Coverage Report

Created: 2026-03-10 08:46

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/binutils-gdb/opcodes/rx-dis.c
Line
Count
Source
1
/* Disassembler code for Renesas RX.
2
   Copyright (C) 2008-2026 Free Software Foundation, Inc.
3
   Contributed by Red Hat.
4
   Written by DJ Delorie.
5
6
   This file is part of the GNU opcodes library.
7
8
   This library is free software; you can redistribute it and/or modify
9
   it under the terms of the GNU General Public License as published by
10
   the Free Software Foundation; either version 3, or (at your option)
11
   any later version.
12
13
   It is distributed in the hope that it will be useful, but WITHOUT
14
   ANY WARRANTY; without even the implied warranty of MERCHANTABILITY
15
   or FITNESS FOR A PARTICULAR PURPOSE.  See the GNU General Public
16
   License for more details.
17
18
   You should have received a copy of the GNU General Public License
19
   along with this program; if not, write to the Free Software
20
   Foundation, Inc., 51 Franklin Street - Fifth Floor, Boston,
21
   MA 02110-1301, USA.  */
22
23
#include "sysdep.h"
24
#include <stdio.h>
25
26
#include "bfd.h"
27
#include "dis-asm.h"
28
#include "opcode/rx.h"
29
#include "libiberty.h"
30
#include "opintl.h"
31
32
#include <setjmp.h>
33
34
typedef struct
35
{
36
  bfd_vma pc;
37
  disassemble_info * dis;
38
} RX_Data;
39
40
struct private
41
{
42
  OPCODES_SIGJMP_BUF bailout;
43
};
44
45
static int
46
rx_get_byte (void * vdata)
47
37.4M
{
48
37.4M
  bfd_byte buf[1];
49
37.4M
  RX_Data *rx_data = (RX_Data *) vdata;
50
37.4M
  int status;
51
52
37.4M
  status = rx_data->dis->read_memory_func (rx_data->pc,
53
37.4M
             buf,
54
37.4M
             1,
55
37.4M
             rx_data->dis);
56
37.4M
  if (status != 0)
57
5.75k
    {
58
5.75k
      struct private *priv = (struct private *) rx_data->dis->private_data;
59
60
5.75k
      rx_data->dis->memory_error_func (status, rx_data->pc,
61
5.75k
               rx_data->dis);
62
5.75k
       OPCODES_SIGLONGJMP (priv->bailout, 1);
63
5.75k
    }
64
65
37.4M
  rx_data->pc ++;
66
37.4M
  return buf[0];
67
37.4M
}
68
69
static char const * size_names[RX_MAX_SIZE] =
70
{
71
  "", ".b", ".ub", ".b", ".w", ".uw", ".w", ".a", ".l", "", "<error>"
72
};
73
74
static char const * opsize_names[RX_MAX_SIZE] =
75
{
76
  "", ".b", ".b", ".b", ".w", ".w", ".w", ".a", ".l", ".d", "<error>"
77
};
78
79
static char const * register_names[] =
80
{
81
  /* General registers.  */
82
  "r0", "r1", "r2", "r3", "r4", "r5", "r6", "r7",
83
  "r8", "r9", "r10", "r11", "r12", "r13", "r14", "r15",
84
  /* Control registers.  */
85
  "psw", "pc", "usp", "fpsw", NULL, NULL, NULL, NULL,
86
  "bpsw", "bpc", "isp", "fintv", "intb", "extb", NULL, NULL,
87
  "a0", "a1", NULL, NULL, NULL, NULL, NULL, NULL,
88
  NULL, NULL, NULL, NULL, NULL, NULL, NULL, NULL
89
};
90
91
static char const * condition_names[] =
92
{
93
  /* Condition codes.  */
94
  "eq", "ne", "c", "nc", "gtu", "leu", "pz", "n",
95
  "ge", "lt", "gt", "le", "o", "no", "<invalid>", "<invalid>"
96
};
97
98
static const char * flag_names[] =
99
{
100
  "c", "z", "s", "o", "", "", "", "",
101
  "", "", "", "", "", "", "", "",
102
  "i", "u", "", "", "", "", "", "",
103
  "", "", "", "", "", "", "", ""
104
};
105
106
static const char * double_register_names[] =
107
{
108
  "dr0", "dr1", "dr2", "dr3", "dr4", "dr5", "dr6", "dr7",
109
  "dr8", "dr9", "dr10", "dr11", "dr12", "dr13", "dr14", "dr15"
110
};
111
112
static const char * double_register_high_names[] =
113
{
114
  "drh0", "drh1", "drh2", "drh3", "drh4", "drh5", "drh6", "drh7",
115
  "drh8", "drh9", "drh10", "drh11", "drh12", "drh13", "drh14", "drh15"
116
};
117
118
static const char * double_register_low_names[] =
119
{
120
  "drl0", "drl1", "drl2", "drl3", "drl4", "drl5", "drl6", "drl7",
121
  "drl8", "drl9", "drl10", "drl11", "drl12", "drl13", "drl14", "drl15"
122
};
123
124
static const char * double_control_register_names[] =
125
{
126
  "dpsw", "dcmr", "decnt", "depc"
127
};
128
129
static const char * double_condition_names[] =
130
{
131
  "", "un", "eq", "", "lt", "", "le"
132
};
133
134
static inline const char *
135
get_register_name (unsigned int reg)
136
13.9M
{
137
13.9M
  if (reg < ARRAY_SIZE (register_names))
138
13.9M
    return register_names[reg];
139
0
  return _("<invalid register number>");
140
13.9M
}
141
142
static inline const char *
143
get_condition_name (unsigned int cond)
144
2.11M
{
145
2.11M
  if (cond < ARRAY_SIZE (condition_names))
146
2.11M
    return condition_names[cond];
147
0
  return _("<invalid condition code>");
148
2.11M
}
149
150
static inline const char *
151
get_flag_name (unsigned int flag)
152
7.81k
{
153
7.81k
  if (flag < ARRAY_SIZE (flag_names))
154
7.81k
    return flag_names[flag];
155
0
  return _("<invalid flag>");
156
7.81k
}
157
158
static inline const char *
159
get_double_register_name (unsigned int reg)
160
82.9k
{
161
82.9k
  if (reg < ARRAY_SIZE (double_register_names))
162
82.8k
    return double_register_names[reg];
163
95
  return _("<invalid register number>");
164
82.9k
}
165
166
static inline const char *
167
get_double_register_high_name (unsigned int reg)
168
6.84k
{
169
6.84k
  if (reg < ARRAY_SIZE (double_register_high_names))
170
6.84k
    return double_register_high_names[reg];
171
0
  return _("<invalid register number>");
172
6.84k
}
173
174
static inline const char *
175
get_double_register_low_name (unsigned int reg)
176
5.89k
{
177
5.89k
  if (reg < ARRAY_SIZE (double_register_low_names))
178
5.89k
    return double_register_low_names[reg];
179
0
  return _("<invalid register number>");
180
5.89k
}
181
182
static inline const char *
183
get_double_control_register_name (unsigned int reg)
184
6.01k
{
185
6.01k
  if (reg < ARRAY_SIZE (double_control_register_names))
186
1.06k
    return double_control_register_names[reg];
187
4.94k
  return _("<invalid register number>");
188
6.01k
}
189
190
static inline const char *
191
get_double_condition_name (unsigned int cond)
192
3.94k
{
193
3.94k
  if (cond < ARRAY_SIZE (double_condition_names))
194
2.95k
    return double_condition_names[cond];
195
993
  return _("<invalid condition code>");
196
3.94k
}
197
198
static inline const char *
199
get_opsize_name (unsigned int opsize)
200
4.29M
{
201
4.29M
  if (opsize < ARRAY_SIZE (opsize_names))
202
4.29M
    return opsize_names[opsize];
203
0
  return _("<invalid opsize>");
204
4.29M
}
205
206
static inline const char *
207
get_size_name (unsigned int size)
208
1.12M
{
209
1.12M
  if (size < ARRAY_SIZE (size_names))
210
1.12M
    return size_names[size];
211
0
  return _("<invalid size>");
212
1.12M
}
213
214
215
int
216
print_insn_rx (bfd_vma addr, disassemble_info * dis)
217
20.5M
{
218
20.5M
  int rv;
219
20.5M
  RX_Data rx_data;
220
20.5M
  RX_Opcode_Decoded opcode;
221
20.5M
  const char * s;
222
20.5M
  struct private priv;
223
224
20.5M
  dis->private_data = &priv;
225
20.5M
  rx_data.pc = addr;
226
20.5M
  rx_data.dis = dis;
227
228
20.5M
  if (OPCODES_SIGSETJMP (priv.bailout) != 0)
229
5.75k
    {
230
      /* Error return.  */
231
5.75k
      return -1;
232
5.75k
    }
233
234
20.5M
  rv = rx_decode_opcode (addr, &opcode, rx_get_byte, &rx_data);
235
236
20.5M
  dis->bytes_per_line = 10;
237
238
132M
#define PR (dis->fprintf_func)
239
132M
#define PS (dis->stream)
240
108M
#define PC(c) PR (PS, "%c", c)
241
242
  /* Detect illegal instructions.  */
243
20.5M
  if (opcode.op[0].size == RX_Bad_Size
244
20.4M
      || register_names [opcode.op[0].reg] == NULL
245
20.4M
      || register_names [opcode.op[1].reg] == NULL
246
20.4M
      || register_names [opcode.op[2].reg] == NULL)
247
55.8k
    {
248
55.8k
      bfd_byte buf[10];
249
55.8k
      int i;
250
251
55.8k
      PR (PS, ".byte ");
252
55.8k
      rx_data.dis->read_memory_func (rx_data.pc - rv, buf, rv, rx_data.dis);
253
      
254
292k
      for (i = 0 ; i < rv; i++)
255
236k
  PR (PS, "0x%02x ", buf[i]);
256
55.8k
      return rv;
257
55.8k
    }
258
      
259
156M
  for (s = opcode.syntax; *s; s++)
260
135M
    {
261
135M
      if (*s != '%')
262
108M
  {
263
108M
    PC (*s);
264
108M
  }
265
27.2M
      else
266
27.2M
  {
267
27.2M
    RX_Opcode_Operand * oper;
268
27.2M
    int do_size = 0;
269
27.2M
    int do_hex = 0;
270
27.2M
    int do_addr = 0;
271
272
27.2M
    s ++;
273
274
27.2M
    if (*s == 'S')
275
1.51M
      {
276
1.51M
        do_size = 1;
277
1.51M
        s++;
278
1.51M
      }
279
27.2M
    if (*s == 'x')
280
0
      {
281
0
        do_hex = 1;
282
0
        s++;
283
0
      }
284
27.2M
    if (*s == 'a')
285
3.23M
      {
286
3.23M
        do_addr = 1;
287
3.23M
        s++;
288
3.23M
      }
289
290
27.2M
    switch (*s)
291
27.2M
      {
292
0
      case '%':
293
0
        PC ('%');
294
0
        break;
295
296
4.29M
      case 's':
297
4.29M
        PR (PS, "%s", get_opsize_name (opcode.size));
298
4.29M
        break;
299
300
367
      case 'b':
301
367
        s ++;
302
367
        if (*s == 'f')
303
367
    {
304
367
      int imm = opcode.op[2].addend;
305
367
      int slsb, dlsb, width;
306
307
367
      dlsb = (imm >> 5) & 0x1f;
308
367
      slsb = (imm & 0x1f);
309
367
      slsb = (slsb >= 0x10?(slsb ^ 0x1f) + 1:slsb);
310
367
      slsb = dlsb - slsb;
311
367
      slsb = (slsb < 0?-slsb:slsb);
312
367
      width = ((imm >> 10) & 0x1f) - dlsb;
313
367
      PR (PS, "#%d, #%d, #%d, %s, %s",
314
367
          slsb, dlsb, width,
315
367
          get_register_name (opcode.op[1].reg),
316
367
          get_register_name (opcode.op[0].reg));
317
367
    }
318
367
        break;
319
10.2M
      case '0':
320
20.5M
      case '1':
321
22.9M
      case '2':
322
22.9M
        oper = opcode.op + (*s - '0');
323
22.9M
        if (do_size)
324
1.51M
    {
325
1.51M
      if (oper->type == RX_Operand_Indirect || oper->type == RX_Operand_Zero_Indirect)
326
1.12M
        PR (PS, "%s", get_size_name (oper->size));
327
1.51M
    }
328
21.4M
        else
329
21.4M
    switch (oper->type)
330
21.4M
      {
331
5.26M
      case RX_Operand_Immediate:
332
5.26M
        if (do_addr)
333
3.23M
          dis->print_address_func (oper->addend, dis);
334
2.03M
        else if (do_hex
335
2.03M
           || oper->addend > 999
336
1.80M
           || oper->addend < -999)
337
335k
          PR (PS, "%#x", oper->addend);
338
1.69M
        else
339
1.69M
          PR (PS, "%d", oper->addend);
340
5.26M
        break;
341
7.97M
      case RX_Operand_Register:
342
8.02M
      case RX_Operand_TwoReg:
343
8.02M
        PR (PS, "%s", get_register_name (oper->reg));
344
8.02M
        break;
345
4.41M
      case RX_Operand_Indirect:
346
4.41M
        PR (PS, "%d[%s]", oper->addend, get_register_name (oper->reg));
347
4.41M
        break;
348
1.46M
      case RX_Operand_Zero_Indirect:
349
1.46M
        PR (PS, "[%s]", get_register_name (oper->reg));
350
1.46M
        break;
351
3.74k
      case RX_Operand_Postinc:
352
3.74k
        PR (PS, "[%s+]", get_register_name (oper->reg));
353
3.74k
        break;
354
5.63k
      case RX_Operand_Predec:
355
5.63k
        PR (PS, "[-%s]", get_register_name (oper->reg));
356
5.63k
        break;
357
2.11M
      case RX_Operand_Condition:
358
2.11M
        PR (PS, "%s", get_condition_name (oper->reg));
359
2.11M
        break;
360
7.81k
      case RX_Operand_Flag:
361
7.81k
        PR (PS, "%s", get_flag_name (oper->reg));
362
7.81k
        break;
363
82.9k
      case RX_Operand_DoubleReg:
364
82.9k
        PR (PS, "%s", get_double_register_name (oper->reg));
365
82.9k
        break;
366
6.84k
      case RX_Operand_DoubleRegH:
367
6.84k
        PR (PS, "%s", get_double_register_high_name (oper->reg));
368
6.84k
        break;
369
5.89k
      case RX_Operand_DoubleRegL:
370
5.89k
        PR (PS, "%s", get_double_register_low_name (oper->reg));
371
5.89k
        break;
372
6.01k
      case RX_Operand_DoubleCReg:
373
6.01k
        PR (PS, "%s", get_double_control_register_name (oper->reg));
374
6.01k
        break;
375
3.94k
      case RX_Operand_DoubleCond:
376
3.94k
        PR (PS, "%s", get_double_condition_name (oper->reg));
377
3.94k
        break;
378
0
      default:
379
0
        PR (PS, "[???]");
380
0
        break;
381
21.4M
      }
382
27.2M
      }
383
27.2M
  }
384
135M
    }
385
386
20.4M
  return rv;
387
20.4M
}