Coverage Report

Created: 2026-08-14 06:51

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/capstonev5/arch/BPF/BPFInstPrinter.c
Line
Count
Source
1
/* Capstone Disassembly Engine */
2
/* BPF Backend by david942j <david942j@gmail.com>, 2019 */
3
4
#include <capstone/platform.h>
5
6
#include "BPFConstants.h"
7
#include "BPFInstPrinter.h"
8
#include "BPFMapping.h"
9
10
static cs_bpf_op *expand_bpf_operands(cs_bpf *bpf)
11
18.9k
{
12
  /* assert(bpf->op_count < 3); */
13
18.9k
  return &bpf->operands[bpf->op_count++];
14
18.9k
}
15
16
static void push_op_reg(cs_bpf *bpf, bpf_op_type val, uint8_t ac_mode)
17
18.3k
{
18
18.3k
  cs_bpf_op *op = expand_bpf_operands(bpf);
19
20
18.3k
  op->type = BPF_OP_REG;
21
18.3k
  op->reg = val;
22
18.3k
  op->access = ac_mode;
23
18.3k
}
24
25
static void push_op_imm(cs_bpf *bpf, uint64_t val)
26
13.6k
{
27
13.6k
  cs_bpf_op *op = expand_bpf_operands(bpf);
28
29
13.6k
  op->type = BPF_OP_IMM;
30
13.6k
  op->imm = val;
31
13.6k
}
32
33
static void push_op_off(cs_bpf *bpf, uint32_t val)
34
7.12k
{
35
7.12k
  cs_bpf_op *op = expand_bpf_operands(bpf);
36
37
7.12k
  op->type = BPF_OP_OFF;
38
7.12k
  op->off = val;
39
7.12k
}
40
41
static void push_op_mem(cs_bpf *bpf, bpf_reg reg, uint32_t val)
42
9.09k
{
43
9.09k
  cs_bpf_op *op = expand_bpf_operands(bpf);
44
45
9.09k
  op->type = BPF_OP_MEM;
46
9.09k
  op->mem.base = reg;
47
9.09k
  op->mem.disp = val;
48
9.09k
}
49
50
static void push_op_mmem(cs_bpf *bpf, uint32_t val)
51
872
{
52
872
  cs_bpf_op *op = expand_bpf_operands(bpf);
53
54
872
  op->type = BPF_OP_MMEM;
55
872
  op->mmem = val;
56
872
}
57
58
static void push_op_msh(cs_bpf *bpf, uint32_t val)
59
226
{
60
226
  cs_bpf_op *op = expand_bpf_operands(bpf);
61
62
226
  op->type = BPF_OP_MSH;
63
226
  op->msh = val;
64
226
}
65
66
static void push_op_ext(cs_bpf *bpf, bpf_ext_type val)
67
225
{
68
225
  cs_bpf_op *op = expand_bpf_operands(bpf);
69
70
225
  op->type = BPF_OP_EXT;
71
225
  op->ext = val;
72
225
}
73
74
static void convert_operands(MCInst *MI, cs_bpf *bpf)
75
12.0k
{
76
12.0k
  unsigned opcode = MCInst_getOpcode(MI);
77
12.0k
  unsigned mc_op_count = MCInst_getNumOperands(MI);
78
12.0k
  MCOperand *op;
79
12.0k
  MCOperand *op2;
80
12.0k
  unsigned i;
81
82
12.0k
  bpf->op_count = 0;
83
12.0k
  if (BPF_CLASS(opcode) == BPF_CLASS_LD || BPF_CLASS(opcode) == BPF_CLASS_LDX) {
84
3.12k
    switch (BPF_MODE(opcode)) {
85
897
    case BPF_MODE_IMM:
86
897
      if (EBPF_MODE(MI->csh)) {
87
223
        push_op_reg(bpf, MCOperand_getReg(MCInst_getOperand(MI, 0)), CS_AC_WRITE);
88
223
        push_op_imm(bpf, MCOperand_getImm(MCInst_getOperand(MI, 1)));
89
674
      } else {
90
674
        push_op_imm(bpf, MCOperand_getImm(MCInst_getOperand(MI, 0)));
91
674
      }
92
897
      break;
93
997
    case BPF_MODE_ABS:
94
997
      op = MCInst_getOperand(MI, 0);
95
997
      push_op_mem(bpf, BPF_REG_INVALID, (uint32_t)MCOperand_getImm(op));
96
997
      break;
97
376
    case BPF_MODE_IND:
98
376
      op = MCInst_getOperand(MI, 0);
99
376
      op2 = MCInst_getOperand(MI, 1);
100
376
      push_op_mem(bpf, MCOperand_getReg(op), (uint32_t)MCOperand_getImm(op2));
101
376
      break;
102
628
    case BPF_MODE_MEM:
103
628
      if (EBPF_MODE(MI->csh)) {
104
        /* ldx{w,h,b,dw} dst, [src+off] */
105
429
        push_op_reg(bpf, MCOperand_getReg(MCInst_getOperand(MI, 0)), CS_AC_WRITE);
106
429
        op = MCInst_getOperand(MI, 1);
107
429
        op2 = MCInst_getOperand(MI, 2);
108
429
        push_op_mem(bpf, MCOperand_getReg(op), (uint32_t)MCOperand_getImm(op2));
109
429
      }
110
199
      else {
111
199
        push_op_mmem(bpf, (uint32_t)MCOperand_getImm(MCInst_getOperand(MI, 0)));
112
199
      }
113
628
      break;
114
75
    case BPF_MODE_LEN:
115
75
      push_op_ext(bpf, BPF_EXT_LEN);
116
75
      break;
117
155
    case BPF_MODE_MSH:
118
155
      op = MCInst_getOperand(MI, 0);
119
155
      push_op_msh(bpf, (uint32_t)MCOperand_getImm(op));
120
155
      break;
121
    /* case BPF_MODE_XADD: // not exists */
122
3.12k
    }
123
3.12k
    return;
124
3.12k
  }
125
8.88k
  if (BPF_CLASS(opcode) == BPF_CLASS_ST || BPF_CLASS(opcode) == BPF_CLASS_STX) {
126
2.27k
    if (!EBPF_MODE(MI->csh)) {
127
      // cBPF has only one case - st* M[k]
128
358
      push_op_mmem(bpf, (uint32_t)MCOperand_getImm(MCInst_getOperand(MI, 0)));
129
358
      return;
130
358
    }
131
    /* eBPF has two cases:
132
     * - st [dst + off], src
133
     * - xadd [dst + off], src
134
     * they have same form of operands.
135
     */
136
1.91k
    op = MCInst_getOperand(MI, 0);
137
1.91k
    op2 = MCInst_getOperand(MI, 1);
138
1.91k
    push_op_mem(bpf, MCOperand_getReg(op), (uint32_t)MCOperand_getImm(op2));
139
1.91k
    op = MCInst_getOperand(MI, 2);
140
1.91k
    if (MCOperand_isImm(op))
141
532
      push_op_imm(bpf, MCOperand_getImm(op));
142
1.38k
    else if (MCOperand_isReg(op))
143
1.38k
      push_op_reg(bpf, MCOperand_getReg(op), CS_AC_READ);
144
1.91k
    return;
145
2.27k
  }
146
147
6.60k
  if (BPF_CLASS(opcode) == BPF_CLASS_JMP) {
148
7.75k
    for (i = 0; i < mc_op_count; i++) {
149
5.35k
      op = MCInst_getOperand(MI, i);
150
5.35k
      if (MCOperand_isImm(op)) {
151
        /* decide the imm is BPF_OP_IMM or BPF_OP_OFF type here */
152
        /*
153
         * 1. ja +off
154
         * 2. j {x,k}, +jt, +jf // cBPF
155
         * 3. j dst_reg, {src_reg, k}, +off // eBPF
156
         */
157
3.93k
        if (BPF_OP(opcode) == BPF_JUMP_JA ||
158
3.59k
            (!EBPF_MODE(MI->csh) && i >= 1) ||
159
2.26k
            (EBPF_MODE(MI->csh) && i == 2))
160
2.60k
          push_op_off(bpf, (uint32_t)MCOperand_getImm(op));
161
1.33k
        else
162
1.33k
          push_op_imm(bpf, MCOperand_getImm(op));
163
3.93k
      }
164
1.41k
      else if (MCOperand_isReg(op)) {
165
1.41k
        push_op_reg(bpf, MCOperand_getReg(op), CS_AC_READ);
166
1.41k
      }
167
5.35k
    }
168
2.40k
    return;
169
2.40k
  }
170
171
4.20k
  if (!EBPF_MODE(MI->csh)) {
172
    /* In cBPF mode, all registers in operands are accessed as read */
173
3.22k
    for (i = 0; i < mc_op_count; i++) {
174
1.36k
      op = MCInst_getOperand(MI, i);
175
1.36k
      if (MCOperand_isImm(op))
176
626
        push_op_imm(bpf, MCOperand_getImm(op));
177
741
      else if (MCOperand_isReg(op))
178
741
        push_op_reg(bpf, MCOperand_getReg(op), CS_AC_READ);
179
1.36k
    }
180
1.86k
    return;
181
1.86k
  }
182
183
  /* remain cases are: eBPF mode && ALU */
184
  /* if (BPF_CLASS(opcode) == BPF_CLASS_ALU || BPF_CLASS(opcode) == BPF_CLASS_ALU64) */
185
186
  /* We have three types:
187
   * 1. {l,b}e dst               // dst = byteswap(dst)
188
   * 2. neg dst                  // dst = -dst
189
   * 3. <op> dst, {src_reg, imm} // dst = dst <op> src
190
   * so we can simply check the number of operands,
191
   * exactly one operand means we are in case 1. and 2.,
192
   * otherwise in case 3.
193
   */
194
2.34k
  if (mc_op_count == 1) {
195
410
    op = MCInst_getOperand(MI, 0);
196
410
    push_op_reg(bpf, MCOperand_getReg(op), CS_AC_READ | CS_AC_WRITE);
197
410
  }
198
1.93k
  else { // if (mc_op_count == 2)
199
1.93k
    op = MCInst_getOperand(MI, 0);
200
1.93k
    push_op_reg(bpf, MCOperand_getReg(op), CS_AC_READ | CS_AC_WRITE);
201
202
1.93k
    op = MCInst_getOperand(MI, 1);
203
1.93k
    if (MCOperand_isImm(op))
204
1.64k
      push_op_imm(bpf, MCOperand_getImm(op));
205
294
    else if (MCOperand_isReg(op))
206
294
      push_op_reg(bpf, MCOperand_getReg(op), CS_AC_READ);
207
1.93k
  }
208
2.34k
}
209
210
static void print_operand(MCInst *MI, struct SStream *O, const cs_bpf_op *op)
211
18.9k
{
212
18.9k
  switch (op->type) {
213
0
  case BPF_OP_INVALID:
214
0
    SStream_concat(O, "invalid");
215
0
    break;
216
6.83k
  case BPF_OP_REG:
217
6.83k
    SStream_concat(O, BPF_reg_name((csh)MI->csh, op->reg));
218
6.83k
    break;
219
5.03k
  case BPF_OP_IMM:
220
5.03k
    SStream_concat(O, "0x%" PRIx64, op->imm);
221
5.03k
    break;
222
2.60k
  case BPF_OP_OFF:
223
2.60k
    SStream_concat(O, "+0x%x", op->off);
224
2.60k
    break;
225
3.71k
  case BPF_OP_MEM:
226
3.71k
    SStream_concat(O, "[");
227
3.71k
    if (op->mem.base != BPF_REG_INVALID)
228
2.72k
      SStream_concat(O, BPF_reg_name((csh)MI->csh, op->mem.base));
229
3.71k
    if (op->mem.disp != 0) {
230
3.66k
      if (op->mem.base != BPF_REG_INVALID)
231
2.70k
        SStream_concat(O, "+");
232
3.66k
      SStream_concat(O, "0x%x", op->mem.disp);
233
3.66k
    }
234
3.71k
    if (op->mem.base == BPF_REG_INVALID && op->mem.disp == 0) // special case
235
39
      SStream_concat(O, "0x0");
236
3.71k
    SStream_concat(O, "]");
237
3.71k
    break;
238
557
  case BPF_OP_MMEM:
239
557
    SStream_concat(O, "m[0x%x]", op->mmem);
240
557
    break;
241
155
  case BPF_OP_MSH:
242
155
    SStream_concat(O, "4*([0x%x]&0xf)", op->msh);
243
155
    break;
244
75
  case BPF_OP_EXT:
245
75
    switch (op->ext) {
246
75
    case BPF_EXT_LEN:
247
75
      SStream_concat(O, "#len");
248
75
      break;
249
75
    }
250
75
    break;
251
18.9k
  }
252
18.9k
}
253
254
/*
255
 * 1. human readable mnemonic
256
 * 2. set pubOpcode (BPF_INSN_*)
257
 * 3. set detail->bpf.operands
258
 * */
259
void BPF_printInst(MCInst *MI, struct SStream *O, void *PrinterInfo)
260
30.2k
{
261
30.2k
  int i;
262
30.2k
  cs_insn insn;
263
30.2k
  cs_bpf bpf;
264
265
30.2k
  insn.detail = NULL;
266
  /* set pubOpcode as instruction id */
267
30.2k
  BPF_get_insn_id((cs_struct*)MI->csh, &insn, MCInst_getOpcode(MI));
268
30.2k
  MCInst_setOpcodePub(MI, insn.id);
269
270
30.2k
  SStream_concat(O, BPF_insn_name((csh)MI->csh, insn.id));
271
30.2k
  convert_operands(MI, &bpf);
272
79.8k
  for (i = 0; i < bpf.op_count; i++) {
273
49.5k
    if (i == 0)
274
29.0k
      SStream_concat(O, "\t");
275
20.4k
    else
276
20.4k
      SStream_concat(O, ", ");
277
49.5k
    print_operand(MI, O, &bpf.operands[i]);
278
49.5k
  }
279
280
30.2k
#ifndef CAPSTONE_DIET
281
30.2k
  if (MI->flat_insn->detail) {
282
30.2k
    MI->flat_insn->detail->bpf = bpf;
283
30.2k
  }
284
30.2k
#endif
285
30.2k
}