Coverage Report

Created: 2025-10-28 07:02

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/capstonenext/arch/BPF/BPFDisassembler.c
Line
Count
Source
1
/* Capstone Disassembly Engine */
2
/* BPF Backend by david942j <david942j@gmail.com>, 2019 */
3
/* SPDX-FileCopyrightText: 2024 Roee Toledano <roeetoledano10@gmail.com> */
4
/* SPDX-License-Identifier: BSD-3 */
5
6
#ifdef CAPSTONE_HAS_BPF
7
8
#include <string.h>
9
#include <stddef.h> // offsetof macro
10
11
#include "BPFConstants.h"
12
#include "BPFDisassembler.h"
13
#include "BPFMapping.h"
14
#include "../../Mapping.h"
15
#include "../../cs_priv.h"
16
#include "../../utils.h"
17
18
///< Malloc bpf_internal, also checks if code_len is large enough.
19
static bpf_internal *alloc_bpf_internal(const size_t code_len)
20
20.3k
{
21
20.3k
  bpf_internal *bpf;
22
23
20.3k
  if (code_len < 8)
24
288
    return NULL;
25
20.0k
  bpf = cs_mem_malloc(sizeof(bpf_internal));
26
20.0k
  if (bpf == NULL)
27
0
    return NULL;
28
  /* default value */
29
20.0k
  bpf->insn_size = 8;
30
20.0k
  return bpf;
31
20.0k
}
32
33
///< Fetch a cBPF structure from code
34
static bpf_internal *fetch_cbpf(MCInst *instr, const uint8_t *code,
35
        const size_t code_len)
36
5.88k
{
37
5.88k
  bpf_internal *bpf;
38
39
5.88k
  bpf = alloc_bpf_internal(code_len);
40
5.88k
  if (bpf == NULL)
41
72
    return NULL;
42
43
5.81k
  bpf->op = readBytes16(instr, code);
44
5.81k
  bpf->jt = code[2];
45
5.81k
  bpf->jf = code[3];
46
5.81k
  bpf->k = readBytes32(instr, code + 4);
47
5.81k
  return bpf;
48
5.88k
}
49
50
///< Fetch an eBPF structure from code
51
static bpf_internal *fetch_ebpf(MCInst *instr, const uint8_t *code,
52
        const size_t code_len)
53
14.4k
{
54
14.4k
  bpf_internal *bpf;
55
56
14.4k
  bpf = alloc_bpf_internal(code_len);
57
14.4k
  if (bpf == NULL)
58
216
    return NULL;
59
60
14.2k
  bpf->op = (uint16_t)code[0];
61
14.2k
  bpf->dst = code[1] & 0xf;
62
14.2k
  bpf->src = (code[1] & 0xf0) >> 4;
63
64
  // eBPF has one 16-byte instruction: BPF_LD | BPF_DW | BPF_IMM,
65
  // in this case imm is combined with the next block's imm.
66
14.2k
  if (bpf->op == (BPF_CLASS_LD | BPF_SIZE_DW | BPF_MODE_IMM)) {
67
206
    if (code_len < 16) {
68
3
      cs_mem_free(bpf);
69
3
      return NULL;
70
3
    }
71
203
    bpf->k = readBytes32(instr, code + 4) |
72
203
       (((uint64_t)readBytes32(instr, code + 12)) << 32);
73
203
    bpf->insn_size = 16;
74
14.0k
  } else {
75
14.0k
    bpf->offset = readBytes16(instr, code + 2);
76
14.0k
    bpf->k = readBytes32(instr, code + 4);
77
14.0k
  }
78
14.2k
  return bpf;
79
14.2k
}
80
81
#define CHECK_READABLE_REG(ud, reg) \
82
10.3k
  do { \
83
10.3k
    if (!((reg) >= BPF_REG_R0 && (reg) <= BPF_REG_R10)) \
84
10.3k
      return false; \
85
10.3k
  } while (0)
86
87
#define CHECK_WRITEABLE_REG(ud, reg) \
88
5.01k
  do { \
89
5.01k
    if (!((reg) >= BPF_REG_R0 && (reg) < BPF_REG_R10)) \
90
5.01k
      return false; \
91
5.01k
  } while (0)
92
93
#define CHECK_READABLE_AND_PUSH(ud, MI, r) \
94
10.3k
  do { \
95
10.3k
    CHECK_READABLE_REG(ud, r + BPF_REG_R0); \
96
10.3k
    MCOperand_CreateReg0(MI, r + BPF_REG_R0); \
97
10.2k
  } while (0)
98
99
#define CHECK_WRITABLE_AND_PUSH(ud, MI, r) \
100
5.01k
  do { \
101
5.01k
    CHECK_WRITEABLE_REG(ud, r + BPF_REG_R0); \
102
5.01k
    MCOperand_CreateReg0(MI, r + BPF_REG_R0); \
103
5.01k
  } while (0)
104
105
static bool decodeLoad(MCInst *MI, bpf_internal *bpf)
106
5.11k
{
107
5.11k
  if (!EBPF_MODE(MI->csh->mode)) {
108
    /*
109
     *  +-----+-----------+--------------------+
110
     *  | ldb |    [k]    |       [x+k]        |
111
     *  | ldh |    [k]    |       [x+k]        |
112
     *  +-----+-----------+--------------------+
113
     */
114
2.17k
    if (BPF_SIZE(bpf->op) == BPF_SIZE_DW)
115
2
      return false;
116
2.17k
    if (BPF_SIZE(bpf->op) == BPF_SIZE_B ||
117
1.85k
        BPF_SIZE(bpf->op) == BPF_SIZE_H) {
118
      /* no ldx */
119
548
      if (BPF_CLASS(bpf->op) != BPF_CLASS_LD)
120
1
        return false;
121
      /* can only be BPF_ABS and BPF_IND */
122
547
      if (BPF_MODE(bpf->op) == BPF_MODE_ABS) {
123
294
        MCOperand_CreateImm0(MI, bpf->k);
124
294
        return true;
125
294
      } else if (BPF_MODE(bpf->op) == BPF_MODE_IND) {
126
251
        MCOperand_CreateReg0(MI, BPF_REG_X);
127
251
        MCOperand_CreateImm0(MI, bpf->k);
128
251
        return true;
129
251
      }
130
2
      return false;
131
547
    }
132
    /*
133
     *  +-----+----+------+------+-----+-------+
134
     *  | ld  | #k | #len | M[k] | [k] | [x+k] |
135
     *  +-----+----+------+------+-----+-------+
136
     *  | ldx | #k | #len | M[k] | 4*([k]&0xf) |
137
     *  +-----+----+------+------+-------------+
138
     */
139
1.62k
    switch (BPF_MODE(bpf->op)) {
140
734
    default:
141
734
      break;
142
734
    case BPF_MODE_IMM:
143
479
      MCOperand_CreateImm0(MI, bpf->k);
144
479
      return true;
145
212
    case BPF_MODE_LEN:
146
212
      return true;
147
197
    case BPF_MODE_MEM:
148
197
      MCOperand_CreateImm0(MI, bpf->k);
149
197
      return true;
150
1.62k
    }
151
734
    if (BPF_CLASS(bpf->op) == BPF_CLASS_LD) {
152
538
      if (BPF_MODE(bpf->op) == BPF_MODE_ABS) {
153
321
        MCOperand_CreateImm0(MI, bpf->k);
154
321
        return true;
155
321
      } else if (BPF_MODE(bpf->op) == BPF_MODE_IND) {
156
215
        MCOperand_CreateReg0(MI, BPF_REG_X);
157
215
        MCOperand_CreateImm0(MI, bpf->k);
158
215
        return true;
159
215
      }
160
538
    } else { /* LDX */
161
196
      if (BPF_MODE(bpf->op) == BPF_MODE_MSH) {
162
194
        MCOperand_CreateImm0(MI, bpf->k);
163
194
        return true;
164
194
      }
165
196
    }
166
4
    return false;
167
734
  }
168
169
  /* eBPF mode */
170
  /*
171
   * - IMM: lddw dst, imm64
172
   * - ABS: ld{w,h,b} [k]
173
   * - IND: ld{w,h,b} [src]
174
   * - MEM: ldx{w,h,b,dw} dst, [src+off]
175
   */
176
2.94k
  if (BPF_CLASS(bpf->op) == BPF_CLASS_LD) {
177
1.96k
    switch (BPF_MODE(bpf->op)) {
178
211
    case BPF_MODE_IMM:
179
211
      if (bpf->op !=
180
211
          (BPF_CLASS_LD | BPF_SIZE_DW | BPF_MODE_IMM))
181
8
        return false;
182
203
      CHECK_WRITABLE_AND_PUSH(ud, MI, bpf->dst);
183
202
      MCOperand_CreateImm0(MI, bpf->k);
184
202
      return true;
185
1.01k
    case BPF_MODE_ABS:
186
1.01k
      MCOperand_CreateImm0(MI, bpf->k);
187
1.01k
      return true;
188
736
    case BPF_MODE_IND:
189
736
      CHECK_READABLE_AND_PUSH(ud, MI, bpf->src);
190
735
      return true;
191
1.96k
    }
192
4
    return false;
193
1.96k
  }
194
  /* LDX */
195
973
  if (BPF_MODE(bpf->op) == BPF_MODE_MEM) {
196
971
    CHECK_WRITABLE_AND_PUSH(ud, MI, bpf->dst);
197
969
    CHECK_READABLE_AND_PUSH(ud, MI, bpf->src);
198
968
    MCOperand_CreateImm0(MI, bpf->offset);
199
968
    return true;
200
969
  }
201
2
  return false;
202
973
}
203
204
static bool decodeStore(MCInst *MI, bpf_internal *bpf)
205
2.38k
{
206
  /* in cBPF, only BPF_ST* | BPF_MEM | BPF_W is valid
207
   * while in eBPF:
208
   * - BPF_STX | BPF_XADD | BPF_{W,DW}
209
   * - BPF_ST* | BPF_MEM | BPF_{W,H,B,DW}
210
   * are valid
211
   */
212
2.38k
  if (!EBPF_MODE(MI->csh->mode)) {
213
    /* can only store to M[] */
214
104
    if (bpf->op != (BPF_CLASS(bpf->op) | BPF_MODE_MEM | BPF_SIZE_W))
215
2
      return false;
216
102
    MCOperand_CreateImm0(MI, bpf->k);
217
102
    return true;
218
104
  }
219
220
  /* eBPF */
221
2.28k
  if (BPF_MODE(bpf->op) == BPF_MODE_ATOMIC) {
222
410
    if (BPF_CLASS(bpf->op) != BPF_CLASS_STX)
223
1
      return false;
224
409
    if (BPF_SIZE(bpf->op) != BPF_SIZE_W &&
225
156
        BPF_SIZE(bpf->op) != BPF_SIZE_DW)
226
1
      return false;
227
    /* xadd [dst + off], src */
228
408
    CHECK_READABLE_AND_PUSH(ud, MI, bpf->dst);
229
407
    MCOperand_CreateImm0(MI, bpf->offset);
230
407
    CHECK_READABLE_AND_PUSH(ud, MI, bpf->src);
231
406
    return true;
232
407
  }
233
234
1.87k
  if (BPF_MODE(bpf->op) != BPF_MODE_MEM)
235
5
    return false;
236
237
  /* st [dst + off], src */
238
1.87k
  CHECK_READABLE_AND_PUSH(ud, MI, bpf->dst);
239
1.86k
  MCOperand_CreateImm0(MI, bpf->offset);
240
1.86k
  if (BPF_CLASS(bpf->op) == BPF_CLASS_ST)
241
837
    MCOperand_CreateImm0(MI, bpf->k);
242
1.03k
  else
243
1.03k
    CHECK_READABLE_AND_PUSH(ud, MI, bpf->src);
244
1.86k
  return true;
245
1.86k
}
246
247
static bool decodeALU(MCInst *MI, bpf_internal *bpf)
248
5.49k
{
249
  /* Set MI->Operands */
250
251
  /* cBPF */
252
5.49k
  if (!EBPF_MODE(MI->csh->mode)) {
253
1.60k
    if (BPF_OP(bpf->op) > BPF_ALU_XOR)
254
1
      return false;
255
    /* cBPF's NEG has no operands */
256
1.60k
    if (BPF_OP(bpf->op) == BPF_ALU_NEG)
257
197
      return true;
258
1.41k
    if (BPF_SRC(bpf->op) == BPF_SRC_K)
259
833
      MCOperand_CreateImm0(MI, bpf->k);
260
577
    else /* BPF_SRC_X */
261
577
      MCOperand_CreateReg0(MI, BPF_REG_X);
262
1.41k
    return true;
263
1.60k
  }
264
265
  /* eBPF */
266
267
3.88k
  if (BPF_OP(bpf->op) > BPF_ALU_END)
268
5
    return false;
269
  /* ENDian's imm must be one of 16, 32, 64 */
270
3.88k
  if (BPF_OP(bpf->op) == BPF_ALU_END) {
271
389
    if (bpf->k != 16 && bpf->k != 32 && bpf->k != 64)
272
36
      return false;
273
353
    if (BPF_CLASS(bpf->op) == BPF_CLASS_ALU64 &&
274
57
        BPF_SRC(bpf->op) != BPF_SRC_LITTLE)
275
1
      return false;
276
353
  }
277
278
  /* - op dst, imm
279
   * - op dst, src
280
   * - neg dst
281
   * - le<imm> dst
282
   */
283
  /* every ALU instructions have dst op */
284
3.84k
  CHECK_WRITABLE_AND_PUSH(ud, MI, bpf->dst);
285
286
  /* special cases */
287
3.84k
  if (BPF_OP(bpf->op) == BPF_ALU_NEG)
288
266
    return true;
289
3.57k
  if (BPF_OP(bpf->op) == BPF_ALU_END) {
290
    /* bpf->k must be one of 16, 32, 64 */
291
352
    bpf->op |= ((uint32_t)bpf->k << 4);
292
352
    return true;
293
352
  }
294
295
  /* normal cases */
296
3.22k
  if (BPF_SRC(bpf->op) == BPF_SRC_K) {
297
2.82k
    MCOperand_CreateImm0(MI, bpf->k);
298
2.82k
  } else { /* BPF_SRC_X */
299
399
    CHECK_READABLE_AND_PUSH(ud, MI, bpf->src);
300
399
  }
301
3.22k
  return true;
302
3.22k
}
303
304
static bool decodeJump(MCInst *MI, bpf_internal *bpf)
305
6.14k
{
306
  /* cBPF and eBPF are very different in class jump */
307
6.14k
  if (!EBPF_MODE(MI->csh->mode)) {
308
1.03k
    if (BPF_OP(bpf->op) > BPF_JUMP_JSET)
309
1
      return false;
310
311
    /* ja is a special case of jumps */
312
1.02k
    if (BPF_OP(bpf->op) == BPF_JUMP_JA) {
313
214
      MCOperand_CreateImm0(MI, bpf->k);
314
214
      return true;
315
214
    }
316
317
815
    if (BPF_SRC(bpf->op) == BPF_SRC_K)
318
313
      MCOperand_CreateImm0(MI, bpf->k);
319
502
    else /* BPF_SRC_X */
320
502
      MCOperand_CreateReg0(MI, BPF_REG_X);
321
815
    MCOperand_CreateImm0(MI, bpf->jt);
322
815
    MCOperand_CreateImm0(MI, bpf->jf);
323
5.11k
  } else {
324
5.11k
    if (BPF_OP(bpf->op) > BPF_JUMP_JSLE)
325
3
      return false;
326
327
    /* JMP32 has no CALL/EXIT instruction */
328
    /* No operands for exit */
329
5.10k
    if (BPF_OP(bpf->op) == BPF_JUMP_EXIT)
330
198
      return bpf->op == (BPF_CLASS_JMP | BPF_JUMP_EXIT);
331
4.91k
    if (BPF_OP(bpf->op) == BPF_JUMP_CALL) {
332
239
      if (bpf->op == (BPF_CLASS_JMP | BPF_JUMP_CALL)) {
333
198
        MCOperand_CreateImm0(MI, bpf->k);
334
198
        return true;
335
198
      }
336
41
      if (bpf->op ==
337
41
          (BPF_CLASS_JMP | BPF_JUMP_CALL | BPF_SRC_X)) {
338
40
        CHECK_READABLE_AND_PUSH(ud, MI, bpf->k);
339
10
        return true;
340
40
      }
341
1
      return false;
342
41
    }
343
344
    /* ja is a special case of jumps */
345
4.67k
    if (BPF_OP(bpf->op) == BPF_JUMP_JA) {
346
448
      if (BPF_SRC(bpf->op) != BPF_SRC_K)
347
1
        return false;
348
447
      if (BPF_CLASS(bpf->op) == BPF_CLASS_JMP)
349
235
        MCOperand_CreateImm0(MI, bpf->offset);
350
212
      else
351
212
        MCOperand_CreateImm0(MI, bpf->k);
352
353
447
      return true;
354
448
    }
355
356
    /* <j>  dst, src, +off */
357
4.22k
    CHECK_READABLE_AND_PUSH(ud, MI, bpf->dst);
358
4.21k
    if (BPF_SRC(bpf->op) == BPF_SRC_K)
359
3.96k
      MCOperand_CreateImm0(MI, bpf->k);
360
258
    else
361
258
      CHECK_READABLE_AND_PUSH(ud, MI, bpf->src);
362
4.21k
    MCOperand_CreateImm0(MI, bpf->offset);
363
4.21k
  }
364
5.03k
  return true;
365
6.14k
}
366
367
static bool decodeReturn(MCInst *MI, bpf_internal *bpf)
368
610
{
369
  /* Here only handles the BPF_RET class in cBPF */
370
610
  switch (BPF_RVAL(bpf->op)) {
371
198
  case BPF_SRC_K:
372
198
    MCOperand_CreateImm0(MI, bpf->k);
373
198
    return true;
374
211
  case BPF_SRC_X:
375
211
    MCOperand_CreateReg0(MI, BPF_REG_X);
376
211
    return true;
377
200
  case BPF_SRC_A:
378
200
    MCOperand_CreateReg0(MI, BPF_REG_A);
379
200
    return true;
380
610
  }
381
1
  return false;
382
610
}
383
384
static bool decodeMISC(MCInst *MI, bpf_internal *bpf)
385
286
{
386
286
  uint16_t op = bpf->op ^ BPF_CLASS_MISC;
387
286
  return op == BPF_MISCOP_TAX || op == BPF_MISCOP_TXA;
388
286
}
389
390
///< 1. Check if the instruction is valid
391
///< 2. Set MI->opcode
392
///< 3. Set MI->Operands
393
static bool getInstruction(MCInst *MI, bpf_internal *bpf)
394
20.0k
{
395
20.0k
  cs_detail *detail;
396
397
20.0k
  detail = MI->flat_insn->detail;
398
  // initialize detail
399
20.0k
  if (detail) {
400
20.0k
    memset(detail, 0, offsetof(cs_detail, bpf) + sizeof(cs_bpf));
401
20.0k
  }
402
403
20.0k
  MCInst_clear(MI);
404
405
20.0k
  switch (BPF_CLASS(bpf->op)) {
406
0
  default: /* should never happen */
407
0
    return false;
408
3.53k
  case BPF_CLASS_LD:
409
5.11k
  case BPF_CLASS_LDX:
410
5.11k
    return decodeLoad(MI, bpf);
411
912
  case BPF_CLASS_ST:
412
2.38k
  case BPF_CLASS_STX:
413
2.38k
    return decodeStore(MI, bpf);
414
3.15k
  case BPF_CLASS_ALU:
415
3.15k
    return decodeALU(MI, bpf);
416
3.52k
  case BPF_CLASS_JMP:
417
3.52k
    return decodeJump(MI, bpf);
418
3.22k
  case BPF_CLASS_RET:
419
    /* case BPF_CLASS_JMP32: */
420
3.22k
    if (EBPF_MODE(MI->csh->mode))
421
2.61k
      return decodeJump(MI, bpf);
422
610
    else
423
610
      return decodeReturn(MI, bpf);
424
2.62k
  case BPF_CLASS_MISC:
425
    /* case BPF_CLASS_ALU64: */
426
2.62k
    if (EBPF_MODE(MI->csh->mode))
427
2.33k
      return decodeALU(MI, bpf);
428
286
    else
429
286
      return decodeMISC(MI, bpf);
430
20.0k
  }
431
20.0k
}
432
433
// Check for regular load instructions
434
#define REG_LOAD_CASE(c) \
435
3.53k
  case BPF_SIZE_##c: \
436
3.53k
    if (BPF_CLASS(opcode) == BPF_CLASS_LD) \
437
3.53k
      return BPF_INS_LD##c; \
438
3.53k
    else \
439
3.53k
      return BPF_INS_LDX##c;
440
441
static bpf_insn op2insn_ld_cbpf(unsigned opcode)
442
3.53k
{
443
3.53k
  switch (BPF_SIZE(opcode)) {
444
1.86k
    REG_LOAD_CASE(W);
445
440
    REG_LOAD_CASE(H);
446
633
    REG_LOAD_CASE(B);
447
596
    REG_LOAD_CASE(DW);
448
3.53k
  }
449
450
0
  return BPF_INS_INVALID;
451
3.53k
}
452
#undef REG_LOAD_CASE
453
454
// Check for packet load instructions
455
#define PACKET_LOAD_CASE(c) \
456
1.55k
  case BPF_SIZE_##c: \
457
1.55k
    if (BPF_MODE(opcode) == BPF_MODE_ABS) \
458
1.55k
      return BPF_INS_LDABS##c; \
459
1.55k
    else if (BPF_MODE(opcode) == BPF_MODE_IND) \
460
691
      return BPF_INS_LDIND##c; \
461
691
    else \
462
691
      return BPF_INS_INVALID;
463
464
static bpf_insn op2insn_ld_ebpf(unsigned opcode)
465
2.92k
{
466
2.92k
  if (BPF_CLASS(opcode) == BPF_CLASS_LD) {
467
1.95k
    switch (BPF_SIZE(opcode)) {
468
624
      PACKET_LOAD_CASE(W);
469
433
      PACKET_LOAD_CASE(H);
470
495
      PACKET_LOAD_CASE(B);
471
1.95k
    }
472
1.95k
  }
473
474
  // If it's not a packet load instruction, it must be a regular load instruction
475
1.37k
  return op2insn_ld_cbpf(opcode);
476
2.92k
}
477
#undef PACKET_LOAD_CASE
478
479
/* During parsing we already checked to make sure the size is D/DW and 
480
 * mode is STX and not ST, so we don't need to check again*/
481
#define ALU_CASE_REG(c) \
482
252
  case BPF_ALU_##c: \
483
252
    if (BPF_SIZE(opcode) == BPF_SIZE_W) \
484
252
      return BPF_INS_A##c; \
485
252
    else \
486
252
      return BPF_INS_A##c##64;
487
488
#define ALU_CASE_FETCH(c) \
489
120
  case BPF_ALU_##c | BPF_MODE_FETCH: \
490
120
    if (BPF_SIZE(opcode) == BPF_SIZE_W) \
491
120
      return BPF_INS_AF##c; \
492
120
    else \
493
120
      return BPF_INS_AF##c##64;
494
495
#define COMPLEX_CASE(c) \
496
30
  case BPF_ATOMIC_##c | BPF_MODE_FETCH: \
497
30
    if (BPF_SIZE(opcode) == BPF_SIZE_DW) \
498
30
      return BPF_INS_A##c##64; \
499
30
    else \
500
30
      return BPF_INS_INVALID;
501
502
#define CASE(c) \
503
1.96k
  case BPF_SIZE_##c: \
504
1.96k
    if (BPF_CLASS(opcode) == BPF_CLASS_ST) \
505
1.96k
      return BPF_INS_ST##c; \
506
1.96k
    else \
507
1.96k
      return BPF_INS_STX##c;
508
509
static bpf_insn op2insn_st(unsigned opcode, const uint32_t imm)
510
2.37k
{
511
  /*
512
   * - BPF_STX | ALU atomic operations | BPF_{W,DW}
513
   * - BPF_STX | Complex atomic operations | BPF_{DW}
514
   * - BPF_ST* | BPF_MEM | BPF_{W,H,B,DW}
515
   */
516
517
2.37k
  if (BPF_MODE(opcode) == BPF_MODE_ATOMIC) {
518
406
    switch (imm) {
519
122
      ALU_CASE_REG(ADD);
520
36
      ALU_CASE_REG(OR);
521
58
      ALU_CASE_REG(AND);
522
36
      ALU_CASE_REG(XOR);
523
28
      ALU_CASE_FETCH(ADD);
524
36
      ALU_CASE_FETCH(OR);
525
28
      ALU_CASE_FETCH(AND);
526
28
      ALU_CASE_FETCH(XOR);
527
11
      COMPLEX_CASE(XCHG);
528
19
      COMPLEX_CASE(CMPXCHG);
529
4
    default: // Reached if complex atomic operation is used without fetch modifier
530
4
      return BPF_INS_INVALID;
531
406
    }
532
406
  }
533
534
  /* should be BPF_MEM */
535
1.96k
  switch (BPF_SIZE(opcode)) {
536
579
    CASE(W);
537
278
    CASE(H);
538
843
    CASE(B);
539
269
    CASE(DW);
540
1.96k
  }
541
542
0
  return BPF_INS_INVALID;
543
1.96k
}
544
#undef CASE
545
546
#define CASE(c) \
547
4.15k
  case BPF_ALU_##c: \
548
4.15k
    CASE_IF(c)
549
550
#define CASE_IF(c) \
551
5.05k
  do { \
552
5.05k
    if (BPF_CLASS(opcode) == BPF_CLASS_ALU) \
553
5.05k
      return BPF_INS_##c; \
554
5.05k
    else \
555
5.05k
      return BPF_INS_##c##64; \
556
5.05k
  } while (0)
557
558
static bpf_insn op2insn_alu(unsigned opcode, const uint16_t off,
559
          const bool is_ebpf)
560
5.44k
{
561
  /* Endian is a special case */
562
5.44k
  if (BPF_OP(opcode) == BPF_ALU_END) {
563
352
    if (BPF_CLASS(opcode) == BPF_CLASS_ALU64) {
564
56
      switch (opcode ^ BPF_CLASS_ALU64 ^ BPF_ALU_END ^
565
56
        BPF_SRC_LITTLE) {
566
19
      case (16 << 4):
567
19
        return BPF_INS_BSWAP16;
568
19
      case (32 << 4):
569
19
        return BPF_INS_BSWAP32;
570
18
      case (64 << 4):
571
18
        return BPF_INS_BSWAP64;
572
0
      default:
573
0
        return BPF_INS_INVALID;
574
56
      }
575
56
    }
576
577
296
    switch (opcode ^ BPF_CLASS_ALU ^ BPF_ALU_END) {
578
19
    case BPF_SRC_LITTLE | (16 << 4):
579
19
      return BPF_INS_LE16;
580
18
    case BPF_SRC_LITTLE | (32 << 4):
581
18
      return BPF_INS_LE32;
582
18
    case BPF_SRC_LITTLE | (64 << 4):
583
18
      return BPF_INS_LE64;
584
69
    case BPF_SRC_BIG | (16 << 4):
585
69
      return BPF_INS_BE16;
586
154
    case BPF_SRC_BIG | (32 << 4):
587
154
      return BPF_INS_BE32;
588
18
    case BPF_SRC_BIG | (64 << 4):
589
18
      return BPF_INS_BE64;
590
296
    }
591
0
    return BPF_INS_INVALID;
592
296
  }
593
594
5.09k
  switch (BPF_OP(opcode)) {
595
443
    CASE(ADD);
596
393
    CASE(SUB);
597
283
    CASE(MUL);
598
444
    CASE(OR);
599
412
    CASE(AND);
600
457
    CASE(LSH);
601
401
    CASE(RSH);
602
463
    CASE(NEG);
603
462
    CASE(XOR);
604
398
    CASE(ARSH);
605
318
  case BPF_ALU_DIV:
606
318
    if (!is_ebpf || off == 0)
607
227
      CASE_IF(DIV);
608
91
    else if (off == 1)
609
84
      CASE_IF(SDIV);
610
7
    else
611
7
      return BPF_INS_INVALID;
612
387
  case BPF_ALU_MOD:
613
387
    if (!is_ebpf || off == 0)
614
275
      CASE_IF(MOD);
615
112
    else if (off == 1)
616
101
      CASE_IF(SMOD);
617
11
    else
618
11
      return BPF_INS_INVALID;
619
235
  case BPF_ALU_MOV:
620
    /* BPF_CLASS_ALU can have: mov, mov8s, mov16s
621
     * BPF_CLASS_ALU64 can have: mov, mov8s, mov16s, mov32s
622
     * */
623
235
    if (off == 0)
624
40
      CASE_IF(MOV);
625
195
    else if (off == 8)
626
100
      CASE_IF(MOVSB);
627
95
    else if (off == 16)
628
68
      CASE_IF(MOVSH);
629
27
    else if (off == 32 && BPF_CLASS(opcode) == BPF_CLASS_ALU64)
630
18
      return BPF_INS_MOVSW64;
631
9
    else
632
9
      return BPF_INS_INVALID;
633
5.09k
  }
634
635
0
  return BPF_INS_INVALID;
636
5.09k
}
637
#undef CASE_IF
638
#undef CASE
639
640
6.09k
#define BPF_CALLX (BPF_CLASS_JMP | BPF_JUMP_CALL | BPF_SRC_X)
641
642
#define CASE(c) \
643
5.03k
  case BPF_JUMP_##c: \
644
5.03k
    if (BPF_CLASS(opcode) == BPF_CLASS_JMP) \
645
5.03k
      return BPF_INS_##c; \
646
5.03k
    else \
647
5.03k
      return BPF_INS_##c##32;
648
649
#define SPEC_CASE(c) \
650
395
  case BPF_JUMP_##c: \
651
395
    if (BPF_CLASS(opcode) == BPF_CLASS_JMP) \
652
395
      return BPF_INS_##c; \
653
395
    else \
654
395
      return BPF_INS_INVALID;
655
656
static bpf_insn op2insn_jmp(unsigned opcode)
657
6.09k
{
658
6.09k
  if (opcode == BPF_CALLX) {
659
10
    return BPF_INS_CALLX;
660
10
  }
661
662
6.08k
  switch (BPF_OP(opcode)) {
663
661
  case BPF_JUMP_JA:
664
661
    if (BPF_CLASS(opcode) == BPF_CLASS_JMP)
665
449
      return BPF_INS_JA;
666
212
    else
667
212
      return BPF_INS_JAL;
668
466
    CASE(JEQ);
669
482
    CASE(JGT);
670
397
    CASE(JGE);
671
498
    CASE(JSET);
672
476
    CASE(JNE);
673
400
    CASE(JSGT);
674
403
    CASE(JSGE);
675
198
    SPEC_CASE(CALL);
676
197
    SPEC_CASE(EXIT);
677
501
    CASE(JLT);
678
577
    CASE(JLE);
679
396
    CASE(JSLT);
680
437
    CASE(JSLE);
681
6.08k
  }
682
683
0
  return BPF_INS_INVALID;
684
6.08k
}
685
#undef SPEC_CASE
686
#undef CASE
687
#undef BPF_CALLX
688
689
#ifndef CAPSTONE_DIET
690
691
static void update_regs_access(MCInst *MI, cs_detail *detail, bpf_insn insn_id,
692
             unsigned int opcode)
693
19.8k
{
694
19.8k
  if (insn_id == BPF_INS_INVALID)
695
0
    return;
696
  /*
697
   * In eBPF mode, only these instructions have implicit registers access:
698
   * - legacy ld{w,h,b,dw} * // w: r0
699
   * - exit // r: r0
700
   */
701
19.8k
  if (EBPF_MODE(MI->csh->mode)) {
702
14.0k
    switch (insn_id) {
703
11.9k
    default:
704
11.9k
      break;
705
11.9k
    case BPF_INS_LDABSW:
706
561
    case BPF_INS_LDABSH:
707
861
    case BPF_INS_LDABSB:
708
1.15k
    case BPF_INS_LDINDW:
709
1.35k
    case BPF_INS_LDINDH:
710
1.55k
    case BPF_INS_LDINDB:
711
1.95k
    case BPF_INS_LDDW:
712
1.95k
      if (BPF_MODE(opcode) == BPF_MODE_ABS ||
713
937
          BPF_MODE(opcode) == BPF_MODE_IND)
714
1.75k
        map_add_implicit_write(MI, BPF_REG_R0);
715
1.95k
      break;
716
197
    case BPF_INS_EXIT:
717
197
      map_add_implicit_read(MI, BPF_REG_R0);
718
197
      break;
719
14.0k
    }
720
14.0k
    return;
721
14.0k
  }
722
723
  /* cBPF mode */
724
5.78k
  switch (BPF_CLASS(opcode)) {
725
609
  default:
726
609
    break;
727
1.56k
  case BPF_CLASS_LD:
728
1.56k
    map_add_implicit_write(MI, BPF_REG_A);
729
1.56k
    break;
730
599
  case BPF_CLASS_LDX:
731
599
    map_add_implicit_write(MI, BPF_REG_X);
732
599
    break;
733
68
  case BPF_CLASS_ST:
734
68
    map_add_implicit_read(MI, BPF_REG_A);
735
68
    break;
736
34
  case BPF_CLASS_STX:
737
34
    map_add_implicit_read(MI, BPF_REG_X);
738
34
    break;
739
1.60k
  case BPF_CLASS_ALU:
740
1.60k
    map_add_implicit_read(MI, BPF_REG_A);
741
1.60k
    map_add_implicit_write(MI, BPF_REG_A);
742
1.60k
    break;
743
1.02k
  case BPF_CLASS_JMP:
744
1.02k
    if (insn_id != BPF_INS_JA) // except the unconditional jump
745
815
      map_add_implicit_read(MI, BPF_REG_A);
746
1.02k
    break;
747
  /* case BPF_CLASS_RET: */
748
277
  case BPF_CLASS_MISC:
749
277
    if (insn_id == BPF_INS_TAX) {
750
209
      map_add_implicit_read(MI, BPF_REG_A);
751
209
      map_add_implicit_write(MI, BPF_REG_X);
752
209
    } else {
753
68
      map_add_implicit_read(MI, BPF_REG_X);
754
68
      map_add_implicit_write(MI, BPF_REG_A);
755
68
    }
756
277
    break;
757
5.78k
  }
758
5.78k
}
759
#endif
760
761
static bool setFinalOpcode(MCInst *MI, const bpf_internal *bpf)
762
19.8k
{
763
19.8k
  bpf_insn id = BPF_INS_INVALID;
764
19.8k
#ifndef CAPSTONE_DIET
765
19.8k
  cs_detail *detail;
766
767
19.8k
  detail = get_detail(MI);
768
19.8k
#endif
769
770
19.8k
  const uint16_t opcode = bpf->op;
771
19.8k
  switch (BPF_CLASS(opcode)) {
772
0
  default: // will never happen
773
0
    break;
774
3.51k
  case BPF_CLASS_LD:
775
5.08k
  case BPF_CLASS_LDX:
776
5.08k
    if (EBPF_MODE(MI->csh->mode))
777
2.92k
      id = op2insn_ld_ebpf(opcode);
778
2.16k
    else
779
2.16k
      id = op2insn_ld_cbpf(opcode);
780
5.08k
    add_group(MI, BPF_GRP_LOAD);
781
5.08k
    break;
782
905
  case BPF_CLASS_ST:
783
2.37k
  case BPF_CLASS_STX:
784
2.37k
    id = op2insn_st(opcode, bpf->k);
785
2.37k
    add_group(MI, BPF_GRP_STORE);
786
2.37k
    break;
787
3.12k
  case BPF_CLASS_ALU:
788
3.12k
    id = op2insn_alu(opcode, bpf->offset, EBPF_MODE(MI->csh->mode));
789
3.12k
    add_group(MI, BPF_GRP_ALU);
790
3.12k
    break;
791
3.48k
  case BPF_CLASS_JMP:
792
3.48k
    id = op2insn_jmp(opcode);
793
3.48k
#ifndef CAPSTONE_DIET
794
3.48k
    if (id == BPF_INS_CALL || id == BPF_INS_CALLX)
795
208
      add_group(MI, BPF_GRP_CALL);
796
3.27k
    else if (id == BPF_INS_EXIT)
797
197
      add_group(MI, BPF_GRP_RETURN);
798
3.08k
    else
799
3.08k
      add_group(MI, BPF_GRP_JUMP);
800
3.48k
#endif
801
3.48k
    break;
802
3.22k
  case BPF_CLASS_RET:
803
    /* case BPF_CLASS_JMP32: */
804
3.22k
    if (EBPF_MODE(MI->csh->mode)) {
805
2.61k
      id = op2insn_jmp(opcode);
806
2.61k
      add_group(MI, BPF_GRP_JUMP);
807
2.61k
    } else {
808
609
      id = BPF_INS_RET;
809
609
      add_group(MI, BPF_GRP_RETURN);
810
609
    }
811
3.22k
    break;
812
  // BPF_CLASS_MISC and BPF_CLASS_ALU64 have exactly same value
813
2.59k
  case BPF_CLASS_MISC:
814
    /* case BPF_CLASS_ALU64: */
815
2.59k
    if (EBPF_MODE(MI->csh->mode)) {
816
      // ALU64 in eBPF
817
2.31k
      id = op2insn_alu(opcode, bpf->offset, true);
818
2.31k
      add_group(MI, BPF_GRP_ALU);
819
2.31k
    } else {
820
277
      if (BPF_MISCOP(opcode) == BPF_MISCOP_TXA)
821
68
        id = BPF_INS_TXA;
822
209
      else
823
209
        id = BPF_INS_TAX;
824
277
      add_group(MI, BPF_GRP_MISC);
825
277
    }
826
2.59k
    break;
827
19.8k
  }
828
829
19.8k
  if (id == BPF_INS_INVALID)
830
33
    return false;
831
832
19.8k
  MCInst_setOpcodePub(MI, id);
833
19.8k
#undef PUSH_GROUP
834
835
19.8k
#ifndef CAPSTONE_DIET
836
19.8k
  if (detail) {
837
19.8k
    update_regs_access(MI, detail, id, opcode);
838
19.8k
  }
839
19.8k
#endif
840
19.8k
  return true;
841
19.8k
}
842
843
bool BPF_getInstruction(csh ud, const uint8_t *code, size_t code_len,
844
      MCInst *instr, uint16_t *size, uint64_t address,
845
      void *info)
846
20.3k
{
847
20.3k
  bpf_internal *bpf;
848
849
20.3k
  if (EBPF_MODE(instr->csh->mode))
850
14.4k
    bpf = fetch_ebpf(instr, code, code_len);
851
5.88k
  else
852
5.88k
    bpf = fetch_cbpf(instr, code, code_len);
853
20.3k
  if (bpf == NULL)
854
291
    return false;
855
20.0k
  if (!getInstruction(instr, bpf) || !setFinalOpcode(instr, bpf)) {
856
174
    cs_mem_free(bpf);
857
174
    return false;
858
174
  }
859
19.8k
  MCInst_setOpcode(instr, bpf->op);
860
861
19.8k
  *size = bpf->insn_size;
862
19.8k
  cs_mem_free(bpf);
863
864
  return true;
865
20.0k
}
866
867
#endif