Coverage Report

Created: 2026-07-25 10:20

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/binutils-gdb/opcodes/nds32-dis.c
Line
Count
Source
1
/* NDS32-specific support for 32-bit ELF.
2
   Copyright (C) 2012-2026 Free Software Foundation, Inc.
3
   Contributed by Andes Technology Corporation.
4
5
   This file is part of BFD, the Binary File Descriptor library.
6
7
   This program is free software; you can redistribute it and/or modify
8
   it under the terms of the GNU General Public License as published by
9
   the Free Software Foundation; either version 3 of the License, or
10
   (at your option) any later version.
11
12
   This program is distributed in the hope that it will be useful,
13
   but WITHOUT ANY WARRANTY; without even the implied warranty of
14
   MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
15
   GNU General Public License for more details.
16
17
   You should have received a copy of the GNU General Public License
18
   along with this program; if not, write to the Free Software
19
   Foundation, Inc., 51 Franklin Street - Fifth Floor, Boston, MA
20
   02110-1301, USA.  */
21
22
#include "sysdep.h"
23
#include <stdio.h>
24
#include "ansidecl.h"
25
#include "disassemble.h"
26
#include "bfd.h"
27
#include "symcat.h"
28
#include "libiberty.h"
29
#include "opintl.h"
30
#include <stdint.h>
31
#include "hashtab.h"
32
#include "nds32-asm.h"
33
#include "opcode/nds32.h"
34
35
/* Get fields macro define.  */
36
910k
#define MASK_OP(insn, mask) ((insn) & (0x3f << 25 | (mask)))
37
38
/* For mapping symbol.  */
39
enum map_type
40
{
41
  MAP_DATA0,
42
  MAP_DATA1,
43
  MAP_DATA2,
44
  MAP_DATA3,
45
  MAP_DATA4,
46
  MAP_CODE,
47
};
48
49
struct nds32_private_data
50
{
51
  /* Whether any mapping symbols are present in the provided symbol
52
     table.  -1 if we do not know yet, otherwise 0 or 1.  */
53
  int has_mapping_symbols;
54
55
  /* Track the last type (although this doesn't seem to be useful).  */
56
  enum map_type last_mapping_type;
57
58
  /* Tracking symbol table information.  */
59
  int last_symbol_index;
60
  bfd_vma last_addr;
61
};
62
63
/* Default text to print if an instruction isn't recognized.  */
64
279k
#define UNKNOWN_INSN_MSG _("*unknown*")
65
5.35M
#define NDS32_PARSE_INSN16      0x01
66
1.01M
#define NDS32_PARSE_INSN32      0x02
67
68
static uint32_t nds32_mask_opcode (uint32_t);
69
static void nds32_special_opcode (uint32_t, struct nds32_opcode **);
70
static int get_mapping_symbol_type (struct disassemble_info *, int,
71
            enum map_type *);
72
static int is_mapping_symbol (struct disassemble_info *, int,
73
            enum map_type *);
74
75
/* Hash function for disassemble.  */
76
77
static htab_t opcode_htab;
78
79
/* Find the value map register name.  */
80
81
static const keyword_t *
82
nds32_find_reg_keyword (const keyword_t *reg, int value)
83
1.57M
{
84
1.57M
  if (!reg)
85
0
    return NULL;
86
87
13.7M
  while (reg->name != NULL && reg->value != value)
88
12.1M
    {
89
12.1M
      reg++;
90
12.1M
    }
91
1.57M
  if (reg->name == NULL)
92
5.56k
    return NULL;
93
1.57M
  return reg;
94
1.57M
}
95
96
static void
97
nds32_parse_audio_ext (const field_t *pfd,
98
           disassemble_info *info, uint32_t insn)
99
83.3k
{
100
83.3k
  fprintf_ftype func = info->fprintf_func;
101
83.3k
  void *stream = info->stream;
102
83.3k
  const keyword_t *psys_reg;
103
83.3k
  int int_value, new_value;
104
105
83.3k
  if (pfd->hw_res == HW_INT || pfd->hw_res == HW_UINT)
106
1.40k
    {
107
1.40k
      if (pfd->hw_res == HW_INT)
108
0
  int_value = (unsigned) N32_IMMS (insn >> pfd->bitpos,
109
0
           pfd->bitsize) << pfd->shift;
110
1.40k
      else
111
1.40k
  int_value = __GF (insn, pfd->bitpos, pfd->bitsize) << pfd->shift;
112
113
1.40k
      if (int_value < 10)
114
146
  func (stream, "#%d", int_value);
115
1.26k
      else
116
1.26k
  func (stream, "#0x%x", int_value);
117
1.40k
      return;
118
1.40k
    }
119
81.9k
  int_value =
120
81.9k
    __GF (insn, pfd->bitpos, pfd->bitsize) << pfd->shift;
121
81.9k
  new_value = int_value;
122
81.9k
  psys_reg = (keyword_t*) nds32_keywords[pfd->hw_res];
123
124
  /* p = bit[4].bit[1:0], r = bit[4].bit[3:2].  */
125
81.9k
  if (strcmp (pfd->name, "im5_i") == 0)
126
4.01k
    {
127
4.01k
      new_value = int_value & 0x03;
128
4.01k
      new_value |= ((int_value & 0x10) >> 2);
129
4.01k
    }
130
77.9k
  else if (strcmp (pfd->name, "im5_m") == 0)
131
4.01k
    {
132
4.01k
      new_value = ((int_value & 0x1C) >> 2);
133
4.01k
    }
134
  /* p = 0.bit[1:0], r = 0.bit[3:2].  */
135
  /* q = 1.bit[1:0], s = 1.bit[5:4].  */
136
73.9k
  else if (strcmp (pfd->name, "im6_iq") == 0)
137
6.29k
    {
138
6.29k
      new_value |= 0x04;
139
6.29k
    }
140
67.6k
  else if (strcmp (pfd->name, "im6_ms") == 0)
141
6.29k
    {
142
6.29k
      new_value |= 0x04;
143
6.29k
    }
144
  /*  Rt CONCAT(c, t21, t0).  */
145
61.3k
  else if (strcmp (pfd->name, "a_rt21") == 0)
146
1.16k
    {
147
1.16k
      new_value = (insn & 0x00000020) >> 5;
148
1.16k
      new_value |= (insn & 0x00000C00) >> 9;
149
1.16k
      new_value |= (insn & 0x00008000) >> 12;
150
1.16k
    }
151
60.1k
  else if (strcmp (pfd->name, "a_rte") == 0)
152
4.11k
    {
153
4.11k
      new_value = (insn & 0x00000C00) >> 9;
154
4.11k
      new_value |= (insn & 0x00008000) >> 12;
155
4.11k
    }
156
56.0k
  else if (strcmp (pfd->name, "a_rte1") == 0)
157
4.11k
    {
158
4.11k
      new_value = (insn & 0x00000C00) >> 9;
159
4.11k
      new_value |= (insn & 0x00008000) >> 12;
160
4.11k
      new_value |= 0x01;
161
4.11k
    }
162
51.9k
  else if (strcmp (pfd->name, "a_rte69") == 0)
163
353
    {
164
353
      new_value = int_value << 1;
165
353
    }
166
51.5k
  else if (strcmp (pfd->name, "a_rte69_1") == 0)
167
353
    {
168
353
      new_value = int_value << 1;
169
353
      new_value |= 0x01;
170
353
    }
171
172
81.9k
  psys_reg = nds32_find_reg_keyword (psys_reg, new_value);
173
81.9k
  if (!psys_reg)
174
208
    func (stream, "???");
175
81.7k
  else
176
81.7k
    func (stream, "$%s", psys_reg->name);
177
81.9k
}
178
179
/* Match instruction opcode with keyword table.  */
180
181
static field_t *
182
match_field (char *name)
183
3.46M
{
184
3.46M
  field_t *pfd;
185
3.46M
  int k;
186
187
3.46M
  for (k = 0; k < NDS32_CORE_COUNT; k++)
188
3.46M
    {
189
3.46M
      pfd = (field_t *) nds32_field_table[k];
190
108M
      while (1)
191
108M
  {
192
108M
    if (pfd->name == NULL)
193
0
      break;
194
108M
    if (strcmp (name, pfd->name) == 0)
195
3.46M
      return pfd;
196
105M
    pfd++;
197
105M
  }
198
3.46M
    }
199
200
0
  return NULL;
201
3.46M
}
202
203
/* Dump instruction.  If the opcode is unknown, return FALSE.  */
204
205
static void
206
nds32_parse_opcode (struct nds32_opcode *opc, bfd_vma pc ATTRIBUTE_UNUSED,
207
        disassemble_info *info, uint32_t insn,
208
        uint32_t parse_mode)
209
1.59M
{
210
1.59M
  int op = 0;
211
1.59M
  fprintf_ftype func = info->fprintf_func;
212
1.59M
  void *stream = info->stream;
213
1.59M
  const char *pstr_src;
214
1.59M
  char *pstr_tmp;
215
1.59M
  char tmp_string[16];
216
1.59M
  unsigned int push25gpr = 0, lsmwRb, lsmwRe, lsmwEnb4, checkbit, i;
217
1.59M
  int int_value, ifthe1st = 1;
218
1.59M
  const field_t *pfd;
219
1.59M
  const keyword_t *psys_reg;
220
221
1.59M
  if (opc == NULL)
222
279k
    {
223
279k
      func (stream, UNKNOWN_INSN_MSG);
224
279k
      return;
225
279k
    }
226
227
1.31M
  pstr_src = opc->instruction;
228
1.31M
  if (*pstr_src == 0)
229
555
    {
230
555
      func (stream, "%s", opc->opcode);
231
555
      return;
232
555
    }
233
  /* NDS32_PARSE_INSN16.  */
234
1.31M
  if (parse_mode & NDS32_PARSE_INSN16)
235
552k
    {
236
552k
      func (stream, "%s ", opc->opcode);
237
552k
    }
238
239
  /* NDS32_PARSE_INSN32.  */
240
758k
  else
241
758k
    {
242
758k
      op = N32_OP6 (insn);
243
758k
      if (op == N32_OP6_LSMW)
244
7.51k
  func (stream, "%s.", opc->opcode);
245
750k
      else if (strstr (opc->instruction, "tito"))
246
391
  func (stream, "%s", opc->opcode);
247
750k
      else
248
750k
  func (stream, "%s\t", opc->opcode);
249
758k
    }
250
251
9.63M
  while (*pstr_src)
252
8.32M
    {
253
8.32M
      switch (*pstr_src)
254
8.32M
  {
255
2.53M
  case '%':
256
3.46M
  case '=':
257
3.46M
  case '&':
258
3.46M
    pstr_src++;
259
    /* Compare with nds32_operand_fields[].name.  */
260
3.46M
    pstr_tmp = &tmp_string[0];
261
14.0M
    while (*pstr_src)
262
13.3M
      {
263
13.3M
        if ((*pstr_src == ',') || (*pstr_src == ' ')
264
11.8M
      || (*pstr_src == '{') || (*pstr_src == '}')
265
10.7M
      || (*pstr_src == '[') || (*pstr_src == ']')
266
10.5M
      || (*pstr_src == '(') || (*pstr_src == ')')
267
10.5M
      || (*pstr_src == '+') || (*pstr_src == '<'))
268
2.75M
    break;
269
10.5M
        *pstr_tmp++ = *pstr_src++;
270
10.5M
      }
271
3.46M
    *pstr_tmp = 0;
272
273
3.46M
    if ((pfd = match_field (&tmp_string[0])) == NULL)
274
0
      return;
275
276
    /* For insn-16.  */
277
3.46M
    if (parse_mode & NDS32_PARSE_INSN16)
278
1.15M
      {
279
1.15M
        if (pfd->hw_res == HW_GPR)
280
805k
    {
281
805k
      int_value =
282
805k
        __GF (insn, pfd->bitpos, pfd->bitsize) << pfd->shift;
283
      /* push25/pop25.  */
284
805k
      if ((opc->value == 0xfc00) || (opc->value == 0xfc80))
285
3.94k
        {
286
3.94k
          if (int_value == 0)
287
807
      int_value = 6;
288
3.13k
          else
289
3.13k
      int_value = (6 + (0x01 << int_value));
290
3.94k
          push25gpr = int_value;
291
3.94k
        }
292
801k
      else if (strcmp (pfd->name, "rt4") == 0)
293
99.5k
        {
294
99.5k
          int_value = nds32_r45map[int_value];
295
99.5k
        }
296
805k
      func (stream, "$%s", nds32_keyword_gpr[int_value].name);
297
805k
    }
298
351k
        else if ((pfd->hw_res == HW_INT) || (pfd->hw_res == HW_UINT))
299
351k
    {
300
351k
      if (pfd->hw_res == HW_INT)
301
143k
        int_value
302
143k
          = (unsigned) N32_IMMS (insn >> pfd->bitpos,
303
143k
               pfd->bitsize) << pfd->shift;
304
208k
      else
305
208k
        int_value =
306
208k
          __GF (insn, pfd->bitpos, pfd->bitsize) << pfd->shift;
307
308
      /* movpi45.  */
309
351k
      if (opc->value == 0xfa00)
310
12.9k
        {
311
12.9k
          int_value += 16;
312
12.9k
          func (stream, "#0x%x", int_value);
313
12.9k
        }
314
      /* lwi45.fe.  */
315
338k
      else if (opc->value == 0xb200)
316
5.82k
        {
317
5.82k
          int_value = 0 - (128 - int_value);
318
5.82k
          func (stream, "#%d", int_value);
319
5.82k
        }
320
      /* beqz38/bnez38/beqs38/bnes38/j8/beqzs8/bnezs8.  */
321
332k
      else if ((opc->value == 0xc000) || (opc->value == 0xc800)
322
273k
         || (opc->value == 0xd000) || (opc->value == 0xd800)
323
231k
         || (opc->value == 0xd500) || (opc->value == 0xe800)
324
222k
         || (opc->value == 0xe900))
325
113k
        {
326
113k
          info->print_address_func (int_value + pc, info);
327
113k
        }
328
      /* push25/pop25.  */
329
218k
      else if ((opc->value == 0xfc00) || (opc->value == 0xfc80))
330
3.94k
        {
331
3.94k
          func (stream, "#%d    ! {$r6", int_value);
332
3.94k
          if (push25gpr != 6)
333
3.13k
      func (stream, "~$%s", nds32_keyword_gpr[push25gpr].name);
334
3.94k
          func (stream, ", $fp, $gp, $lp}");
335
3.94k
        }
336
214k
      else if (pfd->hw_res == HW_INT)
337
29.1k
        {
338
29.1k
          if (int_value < 10)
339
23.1k
      func (stream, "#%d", int_value);
340
6.00k
          else
341
6.00k
      func (stream, "#0x%x", int_value);
342
29.1k
        }
343
185k
      else /* if (pfd->hw_res == HW_UINT).  */
344
185k
        {
345
185k
          if (int_value < 10)
346
75.5k
      func (stream, "#%u", int_value);
347
110k
          else
348
110k
      func (stream, "#0x%x", int_value);
349
185k
        }
350
351k
    }
351
352
1.15M
      }
353
    /* for audio-ext.  */
354
2.31M
    else if (op == N32_OP6_AEXT)
355
83.3k
      {
356
83.3k
        nds32_parse_audio_ext (pfd, info, insn);
357
83.3k
      }
358
    /* for insn-32.  */
359
2.22M
    else if (pfd->hw_res < HW_INT)
360
1.49M
      {
361
1.49M
        int_value =
362
1.49M
    __GF (insn, pfd->bitpos, pfd->bitsize) << pfd->shift;
363
364
1.49M
        psys_reg = *(nds32_keyword_table[pfd->hw_res >> 8]
365
1.49M
         + (pfd->hw_res & 0xff));
366
367
1.49M
        psys_reg = nds32_find_reg_keyword (psys_reg, int_value);
368
        /* For HW_SR, dump the index when it can't
369
     map the register name.  */
370
1.49M
        if (!psys_reg && pfd->hw_res == HW_SR)
371
1.12k
    func (stream, "%d", int_value);
372
1.49M
        else if (!psys_reg)
373
4.23k
    func (stream, "???");
374
1.48M
        else
375
1.48M
    {
376
1.48M
      if (pfd->hw_res == HW_GPR || pfd->hw_res == HW_CPR
377
74.9k
          || pfd->hw_res == HW_FDR || pfd->hw_res == HW_FSR
378
60.2k
          || pfd->hw_res == HW_DXR || pfd->hw_res == HW_SR
379
59.4k
          || pfd->hw_res == HW_USR)
380
1.42M
        func (stream, "$%s", psys_reg->name);
381
59.3k
      else if (pfd->hw_res == HW_DTITON
382
59.1k
         || pfd->hw_res == HW_DTITOFF)
383
382
        func (stream, ".%s", psys_reg->name);
384
58.9k
      else
385
58.9k
        func (stream, "%s", psys_reg->name);
386
1.48M
    }
387
1.49M
      }
388
733k
    else if ((pfd->hw_res == HW_INT) || (pfd->hw_res == HW_UINT))
389
733k
      {
390
733k
        if (pfd->hw_res == HW_INT)
391
670k
    int_value = (unsigned) N32_IMMS (insn >> pfd->bitpos,
392
670k
             pfd->bitsize) << pfd->shift;
393
62.9k
        else
394
62.9k
    int_value =
395
62.9k
      __GF (insn, pfd->bitpos, pfd->bitsize) << pfd->shift;
396
397
733k
        if ((op == N32_OP6_BR1) || (op == N32_OP6_BR2))
398
11.2k
    {
399
11.2k
      info->print_address_func (int_value + pc, info);
400
11.2k
    }
401
722k
        else if ((op == N32_OP6_BR3) && (pfd->bitpos == 0))
402
5.75k
    {
403
5.75k
      info->print_address_func (int_value + pc, info);
404
5.75k
    }
405
716k
        else if (op == N32_OP6_JI)
406
11.4k
    {
407
      /* FIXME: Handle relocation.  */
408
11.4k
      if (info->flags & INSN_HAS_RELOC)
409
0
        pc = 0;
410
11.4k
      info->print_address_func (int_value + pc, info);
411
11.4k
    }
412
705k
        else if (op == N32_OP6_LSMW)
413
7.51k
    {
414
      /* lmw.adm/smw.adm.  */
415
7.51k
      func (stream, "#0x%x    ! {", int_value);
416
7.51k
      lsmwEnb4 = int_value;
417
7.51k
      lsmwRb = ((insn >> 20) & 0x1F);
418
7.51k
      lsmwRe = ((insn >> 10) & 0x1F);
419
420
      /* If [Rb, Re] specifies at least one register,
421
         Rb(4,0) <= Re(4,0) and 0 <= Rb(4,0), Re(4,0) < 28.
422
         Disassembling does not consider this currently because of
423
         the convience comparing with bsp320.  */
424
7.51k
      if (lsmwRb != 31 || lsmwRe != 31)
425
7.35k
        {
426
7.35k
          func (stream, "$%s", nds32_keyword_gpr[lsmwRb].name);
427
7.35k
          if (lsmwRb != lsmwRe)
428
6.48k
      func (stream, "~$%s", nds32_keyword_gpr[lsmwRe].name);
429
7.35k
          ifthe1st = 0;
430
7.35k
        }
431
7.51k
      if (lsmwEnb4 != 0)
432
5.48k
        {
433
          /* $fp, $gp, $lp, $sp.  */
434
5.48k
          checkbit = 0x08;
435
27.4k
          for (i = 0; i < 4; i++)
436
21.9k
      {
437
21.9k
        if (lsmwEnb4 & checkbit)
438
10.2k
          {
439
10.2k
            if (ifthe1st == 1)
440
160
        {
441
160
          ifthe1st = 0;
442
160
          func (stream, "$%s", nds32_keyword_gpr[28 + i].name);
443
160
        }
444
10.0k
            else
445
10.0k
        func (stream, ", $%s", nds32_keyword_gpr[28 + i].name);
446
10.2k
          }
447
21.9k
        checkbit >>= 1;
448
21.9k
      }
449
5.48k
        }
450
7.51k
      func (stream, "}");
451
7.51k
    }
452
697k
        else if (pfd->hw_res == HW_INT)
453
642k
    {
454
642k
      if (int_value < 10)
455
322k
        func (stream, "#%d", int_value);
456
319k
      else
457
319k
        func (stream, "#0x%x", int_value);
458
642k
    }
459
55.4k
        else /* if (pfd->hw_res == HW_UINT).  */
460
55.4k
    {
461
55.4k
      if (int_value < 10)
462
10.2k
        func (stream, "#%u", int_value);
463
45.2k
      else
464
45.2k
        func (stream, "#0x%x", int_value);
465
55.4k
    }
466
733k
      }
467
3.46M
    break;
468
469
534k
  case '{':
470
1.06M
  case '}':
471
1.06M
    pstr_src++;
472
1.06M
    break;
473
474
1.64M
  case ',':
475
1.64M
    func (stream, ", ");
476
1.64M
    pstr_src++;
477
1.64M
    break;
478
    
479
579k
  case '+':
480
579k
    func (stream, " + ");
481
579k
    pstr_src++;
482
579k
    break;
483
    
484
2.74k
  case '<':
485
2.74k
    if (pstr_src[1] == '<')
486
2.74k
      {
487
2.74k
        func (stream, " << ");
488
2.74k
        pstr_src += 2;
489
2.74k
      }
490
0
    else
491
0
      {
492
0
        func (stream, " <");
493
0
        pstr_src++;
494
0
      }
495
2.74k
    break;
496
    
497
1.55M
  default:
498
1.55M
    func (stream, "%c", *pstr_src++);
499
1.55M
    break;
500
8.32M
  }
501
8.32M
    }
502
1.31M
}
503
504
/* Filter instructions with some bits must be fixed.  */
505
506
static void
507
nds32_filter_unknown_insn (uint32_t insn, struct nds32_opcode **opc)
508
1.01M
{
509
1.01M
  if (!(*opc))
510
231k
    return;
511
512
780k
  switch ((*opc)->value)
513
780k
    {
514
1.37k
    case JREG (JR):
515
2.21k
    case JREG (JRNEZ):
516
      /* jr jr.xtoff */
517
2.21k
      if (__GF (insn, 6, 2) != 0 || __GF (insn, 15, 10) != 0)
518
1.49k
        *opc = NULL;
519
2.21k
      break;
520
3.72k
    case MISC (STANDBY):
521
3.72k
      if (__GF (insn, 7, 18) != 0)
522
3.45k
        *opc = NULL;
523
3.72k
      break;
524
2.89k
    case SIMD (PBSAD):
525
3.22k
    case SIMD (PBSADA):
526
3.22k
      if (__GF (insn, 5, 5) != 0)
527
1.62k
        *opc = NULL;
528
3.22k
      break;
529
0
    case BR2 (SOP0):
530
0
      if (__GF (insn, 20, 5) != 0)
531
0
        *opc = NULL;
532
0
      break;
533
503
    case JREG (JRAL):
534
503
      if (__GF (insn, 5, 3) != 0 || __GF (insn, 15, 5) != 0)
535
201
        *opc = NULL;
536
503
      break;
537
1.17k
    case ALU1 (NOR):
538
2.09k
    case ALU1 (SLT):
539
2.88k
    case ALU1 (SLTS):
540
3.99k
    case ALU1 (SLLI):
541
4.48k
    case ALU1 (SRLI):
542
4.97k
    case ALU1 (SRAI):
543
5.30k
    case ALU1 (ROTRI):
544
6.13k
    case ALU1 (SLL):
545
6.34k
    case ALU1 (SRL):
546
7.20k
    case ALU1 (SRA):
547
8.32k
    case ALU1 (ROTR):
548
9.51k
    case ALU1 (SEB):
549
10.2k
    case ALU1 (SEH):
550
11.2k
    case ALU1 (ZEH):
551
11.8k
    case ALU1 (WSBH):
552
13.1k
    case ALU1 (SVA):
553
13.4k
    case ALU1 (SVS):
554
14.0k
    case ALU1 (CMOVZ):
555
14.5k
    case ALU1 (CMOVN):
556
14.5k
      if (__GF (insn, 5, 5) != 0)
557
13.3k
        *opc = NULL;
558
14.5k
      break;
559
1.42k
    case MISC (IRET):
560
1.96k
    case MISC (ISB):
561
2.35k
    case MISC (DSB):
562
2.35k
      if (__GF (insn, 5, 20) != 0)
563
2.18k
        *opc = NULL;
564
2.35k
      break;
565
780k
    }
566
780k
}
567
568
static void
569
print_insn32 (bfd_vma pc, disassemble_info *info, uint32_t insn,
570
        uint32_t parse_mode)
571
1.01M
{
572
  /* Get the final correct opcode and parse.  */
573
1.01M
  struct nds32_opcode *opc;
574
1.01M
  uint32_t opcode = nds32_mask_opcode (insn);
575
1.01M
  opc = (struct nds32_opcode *) htab_find (opcode_htab, &opcode);
576
577
1.01M
  nds32_special_opcode (insn, &opc);
578
1.01M
  nds32_filter_unknown_insn (insn, &opc);
579
1.01M
  nds32_parse_opcode (opc, pc, info, insn, parse_mode);
580
1.01M
}
581
582
static void
583
print_insn16 (bfd_vma pc, disassemble_info *info,
584
        uint32_t insn, uint32_t parse_mode)
585
578k
{
586
578k
  struct nds32_opcode *opc;
587
578k
  uint32_t opcode;
588
589
  /* Get highest 7 bit in default.  */
590
578k
  unsigned int mask = 0xfe00;
591
592
  /* Classify 16-bit instruction to 4 sets by bit 13 and 14.  */
593
578k
  switch (__GF (insn, 13, 2))
594
578k
    {
595
117k
    case 0x0:
596
      /* mov55 movi55 */
597
117k
      if (__GF (insn, 11, 2) == 0)
598
35.3k
  {
599
35.3k
    mask = 0xfc00;
600
    /* ifret16 = mov55 $sp, $sp*/
601
35.3k
    if (__GF (insn, 0, 11) == 0x3ff)
602
206
      mask = 0xffff;
603
35.3k
  }
604
81.9k
      else if (__GF (insn, 9, 4) == 0xb)
605
6.28k
  mask = 0xfe07;
606
117k
      break;
607
106k
    case 0x1:
608
      /* lwi37 swi37 */
609
106k
      if (__GF (insn, 11, 2) == 0x3)
610
22.6k
  mask = 0xf880;
611
106k
      break;
612
106k
    case 0x2:
613
106k
      mask = 0xf800;
614
      /* Exclude beqz38, bnez38, beqs38, and bnes38.  */
615
106k
      if (__GF (insn, 12, 1) == 0x1
616
47.8k
    && __GF (insn, 8, 3) == 0x5)
617
5.92k
  {
618
5.92k
    if (__GF (insn, 11, 1) == 0x0)
619
2.45k
      mask = 0xff00;
620
3.46k
    else
621
3.46k
      mask = 0xffe0;
622
5.92k
  }
623
106k
      break;
624
247k
    case 0x3:
625
247k
      switch (__GF (insn, 11, 2))
626
247k
  {
627
31.8k
  case 0x1:
628
    /* beqzs8 bnezs8 */
629
31.8k
    if (__GF (insn, 9, 2) == 0x0)
630
10.3k
      mask = 0xff00;
631
    /* addi10s */
632
21.4k
    else if (__GF(insn, 10, 1) == 0x1)
633
14.1k
      mask = 0xfc00;
634
31.8k
    break;
635
29.1k
  case 0x2:
636
    /* lwi37.sp swi37.sp */
637
29.1k
    mask = 0xf880;
638
29.1k
    break;
639
158k
  case 0x3:
640
158k
    if (__GF (insn, 8, 3) == 0x5)
641
5.76k
      mask = 0xff00;
642
152k
    else if (__GF (insn, 8, 3) == 0x4)
643
3.94k
      mask = 0xff80;
644
149k
    else if (__GF (insn, 9 , 2) == 0x3)
645
126k
      mask = 0xfe07;
646
158k
    break;
647
247k
  }
648
247k
      break;
649
578k
    }
650
578k
  opcode = insn & mask;
651
578k
  opc = (struct nds32_opcode *) htab_find (opcode_htab, &opcode);
652
653
578k
  nds32_special_opcode (insn, &opc);
654
  /* Get the final correct opcode and parse it.  */
655
578k
  nds32_parse_opcode (opc, pc, info, insn, parse_mode);
656
578k
}
657
658
static hashval_t
659
htab_hash_hash (const void *p)
660
1.59M
{
661
1.59M
  return (*(unsigned int *) p) % 49;
662
1.59M
}
663
664
static int
665
htab_hash_eq (const void *p, const void *q)
666
25.7M
{
667
25.7M
  uint32_t pinsn = ((struct nds32_opcode *) p)->value;
668
25.7M
  uint32_t qinsn = *((uint32_t *) q);
669
670
25.7M
  return (pinsn == qinsn);
671
25.7M
}
672
673
/* Get the format of instruction.  */
674
675
static uint32_t
676
nds32_mask_opcode (uint32_t insn)
677
1.01M
{
678
1.01M
  uint32_t opcode = N32_OP6 (insn);
679
1.01M
  switch (opcode)
680
1.01M
    {
681
334k
    case N32_OP6_LBI:
682
354k
    case N32_OP6_LHI:
683
374k
    case N32_OP6_LWI:
684
385k
    case N32_OP6_LDI:
685
403k
    case N32_OP6_LBI_BI:
686
414k
    case N32_OP6_LHI_BI:
687
424k
    case N32_OP6_LWI_BI:
688
436k
    case N32_OP6_LDI_BI:
689
453k
    case N32_OP6_SBI:
690
459k
    case N32_OP6_SHI:
691
468k
    case N32_OP6_SWI:
692
474k
    case N32_OP6_SDI:
693
482k
    case N32_OP6_SBI_BI:
694
488k
    case N32_OP6_SHI_BI:
695
497k
    case N32_OP6_SWI_BI:
696
502k
    case N32_OP6_SDI_BI:
697
520k
    case N32_OP6_LBSI:
698
528k
    case N32_OP6_LHSI:
699
537k
    case N32_OP6_LWSI:
700
544k
    case N32_OP6_LBSI_BI:
701
553k
    case N32_OP6_LHSI_BI:
702
561k
    case N32_OP6_LWSI_BI:
703
569k
    case N32_OP6_MOVI:
704
577k
    case N32_OP6_SETHI:
705
584k
    case N32_OP6_ADDI:
706
591k
    case N32_OP6_SUBRI:
707
600k
    case N32_OP6_ANDI:
708
607k
    case N32_OP6_XORI:
709
612k
    case N32_OP6_ORI:
710
619k
    case N32_OP6_SLTI:
711
629k
    case N32_OP6_SLTSI:
712
642k
    case N32_OP6_CEXT:
713
650k
    case N32_OP6_BITCI:
714
650k
      return MASK_OP (insn, 0);
715
12.6k
    case N32_OP6_ALU2:
716
      /* FFBI */
717
12.6k
      if (__GF (insn, 0, 7) == (N32_ALU2_FFBI | N32_BIT (6)))
718
257
  return MASK_OP (insn, 0x7f);
719
12.4k
      else if (__GF (insn, 0, 7) == (N32_ALU2_MFUSR | N32_BIT (6))
720
12.2k
         || __GF (insn, 0, 7) == (N32_ALU2_MTUSR | N32_BIT (6)))
721
  /* RDOV CLROV */
722
848
  return MASK_OP (insn, 0xf81ff);
723
11.5k
      else if (__GF (insn, 0, 10) == (N32_ALU2_ONEOP | N32_BIT (7)))
724
163
  {
725
    /* INSB */
726
163
    if (__GF (insn, 12, 3) == 4)
727
89
      return MASK_OP (insn, 0x73ff);
728
74
    return MASK_OP (insn, 0x7fff);
729
163
  }
730
11.4k
      return MASK_OP (insn, 0x3ff);
731
29.3k
    case N32_OP6_ALU1:
732
40.8k
    case N32_OP6_SIMD:
733
40.8k
      return MASK_OP (insn, 0x1f);
734
11.6k
    case N32_OP6_MEM:
735
11.6k
      return MASK_OP (insn, 0xff);
736
12.6k
    case N32_OP6_JREG:
737
12.6k
      return MASK_OP (insn, 0x7f);
738
9.93k
    case N32_OP6_LSMW:
739
9.93k
      return MASK_OP (insn, 0x23);
740
7.05k
    case N32_OP6_SBGP:
741
19.8k
    case N32_OP6_LBGP:
742
19.8k
      return MASK_OP (insn, 0x1 << 19);
743
6.57k
    case N32_OP6_HWGP:
744
6.57k
      if (__GF (insn, 18, 2) == 0x3)
745
2.74k
  return MASK_OP (insn, 0x7 << 17);
746
3.83k
      return MASK_OP (insn, 0x3 << 18);
747
8.27k
    case N32_OP6_DPREFI:
748
8.27k
      return MASK_OP (insn, 0x1 << 24);
749
17.4k
    case N32_OP6_LWC:
750
29.2k
    case N32_OP6_SWC:
751
41.2k
    case N32_OP6_LDC:
752
52.3k
    case N32_OP6_SDC:
753
52.3k
      return MASK_OP (insn, 0x1 << 12);
754
11.4k
    case N32_OP6_JI:
755
11.4k
      return MASK_OP (insn, 0x1 << 24);
756
8.08k
    case N32_OP6_BR1:
757
8.08k
      return MASK_OP (insn, 0x1 << 14);
758
7.57k
    case N32_OP6_BR2:
759
7.57k
      if (__GF (insn, 16, 4) == 0)
760
1.21k
  return MASK_OP (insn, 0x1ff << 16);
761
6.35k
      else
762
6.35k
  return MASK_OP (insn, 0xf << 16);
763
5.75k
    case N32_OP6_BR3:
764
5.75k
      return MASK_OP (insn, 0x1 << 19);
765
17.2k
    case N32_OP6_MISC:
766
17.2k
      switch (__GF (insn, 0, 5))
767
17.2k
  {
768
1.13k
  case N32_MISC_MTSR:
769
    /* SETGIE and SETEND  */
770
1.13k
    if (__GF (insn, 5, 5) == 0x1 || __GF (insn, 5, 5) == 0x2)
771
504
      return MASK_OP (insn, 0x1fffff);
772
631
    return MASK_OP (insn, 0x1f);
773
1.24k
  case N32_MISC_TLBOP:
774
1.24k
    if (__GF (insn, 5, 5) == 5 || __GF (insn, 5, 5) == 7)
775
      /* PB FLUA  */
776
113
      return MASK_OP (insn, 0x3ff);
777
1.13k
    return MASK_OP (insn, 0x1f);
778
14.8k
  default:
779
14.8k
    return MASK_OP (insn, 0x1f);
780
17.2k
  }
781
11.7k
    case N32_OP6_COP:
782
11.7k
      if (__GF (insn, 4, 2) == 0)
783
4.11k
  {
784
    /* FPU */
785
4.11k
    switch (__GF (insn, 0, 4))
786
4.11k
      {
787
1.10k
      case 0x0:
788
1.29k
      case 0x8:
789
        /* FS1/F2OP FD1/F2OP */
790
1.29k
        if (__GF (insn, 6, 4) == 0xf)
791
246
    return MASK_OP (insn, 0x7fff);
792
        /* FS1 FD1 */
793
1.04k
        return MASK_OP (insn, 0x3ff);
794
463
      case 0x4:
795
602
      case 0xc:
796
        /* FS2 */
797
602
        return MASK_OP (insn, 0x3ff);
798
354
      case 0x1:
799
550
      case 0x9:
800
        /* XR */
801
550
        if (__GF (insn, 6, 4) == 0xc)
802
62
    return MASK_OP (insn, 0x7fff);
803
        /* MFCP MTCP */
804
488
        return MASK_OP (insn, 0x3ff);
805
1.66k
      default:
806
1.66k
        return MASK_OP (insn, 0xff);
807
4.11k
      }
808
4.11k
  }
809
7.65k
      else if  (__GF (insn, 0, 2) == 0)
810
1.05k
  return MASK_OP (insn, 0xf);
811
6.60k
      return MASK_OP (insn, 0xcf);
812
23.7k
    case N32_OP6_AEXT:
813
      /* AUDIO */
814
23.7k
      switch (__GF (insn, 23, 2))
815
23.7k
  {
816
9.13k
  case 0x0:
817
9.13k
    if (__GF (insn, 5, 4) == 0)
818
      /* AMxxx AMAyyS AMyyS AMAWzS AMWzS */
819
2.06k
      return MASK_OP (insn, (0x1f << 20) | 0x1ff);
820
7.06k
    else if (__GF (insn, 5, 4) == 1)
821
      /* ALR ASR ALA ASA AUPI */
822
619
      return MASK_OP (insn, (0x1f << 20) | (0xf << 5));
823
6.45k
    else if (__GF (insn, 20, 3) == 0 && __GF (insn, 6, 3) == 1)
824
      /* ALR2 */
825
169
      return MASK_OP (insn, (0x1f << 20) | (0x7 << 6));
826
6.28k
    else if (__GF (insn, 20 ,3) == 2 && __GF (insn, 6, 3) == 1)
827
      /* AWEXT ASATS48 */
828
209
      return MASK_OP (insn, (0x1f << 20) | (0xf << 5));
829
6.07k
    else if (__GF (insn, 20 ,3) == 3 && __GF (insn, 6, 3) == 1)
830
      /* AMTAR AMTAR2 AMFAR AMFAR2 */
831
293
      return MASK_OP (insn, (0x1f << 20) | (0x1f << 5));
832
5.77k
    else if (__GF (insn, 7, 2) == 3)
833
      /* AMxxxSA */
834
741
      return MASK_OP (insn, (0x1f << 20) | (0x3 << 7));
835
5.03k
    else if (__GF (insn, 6, 3) == 2)
836
      /* AMxxxL.S  */
837
563
      return MASK_OP (insn, (0x1f << 20) | (0xf << 5));
838
4.47k
    else
839
      /* AmxxxL.l AmxxxL2.S AMxxxL2.L  */
840
4.47k
      return MASK_OP (insn, (0x1f << 20) | (0x7 << 6));
841
3.21k
  case 0x1:
842
3.21k
    if (__GF (insn, 20, 3) == 0)
843
      /* AADDL ASUBL */
844
353
      return MASK_OP (insn, (0x1f << 20) | (0x1 << 5));
845
2.85k
    else if (__GF (insn, 20, 3) == 1)
846
      /* AMTARI Ix AMTARI Mx */
847
1.21k
      return MASK_OP (insn, (0x1f << 20));
848
1.64k
    else if (__GF (insn, 6, 3) == 2)
849
      /* AMAWzSl.S AMWzSl.S */
850
254
      return MASK_OP (insn, (0x1f << 20) | (0xf << 5));
851
1.39k
    else if (__GF (insn, 7, 2) == 3)
852
      /* AMAWzSSA AMWzSSA */
853
293
      return MASK_OP (insn, (0x1f << 20) | (0x3 << 7));
854
1.10k
    else
855
      /* AMAWzSL.L AMAWzSL2.S AMAWzSL2.L
856
         AMWzSL.L AMWzSL.L AMWzSL2.S */
857
1.10k
      return MASK_OP (insn, (0x1f << 20) | (0x7 << 6));
858
9.45k
  case 0x2:
859
9.45k
    if (__GF (insn, 6, 3) == 2)
860
      /* AMAyySl.S AMWyySl.S */
861
518
      return MASK_OP (insn, (0x1f << 20) | (0xf << 5));
862
8.94k
    else if (__GF (insn, 7, 2) == 3)
863
      /* AMAWyySSA AMWyySSA */
864
795
      return MASK_OP (insn, (0x1f << 20) | (0x3 << 7));
865
8.14k
    else
866
      /* AMAWyySL.L AMAWyySL2.S AMAWyySL2.L
867
         AMWyySL.L AMWyySL.L AMWyySL2.S */
868
8.14k
      return MASK_OP (insn, (0x1f << 20) | (0x7 << 6));
869
23.7k
  }
870
1.99k
      return MASK_OP (insn, 0x1f << 20);
871
101k
    default:
872
101k
      return 1u << 31;
873
1.01M
    }
874
1.01M
}
875
876
/* Define cctl subtype.  */
877
static char *cctl_subtype [] =
878
{
879
  /* 0x0 */
880
  "st0", "st0", "st0", "st2", "st2", "st3", "st3", "st4",
881
  "st1", "st1", "st1", "st0", "st0", NULL, NULL, "st5",
882
  /* 0x10 */
883
  "st0", NULL, NULL, "st2", "st2", "st3", "st3", NULL,
884
  "st1", NULL, NULL, "st0", "st0", NULL, NULL, NULL
885
};
886
887
/* Check the subset of opcode.  */
888
889
static void
890
nds32_special_opcode (uint32_t insn, struct nds32_opcode **opc)
891
1.59M
{
892
1.59M
  char *string = NULL;
893
1.59M
  uint32_t op;
894
895
1.59M
  if (!(*opc))
896
257k
    return;
897
898
  /* Check if special case.  */
899
1.33M
  switch ((*opc)->value)
900
1.33M
    {
901
6.41k
    case OP6 (LWC):
902
11.6k
    case OP6 (SWC):
903
16.2k
    case OP6 (LDC):
904
19.6k
    case OP6 (SDC):
905
30.5k
    case FPU_RA_IMMBI (LWC):
906
37.2k
    case FPU_RA_IMMBI (SWC):
907
44.5k
    case FPU_RA_IMMBI (LDC):
908
52.3k
    case FPU_RA_IMMBI (SDC):
909
      /* Check if cp0 => FPU.  */
910
52.3k
      if (__GF (insn, 13, 2) == 0)
911
9.66k
      {
912
19.3k
  while (!((*opc)->attr & ATTR (FPU)) && (*opc)->next)
913
9.66k
    *opc = (*opc)->next;
914
9.66k
      }
915
52.3k
      break;
916
6.52k
    case ALU1 (ADD):
917
9.64k
    case ALU1 (SUB):
918
10.2k
    case ALU1 (AND):
919
11.5k
    case ALU1 (XOR):
920
12.4k
    case ALU1 (OR):
921
      /* Check if (add/add_slli) (sub/sub_slli) (and/and_slli).  */
922
12.4k
      if (N32_SH5(insn) != 0)
923
10.2k
        string = "sh";
924
12.4k
      break;
925
494
    case ALU1 (SRLI):
926
      /* Check if nop.  */
927
494
      if (__GF (insn, 10, 15) == 0)
928
47
        string = "nop";
929
494
      break;
930
820
    case MISC (CCTL):
931
820
      string = cctl_subtype [__GF (insn, 5, 5)];
932
820
      break;
933
1.37k
    case JREG (JR):
934
1.87k
    case JREG (JRAL):
935
2.21k
    case JREG (JR) | JREG_RET:
936
2.21k
      if (__GF (insn, 8, 2) != 0)
937
818
  string = "tit";
938
2.21k
      break;
939
0
    case N32_OP6_COP:
940
0
      break;
941
7.20k
    case 0x9200:
942
      /* nop16 */
943
7.20k
      if (__GF (insn, 0, 9) == 0)
944
356
  string = "nop16";
945
7.20k
      break;
946
1.33M
    }
947
948
1.33M
  if (string)
949
12.2k
    {
950
24.6k
      while (strstr ((*opc)->opcode, string) == NULL
951
24.2k
       && strstr ((*opc)->instruction, string) == NULL && (*opc)->next)
952
12.4k
  *opc = (*opc)->next;
953
12.2k
      return;
954
12.2k
    }
955
956
  /* Classify instruction is COP or FPU.  */
957
1.32M
  op = N32_OP6 (insn);
958
1.32M
  if (op == N32_OP6_COP && __GF (insn, 4, 2) != 0)
959
2.06k
    {
960
4.67k
      while (((*opc)->attr & ATTR (FPU)) != 0 && (*opc)->next)
961
2.61k
  *opc = (*opc)->next;
962
2.06k
    }
963
1.32M
}
964
965
int
966
print_insn_nds32 (bfd_vma pc, disassemble_info *info)
967
1.59M
{
968
1.59M
  int status;
969
1.59M
  bfd_byte buf[4];
970
1.59M
  bfd_byte buf_data[16];
971
1.59M
  uint64_t given;
972
1.59M
  uint64_t given1;
973
1.59M
  uint32_t insn;
974
1.59M
  int n;
975
1.59M
  int last_symbol_index = -1;
976
1.59M
  bfd_vma addr;
977
1.59M
  int is_data = false;
978
1.59M
  bool found = false;
979
1.59M
  struct nds32_private_data *private_data;
980
1.59M
  unsigned int size;
981
1.59M
  enum map_type mapping_type = MAP_CODE;
982
983
1.59M
  if (info->private_data == NULL)
984
1.25k
    {
985
      /* Note: remain lifecycle throughout whole execution.  */
986
1.25k
      static struct nds32_private_data private;
987
1.25k
      private.has_mapping_symbols = -1; /* unknown yet.  */
988
1.25k
      private.last_symbol_index = -1;
989
1.25k
      private.last_addr = 0;
990
1.25k
      info->private_data = &private;
991
1.25k
    }
992
1.59M
  private_data = info->private_data;
993
994
1.59M
  if (info->symtab_size != 0)
995
1.17k
    {
996
1.17k
      int start;
997
1.17k
      if (pc == 0)
998
13
  start = 0;
999
1.15k
      else
1000
1.15k
  {
1001
1.15k
    start = info->symtab_pos;
1002
1.15k
    if (start < private_data->last_symbol_index)
1003
60
      start = private_data->last_symbol_index;
1004
1.15k
  }
1005
1006
1.17k
      if (0 > start)
1007
813
  start = 0;
1008
1009
1.17k
      if (private_data->has_mapping_symbols != 0
1010
873
    && ((strncmp (".text", info->section->name, 5) == 0)))
1011
116
  {
1012
508
    for (n = start; n < info->symtab_size; n++)
1013
403
      {
1014
403
        addr = bfd_asymbol_value (info->symtab[n]);
1015
403
        if (addr > pc)
1016
11
    break;
1017
392
        if (get_mapping_symbol_type (info, n, &mapping_type))
1018
110
    {
1019
110
      last_symbol_index = n;
1020
110
      found = true;
1021
110
    }
1022
392
      }
1023
1024
116
    if (found)
1025
110
      private_data->has_mapping_symbols = 1;
1026
6
    else if (!found && private_data->has_mapping_symbols == -1)
1027
6
      {
1028
        /* Make sure there are no any mapping symbol.  */
1029
24
        for (n = 0; n < info->symtab_size; n++)
1030
21
    {
1031
21
      if (is_mapping_symbol (info, n, &mapping_type))
1032
3
        {
1033
3
          private_data->has_mapping_symbols = -1;
1034
3
          break;
1035
3
        }
1036
21
    }
1037
6
        if (private_data->has_mapping_symbols == -1)
1038
6
    private_data->has_mapping_symbols = 0;
1039
6
      }
1040
1041
116
    private_data->last_symbol_index = last_symbol_index;
1042
116
    private_data->last_mapping_type = mapping_type;
1043
116
    is_data = (private_data->last_mapping_type == MAP_DATA0
1044
116
         || private_data->last_mapping_type == MAP_DATA1
1045
116
         || private_data->last_mapping_type == MAP_DATA2
1046
116
         || private_data->last_mapping_type == MAP_DATA3
1047
116
         || private_data->last_mapping_type == MAP_DATA4);
1048
116
  }
1049
1.17k
    }
1050
1051
  /* Wonder data or instruction.  */
1052
1.59M
  if (is_data)
1053
0
    {
1054
0
      unsigned int i1;
1055
1056
      /* Fix corner case: there is no next mapping symbol,
1057
   let mapping type decides size */
1058
0
      size = 16;
1059
0
      if (last_symbol_index + 1 >= info->symtab_size)
1060
0
  {
1061
0
    if (mapping_type == MAP_DATA0)
1062
0
      size = 1;
1063
0
    if (mapping_type == MAP_DATA1)
1064
0
      size = 2;
1065
0
    if (mapping_type == MAP_DATA2)
1066
0
      size = 4;
1067
0
    if (mapping_type == MAP_DATA3)
1068
0
      size = 8;
1069
0
    if (mapping_type == MAP_DATA4)
1070
0
      size = 16;
1071
0
  }
1072
0
      for (n = last_symbol_index + 1; n < info->symtab_size; n++)
1073
0
  {
1074
0
    addr = bfd_asymbol_value (info->symtab[n]);
1075
1076
0
    enum map_type fake_mapping_type;
1077
0
    if (get_mapping_symbol_type (info, n, &fake_mapping_type)
1078
0
        && (addr > pc
1079
0
      && ((info->section == NULL)
1080
0
          || (info->section == info->symtab[n]->section)))
1081
0
        && (addr - pc < size))
1082
0
      {
1083
0
        size = addr - pc;
1084
0
        break;
1085
0
      }
1086
0
  }
1087
1088
0
      if (size == 3)
1089
0
  size = (pc & 1) ? 1 : 2;
1090
1091
      /* Read bytes from BFD.  */
1092
0
      info->read_memory_func (pc, buf_data, size, info);
1093
0
      given = 0;
1094
0
      given1 = 0;
1095
      /* Start assembling data.  */
1096
      /* Little endian of data.  */
1097
0
      if (info->endian == BFD_ENDIAN_LITTLE)
1098
0
  {
1099
0
    for (i1 = size - 1;; i1--)
1100
0
      {
1101
0
        if (i1 >= 8)
1102
0
    given1 = buf_data[i1] | (given1 << 8);
1103
0
        else
1104
0
    given = buf_data[i1] | (given << 8);
1105
1106
0
        if (i1 == 0)
1107
0
    break;
1108
0
      }
1109
0
  }
1110
0
      else
1111
0
  {
1112
    /* Big endian of data.  */
1113
0
    for (i1 = 0; i1 < size; i1++)
1114
0
      {
1115
0
        if (i1 <= 7)
1116
0
    given = buf_data[i1] | (given << 8);
1117
0
        else
1118
0
    given1 = buf_data[i1] | (given1 << 8);
1119
0
      }
1120
0
  }
1121
1122
0
      info->bytes_per_line = 4;
1123
1124
0
      if (size == 16)
1125
0
  info->fprintf_func (info->stream, ".qword\t0x%016" PRIx64 "%016" PRIx64,
1126
0
          given, given1);
1127
0
      else if (size == 8)
1128
0
  info->fprintf_func (info->stream, ".dword\t0x%016" PRIx64, given);
1129
0
      else if (size == 4)
1130
0
  info->fprintf_func (info->stream, ".word\t0x%08" PRIx64, given);
1131
0
      else if (size == 2)
1132
0
  {
1133
    /* short */
1134
0
    if (mapping_type == MAP_DATA0)
1135
0
      info->fprintf_func (info->stream, ".byte\t0x%02" PRIx64,
1136
0
        given & 0xFF);
1137
0
    else
1138
0
      info->fprintf_func (info->stream, ".short\t0x%04" PRIx64, given);
1139
0
  }
1140
0
      else
1141
0
  {
1142
    /* byte */
1143
0
    info->fprintf_func (info->stream, ".byte\t0x%02" PRIx64, given);
1144
0
  }
1145
1146
0
      return size;
1147
0
    }
1148
1149
1.59M
  size = 4;
1150
1.59M
  status = info->read_memory_func (pc, buf, 4, info);
1151
1.59M
  if (status)
1152
1.42k
    {
1153
      /* For the last 16-bit instruction.  */
1154
1.42k
      size = 2;
1155
1.42k
      status = info->read_memory_func (pc, buf, 2, info);
1156
1.42k
      if (status)
1157
322
  {
1158
322
    (*info->memory_error_func) (status, pc, info);
1159
322
    return -1;
1160
322
  }
1161
1.09k
      buf[2] = 0;
1162
1.09k
      buf[3] = 0;
1163
1.09k
    }
1164
1165
1.59M
  insn = bfd_getb32 (buf);
1166
  /* 16-bit instruction.  */
1167
1.59M
  if (insn & 0x80000000)
1168
578k
    {
1169
578k
      print_insn16 (pc, info, (insn >> 16), NDS32_PARSE_INSN16);
1170
578k
      return 2;
1171
578k
    }
1172
1173
  /* 32-bit instructions.  */
1174
1.01M
  if (size == 4)
1175
1.01M
    print_insn32 (pc, info, insn, NDS32_PARSE_INSN32);
1176
679
  else
1177
679
    info->fprintf_func (info->stream,
1178
679
      _("insufficient data to decode instruction"));
1179
1.01M
  return 4;
1180
1.59M
}
1181
1182
/* Ignore disassembling unnecessary name.  */
1183
1184
static bool
1185
nds32_symbol_is_valid (asymbol *sym,
1186
           struct disassemble_info *info ATTRIBUTE_UNUSED)
1187
157
{
1188
157
  const char *name;
1189
1190
157
  if (sym == NULL)
1191
0
    return false;
1192
1193
157
  name = bfd_asymbol_name (sym);
1194
1195
  /* Mapping symbol is invalid.  */
1196
157
  if (name[0] == '$')
1197
0
    return false;
1198
157
  return true;
1199
157
}
1200
1201
static void
1202
nds32_add_opcode_hash_table (unsigned indx)
1203
2
{
1204
2
  opcode_t *opc;
1205
1206
2
  opc = nds32_opcode_table[indx];
1207
2
  if (opc == NULL)
1208
0
    return;
1209
1210
1.49k
  while (opc->opcode != NULL)
1211
1.49k
    {
1212
1.49k
      opcode_t **slot;
1213
1214
1.49k
      slot = (opcode_t **) htab_find_slot
1215
1.49k
  (opcode_htab, &opc->value, INSERT);
1216
1.49k
      if (*slot == NULL)
1217
1.27k
  {
1218
    /* This is the new one.  */
1219
1.27k
    *slot = opc;
1220
1.27k
  }
1221
218
      else
1222
218
  {
1223
218
    opcode_t *tmp;
1224
1225
    /* Already exists.  Append to the list.  */
1226
218
    tmp = *slot;
1227
280
    while (tmp->next)
1228
62
      tmp = tmp->next;
1229
218
    tmp->next = opc;
1230
218
    opc->next = NULL;
1231
218
  }
1232
1.49k
      opc++;
1233
1.49k
    }
1234
2
}
1235
1236
void
1237
disassemble_init_nds32 (struct disassemble_info *info)
1238
1.25k
{
1239
1.25k
  static unsigned init_done = 0;
1240
1.25k
  unsigned k;
1241
1242
  /* Set up symbol checking function.  */
1243
1.25k
  info->symbol_is_valid = nds32_symbol_is_valid;
1244
1245
  /* Only need to initialize once:
1246
     High level will call this function for every object file.
1247
     For example, when disassemble all members of a library.  */
1248
1.25k
  if (init_done)
1249
1.25k
    return;
1250
1251
  /* Setup main core.  */
1252
2
  nds32_keyword_table[NDS32_MAIN_CORE] = &nds32_keywords[0];
1253
2
  nds32_opcode_table[NDS32_MAIN_CORE] = &nds32_opcodes[0];
1254
2
  nds32_field_table[NDS32_MAIN_CORE] = &nds32_operand_fields[0];
1255
1256
  /* Build opcode table.  */
1257
2
  opcode_htab = htab_create_alloc (1024, htab_hash_hash, htab_hash_eq,
1258
2
           NULL, xcalloc, free);
1259
1260
4
  for (k = 0; k < NDS32_CORE_COUNT; k++)
1261
2
    {
1262
      /* Add op-codes.  */
1263
2
      nds32_add_opcode_hash_table (k);
1264
2
    }
1265
1266
2
  init_done = 1;
1267
2
}
1268
1269
static int
1270
is_mapping_symbol (struct disassemble_info *info, int n,
1271
       enum map_type *map_type)
1272
359
{
1273
359
  const char *name = NULL;
1274
1275
  /* Get symbol name.  */
1276
359
  name = bfd_asymbol_name (info->symtab[n]);
1277
1278
359
  if (name[1] == 'c')
1279
113
    {
1280
113
      *map_type = MAP_CODE;
1281
113
      return true;
1282
113
    }
1283
246
  else if (name[1] == 'd' && name[2] == '0')
1284
0
    {
1285
0
      *map_type = MAP_DATA0;
1286
0
      return true;
1287
0
    }
1288
246
  else if (name[1] == 'd' && name[2] == '1')
1289
0
    {
1290
0
      *map_type = MAP_DATA1;
1291
0
      return true;
1292
0
    }
1293
246
  else if (name[1] == 'd' && name[2] == '2')
1294
0
    {
1295
0
      *map_type = MAP_DATA2;
1296
0
      return true;
1297
0
    }
1298
246
  else if (name[1] == 'd' && name[2] == '3')
1299
0
    {
1300
0
      *map_type = MAP_DATA3;
1301
0
      return true;
1302
0
    }
1303
246
  else if (name[1] == 'd' && name[2] == '4')
1304
0
    {
1305
0
      *map_type = MAP_DATA4;
1306
0
      return true;
1307
0
    }
1308
1309
246
  return false;
1310
359
}
1311
1312
static int
1313
get_mapping_symbol_type (struct disassemble_info *info, int n,
1314
       enum map_type *map_type)
1315
392
{
1316
  /* If the symbol is in a different section, ignore it.  */
1317
392
  if (info->section != NULL
1318
392
      && info->section != info->symtab[n]->section)
1319
54
    return false;
1320
1321
338
  return is_mapping_symbol (info, n, map_type);
1322
392
}