Coverage Report

Created: 2023-12-08 06:05

/src/capstonev5/arch/BPF/BPFMapping.c
Line
Count
Source (jump to first uncovered line)
1
/* Capstone Disassembly Engine */
2
/* BPF Backend by david942j <david942j@gmail.com>, 2019 */
3
4
#include <string.h>
5
6
#include "BPFConstants.h"
7
#include "BPFMapping.h"
8
#include "../../utils.h"
9
10
#ifndef CAPSTONE_DIET
11
static const name_map group_name_maps[] = {
12
  { BPF_GRP_INVALID, NULL },
13
14
  { BPF_GRP_LOAD, "load" },
15
  { BPF_GRP_STORE, "store" },
16
  { BPF_GRP_ALU, "alu" },
17
  { BPF_GRP_JUMP, "jump" },
18
  { BPF_GRP_CALL, "call" },
19
  { BPF_GRP_RETURN, "return" },
20
  { BPF_GRP_MISC, "misc" },
21
};
22
#endif
23
24
const char *BPF_group_name(csh handle, unsigned int id)
25
13.8k
{
26
13.8k
#ifndef CAPSTONE_DIET
27
13.8k
  return id2name(group_name_maps, ARR_SIZE(group_name_maps), id);
28
#else
29
  return NULL;
30
#endif
31
13.8k
}
32
33
#ifndef CAPSTONE_DIET
34
static const name_map insn_name_maps[BPF_INS_ENDING] = {
35
  { BPF_INS_INVALID, NULL },
36
37
  { BPF_INS_ADD, "add" },
38
  { BPF_INS_SUB, "sub" },
39
  { BPF_INS_MUL, "mul" },
40
  { BPF_INS_DIV, "div" },
41
  { BPF_INS_OR, "or" },
42
  { BPF_INS_AND, "and" },
43
  { BPF_INS_LSH, "lsh" },
44
  { BPF_INS_RSH, "rsh" },
45
  { BPF_INS_NEG, "neg" },
46
  { BPF_INS_MOD, "mod" },
47
  { BPF_INS_XOR, "xor" },
48
  { BPF_INS_MOV, "mov" },
49
  { BPF_INS_ARSH, "arsh" },
50
51
  { BPF_INS_ADD64, "add64" },
52
  { BPF_INS_SUB64, "sub64" },
53
  { BPF_INS_MUL64, "mul64" },
54
  { BPF_INS_DIV64, "div64" },
55
  { BPF_INS_OR64, "or64" },
56
  { BPF_INS_AND64, "and64" },
57
  { BPF_INS_LSH64, "lsh64" },
58
  { BPF_INS_RSH64, "rsh64" },
59
  { BPF_INS_NEG64, "neg64" },
60
  { BPF_INS_MOD64, "mod64" },
61
  { BPF_INS_XOR64, "xor64" },
62
  { BPF_INS_MOV64, "mov64" },
63
  { BPF_INS_ARSH64, "arsh64" },
64
65
  { BPF_INS_LE16, "le16" },
66
  { BPF_INS_LE32, "le32" },
67
  { BPF_INS_LE64, "le64" },
68
  { BPF_INS_BE16, "be16" },
69
  { BPF_INS_BE32, "be32" },
70
  { BPF_INS_BE64, "be64" },
71
72
  { BPF_INS_LDW, "ldw" },
73
  { BPF_INS_LDH, "ldh" },
74
  { BPF_INS_LDB, "ldb" },
75
  { BPF_INS_LDDW, "lddw" },
76
  { BPF_INS_LDXW, "ldxw" },
77
  { BPF_INS_LDXH, "ldxh" },
78
  { BPF_INS_LDXB, "ldxb" },
79
  { BPF_INS_LDXDW, "ldxdw" },
80
81
  { BPF_INS_STW, "stw" },
82
  { BPF_INS_STH, "sth" },
83
  { BPF_INS_STB, "stb" },
84
  { BPF_INS_STDW, "stdw" },
85
  { BPF_INS_STXW, "stxw" },
86
  { BPF_INS_STXH, "stxh" },
87
  { BPF_INS_STXB, "stxb" },
88
  { BPF_INS_STXDW, "stxdw" },
89
  { BPF_INS_XADDW, "xaddw" },
90
  { BPF_INS_XADDDW, "xadddw" },
91
92
  { BPF_INS_JMP, "jmp" },
93
  { BPF_INS_JEQ, "jeq" },
94
  { BPF_INS_JGT, "jgt" },
95
  { BPF_INS_JGE, "jge" },
96
  { BPF_INS_JSET, "jset" },
97
  { BPF_INS_JNE, "jne" },
98
  { BPF_INS_JSGT, "jsgt" },
99
  { BPF_INS_JSGE, "jsge" },
100
  { BPF_INS_CALL, "call" },
101
  { BPF_INS_CALLX, "callx" },
102
  { BPF_INS_EXIT, "exit" },
103
  { BPF_INS_JLT, "jlt" },
104
  { BPF_INS_JLE, "jle" },
105
  { BPF_INS_JSLT, "jslt" },
106
  { BPF_INS_JSLE, "jsle" },
107
108
  { BPF_INS_RET, "ret" },
109
110
  { BPF_INS_TAX, "tax" },
111
  { BPF_INS_TXA, "txa" },
112
};
113
#endif
114
115
const char *BPF_insn_name(csh handle, unsigned int id)
116
27.7k
{
117
27.7k
#ifndef CAPSTONE_DIET
118
  /* We have some special cases because 'ld' in cBPF is equivalent to 'ldw'
119
   * in eBPF, and we don't want to see 'ldw' appears in cBPF mode.
120
   */
121
27.7k
  if (!EBPF_MODE(handle)) {
122
11.6k
    switch (id) {
123
2.22k
    case BPF_INS_LD: return "ld";
124
1.19k
    case BPF_INS_LDX: return "ldx";
125
138
    case BPF_INS_ST: return "st";
126
42
    case BPF_INS_STX: return "stx";
127
11.6k
    }
128
11.6k
  }
129
24.1k
  return id2name(insn_name_maps, ARR_SIZE(insn_name_maps), id);
130
#else
131
  return NULL;
132
#endif
133
27.7k
}
134
135
const char *BPF_reg_name(csh handle, unsigned int reg)
136
18.4k
{
137
18.4k
#ifndef CAPSTONE_DIET
138
18.4k
  if (EBPF_MODE(handle)) {
139
9.87k
    if (reg < BPF_REG_R0 || reg > BPF_REG_R10)
140
0
      return NULL;
141
9.87k
    static const char reg_names[11][4] = {
142
9.87k
      "r0", "r1", "r2", "r3", "r4",
143
9.87k
      "r5", "r6", "r7", "r8", "r9",
144
9.87k
      "r10"
145
9.87k
    };
146
9.87k
    return reg_names[reg - BPF_REG_R0];
147
9.87k
  }
148
149
  /* cBPF mode */
150
8.55k
  if (reg == BPF_REG_A)
151
5.95k
    return "a";
152
2.59k
  else if (reg == BPF_REG_X)
153
2.59k
    return "x";
154
0
  else
155
0
    return NULL;
156
#else
157
  return NULL;
158
#endif
159
8.55k
}
160
161
static bpf_insn op2insn_ld(unsigned opcode)
162
8.75k
{
163
8.75k
#define CASE(c) case BPF_SIZE_##c: \
164
8.75k
    if (BPF_CLASS(opcode) == BPF_CLASS_LD) \
165
8.75k
      return BPF_INS_LD##c; \
166
8.75k
    else \
167
8.75k
      return BPF_INS_LDX##c;
168
169
8.75k
  switch (BPF_SIZE(opcode)) {
170
4.56k
  CASE(W);
171
1.23k
  CASE(H);
172
1.43k
  CASE(B);
173
1.51k
  CASE(DW);
174
8.75k
  }
175
0
#undef CASE
176
177
0
  return BPF_INS_INVALID;
178
8.75k
}
179
180
static bpf_insn op2insn_st(unsigned opcode)
181
2.55k
{
182
  /*
183
   * - BPF_STX | BPF_XADD | BPF_{W,DW}
184
   * - BPF_ST* | BPF_MEM | BPF_{W,H,B,DW}
185
   */
186
187
2.55k
  if (opcode == (BPF_CLASS_STX | BPF_MODE_XADD | BPF_SIZE_W))
188
132
    return BPF_INS_XADDW;
189
2.42k
  if (opcode == (BPF_CLASS_STX | BPF_MODE_XADD | BPF_SIZE_DW))
190
70
    return BPF_INS_XADDDW;
191
192
  /* should be BPF_MEM */
193
2.35k
#define CASE(c) case BPF_SIZE_##c: \
194
2.35k
    if (BPF_CLASS(opcode) == BPF_CLASS_ST) \
195
2.35k
      return BPF_INS_ST##c; \
196
2.35k
    else \
197
2.35k
      return BPF_INS_STX##c;
198
2.35k
  switch (BPF_SIZE(opcode)) {
199
620
  CASE(W);
200
392
  CASE(H);
201
796
  CASE(B);
202
548
  CASE(DW);
203
2.35k
  }
204
0
#undef CASE
205
206
0
  return BPF_INS_INVALID;
207
2.35k
}
208
209
static bpf_insn op2insn_alu(unsigned opcode)
210
8.79k
{
211
  /* Endian is a special case */
212
8.79k
  if (BPF_OP(opcode) == BPF_ALU_END) {
213
448
    switch (opcode ^ BPF_CLASS_ALU ^ BPF_ALU_END) {
214
20
    case BPF_SRC_LITTLE | (16 << 4):
215
20
      return BPF_INS_LE16;
216
82
    case BPF_SRC_LITTLE | (32 << 4):
217
82
      return BPF_INS_LE32;
218
6
    case BPF_SRC_LITTLE | (64 << 4):
219
6
      return BPF_INS_LE64;
220
6
    case BPF_SRC_BIG | (16 << 4):
221
6
      return BPF_INS_BE16;
222
290
    case BPF_SRC_BIG | (32 << 4):
223
290
      return BPF_INS_BE32;
224
44
    case BPF_SRC_BIG | (64 << 4):
225
44
      return BPF_INS_BE64;
226
448
    }
227
0
    return BPF_INS_INVALID;
228
448
  }
229
230
8.34k
#define CASE(c) case BPF_ALU_##c: \
231
8.34k
    if (BPF_CLASS(opcode) == BPF_CLASS_ALU) \
232
8.34k
      return BPF_INS_##c; \
233
8.34k
    else \
234
8.34k
      return BPF_INS_##c##64;
235
236
8.34k
  switch (BPF_OP(opcode)) {
237
1.23k
  CASE(ADD);
238
488
  CASE(SUB);
239
752
  CASE(MUL);
240
480
  CASE(DIV);
241
526
  CASE(OR);
242
762
  CASE(AND);
243
518
  CASE(LSH);
244
522
  CASE(RSH);
245
1.06k
  CASE(NEG);
246
394
  CASE(MOD);
247
794
  CASE(XOR);
248
388
  CASE(MOV);
249
418
  CASE(ARSH);
250
8.34k
  }
251
0
#undef CASE
252
253
0
  return BPF_INS_INVALID;
254
8.34k
}
255
256
static bpf_insn op2insn_jmp(unsigned opcode)
257
5.96k
{
258
5.96k
  if (opcode == (BPF_CLASS_JMP | BPF_JUMP_CALL | BPF_SRC_X)) {
259
36
    return BPF_INS_CALLX;
260
36
  }
261
262
5.93k
#define CASE(c) case BPF_JUMP_##c: return BPF_INS_##c
263
5.93k
  switch (BPF_OP(opcode)) {
264
1.28k
  case BPF_JUMP_JA:
265
1.28k
    return BPF_INS_JMP;
266
696
  CASE(JEQ);
267
484
  CASE(JGT);
268
802
  CASE(JGE);
269
202
  CASE(JSET);
270
196
  CASE(JNE);
271
82
  CASE(JSGT);
272
246
  CASE(JSGE);
273
544
  CASE(CALL);
274
544
  CASE(EXIT);
275
194
  CASE(JLT);
276
254
  CASE(JLE);
277
202
  CASE(JSLT);
278
5.93k
  CASE(JSLE);
279
5.93k
  }
280
0
#undef CASE
281
282
0
  return BPF_INS_INVALID;
283
5.93k
}
284
285
static void update_regs_access(cs_struct *ud, cs_detail *detail,
286
    bpf_insn insn_id, unsigned int opcode)
287
13.8k
{
288
13.8k
  if (insn_id == BPF_INS_INVALID)
289
0
    return;
290
13.8k
#define PUSH_READ(r) do { \
291
2.77k
    detail->regs_read[detail->regs_read_count] = r; \
292
2.77k
    detail->regs_read_count++; \
293
2.77k
  } while (0)
294
13.8k
#define PUSH_WRITE(r) do { \
295
5.10k
    detail->regs_write[detail->regs_write_count] = r; \
296
5.10k
    detail->regs_write_count++; \
297
5.10k
  } while (0)
298
  /*
299
   * In eBPF mode, only these instructions have implicit registers access:
300
   * - legacy ld{w,h,b,dw} * // w: r0
301
   * - exit // r: r0
302
   */
303
13.8k
  if (EBPF_MODE(ud)) {
304
8.07k
    switch (insn_id) {
305
6.18k
    default:
306
6.18k
      break;
307
6.18k
    case BPF_INS_LDW:
308
691
    case BPF_INS_LDH:
309
963
    case BPF_INS_LDB:
310
1.62k
    case BPF_INS_LDDW:
311
1.62k
      if (BPF_MODE(opcode) == BPF_MODE_ABS || BPF_MODE(opcode) == BPF_MODE_IND) {
312
1.10k
        PUSH_WRITE(BPF_REG_R0);
313
1.10k
      }
314
1.62k
      break;
315
272
    case BPF_INS_EXIT:
316
272
      PUSH_READ(BPF_REG_R0);
317
272
      break;
318
8.07k
    }
319
8.07k
    return;
320
8.07k
  }
321
322
  /* cBPF mode */
323
5.81k
  switch (BPF_CLASS(opcode)) {
324
698
  default:
325
698
    break;
326
1.60k
  case BPF_CLASS_LD:
327
1.60k
    PUSH_WRITE(BPF_REG_A);
328
1.60k
    break;
329
596
  case BPF_CLASS_LDX:
330
596
    PUSH_WRITE(BPF_REG_X);
331
596
    break;
332
69
  case BPF_CLASS_ST:
333
69
    PUSH_READ(BPF_REG_A);
334
69
    break;
335
21
  case BPF_CLASS_STX:
336
21
    PUSH_READ(BPF_REG_X);
337
21
    break;
338
1.63k
  case BPF_CLASS_ALU:
339
1.63k
    PUSH_READ(BPF_REG_A);
340
1.63k
    PUSH_WRITE(BPF_REG_A);
341
1.63k
    break;
342
1.03k
  case BPF_CLASS_JMP:
343
1.03k
    if (insn_id != BPF_INS_JMP) // except the unconditional jump
344
621
      PUSH_READ(BPF_REG_A);
345
1.03k
    break;
346
  /* case BPF_CLASS_RET: */
347
160
  case BPF_CLASS_MISC:
348
160
    if (insn_id == BPF_INS_TAX) {
349
18
      PUSH_READ(BPF_REG_A);
350
18
      PUSH_WRITE(BPF_REG_X);
351
18
    }
352
142
    else {
353
142
      PUSH_READ(BPF_REG_X);
354
142
      PUSH_WRITE(BPF_REG_A);
355
142
    }
356
160
    break;
357
5.81k
  }
358
5.81k
}
359
360
/*
361
 * 1. Convert opcode(id) to BPF_INS_*
362
 * 2. Set regs_read/regs_write/groups
363
 */
364
void BPF_get_insn_id(cs_struct *ud, cs_insn *insn, unsigned int opcode)
365
27.7k
{
366
  // No need to care the mode (cBPF or eBPF) since all checks has be done in
367
  // BPF_getInstruction, we can simply map opcode to BPF_INS_*.
368
27.7k
  cs_detail *detail;
369
27.7k
  bpf_insn id = BPF_INS_INVALID;
370
27.7k
  bpf_insn_group grp;
371
372
27.7k
  detail = insn->detail;
373
27.7k
#ifndef CAPSTONE_DIET
374
27.7k
 #define PUSH_GROUP(grp) do { \
375
27.7k
    if (detail) { \
376
13.8k
      detail->groups[detail->groups_count] = grp; \
377
13.8k
      detail->groups_count++; \
378
13.8k
    } \
379
27.7k
  } while(0)
380
#else
381
 #define PUSH_GROUP
382
#endif
383
384
27.7k
  switch (BPF_CLASS(opcode)) {
385
0
  default:  // will never happen
386
0
    break;
387
6.44k
  case BPF_CLASS_LD:
388
8.75k
  case BPF_CLASS_LDX:
389
8.75k
    id = op2insn_ld(opcode);
390
8.75k
    PUSH_GROUP(BPF_GRP_LOAD);
391
8.75k
    break;
392
1.24k
  case BPF_CLASS_ST:
393
2.55k
  case BPF_CLASS_STX:
394
2.55k
    id = op2insn_st(opcode);
395
2.55k
    PUSH_GROUP(BPF_GRP_STORE);
396
2.55k
    break;
397
5.10k
  case BPF_CLASS_ALU:
398
5.10k
    id = op2insn_alu(opcode);
399
5.10k
    PUSH_GROUP(BPF_GRP_ALU);
400
5.10k
    break;
401
5.96k
  case BPF_CLASS_JMP:
402
5.96k
    grp = BPF_GRP_JUMP;
403
5.96k
    id = op2insn_jmp(opcode);
404
5.96k
    if (id == BPF_INS_CALL || id == BPF_INS_CALLX)
405
580
      grp = BPF_GRP_CALL;
406
5.38k
    else if (id == BPF_INS_EXIT)
407
544
      grp = BPF_GRP_RETURN;
408
5.96k
    PUSH_GROUP(grp);
409
5.96k
    break;
410
1.39k
  case BPF_CLASS_RET:
411
1.39k
    id = BPF_INS_RET;
412
1.39k
    PUSH_GROUP(BPF_GRP_RETURN);
413
1.39k
    break;
414
  // BPF_CLASS_MISC and BPF_CLASS_ALU64 have exactly same value
415
4.00k
  case BPF_CLASS_MISC:
416
  /* case BPF_CLASS_ALU64: */
417
4.00k
    if (EBPF_MODE(ud)) {
418
      // ALU64 in eBPF
419
3.68k
      id = op2insn_alu(opcode);
420
3.68k
      PUSH_GROUP(BPF_GRP_ALU);
421
3.68k
    }
422
320
    else {
423
320
      if (BPF_MISCOP(opcode) == BPF_MISCOP_TXA)
424
284
        id = BPF_INS_TXA;
425
36
      else
426
36
        id = BPF_INS_TAX;
427
320
      PUSH_GROUP(BPF_GRP_MISC);
428
320
    }
429
4.00k
    break;
430
27.7k
  }
431
432
27.7k
  insn->id = id;
433
27.7k
#undef PUSH_GROUP
434
435
27.7k
#ifndef CAPSTONE_DIET
436
27.7k
  if (detail) {
437
13.8k
    update_regs_access(ud, detail, id, opcode);
438
13.8k
  }
439
27.7k
#endif
440
27.7k
}
441
442
static void sort_and_uniq(cs_regs arr, uint8_t n, uint8_t *new_n)
443
0
{
444
  /* arr is always a tiny (usually n < 3) array,
445
   * a simple O(n^2) sort is efficient enough. */
446
0
  int i;
447
0
  int j;
448
0
  int iMin;
449
0
  int tmp;
450
451
  /* a modified selection sort for sorting and making unique */
452
0
  for (j = 0; j < n; j++) {
453
    /* arr[iMin] will be min(arr[j .. n-1]) */
454
0
    iMin = j;
455
0
    for (i = j + 1; i < n; i++) {
456
0
      if (arr[i] < arr[iMin])
457
0
        iMin = i;
458
0
    }
459
0
    if (j != 0 && arr[iMin] == arr[j - 1]) { // duplicate ele found
460
0
      arr[iMin] = arr[n - 1];
461
0
      --n;
462
0
    }
463
0
    else {
464
0
      tmp = arr[iMin];
465
0
      arr[iMin] = arr[j];
466
0
      arr[j] = tmp;
467
0
    }
468
0
  }
469
470
0
  *new_n = n;
471
0
}
472
void BPF_reg_access(const cs_insn *insn,
473
    cs_regs regs_read, uint8_t *regs_read_count,
474
    cs_regs regs_write, uint8_t *regs_write_count)
475
0
{
476
0
  unsigned i;
477
0
  uint8_t read_count, write_count;
478
0
  const cs_bpf *bpf = &(insn->detail->bpf);
479
480
0
  read_count = insn->detail->regs_read_count;
481
0
  write_count = insn->detail->regs_write_count;
482
483
  // implicit registers
484
0
  memcpy(regs_read, insn->detail->regs_read, read_count * sizeof(insn->detail->regs_read[0]));
485
0
  memcpy(regs_write, insn->detail->regs_write, write_count * sizeof(insn->detail->regs_write[0]));
486
487
0
  for (i = 0; i < bpf->op_count; i++) {
488
0
    const cs_bpf_op *op = &(bpf->operands[i]);
489
0
    switch (op->type) {
490
0
    default:
491
0
      break;
492
0
    case BPF_OP_REG:
493
0
      if (op->access & CS_AC_READ) {
494
0
        regs_read[read_count] = op->reg;
495
0
        read_count++;
496
0
      }
497
0
      if (op->access & CS_AC_WRITE) {
498
0
        regs_write[write_count] = op->reg;
499
0
        write_count++;
500
0
      }
501
0
      break;
502
0
    case BPF_OP_MEM:
503
0
      if (op->mem.base != BPF_REG_INVALID) {
504
0
        regs_read[read_count] = op->mem.base;
505
0
        read_count++;
506
0
      }
507
0
      break;
508
0
    }
509
0
  }
510
511
0
  sort_and_uniq(regs_read, read_count, regs_read_count);
512
0
  sort_and_uniq(regs_write, write_count, regs_write_count);
513
0
}