; // extra shift needed at end
873
874
0
  for (v >>= 1; v; v >>= 1) {
875
0
    r <<= 1;
876
0
    r |= v & 1;
877
0
    s--;
878
0
  }
879
880
0
  return r <<= s; // shift when v's highest bits are zero
881
0
}
882
883
static uint8_t reverse_bits_8(uint32_t v)
884
0
{
885
0
  uint32_t r = v; // r will be reversed bits of v; first get LSB of v
886
0
  uint32_t s = 8 - 1; // extra shift needed at end
887
888
0
  for (v >>= 1; v; v >>= 1) {
889
0
    r <<= 1;
890
0
    r |= v & 1;
891
0
    s--;
892
0
  }
893
894
0
  return r <<= s; // shift when v's highest bits are zero
895
0
}
896
897
898
static void build_movem_re(m68k_info *info, int opcode, int size)
899
0
{
900
0
  cs_m68k_op* op0;
901
0
  cs_m68k_op* op1;
902
0
  cs_m68k* ext = build_init_op(info, opcode, 2, size);
903
904
0
  op0 = &ext->operands[0];
905
0
  op1 = &ext->operands[1];
906
907
0
  op0->type = M68K_OP_REG_BITS;
908
0
  op0->register_bits = read_imm_16(info);
909
910
0
  get_ea_mode_op(info, op1, info->ir, size);
911
912
0
  if (op1->address_mode == M68K_AM_REGI_ADDR_PRE_DEC)
913
0
    op0->register_bits = reverse_bits(op0->register_bits);
914
0
}
915
916
static void build_movem_er(m68k_info *info, int opcode, int size)
917
0
{
918
0
  cs_m68k_op* op0;
919
0
  cs_m68k_op* op1;
920
0
  cs_m68k* ext = build_init_op(info, opcode, 2, size);
921
922
0
  op0 = &ext->operands[0];
923
0
  op1 = &ext->operands[1];
924
925
0
  op1->type = M68K_OP_REG_BITS;
926
0
  op1->register_bits = read_imm_16(info);
927
928
0
  get_ea_mode_op(info, op0, info->ir, size);
929
0
}
930
931
static void build_imm(m68k_info *info, int opcode, int data)
932
0
{
933
0
  cs_m68k_op* op;
934
0
  cs_m68k* ext = build_init_op(info, opcode, 1, 0);
935
936
0
  MCInst_setOpcode(info->inst, opcode);
937
938
0
  op = &ext->operands[0];
939
940
0
  op->type = M68K_OP_IMM;
941
0
  op->address_mode = M68K_AM_IMMEDIATE;
942
0
  op->imm = data;
943
0
}
944
945
static void build_illegal(m68k_info *info, int data)
946
0
{
947
0
  build_imm(info, M68K_INS_ILLEGAL, data);
948
0
}
949
950
static void build_invalid(m68k_info *info, int data)
951
0
{
952
0
  build_imm(info, M68K_INS_INVALID, data);
953
0
}
954
955
static void build_cas2(m68k_info *info, int size)
956
0
{
957
0
  uint32_t word3;
958
0
  uint32_t extension;
959
0
  cs_m68k_op* op0;
960
0
  cs_m68k_op* op1;
961
0
  cs_m68k_op* op2;
962
0
  cs_m68k* ext = build_init_op(info, M68K_INS_CAS2, 3, size);
963
0
  int reg_0, reg_1;
964
965
  /* cas2 is the only 3 words instruction, word2 and word3 have the same motif bits to check */
966
0
  word3 = peek_imm_32(info) & 0xffff;
967
0
  if (!instruction_is_valid(info, word3))
968
0
    return;
969
970
0
  op0 = &ext->operands[0];
971
0
  op1 = &ext->operands[1];
972
0
  op2 = &ext->operands[2];
973
974
0
  extension = read_imm_32(info);
975
976
0
  op0->address_mode = M68K_AM_NONE;
977
0
  op0->type = M68K_OP_REG_PAIR;
978
0
  op0->reg_pair.reg_0 = ((extension >> 16) & 7) + M68K_REG_D0;
979
0
  op0->reg_pair.reg_1 = (extension & 7) + M68K_REG_D0;
980
981
0
  op1->address_mode = M68K_AM_NONE;
982
0
  op1->type = M68K_OP_REG_PAIR;
983
0
  op1->reg_pair.reg_0 = ((extension >> 22) & 7) + M68K_REG_D0;
984
0
  op1->reg_pair.reg_1 = ((extension >> 6) & 7) + M68K_REG_D0;
985
986
0
  reg_0 = (extension >> 28) & 7;
987
0
  reg_1 = (extension >> 12) & 7;
988
989
0
  op2->address_mode = M68K_AM_NONE;
990
0
  op2->type = M68K_OP_REG_PAIR;
991
0
  op2->reg_pair.reg_0 = reg_0 + (BIT_1F(extension) ? 8 : 0) + M68K_REG_D0;
992
0
  op2->reg_pair.reg_1 = reg_1 + (BIT_F(extension) ? 8 : 0) + M68K_REG_D0;
993
0
}
994
995
static void build_chk2_cmp2(m68k_info *info, int size)
996
0
{
997
0
  cs_m68k_op* op0;
998
0
  cs_m68k_op* op1;
999
0
  cs_m68k* ext = build_init_op(info, M68K_INS_CHK2, 2, size);
1000
1001
0
  uint32_t extension = read_imm_16(info);
1002
1003
0
  if (BIT_B(extension))
1004
0
    MCInst_setOpcode(info->inst, M68K_INS_CHK2);
1005
0
  else
1006
0
    MCInst_setOpcode(info->inst, M68K_INS_CMP2);
1007
1008
0
  op0 = &ext->operands[0];
1009
0
  op1 = &ext->operands[1];
1010
1011
0
  get_ea_mode_op(info, op0, info->ir, size);
1012
1013
0
  op1->address_mode = M68K_AM_NONE;
1014
0
  op1->type = M68K_OP_REG;
1015
0
  op1->reg = (BIT_F(extension) ? M68K_REG_A0 : M68K_REG_D0) + ((extension >> 12) & 7);
1016
0
}
1017
1018
static void build_move16(m68k_info *info, int data[2], int modes[2])
1019
0
{
1020
0
  cs_m68k* ext = build_init_op(info, M68K_INS_MOVE16, 2, 0);
1021
0
  int i;
1022
1023
0
  for (i = 0; i < 2; ++i) {
1024
0
    cs_m68k_op* op = &ext->operands[i];
1025
0
    const int d = data[i];
1026
0
    const int m = modes[i];
1027
1028
0
    op->type = M68K_OP_MEM;
1029
1030
0
    if (m == M68K_AM_REGI_ADDR_POST_INC || m == M68K_AM_REG_DIRECT_ADDR) {
1031
0
      op->address_mode = m;
1032
0
      op->reg = M68K_REG_A0 + d;
1033
0
    } else {
1034
0
      op->address_mode = m;
1035
0
      op->imm = d;
1036
0
    }
1037
0
  }
1038
0
}
1039
1040
static void build_link(m68k_info *info, int disp, int size)
1041
0
{
1042
0
  cs_m68k_op* op0;
1043
0
  cs_m68k_op* op1;
1044
0
  cs_m68k* ext = build_init_op(info, M68K_INS_LINK, 2, size);
1045
1046
0
  op0 = &ext->operands[0];
1047
0
  op1 = &ext->operands[1];
1048
1049
0
  op0->address_mode = M68K_AM_NONE;
1050
0
  op0->reg = M68K_REG_A0 + (info->ir & 7);
1051
1052
0
  op1->address_mode = M68K_AM_IMMEDIATE;
1053
0
  op1->type = M68K_OP_IMM;
1054
0
  op1->imm = disp;
1055
0
}
1056
1057
static void build_cpush_cinv(m68k_info *info, int op_offset)
1058
0
{
1059
0
  cs_m68k_op* op0;
1060
0
  cs_m68k_op* op1;
1061
0
  cs_m68k* ext = build_init_op(info, M68K_INS_INVALID, 2, 0);
1062
1063
0
  switch ((info->ir >> 3) & 3) { // scope
1064
    // Invalid
1065
0
    case 0:
1066
0
      d68000_invalid(info);
1067
0
      return;
1068
      // Line
1069
0
    case 1:
1070
0
      MCInst_setOpcode(info->inst, op_offset + 0);
1071
0
      break;
1072
      // Page
1073
0
    case 2:
1074
0
      MCInst_setOpcode(info->inst, op_offset + 1);
1075
0
      break;
1076
      // All
1077
0
    case 3:
1078
0
      ext->op_count = 1;
1079
0
      MCInst_setOpcode(info->inst, op_offset + 2);
1080
0
      break;
1081
0
  }
1082
1083
0
  op0 = &ext->operands[0];
1084
0
  op1 = &ext->operands[1];
1085
1086
0
  op0->address_mode = M68K_AM_IMMEDIATE;
1087
0
  op0->type = M68K_OP_IMM;
1088
0
  op0->imm = (info->ir >> 6) & 3;
1089
1090
0
  op1->type = M68K_OP_MEM;
1091
0
  op1->address_mode = M68K_AM_REG_DIRECT_ADDR;
1092
0
  op1->imm = M68K_REG_A0 + (info->ir & 7);
1093
0
}
1094
1095
static void build_movep_re(m68k_info *info, int size)
1096
0
{
1097
0
  cs_m68k_op* op0;
1098
0
  cs_m68k_op* op1;
1099
0
  cs_m68k* ext = build_init_op(info, M68K_INS_MOVEP, 2, size);
1100
1101
0
  op0 = &ext->operands[0];
1102
0
  op1 = &ext->operands[1];
1103
1104
0
  op0->reg = M68K_REG_D0 + ((info->ir >> 9) & 7);
1105
1106
0
  op1->address_mode = M68K_AM_REGI_ADDR_DISP;
1107
0
  op1->type = M68K_OP_MEM;
1108
0
  op1->mem.base_reg = M68K_REG_A0 + (info->ir & 7);
1109
0
  op1->mem.disp = (int16_t)read_imm_16(info);
1110
0
}
1111
1112
static void build_movep_er(m68k_info *info, int size)
1113
0
{
1114
0
  cs_m68k_op* op0;
1115
0
  cs_m68k_op* op1;
1116
0
  cs_m68k* ext = build_init_op(info, M68K_INS_MOVEP, 2, size);
1117
1118
0
  op0 = &ext->operands[0];
1119
0
  op1 = &ext->operands[1];
1120
1121
0
  op0->address_mode = M68K_AM_REGI_ADDR_DISP;
1122
0
  op0->type = M68K_OP_MEM;
1123
0
  op0->mem.base_reg = M68K_REG_A0 + (info->ir & 7);
1124
0
  op0->mem.disp = (int16_t)read_imm_16(info);
1125
1126
0
  op1->reg = M68K_REG_D0 + ((info->ir >> 9) & 7);
1127
0
}
1128
1129
static void build_moves(m68k_info *info, int size)
1130
0
{
1131
0
  cs_m68k_op* op0;
1132
0
  cs_m68k_op* op1;
1133
0
  cs_m68k* ext = build_init_op(info, M68K_INS_MOVES, 2, size);
1134
0
  uint32_t extension = read_imm_16(info);
1135
1136
0
  op0 = &ext->operands[0];
1137
0
  op1 = &ext->operands[1];
1138
1139
0
  if (BIT_B(extension)) {
1140
0
    op0->reg = (BIT_F(extension) ? M68K_REG_A0 : M68K_REG_D0) + ((extension >> 12) & 7);
1141
0
    get_ea_mode_op(info, op1, info->ir, size);
1142
0
  } else {
1143
0
    get_ea_mode_op(info, op0, info->ir, size);
1144
0
    op1->reg = (BIT_F(extension) ? M68K_REG_A0 : M68K_REG_D0) + ((extension >> 12) & 7);
1145
0
  }
1146
0
}
1147
1148
static void build_er_1(m68k_info *info, int opcode, uint8_t size)
1149
0
{
1150
0
  build_er_gen_1(info, true, opcode, size);
1151
0
}
1152
1153
/* ======================================================================== */
1154
/* ========================= INSTRUCTION HANDLERS ========================= */
1155
/* ======================================================================== */
1156
/* Instruction handler function names follow this convention:
1157
 *
1158
 * d68000_NAME_EXTENSIONS(void)
1159
 * where NAME is the name of the opcode it handles and EXTENSIONS are any
1160
 * extensions for special instances of that opcode.
1161
 *
1162
 * Examples:
1163
 *   d68000_add_er_8(): add opcode, from effective address to register,
1164
 *                      size = byte
1165
 *
1166
 *   d68000_asr_s_8(): arithmetic shift right, static count, size = byte
1167
 *
1168
 *
1169
 * Common extensions:
1170
 * 8   : size = byte
1171
 * 16  : size = word
1172
 * 32  : size = long
1173
 * rr  : register to register
1174
 * mm  : memory to memory
1175
 * r   : register
1176
 * s   : static
1177
 * er  : effective address -> register
1178
 * re  : register -> effective address
1179
 * ea  : using effective address mode of operation
1180
 * d   : data register direct
1181
 * a   : address register direct
1182
 * ai  : address register indirect
1183
 * pi  : address register indirect with postincrement
1184
 * pd  : address register indirect with predecrement
1185
 * di  : address register indirect with displacement
1186
 * ix  : address register indirect with index
1187
 * aw  : absolute word
1188
 * al  : absolute long
1189
 */
1190
1191
1192
static void d68000_invalid(m68k_info *info)
1193
0
{
1194
0
  build_invalid(info, info->ir);
1195
0
}
1196
1197
static void d68000_illegal(m68k_info *info)
1198
0
{
1199
0
  build_illegal(info, info->ir);
1200
0
}
1201
1202
static void d68000_1010(m68k_info *info)
1203
0
{
1204
0
  build_invalid(info, info->ir);
1205
0
}
1206
1207
static void d68000_1111(m68k_info *info)
1208
0
{
1209
0
  build_invalid(info, info->ir);
1210
0
}
1211
1212
static void d68000_abcd_rr(m68k_info *info)
1213
0
{
1214
0
  build_rr(info, M68K_INS_ABCD, 1, 0);
1215
0
}
1216
1217
static void d68000_abcd_mm(m68k_info *info)
1218
0
{
1219
0
  build_mm(info, M68K_INS_ABCD, 1, 0);
1220
0
}
1221
1222
static void d68000_add_er_8(m68k_info *info)
1223
0
{
1224
0
  build_er_1(info, M68K_INS_ADD, 1);
1225
0
}
1226
1227
static void d68000_add_er_16(m68k_info *info)
1228
0
{
1229
0
  build_er_1(info, M68K_INS_ADD, 2);
1230
0
}
1231
1232
static void d68000_add_er_32(m68k_info *info)
1233
0
{
1234
0
  build_er_1(info, M68K_INS_ADD, 4);
1235
0
}
1236
1237
static void d68000_add_re_8(m68k_info *info)
1238
0
{
1239
0
  build_re_1(info, M68K_INS_ADD, 1);
1240
0
}
1241
1242
static void d68000_add_re_16(m68k_info *info)
1243
0
{
1244
0
  build_re_1(info, M68K_INS_ADD, 2);
1245
0
}
1246
1247
static void d68000_add_re_32(m68k_info *info)
1248
0
{
1249
0
  build_re_1(info, M68K_INS_ADD, 4);
1250
0
}
1251
1252
static void d68000_adda_16(m68k_info *info)
1253
0
{
1254
0
  build_ea_a(info, M68K_INS_ADDA, 2);
1255
0
}
1256
1257
static void d68000_adda_32(m68k_info *info)
1258
0
{
1259
0
  build_ea_a(info, M68K_INS_ADDA, 4);
1260
0
}
1261
1262
static void d68000_addi_8(m68k_info *info)
1263
0
{
1264
0
  build_imm_ea(info, M68K_INS_ADDI, 1, read_imm_8(info));
1265
0
}
1266
1267
static void d68000_addi_16(m68k_info *info)
1268
0
{
1269
0
  build_imm_ea(info, M68K_INS_ADDI, 2, read_imm_16(info));
1270
0
}
1271
1272
static void d68000_addi_32(m68k_info *info)
1273
0
{
1274
0
  build_imm_ea(info, M68K_INS_ADDI, 4, read_imm_32(info));
1275
0
}
1276
1277
static void d68000_addq_8(m68k_info *info)
1278
0
{
1279
0
  build_3bit_ea(info, M68K_INS_ADDQ, 1);
1280
0
}
1281
1282
static void d68000_addq_16(m68k_info *info)
1283
0
{
1284
0
  build_3bit_ea(info, M68K_INS_ADDQ, 2);
1285
0
}
1286
1287
static void d68000_addq_32(m68k_info *info)
1288
0
{
1289
0
  build_3bit_ea(info, M68K_INS_ADDQ, 4);
1290
0
}
1291
1292
static void d68000_addx_rr_8(m68k_info *info)
1293
0
{
1294
0
  build_rr(info, M68K_INS_ADDX, 1, 0);
1295
0
}
1296
1297
static void d68000_addx_rr_16(m68k_info *info)
1298
0
{
1299
0
  build_rr(info, M68K_INS_ADDX, 2, 0);
1300
0
}
1301
1302
static void d68000_addx_rr_32(m68k_info *info)
1303
0
{
1304
0
  build_rr(info, M68K_INS_ADDX, 4, 0);
1305
0
}
1306
1307
static void d68000_addx_mm_8(m68k_info *info)
1308
0
{
1309
0
  build_mm(info, M68K_INS_ADDX, 1, 0);
1310
0
}
1311
1312
static void d68000_addx_mm_16(m68k_info *info)
1313
0
{
1314
0
  build_mm(info, M68K_INS_ADDX, 2, 0);
1315
0
}
1316
1317
static void d68000_addx_mm_32(m68k_info *info)
1318
0
{
1319
0
  build_mm(info, M68K_INS_ADDX, 4, 0);
1320
0
}
1321
1322
static void d68000_and_er_8(m68k_info *info)
1323
0
{
1324
0
  build_er_1(info, M68K_INS_AND, 1);
1325
0
}
1326
1327
static void d68000_and_er_16(m68k_info *info)
1328
0
{
1329
0
  build_er_1(info, M68K_INS_AND, 2);
1330
0
}
1331
1332
static void d68000_and_er_32(m68k_info *info)
1333
0
{
1334
0
  build_er_1(info, M68K_INS_AND, 4);
1335
0
}
1336
1337
static void d68000_and_re_8(m68k_info *info)
1338
0
{
1339
0
  build_re_1(info, M68K_INS_AND, 1);
1340
0
}
1341
1342
static void d68000_and_re_16(m68k_info *info)
1343
0
{
1344
0
  build_re_1(info, M68K_INS_AND, 2);
1345
0
}
1346
1347
static void d68000_and_re_32(m68k_info *info)
1348
0
{
1349
0
  build_re_1(info, M68K_INS_AND, 4);
1350
0
}
1351
1352
static void d68000_andi_8(m68k_info *info)
1353
0
{
1354
0
  build_imm_ea(info, M68K_INS_ANDI, 1, read_imm_8(info));
1355
0
}
1356
1357
static void d68000_andi_16(m68k_info *info)
1358
0
{
1359
0
  build_imm_ea(info, M68K_INS_ANDI, 2, read_imm_16(info));
1360
0
}
1361
1362
static void d68000_andi_32(m68k_info *info)
1363
0
{
1364
0
  build_imm_ea(info, M68K_INS_ANDI, 4, read_imm_32(info));
1365
0
}
1366
1367
static void d68000_andi_to_ccr(m68k_info *info)
1368
0
{
1369
0
  build_imm_special_reg(info, M68K_INS_ANDI, read_imm_8(info), 1, M68K_REG_CCR);
1370
0
}
1371
1372
static void d68000_andi_to_sr(m68k_info *info)
1373
0
{
1374
0
  build_imm_special_reg(info, M68K_INS_ANDI, read_imm_16(info), 2, M68K_REG_SR);
1375
0
}
1376
1377
static void d68000_asr_s_8(m68k_info *info)
1378
0
{
1379
0
  build_3bit_d(info, M68K_INS_ASR, 1);
1380
0
}
1381
1382
static void d68000_asr_s_16(m68k_info *info)
1383
0
{
1384
0
  build_3bit_d(info, M68K_INS_ASR, 2);
1385
0
}
1386
1387
static void d68000_asr_s_32(m68k_info *info)
1388
0
{
1389
0
  build_3bit_d(info, M68K_INS_ASR, 4);
1390
0
}
1391
1392
static void d68000_asr_r_8(m68k_info *info)
1393
0
{
1394
0
  build_r(info, M68K_INS_ASR, 1);
1395
0
}
1396
1397
static void d68000_asr_r_16(m68k_info *info)
1398
0
{
1399
0
  build_r(info, M68K_INS_ASR, 2);
1400
0
}
1401
1402
static void d68000_asr_r_32(m68k_info *info)
1403
0
{
1404
0
  build_r(info, M68K_INS_ASR, 4);
1405
0
}
1406
1407
static void d68000_asr_ea(m68k_info *info)
1408
0
{
1409
0
  build_ea(info, M68K_INS_ASR, 2);
1410
0
}
1411
1412
static void d68000_asl_s_8(m68k_info *info)
1413
0
{
1414
0
  build_3bit_d(info, M68K_INS_ASL, 1);
1415
0
}
1416
1417
static void d68000_asl_s_16(m68k_info *info)
1418
0
{
1419
0
  build_3bit_d(info, M68K_INS_ASL, 2);
1420
0
}
1421
1422
static void d68000_asl_s_32(m68k_info *info)
1423
0
{
1424
0
  build_3bit_d(info, M68K_INS_ASL, 4);
1425
0
}
1426
1427
static void d68000_asl_r_8(m68k_info *info)
1428
0
{
1429
0
  build_r(info, M68K_INS_ASL, 1);
1430
0
}
1431
1432
static void d68000_asl_r_16(m68k_info *info)
1433
0
{
1434
0
  build_r(info, M68K_INS_ASL, 2);
1435
0
}
1436
1437
static void d68000_asl_r_32(m68k_info *info)
1438
0
{
1439
0
  build_r(info, M68K_INS_ASL, 4);
1440
0
}
1441
1442
static void d68000_asl_ea(m68k_info *info)
1443
0
{
1444
0
  build_ea(info, M68K_INS_ASL, 2);
1445
0
}
1446
1447
static void d68000_bcc_8(m68k_info *info)
1448
0
{
1449
0
  build_bcc(info, 1, make_int_8(info->ir));
1450
0
}
1451
1452
static void d68000_bcc_16(m68k_info *info)
1453
0
{
1454
0
  build_bcc(info, 2, make_int_16(read_imm_16(info)));
1455
0
}
1456
1457
static void d68020_bcc_32(m68k_info *info)
1458
0
{
1459
0
  LIMIT_CPU_TYPES(info, M68020_PLUS);
1460
0
  build_bcc(info, 4, read_imm_32(info));
1461
0
}
1462
1463
static void d68000_bchg_r(m68k_info *info)
1464
0
{
1465
0
  build_re_1(info, M68K_INS_BCHG, 1);
1466
0
}
1467
1468
static void d68000_bchg_s(m68k_info *info)
1469
0
{
1470
0
  build_imm_ea(info, M68K_INS_BCHG, 1, read_imm_8(info));
1471
0
}
1472
1473
static void d68000_bclr_r(m68k_info *info)
1474
0
{
1475
0
  build_re_1(info, M68K_INS_BCLR, 1);
1476
0
}
1477
1478
static void d68000_bclr_s(m68k_info *info)
1479
0
{
1480
0
  build_imm_ea(info, M68K_INS_BCLR, 1, read_imm_8(info));
1481
0
}
1482
1483
static void d68010_bkpt(m68k_info *info)
1484
0
{
1485
0
  LIMIT_CPU_TYPES(info, M68010_PLUS);
1486
0
  build_absolute_jump_with_immediate(info, M68K_INS_BKPT, 0, info->ir & 7);
1487
0
}
1488
1489
static void d68020_bfchg(m68k_info *info)
1490
0
{
1491
0
  LIMIT_CPU_TYPES(info, M68020_PLUS);
1492
0
  build_bitfield_ins(info, M68K_INS_BFCHG, false);
1493
0
}
1494
1495
1496
static void d68020_bfclr(m68k_info *info)
1497
0
{
1498
0
  LIMIT_CPU_TYPES(info, M68020_PLUS);
1499
0
  build_bitfield_ins(info, M68K_INS_BFCLR, false);
1500
0
}
1501
1502
static void d68020_bfexts(m68k_info *info)
1503
0
{
1504
0
  LIMIT_CPU_TYPES(info, M68020_PLUS);
1505
0
  build_bitfield_ins(info, M68K_INS_BFEXTS, true);
1506
0
}
1507
1508
static void d68020_bfextu(m68k_info *info)
1509
0
{
1510
0
  LIMIT_CPU_TYPES(info, M68020_PLUS);
1511
0
  build_bitfield_ins(info, M68K_INS_BFEXTU, true);
1512
0
}
1513
1514
static void d68020_bfffo(m68k_info *info)
1515
0
{
1516
0
  LIMIT_CPU_TYPES(info, M68020_PLUS);
1517
0
  build_bitfield_ins(info, M68K_INS_BFFFO, true);
1518
0
}
1519
1520
static void d68020_bfins(m68k_info *info)
1521
0
{
1522
0
  cs_m68k* ext = &info->extension;
1523
0
  cs_m68k_op temp;
1524
1525
0
  LIMIT_CPU_TYPES(info, M68020_PLUS);
1526
0
  build_bitfield_ins(info, M68K_INS_BFINS, true);
1527
1528
  // a bit hacky but we need to flip the args on only this instruction
1529
1530
0
  temp = ext->operands[0];
1531
0
  ext->operands[0] = ext->operands[1];
1532
0
  ext->operands[1] = temp;
1533
0
}
1534
1535
static void d68020_bfset(m68k_info *info)
1536
0
{
1537
0
  LIMIT_CPU_TYPES(info, M68020_PLUS);
1538
0
  build_bitfield_ins(info, M68K_INS_BFSET, false);
1539
0
}
1540
1541
static void d68020_bftst(m68k_info *info)
1542
0
{
1543
0
  build_bitfield_ins(info, M68K_INS_BFTST, false);
1544
0
}
1545
1546
static void d68000_bra_8(m68k_info *info)
1547
0
{
1548
0
  build_relative_branch(info, M68K_INS_BRA, 1, make_int_8(info->ir));
1549
0
}
1550
1551
static void d68000_bra_16(m68k_info *info)
1552
0
{
1553
0
  build_relative_branch(info, M68K_INS_BRA, 2, make_int_16(read_imm_16(info)));
1554
0
}
1555
1556
static void d68020_bra_32(m68k_info *info)
1557
0
{
1558
0
  LIMIT_CPU_TYPES(info, M68020_PLUS);
1559
0
  build_relative_branch(info, M68K_INS_BRA, 4, read_imm_32(info));
1560
0
}
1561
1562
static void d68000_bset_r(m68k_info *info)
1563
0
{
1564
0
  build_re_1(info, M68K_INS_BSET, 1);
1565
0
}
1566
1567
static void d68000_bset_s(m68k_info *info)
1568
0
{
1569
0
  build_imm_ea(info, M68K_INS_BSET, 1, read_imm_8(info));
1570
0
}
1571
1572
static void d68000_bsr_8(m68k_info *info)
1573
0
{
1574
0
  build_relative_branch(info, M68K_INS_BSR, 1, make_int_8(info->ir));
1575
0
}
1576
1577
static void d68000_bsr_16(m68k_info *info)
1578
0
{
1579
0
  build_relative_branch(info, M68K_INS_BSR, 2, make_int_16(read_imm_16(info)));
1580
0
}
1581
1582
static void d68020_bsr_32(m68k_info *info)
1583
0
{
1584
0
  LIMIT_CPU_TYPES(info, M68020_PLUS);
1585
0
  build_relative_branch(info, M68K_INS_BSR, 4, read_imm_32(info));
1586
0
}
1587
1588
static void d68000_btst_r(m68k_info *info)
1589
0
{
1590
0
  build_re_1(info, M68K_INS_BTST, 4);
1591
0
}
1592
1593
static void d68000_btst_s(m68k_info *info)
1594
0
{
1595
0
  build_imm_ea(info, M68K_INS_BTST, 1, read_imm_8(info));
1596
0
}
1597
1598
static void d68020_callm(m68k_info *info)
1599
0
{
1600
0
  LIMIT_CPU_TYPES(info, M68020_ONLY);
1601
0
  build_imm_ea(info, M68K_INS_CALLM, 0, read_imm_8(info));
1602
0
}
1603
1604
static void d68020_cas_8(m68k_info *info)
1605
0
{
1606
0
  LIMIT_CPU_TYPES(info, M68020_PLUS);
1607
0
  build_d_d_ea(info, M68K_INS_CAS, 1);
1608
0
}
1609
1610
static void d68020_cas_16(m68k_info *info)
1611
0
{
1612
0
  LIMIT_CPU_TYPES(info, M68020_PLUS);
1613
0
  build_d_d_ea(info, M68K_INS_CAS, 2);
1614
0
}
1615
1616
static void d68020_cas_32(m68k_info *info)
1617
0
{
1618
0
  LIMIT_CPU_TYPES(info, M68020_PLUS);
1619
0
  build_d_d_ea(info, M68K_INS_CAS, 4);
1620
0
}
1621
1622
static void d68020_cas2_16(m68k_info *info)
1623
0
{
1624
0
  build_cas2(info, 2);
1625
0
}
1626
1627
static void d68020_cas2_32(m68k_info *info)
1628
0
{
1629
0
  build_cas2(info, 4);
1630
0
}
1631
1632
static void d68000_chk_16(m68k_info *info)
1633
0
{
1634
0
  build_er_1(info, M68K_INS_CHK, 2);
1635
0
}
1636
1637
static void d68020_chk_32(m68k_info *info)
1638
0
{
1639
0
  LIMIT_CPU_TYPES(info, M68020_PLUS);
1640
0
  build_er_1(info, M68K_INS_CHK, 4);
1641
0
}
1642
1643
static void d68020_chk2_cmp2_8(m68k_info *info)
1644
0
{
1645
0
  LIMIT_CPU_TYPES(info, M68020_PLUS);
1646
0
  build_chk2_cmp2(info, 1);
1647
0
}
1648
1649
static void d68020_chk2_cmp2_16(m68k_info *info)
1650
0
{
1651
0
  LIMIT_CPU_TYPES(info, M68020_PLUS);
1652
0
  build_chk2_cmp2(info, 2);
1653
0
}
1654
1655
static void d68020_chk2_cmp2_32(m68k_info *info)
1656
0
{
1657
0
  LIMIT_CPU_TYPES(info, M68020_PLUS);
1658
0
  build_chk2_cmp2(info, 4);
1659
0
}
1660
1661
static void d68040_cinv(m68k_info *info)
1662
0
{
1663
0
  LIMIT_CPU_TYPES(info, M68040_PLUS);
1664
0
  build_cpush_cinv(info, M68K_INS_CINVL);
1665
0
}
1666
1667
static void d68000_clr_8(m68k_info *info)
1668
0
{
1669
0
  build_ea(info, M68K_INS_CLR, 1);
1670
0
}
1671
1672
static void d68000_clr_16(m68k_info *info)
1673
0
{
1674
0
  build_ea(info, M68K_INS_CLR, 2);
1675
0
}
1676
1677
static void d68000_clr_32(m68k_info *info)
1678
0
{
1679
0
  build_ea(info, M68K_INS_CLR, 4);
1680
0
}
1681
1682
static void d68000_cmp_8(m68k_info *info)
1683
0
{
1684
0
  build_er_1(info, M68K_INS_CMP, 1);
1685
0
}
1686
1687
static void d68000_cmp_16(m68k_info *info)
1688
0
{
1689
0
  build_er_1(info, M68K_INS_CMP, 2);
1690
0
}
1691
1692
static void d68000_cmp_32(m68k_info *info)
1693
0
{
1694
0
  build_er_1(info, M68K_INS_CMP, 4);
1695
0
}
1696
1697
static void d68000_cmpa_16(m68k_info *info)
1698
0
{
1699
0
  build_ea_a(info, M68K_INS_CMPA, 2);
1700
0
}
1701
1702
static void d68000_cmpa_32(m68k_info *info)
1703
0
{
1704
0
  build_ea_a(info, M68K_INS_CMPA, 4);
1705
0
}
1706
1707
static void d68000_cmpi_8(m68k_info *info)
1708
0
{
1709
0
  build_imm_ea(info, M68K_INS_CMPI, 1, read_imm_8(info));
1710
0
}
1711
1712
static void d68020_cmpi_pcdi_8(m68k_info *info)
1713
0
{
1714
0
  LIMIT_CPU_TYPES(info, M68010_PLUS);
1715
0
  build_imm_ea(info, M68K_INS_CMPI, 1, read_imm_8(info));
1716
0
}
1717
1718
static void d68020_cmpi_pcix_8(m68k_info *info)
1719
0
{
1720
0
  LIMIT_CPU_TYPES(info, M68010_PLUS);
1721
0
  build_imm_ea(info, M68K_INS_CMPI, 1, read_imm_8(info));
1722
0
}
1723
1724
static void d68000_cmpi_16(m68k_info *info)
1725
0
{
1726
0
  build_imm_ea(info, M68K_INS_CMPI, 2, read_imm_16(info));
1727
0
}
1728
1729
static void d68020_cmpi_pcdi_16(m68k_info *info)
1730
0
{
1731
0
  LIMIT_CPU_TYPES(info, M68010_PLUS);
1732
0
  build_imm_ea(info, M68K_INS_CMPI, 2, read_imm_16(info));
1733
0
}
1734
1735
static void d68020_cmpi_pcix_16(m68k_info *info)
1736
0
{
1737
0
  LIMIT_CPU_TYPES(info, M68010_PLUS);
1738
0
  build_imm_ea(info, M68K_INS_CMPI, 2, read_imm_16(info));
1739
0
}
1740
1741
static void d68000_cmpi_32(m68k_info *info)
1742
0
{
1743
0
  build_imm_ea(info, M68K_INS_CMPI, 4, read_imm_32(info));
1744
0
}
1745
1746
static void d68020_cmpi_pcdi_32(m68k_info *info)
1747
0
{
1748
0
  LIMIT_CPU_TYPES(info, M68010_PLUS);
1749
0
  build_imm_ea(info, M68K_INS_CMPI, 4, read_imm_32(info));
1750
0
}
1751
1752
static void d68020_cmpi_pcix_32(m68k_info *info)
1753
0
{
1754
0
  LIMIT_CPU_TYPES(info, M68010_PLUS);
1755
0
  build_imm_ea(info, M68K_INS_CMPI, 4, read_imm_32(info));
1756
0
}
1757
1758
static void d68000_cmpm_8(m68k_info *info)
1759
0
{
1760
0
  build_pi_pi(info, M68K_INS_CMPM, 1);
1761
0
}
1762
1763
static void d68000_cmpm_16(m68k_info *info)
1764
0
{
1765
0
  build_pi_pi(info, M68K_INS_CMPM, 2);
1766
0
}
1767
1768
static void d68000_cmpm_32(m68k_info *info)
1769
0
{
1770
0
  build_pi_pi(info, M68K_INS_CMPM, 4);
1771
0
}
1772
1773
static void make_cpbcc_operand(cs_m68k_op* op, int size, int displacement)
1774
0
{
1775
0
  op->address_mode = M68K_AM_BRANCH_DISPLACEMENT;
1776
0
  op->type = M68K_OP_BR_DISP;
1777
0
  op->br_disp.disp = displacement;
1778
0
  op->br_disp.disp_size = size;
1779
0
}
1780
1781
static void d68020_cpbcc_16(m68k_info *info)
1782
0
{
1783
0
  cs_m68k_op* op0;
1784
0
  cs_m68k* ext;
1785
0
  LIMIT_CPU_TYPES(info, M68020_PLUS);
1786
1787
  // FNOP is a special case of FBF
1788
0
  if (info->ir == 0xf280 && peek_imm_16(info) == 0) {
1789
0
    MCInst_setOpcode(info->inst, M68K_INS_FNOP);
1790
0
    info->pc += 2;
1791
0
    return;
1792
0
  }
1793
1794
  // these are all in row with the extension so just doing a add here is fine
1795
0
  info->inst->Opcode += (info->ir & 0x2f);
1796
1797
0
  ext = build_init_op(info, M68K_INS_FBF, 1, 2);
1798
0
  op0 = &ext->operands[0];
1799
1800
0
  make_cpbcc_operand(op0, M68K_OP_BR_DISP_SIZE_WORD, make_int_16(read_imm_16(info)));
1801
1802
0
  set_insn_group(info, M68K_GRP_JUMP);
1803
0
  set_insn_group(info, M68K_GRP_BRANCH_RELATIVE);
1804
0
}
1805
1806
static void d68020_cpbcc_32(m68k_info *info)
1807
0
{
1808
0
  cs_m68k* ext;
1809
0
  cs_m68k_op* op0;
1810
1811
0
  LIMIT_CPU_TYPES(info, M68020_PLUS);
1812
1813
  // these are all in row with the extension so just doing a add here is fine
1814
0
  info->inst->Opcode += (info->ir & 0x2f);
1815
1816
0
  ext = build_init_op(info, M68K_INS_FBF, 1, 4);
1817
0
  op0 = &ext->operands[0];
1818
1819
0
  make_cpbcc_operand(op0, M68K_OP_BR_DISP_SIZE_LONG, read_imm_32(info));
1820
1821
0
  set_insn_group(info, M68K_GRP_JUMP);
1822
0
  set_insn_group(info, M68K_GRP_BRANCH_RELATIVE);
1823
0
}
1824
1825
static void d68020_cpdbcc(m68k_info *info)
1826
0
{
1827
0
  cs_m68k* ext;
1828
0
  cs_m68k_op* op0;
1829
0
  cs_m68k_op* op1;
1830
0
  uint32_t ext1, ext2;
1831
1832
0
  LIMIT_CPU_TYPES(info, M68020_PLUS);
1833
1834
0
  ext1 = read_imm_16(info);
1835
0
  ext2 = read_imm_16(info);
1836
1837
  // these are all in row with the extension so just doing a add here is fine
1838
0
  info->inst->Opcode += (ext1 & 0x2f);
1839
1840
0
  ext = build_init_op(info, M68K_INS_FDBF, 2, 0);
1841
0
  op0 = &ext->operands[0];
1842
0
  op1 = &ext->operands[1];
1843
1844
0
  op0->reg = M68K_REG_D0 + (info->ir & 7);
1845
1846
0
  make_cpbcc_operand(op1, M68K_OP_BR_DISP_SIZE_WORD, make_int_16(ext2) + 2);
1847
1848
0
  set_insn_group(info, M68K_GRP_JUMP);
1849
0
  set_insn_group(info, M68K_GRP_BRANCH_RELATIVE);
1850
0
}
1851
1852
static void fmove_fpcr(m68k_info *info, uint32_t extension)
1853
0
{
1854
0
  cs_m68k_op* special;
1855
0
  cs_m68k_op* op_ea;
1856
1857
0
  int regsel = (extension >> 10) & 0x7;
1858
0
  int dir = (extension >> 13) & 0x1;
1859
1860
0
  cs_m68k* ext = build_init_op(info, M68K_INS_FMOVE, 2, 4);
1861
1862
0
  special = &ext->operands[0];
1863
0
  op_ea = &ext->operands[1];
1864
1865
0
  if (!dir) {
1866
0
    cs_m68k_op* t = special;
1867
0
    special = op_ea;
1868
0
    op_ea = t;
1869
0
  }
1870
1871
0
  get_ea_mode_op(info, op_ea, info->ir, 4);
1872
1873
0
  if (regsel & 4)
1874
0
    special->reg = M68K_REG_FPCR;
1875
0
  else if (regsel & 2)
1876
0
    special->reg = M68K_REG_FPSR;
1877
0
  else if (regsel & 1)
1878
0
    special->reg = M68K_REG_FPIAR;
1879
0
}
1880
1881
static void fmovem(m68k_info *info, uint32_t extension)
1882
0
{
1883
0
  cs_m68k_op* op_reglist;
1884
0
  cs_m68k_op* op_ea;
1885
0
  int dir = (extension >> 13) & 0x1;
1886
0
  int mode = (extension >> 11) & 0x3;
1887
0
  uint32_t reglist = extension & 0xff;
1888
0
  cs_m68k* ext = build_init_op(info, M68K_INS_FMOVEM, 2, 0);
1889
1890
0
  op_reglist = &ext->operands[0];
1891
0
  op_ea = &ext->operands[1];
1892
1893
  // flip args around
1894
1895
0
  if (!dir) {
1896
0
    cs_m68k_op* t = op_reglist;
1897
0
    op_reglist = op_ea;
1898
0
    op_ea = t;
1899
0
  }
1900
1901
0
  get_ea_mode_op(info, op_ea, info->ir, 0);
1902
1903
0
  switch (mode) {
1904
0
    case 1 : // Dynamic list in dn register
1905
0
      op_reglist->reg = M68K_REG_D0 + ((reglist >> 4) & 7);
1906
0
      break;
1907
1908
0
    case 0 :
1909
0
      op_reglist->address_mode = M68K_AM_NONE;
1910
0
      op_reglist->type = M68K_OP_REG_BITS;
1911
0
      op_reglist->register_bits = reglist << 16;
1912
0
      break;
1913
1914
0
    case 2 : // Static list
1915
0
      op_reglist->address_mode = M68K_AM_NONE;
1916
0
      op_reglist->type = M68K_OP_REG_BITS;
1917
0
      op_reglist->register_bits = ((uint32_t)reverse_bits_8(reglist)) << 16;
1918
0
      break;
1919
0
  }
1920
0
}
1921
1922
static void d68020_cpgen(m68k_info *info)
1923
0
{
1924
0
  cs_m68k *ext;
1925
0
  cs_m68k_op* op0;
1926
0
  cs_m68k_op* op1;
1927
0
  bool supports_single_op;
1928
0
  uint32_t next;
1929
0
  int rm, src, dst, opmode;
1930
1931
1932
0
  LIMIT_CPU_TYPES(info, M68020_PLUS);
1933
1934
0
  supports_single_op = true;
1935
1936
0
  next = read_imm_16(info);
1937
1938
0
  rm = (next >> 14) & 0x1;
1939
0
  src = (next >> 10) & 0x7;
1940
0
  dst = (next >> 7) & 0x7;
1941
0
  opmode = next & 0x3f;
1942
1943
  // special handling for fmovecr
1944
1945
0
  if (BITFIELD(info->ir, 5, 0) == 0 && BITFIELD(next, 15, 10) == 0x17) {
1946
0
    cs_m68k_op* op0;
1947
0
    cs_m68k_op* op1;
1948
0
    cs_m68k* ext = build_init_op(info, M68K_INS_FMOVECR, 2, 0);
1949
1950
0
    op0 = &ext->operands[0];
1951
0
    op1 = &ext->operands[1];
1952
1953
0
    op0->address_mode = M68K_AM_IMMEDIATE;
1954
0
    op0->type = M68K_OP_IMM;
1955
0
    op0->imm = next & 0x3f;
1956
1957
0
    op1->reg = M68K_REG_FP0 + ((next >> 7) & 7);
1958
1959
0
    return;
1960
0
  }
1961
1962
  // deal with extended move stuff
1963
1964
0
  switch ((next >> 13) & 0x7) {
1965
    // fmovem fpcr
1966
0
    case 0x4: // FMOVEM ea, FPCR
1967
0
    case 0x5: // FMOVEM FPCR, ea
1968
0
      fmove_fpcr(info, next);
1969
0
      return;
1970
1971
    // fmovem list
1972
0
    case 0x6:
1973
0
    case 0x7:
1974
0
      fmovem(info, next);
1975
0
      return;
1976
0
  }
1977
1978
  // See comment bellow on why this is being done
1979
1980
0
  if ((next >> 6) & 1)
1981
0
    opmode &= ~4;
1982
1983
  // special handling of some instructions here
1984
1985
0
  switch (opmode) {
1986
0
    case 0x00: MCInst_setOpcode(info->inst, M68K_INS_FMOVE); supports_single_op = false; break;
1987
0
    case 0x01: MCInst_setOpcode(info->inst, M68K_INS_FINT); break;
1988
0
    case 0x02: MCInst_setOpcode(info->inst, M68K_INS_FSINH); break;
1989
0
    case 0x03: MCInst_setOpcode(info->inst, M68K_INS_FINTRZ); break;
1990
0
    case 0x04: MCInst_setOpcode(info->inst, M68K_INS_FSQRT); break;
1991
0
    case 0x06: MCInst_setOpcode(info->inst, M68K_INS_FLOGNP1); break;
1992
0
    case 0x08: MCInst_setOpcode(info->inst, M68K_INS_FETOXM1); break;
1993
0
    case 0x09: MCInst_setOpcode(info->inst, M68K_INS_FATANH); break;
1994
0
    case 0x0a: MCInst_setOpcode(info->inst, M68K_INS_FATAN); break;
1995
0
    case 0x0c: MCInst_setOpcode(info->inst, M68K_INS_FASIN); break;
1996
0
    case 0x0d: MCInst_setOpcode(info->inst, M68K_INS_FATANH); break;
1997
0
    case 0x0e: MCInst_setOpcode(info->inst, M68K_INS_FSIN); break;
1998
0
    case 0x0f: MCInst_setOpcode(info->inst, M68K_INS_FTAN); break;
1999
0
    case 0x10: MCInst_setOpcode(info->inst, M68K_INS_FETOX); break;
2000
0
    case 0x11: MCInst_setOpcode(info->inst, M68K_INS_FTWOTOX); break;
2001
0
    case 0x12: MCInst_setOpcode(info->inst, M68K_INS_FTENTOX); break;
2002
0
    case 0x14: MCInst_setOpcode(info->inst, M68K_INS_FLOGN); break;
2003
0
    case 0x15: MCInst_setOpcode(info->inst, M68K_INS_FLOG10); break;
2004
0
    case 0x16: MCInst_setOpcode(info->inst, M68K_INS_FLOG2); break;
2005
0
    case 0x18: MCInst_setOpcode(info->inst, M68K_INS_FABS); break;
2006
0
    case 0x19: MCInst_setOpcode(info->inst, M68K_INS_FCOSH); break;
2007
0
    case 0x1a: MCInst_setOpcode(info->inst, M68K_INS_FNEG); break;
2008
0
    case 0x1c: MCInst_setOpcode(info->inst, M68K_INS_FACOS); break;
2009
0
    case 0x1d: MCInst_setOpcode(info->inst, M68K_INS_FCOS); break;
2010
0
    case 0x1e: MCInst_setOpcode(info->inst, M68K_INS_FGETEXP); break;
2011
0
    case 0x1f: MCInst_setOpcode(info->inst, M68K_INS_FGETMAN); break;
2012
0
    case 0x20: MCInst_setOpcode(info->inst, M68K_INS_FDIV); supports_single_op = false; break;
2013
0
    case 0x21: MCInst_setOpcode(info->inst, M68K_INS_FMOD); supports_single_op = false; break;
2014
0
    case 0x22: MCInst_setOpcode(info->inst, M68K_INS_FADD); supports_single_op = false; break;
2015
0
    case 0x23: MCInst_setOpcode(info->inst, M68K_INS_FMUL); supports_single_op = false; break;
2016
0
    case 0x24: MCInst_setOpcode(info->inst, M68K_INS_FSGLDIV); supports_single_op = false; break;
2017
0
    case 0x25: MCInst_setOpcode(info->inst, M68K_INS_FREM); break;
2018
0
    case 0x26: MCInst_setOpcode(info->inst, M68K_INS_FSCALE); break;
2019
0
    case 0x27: MCInst_setOpcode(info->inst, M68K_INS_FSGLMUL); break;
2020
0
    case 0x28: MCInst_setOpcode(info->inst, M68K_INS_FSUB); supports_single_op = false; break;
2021
0
    case 0x38: MCInst_setOpcode(info->inst, M68K_INS_FCMP); supports_single_op = false; break;
2022
0
    case 0x3a: MCInst_setOpcode(info->inst, M68K_INS_FTST); break;
2023
0
    default:
2024
0
      break;
2025
0
  }
2026
2027
  // Some trickery here! It's not documented but if bit 6 is set this is a s/d opcode and then
2028
  // if bit 2 is set it's a d. As we already have set our opcode in the code above we can just
2029
  // offset it as the following 2 op codes (if s/d is supported) will always be directly after it
2030
2031
0
  if ((next >> 6) & 1) {
2032
0
    if ((next >> 2) & 1)
2033
0
      info->inst->Opcode += 2;
2034
0
    else
2035
0
      info->inst->Opcode += 1;
2036
0
  }
2037
2038
0
  ext = &info->extension;
2039
2040
0
  ext->op_count = 2;
2041
0
  ext->op_size.type = M68K_SIZE_TYPE_CPU;
2042
0
  ext->op_size.cpu_size = 0;
2043
2044
  // Special case - adjust direction of fmove
2045
0
  if ((opmode == 0x00) && ((next >> 13) & 0x1) != 0) {
2046
0
    op0 = &ext->operands[1];
2047
0
    op1 = &ext->operands[0];
2048
0
  } else {
2049
0
    op0 = &ext->operands[0];
2050
0
    op1 = &ext->operands[1];
2051
0
  }
2052
2053
0
  if (rm == 0 && supports_single_op && src == dst) {
2054
0
    ext->op_count = 1;
2055
0
    op0->reg = M68K_REG_FP0 + dst;
2056
0
    return;
2057
0
  }
2058
2059
0
  if (rm == 1) {
2060
0
    switch (src) {
2061
0
      case 0x00 :
2062
0
        ext->op_size.cpu_size = M68K_CPU_SIZE_LONG;
2063
0
        get_ea_mode_op(info, op0, info->ir, 4);
2064
0
        break;
2065
2066
0
      case 0x06 :
2067
0
        ext->op_size.cpu_size = M68K_CPU_SIZE_BYTE;
2068
0
        get_ea_mode_op(info, op0, info->ir, 1);
2069
0
        break;
2070
2071
0
      case 0x04 :
2072
0
        ext->op_size.cpu_size = M68K_CPU_SIZE_WORD;
2073
0
        get_ea_mode_op(info, op0, info->ir, 2);
2074
0
        break;
2075
2076
0
      case 0x01 :
2077
0
        ext->op_size.type = M68K_SIZE_TYPE_FPU;
2078
0
        ext->op_size.fpu_size = M68K_FPU_SIZE_SINGLE;
2079
0
        get_ea_mode_op(info, op0, info->ir, 4);
2080
0
        op0->type = M68K_OP_FP_SINGLE;
2081
0
        break;
2082
2083
0
      case 0x05:
2084
0
        ext->op_size.type = M68K_SIZE_TYPE_FPU;
2085
0
        ext->op_size.fpu_size = M68K_FPU_SIZE_DOUBLE;
2086
0
        get_ea_mode_op(info, op0, info->ir, 8);
2087
0
        op0->type = M68K_OP_FP_DOUBLE;
2088
0
        break;
2089
2090
0
      default :
2091
0
        ext->op_size.type = M68K_SIZE_TYPE_FPU;
2092
0
        ext->op_size.fpu_size = M68K_FPU_SIZE_EXTENDED;
2093
0
        break;
2094
0
    }
2095
0
  } else {
2096
0
    op0->reg = M68K_REG_FP0 + src;
2097
0
  }
2098
2099
0
  op1->reg = M68K_REG_FP0 + dst;
2100
0
}
2101
2102
static void d68020_cprestore(m68k_info *info)
2103
0
{
2104
0
  cs_m68k* ext;
2105
0
  LIMIT_CPU_TYPES(info, M68020_PLUS);
2106
2107
0
  ext = build_init_op(info, M68K_INS_FRESTORE, 1, 0);
2108
0
  get_ea_mode_op(info, &ext->operands[0], info->ir, 1);
2109
0
}
2110
2111
static void d68020_cpsave(m68k_info *info)
2112
0
{
2113
0
  cs_m68k* ext;
2114
2115
0
  LIMIT_CPU_TYPES(info, M68020_PLUS);
2116
2117
0
  ext = build_init_op(info, M68K_INS_FSAVE, 1, 0);
2118
0
  get_ea_mode_op(info, &ext->operands[0], info->ir, 1);
2119
0
}
2120
2121
static void d68020_cpscc(m68k_info *info)
2122
0
{
2123
0
  cs_m68k* ext;
2124
2125
0
  LIMIT_CPU_TYPES(info, M68020_PLUS);
2126
0
  ext = build_init_op(info, M68K_INS_FSF, 1, 1);
2127
2128
  // these are all in row with the extension so just doing a add here is fine
2129
0
  info->inst->Opcode += (read_imm_16(info) & 0x2f);
2130
2131
0
  get_ea_mode_op(info, &ext->operands[0], info->ir, 1);
2132
0
}
2133
2134
static void d68020_cptrapcc_0(m68k_info *info)
2135
0
{
2136
0
  uint32_t extension1;
2137
0
  LIMIT_CPU_TYPES(info, M68020_PLUS);
2138
2139
0
  extension1 = read_imm_16(info);
2140
2141
0
  build_init_op(info, M68K_INS_FTRAPF, 0, 0);
2142
2143
  // these are all in row with the extension so just doing a add here is fine
2144
0
  info->inst->Opcode += (extension1 & 0x2f);
2145
0
}
2146
2147
static void d68020_cptrapcc_16(m68k_info *info)
2148
0
{
2149
0
  uint32_t extension1, extension2;
2150
0
  cs_m68k_op* op0;
2151
0
  cs_m68k* ext;
2152
2153
0
  LIMIT_CPU_TYPES(info, M68020_PLUS);
2154
2155
0
  extension1 = read_imm_16(info);
2156
0
  extension2 = read_imm_16(info);
2157
2158
0
  ext = build_init_op(info, M68K_INS_FTRAPF, 1, 2);
2159
2160
  // these are all in row with the extension so just doing a add here is fine
2161
0
  info->inst->Opcode += (extension1 & 0x2f);
2162
2163
0
  op0 = &ext->operands[0];
2164
2165
0
  op0->address_mode = M68K_AM_IMMEDIATE;
2166
0
  op0->type = M68K_OP_IMM;
2167
0
  op0->imm = extension2;
2168
0
}
2169
2170
static void d68020_cptrapcc_32(m68k_info *info)
2171
0
{
2172
0
  uint32_t extension1, extension2;
2173
0
  cs_m68k* ext;
2174
0
  cs_m68k_op* op0;
2175
2176
0
  LIMIT_CPU_TYPES(info, M68020_PLUS);
2177
2178
0
  extension1 = read_imm_16(info);
2179
0
  extension2 = read_imm_32(info);
2180
2181
0
  ext = build_init_op(info, M68K_INS_FTRAPF, 1, 2);
2182
2183
  // these are all in row with the extension so just doing a add here is fine
2184
0
  info->inst->Opcode += (extension1 & 0x2f);
2185
2186
0
  op0 = &ext->operands[0];
2187
2188
0
  op0->address_mode = M68K_AM_IMMEDIATE;
2189
0
  op0->type = M68K_OP_IMM;
2190
0
  op0->imm = extension2;
2191
0
}
2192
2193
static void d68040_cpush(m68k_info *info)
2194
0
{
2195
0
  LIMIT_CPU_TYPES(info, M68040_PLUS);
2196
0
  build_cpush_cinv(info, M68K_INS_CPUSHL);
2197
0
}
2198
2199
static void d68000_dbra(m68k_info *info)
2200
0
{
2201
0
  build_dbxx(info, M68K_INS_DBRA, 0, make_int_16(read_imm_16(info)));
2202
0
}
2203
2204
static void d68000_dbcc(m68k_info *info)
2205
0
{
2206
0
  build_dbcc(info, 0, make_int_16(read_imm_16(info)));
2207
0
}
2208
2209
static void d68000_divs(m68k_info *info)
2210
0
{
2211
0
  build_er_1(info, M68K_INS_DIVS, 2);
2212
0
}
2213
2214
static void d68000_divu(m68k_info *info)
2215
0
{
2216
0
  build_er_1(info, M68K_INS_DIVU, 2);
2217
0
}
2218
2219
static void d68020_divl(m68k_info *info)
2220
0
{
2221
0
  uint32_t extension, insn_signed;
2222
0
  cs_m68k* ext;
2223
0
  cs_m68k_op* op0;
2224
0
  cs_m68k_op* op1;
2225
0
  uint32_t reg_0, reg_1;
2226
2227
0
  LIMIT_CPU_TYPES(info, M68020_PLUS);
2228
2229
0
  extension = read_imm_16(info);
2230
0
  insn_signed = 0;
2231
2232
0
  if (BIT_B((extension)))
2233
0
    insn_signed = 1;
2234
2235
0
  ext = build_init_op(info, insn_signed ? M68K_INS_DIVS : M68K_INS_DIVU, 2, 4);
2236
2237
0
  op0 = &ext->operands[0];
2238
0
  op1 = &ext->operands[1];
2239
2240
0
  get_ea_mode_op(info, op0, info->ir, 4);
2241
2242
0
  reg_0 = extension & 7;
2243
0
  reg_1 = (extension >> 12) & 7;
2244
2245
0
  op1->address_mode = M68K_AM_NONE;
2246
0
  op1->type = M68K_OP_REG_PAIR;
2247
0
  op1->reg_pair.reg_0 = reg_0 + M68K_REG_D0;
2248
0
  op1->reg_pair.reg_1 = reg_1 + M68K_REG_D0;
2249
2250
0
  if ((reg_0 == reg_1) || !BIT_A(extension)) {
2251
0
    op1->type = M68K_OP_REG;
2252
0
    op1->reg = M68K_REG_D0 + reg_1;
2253
0
  }
2254
0
}
2255
2256
static void d68000_eor_8(m68k_info *info)
2257
0
{
2258
0
  build_re_1(info, M68K_INS_EOR, 1);
2259
0
}
2260
2261
static void d68000_eor_16(m68k_info *info)
2262
0
{
2263
0
  build_re_1(info, M68K_INS_EOR, 2);
2264
0
}
2265
2266
static void d68000_eor_32(m68k_info *info)
2267
0
{
2268
0
  build_re_1(info, M68K_INS_EOR, 4);
2269
0
}
2270
2271
static void d68000_eori_8(m68k_info *info)
2272
0
{
2273
0
  build_imm_ea(info, M68K_INS_EORI, 1, read_imm_8(info));
2274
0
}
2275
2276
static void d68000_eori_16(m68k_info *info)
2277
0
{
2278
0
  build_imm_ea(info, M68K_INS_EORI, 2, read_imm_16(info));
2279
0
}
2280
2281
static void d68000_eori_32(m68k_info *info)
2282
0
{
2283
0
  build_imm_ea(info, M68K_INS_EORI, 4, read_imm_32(info));
2284
0
}
2285
2286
static void d68000_eori_to_ccr(m68k_info *info)
2287
0
{
2288
0
  build_imm_special_reg(info, M68K_INS_EORI, read_imm_8(info), 1, M68K_REG_CCR);
2289
0
}
2290
2291
static void d68000_eori_to_sr(m68k_info *info)
2292
0
{
2293
0
  build_imm_special_reg(info, M68K_INS_EORI, read_imm_16(info), 2, M68K_REG_SR);
2294
0
}
2295
2296
static void d68000_exg_dd(m68k_info *info)
2297
0
{
2298
0
  build_r(info, M68K_INS_EXG, 4);
2299
0
}
2300
2301
static void d68000_exg_aa(m68k_info *info)
2302
0
{
2303
0
  cs_m68k_op* op0;
2304
0
  cs_m68k_op* op1;
2305
0
  cs_m68k* ext = build_init_op(info, M68K_INS_EXG, 2, 4);
2306
2307
0
  op0 = &ext->operands[0];
2308
0
  op1 = &ext->operands[1];
2309
2310
0
  op0->address_mode = M68K_AM_NONE;
2311
0
  op0->reg = M68K_REG_A0 + ((info->ir >> 9) & 7);
2312
2313
0
  op1->address_mode = M68K_AM_NONE;
2314
0
  op1->reg = M68K_REG_A0 + (info->ir & 7);
2315
0
}
2316
2317
static void d68000_exg_da(m68k_info *info)
2318
0
{
2319
0
  cs_m68k_op* op0;
2320
0
  cs_m68k_op* op1;
2321
0
  cs_m68k* ext = build_init_op(info, M68K_INS_EXG, 2, 4);
2322
2323
0
  op0 = &ext->operands[0];
2324
0
  op1 = &ext->operands[1];
2325
2326
0
  op0->address_mode = M68K_AM_NONE;
2327
0
  op0->reg = M68K_REG_D0 + ((info->ir >> 9) & 7);
2328
2329
0
  op1->address_mode = M68K_AM_NONE;
2330
0
  op1->reg = M68K_REG_A0 + (info->ir & 7);
2331
0
}
2332
2333
static void d68000_ext_16(m68k_info *info)
2334
0
{
2335
0
  build_d(info, M68K_INS_EXT, 2);
2336
0
}
2337
2338
static void d68000_ext_32(m68k_info *info)
2339
0
{
2340
0
  build_d(info, M68K_INS_EXT, 4);
2341
0
}
2342
2343
static void d68020_extb_32(m68k_info *info)
2344
0
{
2345
0
  LIMIT_CPU_TYPES(info, M68020_PLUS);
2346
0
  build_d(info, M68K_INS_EXTB, 4);
2347
0
}
2348
2349
static void d68000_jmp(m68k_info *info)
2350
0
{
2351
0
  cs_m68k* ext = build_init_op(info, M68K_INS_JMP, 1, 0);
2352
0
  set_insn_group(info, M68K_GRP_JUMP);
2353
0
  get_ea_mode_op(info, &ext->operands[0], info->ir, 4);
2354
0
}
2355
2356
static void d68000_jsr(m68k_info *info)
2357
0
{
2358
0
  cs_m68k* ext = build_init_op(info, M68K_INS_JSR, 1, 0);
2359
0
  set_insn_group(info, M68K_GRP_JUMP);
2360
0
  get_ea_mode_op(info, &ext->operands[0], info->ir, 4);
2361
0
}
2362
2363
static void d68000_lea(m68k_info *info)
2364
0
{
2365
0
  build_ea_a(info, M68K_INS_LEA, 4);
2366
0
}
2367
2368
static void d68000_link_16(m68k_info *info)
2369
0
{
2370
0
  build_link(info, read_imm_16(info), 2);
2371
0
}
2372
2373
static void d68020_link_32(m68k_info *info)
2374
0
{
2375
0
  LIMIT_CPU_TYPES(info, M68020_PLUS);
2376
0
  build_link(info, read_imm_32(info), 4);
2377
0
}
2378
2379
static void d68000_lsr_s_8(m68k_info *info)
2380
0
{
2381
0
  build_3bit_d(info, M68K_INS_LSR, 1);
2382
0
}
2383
2384
static void d68000_lsr_s_16(m68k_info *info)
2385
0
{
2386
0
  build_3bit_d(info, M68K_INS_LSR, 2);
2387
0
}
2388
2389
static void d68000_lsr_s_32(m68k_info *info)
2390
0
{
2391
0
  build_3bit_d(info, M68K_INS_LSR, 4);
2392
0
}
2393
2394
static void d68000_lsr_r_8(m68k_info *info)
2395
0
{
2396
0
  build_r(info, M68K_INS_LSR, 1);
2397
0
}
2398
2399
static void d68000_lsr_r_16(m68k_info *info)
2400
0
{
2401
0
  build_r(info, M68K_INS_LSR, 2);
2402
0
}
2403
2404
static void d68000_lsr_r_32(m68k_info *info)
2405
0
{
2406
0
  build_r(info, M68K_INS_LSR, 4);
2407
0
}
2408
2409
static void d68000_lsr_ea(m68k_info *info)
2410
0
{
2411
0
  build_ea(info, M68K_INS_LSR, 2);
2412
0
}
2413
2414
static void d68000_lsl_s_8(m68k_info *info)
2415
0
{
2416
0
  build_3bit_d(info, M68K_INS_LSL, 1);
2417
0
}
2418
2419
static void d68000_lsl_s_16(m68k_info *info)
2420
0
{
2421
0
  build_3bit_d(info, M68K_INS_LSL, 2);
2422
0
}
2423
2424
static void d68000_lsl_s_32(m68k_info *info)
2425
0
{
2426
0
  build_3bit_d(info, M68K_INS_LSL, 4);
2427
0
}
2428
2429
static void d68000_lsl_r_8(m68k_info *info)
2430
0
{
2431
0
  build_r(info, M68K_INS_LSL, 1);
2432
0
}
2433
2434
static void d68000_lsl_r_16(m68k_info *info)
2435
0
{
2436
0
  build_r(info, M68K_INS_LSL, 2);
2437
0
}
2438
2439
static void d68000_lsl_r_32(m68k_info *info)
2440
0
{
2441
0
  build_r(info, M68K_INS_LSL, 4);
2442
0
}
2443
2444
static void d68000_lsl_ea(m68k_info *info)
2445
0
{
2446
0
  build_ea(info, M68K_INS_LSL, 2);
2447
0
}
2448
2449
static void d68000_move_8(m68k_info *info)
2450
0
{
2451
0
  build_ea_ea(info, M68K_INS_MOVE, 1);
2452
0
}
2453
2454
static void d68000_move_16(m68k_info *info)
2455
0
{
2456
0
  build_ea_ea(info, M68K_INS_MOVE, 2);
2457
0
}
2458
2459
static void d68000_move_32(m68k_info *info)
2460
0
{
2461
0
  build_ea_ea(info, M68K_INS_MOVE, 4);
2462
0
}
2463
2464
static void d68000_movea_16(m68k_info *info)
2465
0
{
2466
0
  build_ea_a(info, M68K_INS_MOVEA, 2);
2467
0
}
2468
2469
static void d68000_movea_32(m68k_info *info)
2470
0
{
2471
0
  build_ea_a(info, M68K_INS_MOVEA, 4);
2472
0
}
2473
2474
static void d68000_move_to_ccr(m68k_info *info)
2475
0
{
2476
0
  cs_m68k_op* op0;
2477
0
  cs_m68k_op* op1;
2478
0
  cs_m68k* ext = build_init_op(info, M68K_INS_MOVE, 2, 2);
2479
2480
0
  op0 = &ext->operands[0];
2481
0
  op1 = &ext->operands[1];
2482
2483
0
  get_ea_mode_op(info, op0, info->ir, 1);
2484
2485
0
  op1->address_mode = M68K_AM_NONE;
2486
0
  op1->reg = M68K_REG_CCR;
2487
0
}
2488
2489
static void d68010_move_fr_ccr(m68k_info *info)
2490
0
{
2491
0
  cs_m68k_op* op0;
2492
0
  cs_m68k_op* op1;
2493
0
  cs_m68k* ext;
2494
2495
0
  LIMIT_CPU_TYPES(info, M68010_PLUS);
2496
2497
0
  ext = build_init_op(info, M68K_INS_MOVE, 2, 2);
2498
2499
0
  op0 = &ext->operands[0];
2500
0
  op1 = &ext->operands[1];
2501
2502
0
  op0->address_mode = M68K_AM_NONE;
2503
0
  op0->reg = M68K_REG_CCR;
2504
2505
0
  get_ea_mode_op(info, op1, info->ir, 1);
2506
0
}
2507
2508
static void d68000_move_fr_sr(m68k_info *info)
2509
0
{
2510
0
  cs_m68k_op* op0;
2511
0
  cs_m68k_op* op1;
2512
0
  cs_m68k* ext = build_init_op(info, M68K_INS_MOVE, 2, 2);
2513
2514
0
  op0 = &ext->operands[0];
2515
0
  op1 = &ext->operands[1];
2516
2517
0
  op0->address_mode = M68K_AM_NONE;
2518
0
  op0->reg = M68K_REG_SR;
2519
2520
0
  get_ea_mode_op(info, op1, info->ir, 2);
2521
0
}
2522
2523
static void d68000_move_to_sr(m68k_info *info)
2524
0
{
2525
0
  cs_m68k_op* op0;
2526
0
  cs_m68k_op* op1;
2527
0
  cs_m68k* ext = build_init_op(info, M68K_INS_MOVE, 2, 2);
2528
2529
0
  op0 = &ext->operands[0];
2530
0
  op1 = &ext->operands[1];
2531
2532
0
  get_ea_mode_op(info, op0, info->ir, 2);
2533
2534
0
  op1->address_mode = M68K_AM_NONE;
2535
0
  op1->reg = M68K_REG_SR;
2536
0
}
2537
2538
static void d68000_move_fr_usp(m68k_info *info)
2539
0
{
2540
0
  cs_m68k_op* op0;
2541
0
  cs_m68k_op* op1;
2542
0
  cs_m68k* ext = build_init_op(info, M68K_INS_MOVE, 2, 0);
2543
2544
0
  op0 = &ext->operands[0];
2545
0
  op1 = &ext->operands[1];
2546
2547
0
  op0->address_mode = M68K_AM_NONE;
2548
0
  op0->reg = M68K_REG_USP;
2549
2550
0
  op1->address_mode = M68K_AM_NONE;
2551
0
  op1->reg = M68K_REG_A0 + (info->ir & 7);
2552
0
}
2553
2554
static void d68000_move_to_usp(m68k_info *info)
2555
0
{
2556
0
  cs_m68k_op* op0;
2557
0
  cs_m68k_op* op1;
2558
0
  cs_m68k* ext = build_init_op(info, M68K_INS_MOVE, 2, 0);
2559
2560
0
  op0 = &ext->operands[0];
2561
0
  op1 = &ext->operands[1];
2562
2563
0
  op0->address_mode = M68K_AM_NONE;
2564
0
  op0->reg = M68K_REG_A0 + (info->ir & 7);
2565
2566
0
  op1->address_mode = M68K_AM_NONE;
2567
0
  op1->reg = M68K_REG_USP;
2568
0
}
2569
2570
static void d68010_movec(m68k_info *info)
2571
0
{
2572
0
  uint32_t extension;
2573
0
  m68k_reg reg;
2574
0
  cs_m68k* ext;
2575
0
  cs_m68k_op* op0;
2576
0
  cs_m68k_op* op1;
2577
2578
2579
0
  LIMIT_CPU_TYPES(info, M68010_PLUS);
2580
2581
0
  extension = read_imm_16(info);
2582
0
  reg = M68K_REG_INVALID;
2583
2584
0
  ext = build_init_op(info, M68K_INS_MOVEC, 2, 0);
2585
2586
0
  op0 = &ext->operands[0];
2587
0
  op1 = &ext->operands[1];
2588
2589
0
  switch (extension & 0xfff) {
2590
0
    case 0x000: reg = M68K_REG_SFC; break;
2591
0
    case 0x001: reg = M68K_REG_DFC; break;
2592
0
    case 0x800: reg = M68K_REG_USP; break;
2593
0
    case 0x801: reg = M68K_REG_VBR; break;
2594
0
    case 0x002: reg = M68K_REG_CACR; break;
2595
0
    case 0x802: reg = M68K_REG_CAAR; break;
2596
0
    case 0x803: reg = M68K_REG_MSP; break;
2597
0
    case 0x804: reg = M68K_REG_ISP; break;
2598
0
    case 0x003: reg = M68K_REG_TC; break;
2599
0
    case 0x004: reg = M68K_REG_ITT0; break;
2600
0
    case 0x005: reg = M68K_REG_ITT1; break;
2601
0
    case 0x006: reg = M68K_REG_DTT0; break;
2602
0
    case 0x007: reg = M68K_REG_DTT1; break;
2603
0
    case 0x805: reg = M68K_REG_MMUSR; break;
2604
0
    case 0x806: reg = M68K_REG_URP; break;
2605
0
    case 0x807: reg = M68K_REG_SRP; break;
2606
0
  }
2607
2608
0
  if (BIT_0(info->ir)) {
2609
0
    op0->reg = (BIT_F(extension) ? M68K_REG_A0 : M68K_REG_D0) + ((extension >> 12) & 7);
2610
0
    op1->reg = reg;
2611
0
  } else {
2612
0
    op0->reg = reg;
2613
0
    op1->reg = (BIT_F(extension) ? M68K_REG_A0 : M68K_REG_D0) + ((extension >> 12) & 7);
2614
0
  }
2615
0
}
2616
2617
static void d68000_movem_pd_16(m68k_info *info)
2618
0
{
2619
0
  build_movem_re(info, M68K_INS_MOVEM, 2);
2620
0
}
2621
2622
static void d68000_movem_pd_32(m68k_info *info)
2623
0
{
2624
0
  build_movem_re(info, M68K_INS_MOVEM, 4);
2625
0
}
2626
2627
static void d68000_movem_er_16(m68k_info *info)
2628
0
{
2629
0
  build_movem_er(info, M68K_INS_MOVEM, 2);
2630
0
}
2631
2632
static void d68000_movem_er_32(m68k_info *info)
2633
0
{
2634
0
  build_movem_er(info, M68K_INS_MOVEM, 4);
2635
0
}
2636
2637
static void d68000_movem_re_16(m68k_info *info)
2638
0
{
2639
0
  build_movem_re(info, M68K_INS_MOVEM, 2);
2640
0
}
2641
2642
static void d68000_movem_re_32(m68k_info *info)
2643
0
{
2644
0
  build_movem_re(info, M68K_INS_MOVEM, 4);
2645
0
}
2646
2647
static void d68000_movep_re_16(m68k_info *info)
2648
0
{
2649
0
  build_movep_re(info, 2);
2650
0
}
2651
2652
static void d68000_movep_re_32(m68k_info *info)
2653
0
{
2654
0
  build_movep_re(info, 4);
2655
0
}
2656
2657
static void d68000_movep_er_16(m68k_info *info)
2658
0
{
2659
0
  build_movep_er(info, 2);
2660
0
}
2661
2662
static void d68000_movep_er_32(m68k_info *info)
2663
0
{
2664
0
  build_movep_er(info, 4);
2665
0
}
2666
2667
static void d68010_moves_8(m68k_info *info)
2668
0
{
2669
0
  LIMIT_CPU_TYPES(info, M68010_PLUS);
2670
0
  build_moves(info, 1);
2671
0
}
2672
2673
static void d68010_moves_16(m68k_info *info)
2674
0
{
2675
  //uint32_t extension;
2676
0
  LIMIT_CPU_TYPES(info, M68010_PLUS);
2677
0
  build_moves(info, 2);
2678
0
}
2679
2680
static void d68010_moves_32(m68k_info *info)
2681
0
{
2682
0
  LIMIT_CPU_TYPES(info, M68010_PLUS);
2683
0
  build_moves(info, 4);
2684
0
}
2685
2686
static void d68000_moveq(m68k_info *info)
2687
0
{
2688
0
  cs_m68k_op* op0;
2689
0
  cs_m68k_op* op1;
2690
2691
0
  cs_m68k* ext = build_init_op(info, M68K_INS_MOVEQ, 2, 0);
2692
2693
0
  op0 = &ext->operands[0];
2694
0
  op1 = &ext->operands[1];
2695
2696
0
  op0->type = M68K_OP_IMM;
2697
0
  op0->address_mode = M68K_AM_IMMEDIATE;
2698
0
  op0->imm = (info->ir & 0xff);
2699
2700
0
  op1->address_mode = M68K_AM_REG_DIRECT_DATA;
2701
0
  op1->reg = M68K_REG_D0 + ((info->ir >> 9) & 7);
2702
0
}
2703
2704
static void d68040_move16_pi_pi(m68k_info *info)
2705
0
{
2706
0
  int data[] = { info->ir & 7, (read_imm_16(info) >> 12) & 7 };
2707
0
  int modes[] = { M68K_AM_REGI_ADDR_POST_INC, M68K_AM_REGI_ADDR_POST_INC };
2708
2709
0
  LIMIT_CPU_TYPES(info, M68040_PLUS);
2710
2711
0
  build_move16(info, data, modes);
2712
0
}
2713
2714
static void d68040_move16_pi_al(m68k_info *info)
2715
0
{
2716
0
  int data[] = { info->ir & 7, read_imm_32(info) };
2717
0
  int modes[] = { M68K_AM_REGI_ADDR_POST_INC, M68K_AM_ABSOLUTE_DATA_LONG };
2718
2719
0
  LIMIT_CPU_TYPES(info, M68040_PLUS);
2720
2721
0
  build_move16(info, data, modes);
2722
0
}
2723
2724
static void d68040_move16_al_pi(m68k_info *info)
2725
0
{
2726
0
  int data[] = { read_imm_32(info), info->ir & 7 };
2727
0
  int modes[] = { M68K_AM_ABSOLUTE_DATA_LONG, M68K_AM_REGI_ADDR_POST_INC };
2728
2729
0
  LIMIT_CPU_TYPES(info, M68040_PLUS);
2730
2731
0
  build_move16(info, data, modes);
2732
0
}
2733
2734
static void d68040_move16_ai_al(m68k_info *info)
2735
0
{
2736
0
  int data[] = { info->ir & 7, read_imm_32(info) };
2737
0
  int modes[] = { M68K_AM_REG_DIRECT_ADDR, M68K_AM_ABSOLUTE_DATA_LONG };
2738
2739
0
  LIMIT_CPU_TYPES(info, M68040_PLUS);
2740
2741
0
  build_move16(info, data, modes);
2742
0
}
2743
2744
static void d68040_move16_al_ai(m68k_info *info)
2745
0
{
2746
0
  int data[] = { read_imm_32(info), info->ir & 7 };
2747
0
  int modes[] = { M68K_AM_ABSOLUTE_DATA_LONG, M68K_AM_REG_DIRECT_ADDR };
2748
2749
0
  LIMIT_CPU_TYPES(info, M68040_PLUS);
2750
2751
0
  build_move16(info, data, modes);
2752
0
}
2753
2754
static void d68000_muls(m68k_info *info)
2755
0
{
2756
0
  build_er_1(info, M68K_INS_MULS, 2);
2757
0
}
2758
2759
static void d68000_mulu(m68k_info *info)
2760
0
{
2761
0
  build_er_1(info, M68K_INS_MULU, 2);
2762
0
}
2763
2764
static void d68020_mull(m68k_info *info)
2765
0
{
2766
0
  uint32_t extension, insn_signed;
2767
0
  cs_m68k* ext;
2768
0
  cs_m68k_op* op0;
2769
0
  cs_m68k_op* op1;
2770
0
  uint32_t reg_0, reg_1;
2771
2772
0
  LIMIT_CPU_TYPES(info, M68020_PLUS);
2773
2774
0
  extension = read_imm_16(info);
2775
0
  insn_signed = 0;
2776
2777
0
  if (BIT_B((extension)))
2778
0
    insn_signed = 1;
2779
2780
0
  ext = build_init_op(info, insn_signed ? M68K_INS_MULS : M68K_INS_MULU, 2, 4);
2781
2782
0
  op0 = &ext->operands[0];
2783
0
  op1 = &ext->operands[1];
2784
2785
0
  get_ea_mode_op(info, op0, info->ir, 4);
2786
2787
0
  reg_0 = extension & 7;
2788
0
  reg_1 = (extension >> 12) & 7;
2789
2790
0
  op1->address_mode = M68K_AM_NONE;
2791
0
  op1->type = M68K_OP_REG_PAIR;
2792
0
  op1->reg_pair.reg_0 = reg_0 + M68K_REG_D0;
2793
0
  op1->reg_pair.reg_1 = reg_1 + M68K_REG_D0;
2794
2795
0
  if (!BIT_A(extension)) {
2796
0
    op1->type = M68K_OP_REG;
2797
0
    op1->reg = M68K_REG_D0 + reg_1;
2798
0
  }
2799
0
}
2800
2801
static void d68000_nbcd(m68k_info *info)
2802
0
{
2803
0
  build_ea(info, M68K_INS_NBCD, 1);
2804
0
}
2805
2806
static void d68000_neg_8(m68k_info *info)
2807
0
{
2808
0
  build_ea(info, M68K_INS_NEG, 1);
2809
0
}
2810
2811
static void d68000_neg_16(m68k_info *info)
2812
0
{
2813
0
  build_ea(info, M68K_INS_NEG, 2);
2814
0
}
2815
2816
static void d68000_neg_32(m68k_info *info)
2817
0
{
2818
0
  build_ea(info, M68K_INS_NEG, 4);
2819
0
}
2820
2821
static void d68000_negx_8(m68k_info *info)
2822
0
{
2823
0
  build_ea(info, M68K_INS_NEGX, 1);
2824
0
}
2825
2826
static void d68000_negx_16(m68k_info *info)
2827
0
{
2828
0
  build_ea(info, M68K_INS_NEGX, 2);
2829
0
}
2830
2831
static void d68000_negx_32(m68k_info *info)
2832
0
{
2833
0
  build_ea(info, M68K_INS_NEGX, 4);
2834
0
}
2835
2836
static void d68000_nop(m68k_info *info)
2837
0
{
2838
0
  MCInst_setOpcode(info->inst, M68K_INS_NOP);
2839
0
}
2840
2841
static void d68000_not_8(m68k_info *info)
2842
0
{
2843
0
  build_ea(info, M68K_INS_NOT, 1);
2844
0
}
2845
2846
static void d68000_not_16(m68k_info *info)
2847
0
{
2848
0
  build_ea(info, M68K_INS_NOT, 2);
2849
0
}
2850
2851
static void d68000_not_32(m68k_info *info)
2852
0
{
2853
0
  build_ea(info, M68K_INS_NOT, 4);
2854
0
}
2855
2856
static void d68000_or_er_8(m68k_info *info)
2857
0
{
2858
0
  build_er_1(info, M68K_INS_OR, 1);
2859
0
}
2860
2861
static void d68000_or_er_16(m68k_info *info)
2862
0
{
2863
0
  build_er_1(info, M68K_INS_OR, 2);
2864
0
}
2865
2866
static void d68000_or_er_32(m68k_info *info)
2867
0
{
2868
0
  build_er_1(info, M68K_INS_OR, 4);
2869
0
}
2870
2871
static void d68000_or_re_8(m68k_info *info)
2872
0
{
2873
0
  build_re_1(info, M68K_INS_OR, 1);
2874
0
}
2875
2876
static void d68000_or_re_16(m68k_info *info)
2877
0
{
2878
0
  build_re_1(info, M68K_INS_OR, 2);
2879
0
}
2880
2881
static void d68000_or_re_32(m68k_info *info)
2882
0
{
2883
0
  build_re_1(info, M68K_INS_OR, 4);
2884
0
}
2885
2886
static void d68000_ori_8(m68k_info *info)
2887
0
{
2888
0
  build_imm_ea(info, M68K_INS_ORI, 1, read_imm_8(info));
2889
0
}
2890
2891
static void d68000_ori_16(m68k_info *info)
2892
0
{
2893
0
  build_imm_ea(info, M68K_INS_ORI, 2, read_imm_16(info));
2894
0
}
2895
2896
static void d68000_ori_32(m68k_info *info)
2897
0
{
2898
0
  build_imm_ea(info, M68K_INS_ORI, 4, read_imm_32(info));
2899
0
}
2900
2901
static void d68000_ori_to_ccr(m68k_info *info)
2902
0
{
2903
0
  build_imm_special_reg(info, M68K_INS_ORI, read_imm_8(info), 1, M68K_REG_CCR);
2904
0
}
2905
2906
static void d68000_ori_to_sr(m68k_info *info)
2907
0
{
2908
0
  build_imm_special_reg(info, M68K_INS_ORI, read_imm_16(info), 2, M68K_REG_SR);
2909
0
}
2910
2911
static void d68020_pack_rr(m68k_info *info)
2912
0
{
2913
0
  LIMIT_CPU_TYPES(info, M68020_PLUS);
2914
0
  build_rr(info, M68K_INS_PACK, 0, read_imm_16(info));
2915
0
}
2916
2917
static void d68020_pack_mm(m68k_info *info)
2918
0
{
2919
0
  LIMIT_CPU_TYPES(info, M68020_PLUS);
2920
0
  build_mm(info, M68K_INS_PACK, 0, read_imm_16(info));
2921
0
}
2922
2923
static void d68000_pea(m68k_info *info)
2924
0
{
2925
0
  build_ea(info, M68K_INS_PEA, 4);
2926
0
}
2927
2928
static void d68000_reset(m68k_info *info)
2929
0
{
2930
0
  MCInst_setOpcode(info->inst, M68K_INS_RESET);
2931
0
}
2932
2933
static void d68000_ror_s_8(m68k_info *info)
2934
0
{
2935
0
  build_3bit_d(info, M68K_INS_ROR, 1);
2936
0
}
2937
2938
static void d68000_ror_s_16(m68k_info *info)
2939
0
{
2940
0
  build_3bit_d(info, M68K_INS_ROR, 2);
2941
0
}
2942
2943
static void d68000_ror_s_32(m68k_info *info)
2944
0
{
2945
0
  build_3bit_d(info, M68K_INS_ROR, 4);
2946
0
}
2947
2948
static void d68000_ror_r_8(m68k_info *info)
2949
0
{
2950
0
  build_r(info, M68K_INS_ROR, 1);
2951
0
}
2952
2953
static void d68000_ror_r_16(m68k_info *info)
2954
0
{
2955
0
  build_r(info, M68K_INS_ROR, 2);
2956
0
}
2957
2958
static void d68000_ror_r_32(m68k_info *info)
2959
0
{
2960
0
  build_r(info, M68K_INS_ROR, 4);
2961
0
}
2962
2963
static void d68000_ror_ea(m68k_info *info)
2964
0
{
2965
0
  build_ea(info, M68K_INS_ROR, 2);
2966
0
}
2967
2968
static void d68000_rol_s_8(m68k_info *info)
2969
0
{
2970
0
  build_3bit_d(info, M68K_INS_ROL, 1);
2971
0
}
2972
2973
static void d68000_rol_s_16(m68k_info *info)
2974
0
{
2975
0
  build_3bit_d(info, M68K_INS_ROL, 2);
2976
0
}
2977
2978
static void d68000_rol_s_32(m68k_info *info)
2979
0
{
2980
0
  build_3bit_d(info, M68K_INS_ROL, 4);
2981
0
}
2982
2983
static void d68000_rol_r_8(m68k_info *info)
2984
0
{
2985
0
  build_r(info, M68K_INS_ROL, 1);
2986
0
}
2987
2988
static void d68000_rol_r_16(m68k_info *info)
2989
0
{
2990
0
  build_r(info, M68K_INS_ROL, 2);
2991
0
}
2992
2993
static void d68000_rol_r_32(m68k_info *info)
2994
0
{
2995
0
  build_r(info, M68K_INS_ROL, 4);
2996
0
}
2997
2998
static void d68000_rol_ea(m68k_info *info)
2999
0
{
3000
0
  build_ea(info, M68K_INS_ROL, 2);
3001
0
}
3002
3003
static void d68000_roxr_s_8(m68k_info *info)
3004
0
{
3005
0
  build_3bit_d(info, M68K_INS_ROXR, 1);
3006
0
}
3007
3008
static void d68000_roxr_s_16(m68k_info *info)
3009
0
{
3010
0
  build_3bit_d(info, M68K_INS_ROXR, 2);
3011
0
}
3012
3013
static void d68000_roxr_s_32(m68k_info *info)
3014
0
{
3015
0
  build_3bit_d(info, M68K_INS_ROXR, 4);
3016
0
}
3017
3018
static void d68000_roxr_r_8(m68k_info *info)
3019
0
{
3020
0
  build_3bit_d(info, M68K_INS_ROXR, 4);
3021
0
}
3022
3023
static void d68000_roxr_r_16(m68k_info *info)
3024
0
{
3025
0
  build_r(info, M68K_INS_ROXR, 2);
3026
0
}
3027
3028
static void d68000_roxr_r_32(m68k_info *info)
3029
0
{
3030
0
  build_r(info, M68K_INS_ROXR, 4);
3031
0
}
3032
3033
static void d68000_roxr_ea(m68k_info *info)
3034
0
{
3035
0
  build_ea(info, M68K_INS_ROXR, 2);
3036
0
}
3037
3038
static void d68000_roxl_s_8(m68k_info *info)
3039
0
{
3040
0
  build_3bit_d(info, M68K_INS_ROXL, 1);
3041
0
}
3042
3043
static void d68000_roxl_s_16(m68k_info *info)
3044
0
{
3045
0
  build_3bit_d(info, M68K_INS_ROXL, 2);
3046
0
}
3047
3048
static void d68000_roxl_s_32(m68k_info *info)
3049
0
{
3050
0
  build_3bit_d(info, M68K_INS_ROXL, 4);
3051
0
}
3052
3053
static void d68000_roxl_r_8(m68k_info *info)
3054
0
{
3055
0
  build_r(info, M68K_INS_ROXL, 1);
3056
0
}
3057
3058
static void d68000_roxl_r_16(m68k_info *info)
3059
0
{
3060
0
  build_r(info, M68K_INS_ROXL, 2);
3061
0
}
3062
3063
static void d68000_roxl_r_32(m68k_info *info)
3064
0
{
3065
0
  build_r(info, M68K_INS_ROXL, 4);
3066
0
}
3067
3068
static void d68000_roxl_ea(m68k_info *info)
3069
0
{
3070
0
  build_ea(info, M68K_INS_ROXL, 2);
3071
0
}
3072
3073
static void d68010_rtd(m68k_info *info)
3074
0
{
3075
0
  set_insn_group(info, M68K_GRP_RET);
3076
0
  LIMIT_CPU_TYPES(info, M68010_PLUS);
3077
0
  build_absolute_jump_with_immediate(info, M68K_INS_RTD, 0, read_imm_16(info));
3078
0
}
3079
3080
static void d68000_rte(m68k_info *info)
3081
0
{
3082
0
  set_insn_group(info, M68K_GRP_IRET);
3083
0
  MCInst_setOpcode(info->inst, M68K_INS_RTE);
3084
0
}
3085
3086
static void d68020_rtm(m68k_info *info)
3087
0
{
3088
0
  cs_m68k* ext;
3089
0
  cs_m68k_op* op;
3090
3091
0
  set_insn_group(info, M68K_GRP_RET);
3092
3093
0
  LIMIT_CPU_TYPES(info, M68020_ONLY);
3094
3095
0
  build_absolute_jump_with_immediate(info, M68K_INS_RTM, 0, 0);
3096
3097
0
  ext = &info->extension;
3098
0
  op = &ext->operands[0];
3099
3100
0
  op->address_mode = M68K_AM_NONE;
3101
0
  op->type = M68K_OP_REG;
3102
3103
0
  if (BIT_3(info->ir)) {
3104
0
    op->reg = M68K_REG_A0 + (info->ir & 7);
3105
0
  } else {
3106
0
    op->reg = M68K_REG_D0 + (info->ir & 7);
3107
0
  }
3108
0
}
3109
3110
static void d68000_rtr(m68k_info *info)
3111
0
{
3112
0
  set_insn_group(info, M68K_GRP_RET);
3113
0
  MCInst_setOpcode(info->inst, M68K_INS_RTR);
3114
0
}
3115
3116
static void d68000_rts(m68k_info *info)
3117
0
{
3118
0
  set_insn_group(info, M68K_GRP_RET);
3119
0
  MCInst_setOpcode(info->inst, M68K_INS_RTS);
3120
0
}
3121
3122
static void d68000_sbcd_rr(m68k_info *info)
3123
0
{
3124
0
  build_rr(info, M68K_INS_SBCD, 1, 0);
3125
0
}
3126
3127
static void d68000_sbcd_mm(m68k_info *info)
3128
0
{
3129
0
  build_mm(info, M68K_INS_SBCD, 0, read_imm_16(info));
3130
0
}
3131
3132
static void d68000_scc(m68k_info *info)
3133
0
{
3134
0
  cs_m68k* ext = build_init_op(info, s_scc_lut[(info->ir >> 8) & 0xf], 1, 1);
3135
0
  get_ea_mode_op(info, &ext->operands[0], info->ir, 1);
3136
0
}
3137
3138
static void d68000_stop(m68k_info *info)
3139
0
{
3140
0
  build_absolute_jump_with_immediate(info, M68K_INS_STOP, 0, read_imm_16(info));
3141
0
}
3142
3143
static void d68000_sub_er_8(m68k_info *info)
3144
0
{
3145
0
  build_er_1(info, M68K_INS_SUB, 1);
3146
0
}
3147
3148
static void d68000_sub_er_16(m68k_info *info)
3149
0
{
3150
0
  build_er_1(info, M68K_INS_SUB, 2);
3151
0
}
3152
3153
static void d68000_sub_er_32(m68k_info *info)
3154
0
{
3155
0
  build_er_1(info, M68K_INS_SUB, 4);
3156
0
}
3157
3158
static void d68000_sub_re_8(m68k_info *info)
3159
0
{
3160
0
  build_re_1(info, M68K_INS_SUB, 1);
3161
0
}
3162
3163
static void d68000_sub_re_16(m68k_info *info)
3164
0
{
3165
0
  build_re_1(info, M68K_INS_SUB, 2);
3166
0
}
3167
3168
static void d68000_sub_re_32(m68k_info *info)
3169
0
{
3170
0
  build_re_1(info, M68K_INS_SUB, 4);
3171
0
}
3172
3173
static void d68000_suba_16(m68k_info *info)
3174
0
{
3175
0
  build_ea_a(info, M68K_INS_SUBA, 2);
3176
0
}
3177
3178
static void d68000_suba_32(m68k_info *info)
3179
0
{
3180
0
  build_ea_a(info, M68K_INS_SUBA, 4);
3181
0
}
3182
3183
static void d68000_subi_8(m68k_info *info)
3184
0
{
3185
0
  build_imm_ea(info, M68K_INS_SUBI, 1, read_imm_8(info));
3186
0
}
3187
3188
static void d68000_subi_16(m68k_info *info)
3189
0
{
3190
0
  build_imm_ea(info, M68K_INS_SUBI, 2, read_imm_16(info));
3191
0
}
3192
3193
static void d68000_subi_32(m68k_info *info)
3194
0
{
3195
0
  build_imm_ea(info, M68K_INS_SUBI, 4, read_imm_32(info));
3196
0
}
3197
3198
static void d68000_subq_8(m68k_info *info)
3199
0
{
3200
0
  build_3bit_ea(info, M68K_INS_SUBQ, 1);
3201
0
}
3202
3203
static void d68000_subq_16(m68k_info *info)
3204
0
{
3205
0
  build_3bit_ea(info, M68K_INS_SUBQ, 2);
3206
0
}
3207
3208
static void d68000_subq_32(m68k_info *info)
3209
0
{
3210
0
  build_3bit_ea(info, M68K_INS_SUBQ, 4);
3211
0
}
3212
3213
static void d68000_subx_rr_8(m68k_info *info)
3214
0
{
3215
0
  build_rr(info, M68K_INS_SUBX, 1, 0);
3216
0
}
3217
3218
static void d68000_subx_rr_16(m68k_info *info)
3219
0
{
3220
0
  build_rr(info, M68K_INS_SUBX, 2, 0);
3221
0
}
3222
3223
static void d68000_subx_rr_32(m68k_info *info)
3224
0
{
3225
0
  build_rr(info, M68K_INS_SUBX, 4, 0);
3226
0
}
3227
3228
static void d68000_subx_mm_8(m68k_info *info)
3229
0
{
3230
0
  build_mm(info, M68K_INS_SUBX, 1, 0);
3231
0
}
3232
3233
static void d68000_subx_mm_16(m68k_info *info)
3234
0
{
3235
0
  build_mm(info, M68K_INS_SUBX, 2, 0);
3236
0
}
3237
3238
static void d68000_subx_mm_32(m68k_info *info)
3239
0
{
3240
0
  build_mm(info, M68K_INS_SUBX, 4, 0);
3241
0
}
3242
3243
static void d68000_swap(m68k_info *info)
3244
0
{
3245
0
  build_d(info, M68K_INS_SWAP, 0);
3246
0
}
3247
3248
static void d68000_tas(m68k_info *info)
3249
0
{
3250
0
  build_ea(info, M68K_INS_TAS, 1);
3251
0
}
3252
3253
static void d68000_trap(m68k_info *info)
3254
0
{
3255
0
  build_absolute_jump_with_immediate(info, M68K_INS_TRAP, 0, info->ir&0xf);
3256
0
}
3257
3258
static void d68020_trapcc_0(m68k_info *info)
3259
0
{
3260
0
  LIMIT_CPU_TYPES(info, M68020_PLUS);
3261
0
  build_trap(info, 0, 0);
3262
3263
0
  info->extension.op_count = 0;
3264
0
}
3265
3266
static void d68020_trapcc_16(m68k_info *info)
3267
0
{
3268
0
  LIMIT_CPU_TYPES(info, M68020_PLUS);
3269
0
  build_trap(info, 2, read_imm_16(info));
3270
0
}
3271
3272
static void d68020_trapcc_32(m68k_info *info)
3273
0
{
3274
0
  LIMIT_CPU_TYPES(info, M68020_PLUS);
3275
0
  build_trap(info, 4, read_imm_32(info));
3276
0
}
3277
3278
static void d68000_trapv(m68k_info *info)
3279
0
{
3280
0
  MCInst_setOpcode(info->inst, M68K_INS_TRAPV);
3281
0
}
3282
3283
static void d68000_tst_8(m68k_info *info)
3284
0
{
3285
0
  build_ea(info, M68K_INS_TST, 1);
3286
0
}
3287
3288
static void d68020_tst_pcdi_8(m68k_info *info)
3289
0
{
3290
0
  LIMIT_CPU_TYPES(info, M68020_PLUS);
3291
0
  build_ea(info, M68K_INS_TST, 1);
3292
0
}
3293
3294
static void d68020_tst_pcix_8(m68k_info *info)
3295
0
{
3296
0
  LIMIT_CPU_TYPES(info, M68020_PLUS);
3297
0
  build_ea(info, M68K_INS_TST, 1);
3298
0
}
3299
3300
static void d68020_tst_i_8(m68k_info *info)
3301
0
{
3302
0
  LIMIT_CPU_TYPES(info, M68020_PLUS);
3303
0
  build_ea(info, M68K_INS_TST, 1);
3304
0
}
3305
3306
static void d68000_tst_16(m68k_info *info)
3307
0
{
3308
0
  build_ea(info, M68K_INS_TST, 2);
3309
0
}
3310
3311
static void d68020_tst_a_16(m68k_info *info)
3312
0
{
3313
0
  LIMIT_CPU_TYPES(info, M68020_PLUS);
3314
0
  build_ea(info, M68K_INS_TST, 2);
3315
0
}
3316
3317
static void d68020_tst_pcdi_16(m68k_info *info)
3318
0
{
3319
0
  LIMIT_CPU_TYPES(info, M68020_PLUS);
3320
0
  build_ea(info, M68K_INS_TST, 2);
3321
0
}
3322
3323
static void d68020_tst_pcix_16(m68k_info *info)
3324
0
{
3325
0
  LIMIT_CPU_TYPES(info, M68020_PLUS);
3326
0
  build_ea(info, M68K_INS_TST, 2);
3327
0
}
3328
3329
static void d68020_tst_i_16(m68k_info *info)
3330
0
{
3331
0
  LIMIT_CPU_TYPES(info, M68020_PLUS);
3332
0
  build_ea(info, M68K_INS_TST, 2);
3333
0
}
3334
3335
static void d68000_tst_32(m68k_info *info)
3336
0
{
3337
0
  build_ea(info, M68K_INS_TST, 4);
3338
0
}
3339
3340
static void d68020_tst_a_32(m68k_info *info)
3341
0
{
3342
0
  LIMIT_CPU_TYPES(info, M68020_PLUS);
3343
0
  build_ea(info, M68K_INS_TST, 4);
3344
0
}
3345
3346
static void d68020_tst_pcdi_32(m68k_info *info)
3347
0
{
3348
0
  LIMIT_CPU_TYPES(info, M68020_PLUS);
3349
0
  build_ea(info, M68K_INS_TST, 4);
3350
0
}
3351
3352
static void d68020_tst_pcix_32(m68k_info *info)
3353
0
{
3354
0
  LIMIT_CPU_TYPES(info, M68020_PLUS);
3355
0
  build_ea(info, M68K_INS_TST, 4);
3356
0
}
3357
3358
static void d68020_tst_i_32(m68k_info *info)
3359
0
{
3360
0
  LIMIT_CPU_TYPES(info, M68020_PLUS);
3361
0
  build_ea(info, M68K_INS_TST, 4);
3362
0
}
3363
3364
static void d68000_unlk(m68k_info *info)
3365
0
{
3366
0
  cs_m68k_op* op;
3367
0
  cs_m68k* ext = build_init_op(info, M68K_INS_UNLK, 1, 0);
3368
3369
0
  op = &ext->operands[0];
3370
3371
0
  op->address_mode = M68K_AM_REG_DIRECT_ADDR;
3372
0
  op->reg = M68K_REG_A0 + (info->ir & 7);
3373
0
}
3374
3375
static void d68020_unpk_rr(m68k_info *info)
3376
0
{
3377
0
  LIMIT_CPU_TYPES(info, M68020_PLUS);
3378
0
  build_rr(info, M68K_INS_UNPK, 0, read_imm_16(info));
3379
0
}
3380
3381
static void d68020_unpk_mm(m68k_info *info)
3382
0
{
3383
0
  LIMIT_CPU_TYPES(info, M68020_PLUS);
3384
0
  build_mm(info, M68K_INS_UNPK, 0, read_imm_16(info));
3385
0
}
3386
3387
/* This table is auto-generated. Look in contrib/m68k_instruction_tbl_gen for more info */
3388
#include "M68KInstructionTable.inc"
3389
3390
static int instruction_is_valid(m68k_info *info, const unsigned int word_check)
3391
0
{
3392
0
  const unsigned int instruction = info->ir;
3393
0
  const instruction_struct *i = &g_instruction_table[instruction];
3394
3395
0
  if ( (i->word2_mask && ((word_check & i->word2_mask) != i->word2_match)) ||
3396
0
    (i->instruction == d68000_invalid) ) {
3397
0
    d68000_invalid(info);
3398
0
    return 0;
3399
0
  }
3400
3401
0
  return 1;
3402
0
}
3403
3404
static int exists_reg_list(uint16_t *regs, uint8_t count, m68k_reg reg)
3405
0
{
3406
0
  uint8_t i;
3407
3408
0
  for (i = 0; i < count; ++i) {
3409
0
    if (regs[i] == (uint16_t)reg)
3410
0
      return 1;
3411
0
  }
3412
3413
0
  return 0;
3414
0
}
3415
3416
static void add_reg_to_rw_list(m68k_info *info, m68k_reg reg, int write)
3417
0
{
3418
0
  if (reg == M68K_REG_INVALID)
3419
0
    return;
3420
3421
0
  if (write)
3422
0
  {
3423
0
    if (exists_reg_list(info->regs_write, info->regs_write_count, reg))
3424
0
      return;
3425
3426
0
    info->regs_write[info->regs_write_count] = (uint16_t)reg;
3427
0
    info->regs_write_count++;
3428
0
  }
3429
0
  else
3430
0
  {
3431
0
    if (exists_reg_list(info->regs_read, info->regs_read_count, reg))
3432
0
      return;
3433
3434
0
    info->regs_read[info->regs_read_count] = (uint16_t)reg;
3435
0
    info->regs_read_count++;
3436
0
  }
3437
0
}
3438
3439
static void update_am_reg_list(m68k_info *info, cs_m68k_op *op, int write)
3440
0
{
3441
0
  switch (op->address_mode) {
3442
0
    case M68K_AM_REG_DIRECT_ADDR:
3443
0
    case M68K_AM_REG_DIRECT_DATA:
3444
0
      add_reg_to_rw_list(info, op->reg, write);
3445
0
      break;
3446
3447
0
    case M68K_AM_REGI_ADDR_POST_INC:
3448
0
    case M68K_AM_REGI_ADDR_PRE_DEC:
3449
0
      add_reg_to_rw_list(info, op->reg, 1);
3450
0
      break;
3451
3452
0
    case M68K_AM_REGI_ADDR:
3453
0
    case M68K_AM_REGI_ADDR_DISP:
3454
0
      add_reg_to_rw_list(info, op->reg, 0);
3455
0
      break;
3456
3457
0
    case M68K_AM_AREGI_INDEX_8_BIT_DISP:
3458
0
    case M68K_AM_AREGI_INDEX_BASE_DISP:
3459
0
    case M68K_AM_MEMI_POST_INDEX:
3460
0
    case M68K_AM_MEMI_PRE_INDEX:
3461
0
    case M68K_AM_PCI_INDEX_8_BIT_DISP:
3462
0
    case M68K_AM_PCI_INDEX_BASE_DISP:
3463
0
    case M68K_AM_PC_MEMI_PRE_INDEX:
3464
0
    case M68K_AM_PC_MEMI_POST_INDEX:
3465
0
      add_reg_to_rw_list(info, op->mem.index_reg, 0);
3466
0
      add_reg_to_rw_list(info, op->mem.base_reg, 0);
3467
0
      break;
3468
3469
    // no register(s) in the other addressing modes
3470
0
    default:
3471
0
      break;
3472
0
  }
3473
0
}
3474
3475
static void update_bits_range(m68k_info *info, m68k_reg reg_start, uint8_t bits, int write)
3476
0
{
3477
0
  int i;
3478
3479
0
  for (i = 0; i < 8; ++i) {
3480
0
    if (bits & (1 << i)) {
3481
0
      add_reg_to_rw_list(info, reg_start + i, write);
3482
0
    }
3483
0
  }
3484
0
}
3485
3486
static void update_reg_list_regbits(m68k_info *info, cs_m68k_op *op, int write)
3487
0
{
3488
0
  uint32_t bits = op->register_bits;
3489
0
  update_bits_range(info, M68K_REG_D0, bits & 0xff, write);
3490
0
  update_bits_range(info, M68K_REG_A0, (bits >> 8) & 0xff, write);
3491
0
  update_bits_range(info, M68K_REG_FP0, (bits >> 16) & 0xff, write);
3492
0
}
3493
3494
static void update_op_reg_list(m68k_info *info, cs_m68k_op *op, int write)
3495
0
{
3496
0
  switch ((int)op->type) {
3497
0
    case M68K_OP_REG:
3498
0
      add_reg_to_rw_list(info, op->reg, write);
3499
0
      break;
3500
3501
0
    case M68K_OP_MEM:
3502
0
      update_am_reg_list(info, op, write);
3503
0
      break;
3504
3505
0
    case M68K_OP_REG_BITS:
3506
0
      update_reg_list_regbits(info, op, write);
3507
0
      break;
3508
3509
0
    case M68K_OP_REG_PAIR:
3510
0
      add_reg_to_rw_list(info, op->reg_pair.reg_0, write);
3511
0
      add_reg_to_rw_list(info, op->reg_pair.reg_1, write);
3512
0
      break;
3513
0
  }
3514
0
}
3515
3516
static void build_regs_read_write_counts(m68k_info *info)
3517
0
{
3518
0
  int i;
3519
3520
0
  if (!info->extension.op_count)
3521
0
    return;
3522
3523
0
  if (info->extension.op_count == 1) {
3524
0
    update_op_reg_list(info, &info->extension.operands[0], 1);
3525
0
  } else {
3526
    // first operand is always read
3527
0
    update_op_reg_list(info, &info->extension.operands[0], 0);
3528
3529
    // remaning write
3530
0
    for (i = 1; i < info->extension.op_count; ++i)
3531
0
      update_op_reg_list(info, &info->extension.operands[i], 1);
3532
0
  }
3533
0
}
3534
3535
static void m68k_setup_internals(m68k_info* info, MCInst* inst, unsigned int pc, unsigned int cpu_type)
3536
0
{
3537
0
  info->inst = inst;
3538
0
  info->pc = pc;
3539
0
  info->ir = 0;
3540
0
  info->type = cpu_type;
3541
0
  info->address_mask = 0xffffffff;
3542
3543
0
  switch(info->type) {
3544
0
    case M68K_CPU_TYPE_68000:
3545
0
      info->type = TYPE_68000;
3546
0
      info->address_mask = 0x00ffffff;
3547
0
      break;
3548
0
    case M68K_CPU_TYPE_68010:
3549
0
      info->type = TYPE_68010;
3550
0
      info->address_mask = 0x00ffffff;
3551
0
      break;
3552
0
    case M68K_CPU_TYPE_68EC020:
3553
0
      info->type = TYPE_68020;
3554
0
      info->address_mask = 0x00ffffff;
3555
0
      break;
3556
0
    case M68K_CPU_TYPE_68020:
3557
0
      info->type = TYPE_68020;
3558
0
      info->address_mask = 0xffffffff;
3559
0
      break;
3560
0
    case M68K_CPU_TYPE_68030:
3561
0
      info->type = TYPE_68030;
3562
0
      info->address_mask = 0xffffffff;
3563
0
      break;
3564
0
    case M68K_CPU_TYPE_68040:
3565
0
      info->type = TYPE_68040;
3566
0
      info->address_mask = 0xffffffff;
3567
0
      break;
3568
0
    default:
3569
0
      info->address_mask = 0;
3570
0
      return;
3571
0
  }
3572
0
}
3573
3574
/* ======================================================================== */
3575
/* ================================= API ================================== */
3576
/* ======================================================================== */
3577
3578
/* Disasemble one instruction at pc and store in str_buff */
3579
static unsigned int m68k_disassemble(m68k_info *info, uint64_t pc)
3580
0
{
3581
0
  MCInst *inst = info->inst;
3582
0
  cs_m68k* ext = &info->extension;
3583
0
  int i;
3584
0
  unsigned int size;
3585
3586
0
  inst->Opcode = M68K_INS_INVALID;
3587
3588
0
  memset(ext, 0, sizeof(cs_m68k));
3589
0
  ext->op_size.type = M68K_SIZE_TYPE_CPU;
3590
3591
0
  for (i = 0; i < M68K_OPERAND_COUNT; ++i)
3592
0
    ext->operands[i].type = M68K_OP_REG;
3593
3594
0
  info->ir = peek_imm_16(info);
3595
0
  if (instruction_is_valid(info, peek_imm_32(info) & 0xffff)) {
3596
0
    info->ir = read_imm_16(info);
3597
0
    g_instruction_table[info->ir].instruction(info);
3598
0
  }
3599
3600
0
  size = info->pc - (unsigned int)pc;
3601
0
  info->pc = (unsigned int)pc;
3602
3603
0
  return size;
3604
0
}
3605
3606
bool M68K_getInstruction(csh ud, const uint8_t* code, size_t code_len, MCInst* instr, uint16_t* size, uint64_t address, void* inst_info)
3607
0
{
3608
#ifdef M68K_DEBUG
3609
  SStream ss;
3610
#endif
3611
0
  int s;
3612
0
  int cpu_type = M68K_CPU_TYPE_68000;
3613
0
  cs_struct* handle = instr->csh;
3614
0
  m68k_info *info = (m68k_info*)handle->printer_info;
3615
3616
  // code len has to be at least 2 bytes to be valid m68k
3617
3618
0
  if (code_len < 2) {
3619
0
    *size = 0;
3620
0
    return false;
3621
0
  }
3622
3623
0
  if (instr->flat_insn->detail) {
3624
0
    memset(instr->flat_insn->detail, 0, offsetof(cs_detail, m68k)+sizeof(cs_m68k));
3625
0
  }
3626
3627
0
  info->groups_count = 0;
3628
0
  info->regs_read_count = 0;
3629
0
  info->regs_write_count = 0;
3630
0
  info->code = code;
3631
0
  info->code_len = code_len;
3632
0
  info->baseAddress = address;
3633
3634
0
  if (handle->mode & CS_MODE_M68K_010)
3635
0
    cpu_type = M68K_CPU_TYPE_68010;
3636
0
  if (handle->mode & CS_MODE_M68K_020)
3637
0
    cpu_type = M68K_CPU_TYPE_68020;
3638
0
  if (handle->mode & CS_MODE_M68K_030)
3639
0
    cpu_type = M68K_CPU_TYPE_68030;
3640
0
  if (handle->mode & CS_MODE_M68K_040)
3641
0
    cpu_type = M68K_CPU_TYPE_68040;
3642
0
  if (handle->mode & CS_MODE_M68K_060)
3643
0
    cpu_type = M68K_CPU_TYPE_68040; // 060 = 040 for now
3644
3645
0
  m68k_setup_internals(info, instr, (unsigned int)address, cpu_type);
3646
0
  s = m68k_disassemble(info, address);
3647
3648
0
  if (s == 0) {
3649
0
    *size = 2;
3650
0
    return false;
3651
0
  }
3652
3653
0
  build_regs_read_write_counts(info);
3654
3655
#ifdef M68K_DEBUG
3656
  SStream_Init(&ss);
3657
  M68K_printInst(instr, &ss, info);
3658
#endif
3659
3660
  // Make sure we always stay within range
3661
0
  if (s > (int)code_len)
3662
0
    *size = (uint16_t)code_len;
3663
0
  else
3664
0
    *size = (uint16_t)s;
3665
3666
  return true;
3667
0
}
3668