Coverage Report

Created: 2026-09-28 06:34

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/capstonenext/MCInstPrinter.c
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Source
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/* Capstone Disassembly Engine */
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/* By Rot127 <unisono@quyllur.org>, 2023 */
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#include "MCInstPrinter.h"
5
#include "cs_priv.h"
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#include <capstone/platform.h>
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8
extern bool ARM_getFeatureBits(unsigned int mode, unsigned int feature);
9
extern bool PPC_getFeatureBits(unsigned int mode, unsigned int feature);
10
extern bool Mips_getFeatureBits(unsigned int mode, unsigned int feature);
11
extern bool AArch64_getFeatureBits(unsigned int mode, unsigned int feature);
12
extern bool TriCore_getFeatureBits(unsigned int mode, unsigned int feature);
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extern bool Sparc_getFeatureBits(unsigned int mode, unsigned int feature);
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extern bool RISCV_getFeatureBits(unsigned int mode, unsigned int feature);
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16
static bool testFeatureBits(const MCInst *MI, uint32_t Value)
17
54.4k
{
18
54.4k
  assert(MI && MI->csh);
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54.4k
  switch (MI->csh->arch) {
20
0
  default:
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0
    assert(0 && "Not implemented for current arch.");
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0
    return false;
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0
#ifdef CAPSTONE_HAS_ARM
24
3.18k
  case CS_ARCH_ARM:
25
3.18k
    return ARM_getFeatureBits(MI->csh->mode, Value);
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0
#endif
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0
#ifdef CAPSTONE_HAS_POWERPC
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446
  case CS_ARCH_PPC:
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446
    return PPC_getFeatureBits(MI->csh->mode, Value);
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0
#endif
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0
#ifdef CAPSTONE_HAS_MIPS
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8.68k
  case CS_ARCH_MIPS:
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8.68k
    return Mips_getFeatureBits(MI->csh->mode, Value);
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0
#endif
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0
#ifdef CAPSTONE_HAS_AARCH64
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40.8k
  case CS_ARCH_AARCH64:
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40.8k
    return AArch64_getFeatureBits(MI->csh->mode, Value);
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0
#endif
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0
#ifdef CAPSTONE_HAS_TRICORE
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0
  case CS_ARCH_TRICORE:
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0
    return TriCore_getFeatureBits(MI->csh->mode, Value);
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0
#endif
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0
#ifdef CAPSTONE_HAS_SPARC
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1.02k
  case CS_ARCH_SPARC:
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1.02k
    return Sparc_getFeatureBits(MI->csh->mode, Value);
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0
#endif
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0
#ifdef CAPSTONE_HAS_RISCV
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266
  case CS_ARCH_RISCV:
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266
    return RISCV_getFeatureBits(MI->csh->mode, Value);
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54.4k
#endif
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54.4k
  }
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54.4k
}
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54
static bool matchAliasCondition(MCInst *MI, const MCRegisterInfo *MRI,
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        unsigned *OpIdx, const AliasMatchingData *M,
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        const AliasPatternCond *C,
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        bool *OrPredicateResult)
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562k
{
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  // Feature tests are special, they don't consume operands.
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562k
  if (C->Kind == AliasPatternCond_K_Feature)
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7.57k
    return testFeatureBits(MI, C->Value);
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554k
  if (C->Kind == AliasPatternCond_K_NegFeature)
63
5.57k
    return !testFeatureBits(MI, C->Value);
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  // For feature tests where just one feature is required in a list, set the
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  // predicate result bit to whether the expression will return true, and only
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  // return the real result at the end of list marker.
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548k
  if (C->Kind == AliasPatternCond_K_OrFeature) {
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41.1k
    *OrPredicateResult |= testFeatureBits(MI, C->Value);
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41.1k
    return true;
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41.1k
  }
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507k
  if (C->Kind == AliasPatternCond_K_OrNegFeature) {
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137
    *OrPredicateResult |= !(testFeatureBits(MI, C->Value));
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137
    return true;
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137
  }
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507k
  if (C->Kind == AliasPatternCond_K_EndOrFeatures) {
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17.0k
    bool Res = *OrPredicateResult;
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17.0k
    *OrPredicateResult = false;
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17.0k
    return Res;
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17.0k
  }
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81
  // Get and consume an operand.
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490k
  MCOperand *Opnd = MCInst_getOperand(MI, *OpIdx);
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490k
  ++(*OpIdx);
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  // Check the specific condition for the operand.
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490k
  switch (C->Kind) {
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0
  default:
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0
    assert(0 && "invalid kind");
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147k
  case AliasPatternCond_K_Imm:
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    // Operand must be a specific immediate.
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147k
    return MCOperand_isImm(Opnd) &&
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147k
           MCOperand_getImm(Opnd) == (int32_t)C->Value;
93
59.7k
  case AliasPatternCond_K_Reg:
94
    // Operand must be a specific register.
95
59.7k
    return MCOperand_isReg(Opnd) &&
96
59.7k
           MCOperand_getReg(Opnd) == C->Value;
97
1.81k
  case AliasPatternCond_K_TiedReg:
98
    // Operand must match the register of another operand.
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1.81k
    return MCOperand_isReg(Opnd) &&
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1.81k
           MCOperand_getReg(Opnd) ==
101
1.81k
             MCOperand_getReg(
102
1.81k
               MCInst_getOperand(MI, C->Value));
103
206k
  case AliasPatternCond_K_RegClass:
104
    // Operand must be a register in this class. Value is a register class
105
    // id.
106
206k
    return MCOperand_isReg(Opnd) &&
107
206k
           MCRegisterClass_contains(
108
206k
             MCRegisterInfo_getRegClass(MRI, C->Value),
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206k
             MCOperand_getReg(Opnd));
110
23.9k
  case AliasPatternCond_K_Custom:
111
    // Operand must match some custom criteria.
112
23.9k
    assert(M->ValidateMCOperand &&
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23.9k
           "A custom validator should be set but isn't.");
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23.9k
    return M->ValidateMCOperand(Opnd, C->Value);
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50.6k
  case AliasPatternCond_K_Ignore:
116
    // Operand can be anything.
117
50.6k
    return true;
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0
  case AliasPatternCond_K_Feature:
119
0
  case AliasPatternCond_K_NegFeature:
120
0
  case AliasPatternCond_K_OrFeature:
121
0
  case AliasPatternCond_K_OrNegFeature:
122
0
  case AliasPatternCond_K_EndOrFeatures:
123
0
    assert(0 && "handled earlier");
124
490k
  }
125
0
  return false;
126
490k
}
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128
/// Check if PatternsForOpcode is all zero.
129
static inline bool validOpToPatter(const PatternsForOpcode *P)
130
121M
{
131
121M
  return !(P->Opcode == 0 && P->PatternStart == 0 && P->NumPatterns == 0);
132
121M
}
133
134
const char *matchAliasPatterns(MCInst *MI, const AliasMatchingData *M)
135
1.17M
{
136
  // TODO Rewrite to C
137
138
  // auto It = lower_bound(M.OpToPatterns, MI->getOpcode(),
139
  //                       [](const PatternsForOpcode &L, unsigned Opcode) {
140
  //                         return L.Opcode < Opcode;
141
  //                       });
142
  // if (It == M.OpToPatterns.end() || It->Opcode != MI->getOpcode())
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  //   return nullptr;
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145
  // Binary search by opcode. Return false if there are no aliases for this
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  // opcode.
147
1.17M
  unsigned MIOpcode = MI->Opcode;
148
1.17M
  size_t i = 0;
149
1.17M
  uint32_t PatternOpcode = M->OpToPatterns[i].Opcode;
150
122M
  while (PatternOpcode < MIOpcode && validOpToPatter(&M->OpToPatterns[i]))
151
121M
    PatternOpcode = M->OpToPatterns[++i].Opcode;
152
1.17M
  if (PatternOpcode != MI->Opcode ||
153
103k
      !validOpToPatter(&M->OpToPatterns[i]))
154
1.07M
    return NULL;
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156
  // // Try all patterns for this opcode.
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103k
  uint32_t AsmStrOffset = ~0U;
158
103k
  const AliasPattern *Patterns =
159
103k
    M->Patterns + M->OpToPatterns[i].PatternStart;
160
103k
  for (const AliasPattern *P = Patterns;
161
295k
       P != Patterns + M->OpToPatterns[i].NumPatterns; ++P) {
162
    // Check operand count first.
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229k
    if (MCInst_getNumOperands(MI) != P->NumOperands)
164
0
      return NULL;
165
166
    // Test all conditions for this pattern.
167
229k
    const AliasPatternCond *Conds =
168
229k
      M->PatternConds + P->AliasCondStart;
169
229k
    unsigned OpIdx = 0;
170
229k
    bool OrPredicateResult = false;
171
229k
    bool allMatch = true;
172
229k
    for (const AliasPatternCond *C = Conds;
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599k
         C != Conds + P->NumConds; ++C) {
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562k
      if (!matchAliasCondition(MI, MI->MRI, &OpIdx, M, C,
175
562k
             &OrPredicateResult)) {
176
192k
        allMatch = false;
177
192k
        break;
178
192k
      }
179
562k
    }
180
229k
    if (allMatch) {
181
36.9k
      AsmStrOffset = P->AsmStrOffset;
182
36.9k
      break;
183
36.9k
    }
184
229k
  }
185
  // If no alias matched, don't print an alias.
186
103k
  if (AsmStrOffset == ~0U)
187
66.0k
    return NULL;
188
189
  // Go to offset AsmStrOffset and use the null terminated string there. The
190
  // offset should point to the beginning of an alias string, so it should
191
  // either be zero or be preceded by a null byte.
192
36.9k
  return M->AsmStrings + AsmStrOffset;
193
103k
}
194
195
// TODO Add functionality to toggle the flag.
196
bool getUseMarkup(void)
197
5.76M
{
198
5.76M
  return false;
199
5.76M
}
200
201
/// Utility functions to make adding mark ups simpler.
202
const char *markup(const char *s)
203
5.65M
{
204
5.65M
  static const char *no_markup = "";
205
5.65M
  if (getUseMarkup())
206
0
    return s;
207
5.65M
  else
208
5.65M
    return no_markup;
209
5.65M
}
210
211
// binary search for encoding in IndexType array
212
// return -1 if not found, or index if found
213
unsigned int binsearch_IndexTypeEncoding(const struct IndexType *index,
214
           size_t size, uint16_t encoding)
215
53.2k
{
216
  // binary searching since the index is sorted in encoding order
217
53.2k
  size_t left, right, m;
218
219
53.2k
  right = size - 1;
220
221
53.2k
  if (encoding < index[0].encoding || encoding > index[right].encoding)
222
    // not found
223
9.85k
    return -1;
224
225
43.3k
  left = 0;
226
227
206k
  while (left <= right) {
228
192k
    m = (left + right) / 2;
229
192k
    if (encoding == index[m].encoding) {
230
      // LLVM actually uses lower_bound for the index table search
231
      // Here we need to check if a previous entry is of the same encoding
232
      // and return the first one.
233
29.5k
      while (m > 0 && encoding == index[m - 1].encoding)
234
0
        --m;
235
29.5k
      return m;
236
29.5k
    }
237
238
162k
    if (encoding < index[m].encoding)
239
59.9k
      right = m - 1;
240
103k
    else
241
103k
      left = m + 1;
242
162k
  }
243
244
  // not found
245
13.8k
  return -1;
246
43.3k
}
247
248
// binary search for encoding in IndexTypeStr array
249
// return -1 if not found, or index if found
250
unsigned int binsearch_IndexTypeStrEncoding(const struct IndexTypeStr *index,
251
              size_t size, const char *name)
252
689
{
253
  // binary searching since the index is sorted in encoding order
254
689
  size_t left, right, m;
255
256
689
  right = size - 1;
257
258
689
  int str_left_cmp = strcmp(name, index[0].name);
259
689
  int str_right_cmp = strcmp(name, index[right].name);
260
689
  if (str_left_cmp < 0 || str_right_cmp > 0)
261
    // not found
262
0
    return -1;
263
264
689
  left = 0;
265
266
7.04k
  while (left <= right) {
267
6.98k
    m = (left + right) / 2;
268
6.98k
    if (strcmp(name, index[m].name) == 0) {
269
      // LLVM actually uses lower_bound for the index table search
270
      // Here we need to check if a previous entry is of the same encoding
271
      // and return the first one.
272
627
      while (m > 0 && (strcmp(name, index[m - 1].name) == 0))
273
0
        --m;
274
627
      return m;
275
627
    }
276
277
6.35k
    if (strcmp(name, index[m].name) < 0)
278
3.13k
      right = m - 1;
279
3.21k
    else
280
3.21k
      left = m + 1;
281
6.35k
  }
282
283
  // not found
284
62
  return -1;
285
689
}