Coverage Report

Created: 2026-07-25 10:20

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/binutils-gdb/opcodes/fr30-ibld.c
Line
Count
Source
1
/* DO NOT EDIT!  -*- buffer-read-only: t -*- vi:set ro:  */
2
/* Instruction building/extraction support for fr30. -*- C -*-
3
4
   THIS FILE IS MACHINE GENERATED WITH CGEN: Cpu tools GENerator.
5
   - the resultant file is machine generated, cgen-ibld.in isn't
6
7
   Copyright (C) 1996-2026 Free Software Foundation, Inc.
8
9
   This file is part of libopcodes.
10
11
   This library is free software; you can redistribute it and/or modify
12
   it under the terms of the GNU General Public License as published by
13
   the Free Software Foundation; either version 3, or (at your option)
14
   any later version.
15
16
   It is distributed in the hope that it will be useful, but WITHOUT
17
   ANY WARRANTY; without even the implied warranty of MERCHANTABILITY
18
   or FITNESS FOR A PARTICULAR PURPOSE.  See the GNU General Public
19
   License for more details.
20
21
   You should have received a copy of the GNU General Public License
22
   along with this program; if not, write to the Free Software Foundation, Inc.,
23
   51 Franklin Street - Fifth Floor, Boston, MA 02110-1301, USA.  */
24
25
/* ??? Eventually more and more of this stuff can go to cpu-independent files.
26
   Keep that in mind.  */
27
28
#include "sysdep.h"
29
#include <stdio.h>
30
#include "ansidecl.h"
31
#include "dis-asm.h"
32
#include "bfd.h"
33
#include "symcat.h"
34
#include "fr30-desc.h"
35
#include "fr30-opc.h"
36
#include "cgen/basic-modes.h"
37
#include "opintl.h"
38
#include "safe-ctype.h"
39
40
#undef  min
41
0
#define min(a,b) ((a) < (b) ? (a) : (b))
42
#undef  max
43
#define max(a,b) ((a) > (b) ? (a) : (b))
44
45
/* Used by the ifield rtx function.  */
46
4.29k
#define FLD(f) (fields->f)
47
48
static const char * insert_normal
49
  (CGEN_CPU_DESC, long, unsigned int, unsigned int, unsigned int,
50
   unsigned int, unsigned int, unsigned int, CGEN_INSN_BYTES_PTR);
51
static const char * insert_insn_normal
52
  (CGEN_CPU_DESC, const CGEN_INSN *,
53
   CGEN_FIELDS *, CGEN_INSN_BYTES_PTR, bfd_vma);
54
static int extract_normal
55
  (CGEN_CPU_DESC, CGEN_EXTRACT_INFO *, CGEN_INSN_INT,
56
   unsigned int, unsigned int, unsigned int, unsigned int,
57
   unsigned int, unsigned int, bfd_vma, long *);
58
static int extract_insn_normal
59
  (CGEN_CPU_DESC, const CGEN_INSN *, CGEN_EXTRACT_INFO *,
60
   CGEN_INSN_INT, CGEN_FIELDS *, bfd_vma);
61
#if CGEN_INT_INSN_P
62
static void put_insn_int_value
63
  (CGEN_CPU_DESC, CGEN_INSN_BYTES_PTR, int, int, CGEN_INSN_INT);
64
#endif
65
#if ! CGEN_INT_INSN_P
66
static CGEN_INLINE void insert_1
67
  (CGEN_CPU_DESC, unsigned long, int, int, int, unsigned char *);
68
static CGEN_INLINE int fill_cache
69
  (CGEN_CPU_DESC, CGEN_EXTRACT_INFO *,  int, int, bfd_vma);
70
static CGEN_INLINE long extract_1
71
  (CGEN_CPU_DESC, CGEN_EXTRACT_INFO *, int, int, int, unsigned char *, bfd_vma);
72
#endif
73

74
/* Operand insertion.  */
75
76
#if ! CGEN_INT_INSN_P
77
78
/* Subroutine of insert_normal.  */
79
80
static CGEN_INLINE void
81
insert_1 (CGEN_CPU_DESC cd,
82
    unsigned long value,
83
    int start,
84
    int length,
85
    int word_length,
86
    unsigned char *bufp)
87
0
{
88
0
  unsigned long x, mask;
89
0
  int shift;
90
91
0
  x = cgen_get_insn_value (cd, bufp, word_length, cd->endian);
92
93
  /* Written this way to avoid undefined behaviour.  */
94
0
  mask = (1UL << (length - 1) << 1) - 1;
95
0
  if (CGEN_INSN_LSB0_P)
96
0
    shift = (start + 1) - length;
97
0
  else
98
0
    shift = (word_length - (start + length));
99
0
  x = (x & ~(mask << shift)) | ((value & mask) << shift);
100
101
0
  cgen_put_insn_value (cd, bufp, word_length, (bfd_vma) x, cd->endian);
102
0
}
103
104
#endif /* ! CGEN_INT_INSN_P */
105
106
/* Default insertion routine.
107
108
   ATTRS is a mask of the boolean attributes.
109
   WORD_OFFSET is the offset in bits from the start of the insn of the value.
110
   WORD_LENGTH is the length of the word in bits in which the value resides.
111
   START is the starting bit number in the word, architecture origin.
112
   LENGTH is the length of VALUE in bits.
113
   TOTAL_LENGTH is the total length of the insn in bits.
114
115
   The result is an error message or NULL if success.  */
116
117
/* ??? This duplicates functionality with bfd's howto table and
118
   bfd_install_relocation.  */
119
/* ??? This doesn't handle bfd_vma's.  Create another function when
120
   necessary.  */
121
122
static const char *
123
insert_normal (CGEN_CPU_DESC cd,
124
         long value,
125
         unsigned int attrs,
126
         unsigned int word_offset,
127
         unsigned int start,
128
         unsigned int length,
129
         unsigned int word_length,
130
         unsigned int total_length,
131
         CGEN_INSN_BYTES_PTR buffer)
132
0
{
133
0
  static char errbuf[100];
134
0
  unsigned long mask;
135
136
  /* If LENGTH is zero, this operand doesn't contribute to the value.  */
137
0
  if (length == 0)
138
0
    return NULL;
139
140
  /* Written this way to avoid undefined behaviour.  */
141
0
  mask = (1UL << (length - 1) << 1) - 1;
142
143
0
  if (word_length > 8 * sizeof (CGEN_INSN_INT))
144
0
    abort ();
145
146
  /* For architectures with insns smaller than the base-insn-bitsize,
147
     word_length may be too big.  */
148
0
  if (cd->min_insn_bitsize < cd->base_insn_bitsize)
149
0
    {
150
0
      if (word_offset == 0
151
0
    && word_length > total_length)
152
0
  word_length = total_length;
153
0
    }
154
155
  /* Ensure VALUE will fit.  */
156
0
  if (CGEN_BOOL_ATTR (attrs, CGEN_IFLD_SIGN_OPT))
157
0
    {
158
0
      long minval = - (1UL << (length - 1));
159
0
      unsigned long maxval = mask;
160
161
0
      if ((value > 0 && (unsigned long) value > maxval)
162
0
    || value < minval)
163
0
  {
164
    /* xgettext:c-format */
165
0
    sprintf (errbuf,
166
0
       _("operand out of range (%ld not between %ld and %lu)"),
167
0
       value, minval, maxval);
168
0
    return errbuf;
169
0
  }
170
0
    }
171
0
  else if (! CGEN_BOOL_ATTR (attrs, CGEN_IFLD_SIGNED))
172
0
    {
173
0
      unsigned long maxval = mask;
174
0
      unsigned long val = (unsigned long) value;
175
176
      /* For hosts with a word size > 32 check to see if value has been sign
177
   extended beyond 32 bits.  If so then ignore these higher sign bits
178
   as the user is attempting to store a 32-bit signed value into an
179
   unsigned 32-bit field which is allowed.  */
180
0
      if (sizeof (unsigned long) > 4 && ((value >> 32) == -1))
181
0
  val &= 0xFFFFFFFF;
182
183
0
      if (val > maxval)
184
0
  {
185
    /* xgettext:c-format */
186
0
    sprintf (errbuf,
187
0
       _("operand out of range (0x%lx not between 0 and 0x%lx)"),
188
0
       val, maxval);
189
0
    return errbuf;
190
0
  }
191
0
    }
192
0
  else
193
0
    {
194
0
      if (! cgen_signed_overflow_ok_p (cd))
195
0
  {
196
0
    long minval = - (1UL << (length - 1));
197
0
    long maxval =   (1UL << (length - 1)) - 1;
198
199
0
    if (value < minval || value > maxval)
200
0
      {
201
0
        sprintf
202
    /* xgettext:c-format */
203
0
    (errbuf, _("operand out of range (%ld not between %ld and %ld)"),
204
0
     value, minval, maxval);
205
0
        return errbuf;
206
0
      }
207
0
  }
208
0
    }
209
210
#if CGEN_INT_INSN_P
211
212
  {
213
    int shift_within_word, shift_to_word, shift;
214
215
    /* How to shift the value to BIT0 of the word.  */
216
    shift_to_word = total_length - (word_offset + word_length);
217
218
    /* How to shift the value to the field within the word.  */
219
    if (CGEN_INSN_LSB0_P)
220
      shift_within_word = start + 1 - length;
221
    else
222
      shift_within_word = word_length - start - length;
223
224
    /* The total SHIFT, then mask in the value.  */
225
    shift = shift_to_word + shift_within_word;
226
    *buffer = (*buffer & ~(mask << shift)) | ((value & mask) << shift);
227
  }
228
229
#else /* ! CGEN_INT_INSN_P */
230
231
0
  {
232
0
    unsigned char *bufp = (unsigned char *) buffer + word_offset / 8;
233
234
0
    insert_1 (cd, value, start, length, word_length, bufp);
235
0
  }
236
237
0
#endif /* ! CGEN_INT_INSN_P */
238
239
0
  return NULL;
240
0
}
241
242
/* Default insn builder (insert handler).
243
   The instruction is recorded in CGEN_INT_INSN_P byte order (meaning
244
   that if CGEN_INSN_BYTES_PTR is an int * and thus, the value is
245
   recorded in host byte order, otherwise BUFFER is an array of bytes
246
   and the value is recorded in target byte order).
247
   The result is an error message or NULL if success.  */
248
249
static const char *
250
insert_insn_normal (CGEN_CPU_DESC cd,
251
        const CGEN_INSN * insn,
252
        CGEN_FIELDS * fields,
253
        CGEN_INSN_BYTES_PTR buffer,
254
        bfd_vma pc)
255
0
{
256
0
  const CGEN_SYNTAX *syntax = CGEN_INSN_SYNTAX (insn);
257
0
  unsigned long value;
258
0
  const CGEN_SYNTAX_CHAR_TYPE * syn;
259
260
0
  CGEN_INIT_INSERT (cd);
261
0
  value = CGEN_INSN_BASE_VALUE (insn);
262
263
  /* If we're recording insns as numbers (rather than a string of bytes),
264
     target byte order handling is deferred until later.  */
265
266
#if CGEN_INT_INSN_P
267
268
  put_insn_int_value (cd, buffer, cd->base_insn_bitsize,
269
          CGEN_FIELDS_BITSIZE (fields), value);
270
271
#else
272
273
0
  cgen_put_insn_value (cd, buffer, min ((unsigned) cd->base_insn_bitsize,
274
0
                                        (unsigned) CGEN_FIELDS_BITSIZE (fields)),
275
0
           value, cd->insn_endian);
276
277
0
#endif /* ! CGEN_INT_INSN_P */
278
279
  /* ??? It would be better to scan the format's fields.
280
     Still need to be able to insert a value based on the operand though;
281
     e.g. storing a branch displacement that got resolved later.
282
     Needs more thought first.  */
283
284
0
  for (syn = CGEN_SYNTAX_STRING (syntax); * syn; ++ syn)
285
0
    {
286
0
      const char *errmsg;
287
288
0
      if (CGEN_SYNTAX_CHAR_P (* syn))
289
0
  continue;
290
291
0
      errmsg = (* cd->insert_operand) (cd, CGEN_SYNTAX_FIELD (*syn),
292
0
               fields, buffer, pc);
293
0
      if (errmsg)
294
0
  return errmsg;
295
0
    }
296
297
0
  return NULL;
298
0
}
299
300
#if CGEN_INT_INSN_P
301
/* Cover function to store an insn value into an integral insn.  Must go here
302
   because it needs <prefix>-desc.h for CGEN_INT_INSN_P.  */
303
304
static void
305
put_insn_int_value (CGEN_CPU_DESC cd ATTRIBUTE_UNUSED,
306
        CGEN_INSN_BYTES_PTR buf,
307
        int length,
308
        int insn_length,
309
        CGEN_INSN_INT value)
310
{
311
  /* For architectures with insns smaller than the base-insn-bitsize,
312
     length may be too big.  */
313
  if (length > insn_length)
314
    *buf = value;
315
  else
316
    {
317
      int shift = insn_length - length;
318
      /* Written this way to avoid undefined behaviour.  */
319
      CGEN_INSN_INT mask = length == 0 ? 0 : (1UL << (length - 1) << 1) - 1;
320
321
      *buf = (*buf & ~(mask << shift)) | ((value & mask) << shift);
322
    }
323
}
324
#endif
325

326
/* Operand extraction.  */
327
328
#if ! CGEN_INT_INSN_P
329
330
/* Subroutine of extract_normal.
331
   Ensure sufficient bytes are cached in EX_INFO.
332
   OFFSET is the offset in bytes from the start of the insn of the value.
333
   BYTES is the length of the needed value.
334
   Returns 1 for success, 0 for failure.  */
335
336
static CGEN_INLINE int
337
fill_cache (CGEN_CPU_DESC cd ATTRIBUTE_UNUSED,
338
      CGEN_EXTRACT_INFO *ex_info,
339
      int offset,
340
      int bytes,
341
      bfd_vma pc)
342
7.93k
{
343
  /* It's doubtful that the middle part has already been fetched so
344
     we don't optimize that case.  kiss.  */
345
7.93k
  unsigned int mask;
346
7.93k
  disassemble_info *info = (disassemble_info *) ex_info->dis_info;
347
348
  /* First do a quick check.  */
349
7.93k
  mask = (1 << bytes) - 1;
350
7.93k
  if (((ex_info->valid >> offset) & mask) == mask)
351
7.93k
    return 1;
352
353
  /* Search for the first byte we need to read.  */
354
0
  for (mask = 1 << offset; bytes > 0; --bytes, ++offset, mask <<= 1)
355
0
    if (! (mask & ex_info->valid))
356
0
      break;
357
358
0
  if (bytes)
359
0
    {
360
0
      int status;
361
362
0
      pc += offset;
363
0
      status = (*info->read_memory_func)
364
0
  (pc, ex_info->insn_bytes + offset, bytes, info);
365
366
0
      if (status != 0)
367
0
  {
368
0
    (*info->memory_error_func) (status, pc, info);
369
0
    return 0;
370
0
  }
371
372
0
      ex_info->valid |= ((1 << bytes) - 1) << offset;
373
0
    }
374
375
0
  return 1;
376
0
}
377
378
/* Subroutine of extract_normal.  */
379
380
static CGEN_INLINE long
381
extract_1 (CGEN_CPU_DESC cd,
382
     CGEN_EXTRACT_INFO *ex_info ATTRIBUTE_UNUSED,
383
     int start,
384
     int length,
385
     int word_length,
386
     unsigned char *bufp,
387
     bfd_vma pc ATTRIBUTE_UNUSED)
388
7.93k
{
389
7.93k
  unsigned long x;
390
7.93k
  int shift;
391
392
7.93k
  x = cgen_get_insn_value (cd, bufp, word_length, cd->endian);
393
394
7.93k
  if (CGEN_INSN_LSB0_P)
395
0
    shift = (start + 1) - length;
396
7.93k
  else
397
7.93k
    shift = (word_length - (start + length));
398
7.93k
  return x >> shift;
399
7.93k
}
400
401
#endif /* ! CGEN_INT_INSN_P */
402
403
/* Default extraction routine.
404
405
   INSN_VALUE is the first base_insn_bitsize bits of the insn in host order,
406
   or sometimes less for cases like the m32r where the base insn size is 32
407
   but some insns are 16 bits.
408
   ATTRS is a mask of the boolean attributes.  We only need `SIGNED',
409
   but for generality we take a bitmask of all of them.
410
   WORD_OFFSET is the offset in bits from the start of the insn of the value.
411
   WORD_LENGTH is the length of the word in bits in which the value resides.
412
   START is the starting bit number in the word, architecture origin.
413
   LENGTH is the length of VALUE in bits.
414
   TOTAL_LENGTH is the total length of the insn in bits.
415
416
   Returns 1 for success, 0 for failure.  */
417
418
/* ??? The return code isn't properly used.  wip.  */
419
420
/* ??? This doesn't handle bfd_vma's.  Create another function when
421
   necessary.  */
422
423
static int
424
extract_normal (CGEN_CPU_DESC cd,
425
#if ! CGEN_INT_INSN_P
426
    CGEN_EXTRACT_INFO *ex_info,
427
#else
428
    CGEN_EXTRACT_INFO *ex_info ATTRIBUTE_UNUSED,
429
#endif
430
    CGEN_INSN_INT insn_value,
431
    unsigned int attrs,
432
    unsigned int word_offset,
433
    unsigned int start,
434
    unsigned int length,
435
    unsigned int word_length,
436
    unsigned int total_length,
437
#if ! CGEN_INT_INSN_P
438
    bfd_vma pc,
439
#else
440
    bfd_vma pc ATTRIBUTE_UNUSED,
441
#endif
442
    long *valuep)
443
701k
{
444
701k
  long value, mask;
445
446
  /* If LENGTH is zero, this operand doesn't contribute to the value
447
     so give it a standard value of zero.  */
448
701k
  if (length == 0)
449
0
    {
450
0
      *valuep = 0;
451
0
      return 1;
452
0
    }
453
454
701k
  if (word_length > 8 * sizeof (CGEN_INSN_INT))
455
0
    abort ();
456
457
  /* For architectures with insns smaller than the insn-base-bitsize,
458
     word_length may be too big.  */
459
701k
  if (cd->min_insn_bitsize < cd->base_insn_bitsize)
460
0
    {
461
0
      if (word_offset + word_length > total_length)
462
0
  word_length = total_length - word_offset;
463
0
    }
464
465
  /* Does the value reside in INSN_VALUE, and at the right alignment?  */
466
467
701k
  if (CGEN_INT_INSN_P || (word_offset == 0 && word_length == total_length))
468
693k
    {
469
693k
      if (CGEN_INSN_LSB0_P)
470
0
  value = insn_value >> ((word_offset + start + 1) - length);
471
693k
      else
472
693k
  value = insn_value >> (total_length - ( word_offset + start + length));
473
693k
    }
474
475
7.93k
#if ! CGEN_INT_INSN_P
476
477
7.93k
  else
478
7.93k
    {
479
7.93k
      unsigned char *bufp = ex_info->insn_bytes + word_offset / 8;
480
481
7.93k
      if (word_length > 8 * sizeof (CGEN_INSN_INT))
482
0
  abort ();
483
484
7.93k
      if (fill_cache (cd, ex_info, word_offset / 8, word_length / 8, pc) == 0)
485
0
  {
486
0
    *valuep = 0;
487
0
    return 0;
488
0
  }
489
490
7.93k
      value = extract_1 (cd, ex_info, start, length, word_length, bufp, pc);
491
7.93k
    }
492
493
701k
#endif /* ! CGEN_INT_INSN_P */
494
495
  /* Written this way to avoid undefined behaviour.  */
496
701k
  mask = (1UL << (length - 1) << 1) - 1;
497
498
701k
  value &= mask;
499
  /* sign extend? */
500
701k
  if (CGEN_BOOL_ATTR (attrs, CGEN_IFLD_SIGNED)
501
176k
      && (value & (1UL << (length - 1))))
502
87.7k
    value |= ~mask;
503
504
701k
  *valuep = value;
505
506
701k
  return 1;
507
701k
}
508
509
/* Default insn extractor.
510
511
   INSN_VALUE is the first base_insn_bitsize bits, translated to host order.
512
   The extracted fields are stored in FIELDS.
513
   EX_INFO is used to handle reading variable length insns.
514
   Return the length of the insn in bits, or 0 if no match,
515
   or -1 if an error occurs fetching data (memory_error_func will have
516
   been called).  */
517
518
static int
519
extract_insn_normal (CGEN_CPU_DESC cd,
520
         const CGEN_INSN *insn,
521
         CGEN_EXTRACT_INFO *ex_info,
522
         CGEN_INSN_INT insn_value,
523
         CGEN_FIELDS *fields,
524
         bfd_vma pc)
525
404k
{
526
404k
  const CGEN_SYNTAX *syntax = CGEN_INSN_SYNTAX (insn);
527
404k
  const CGEN_SYNTAX_CHAR_TYPE *syn;
528
529
404k
  CGEN_FIELDS_BITSIZE (fields) = CGEN_INSN_BITSIZE (insn);
530
531
404k
  CGEN_INIT_EXTRACT (cd);
532
533
3.47M
  for (syn = CGEN_SYNTAX_STRING (syntax); *syn; ++syn)
534
3.06M
    {
535
3.06M
      int length;
536
537
3.06M
      if (CGEN_SYNTAX_CHAR_P (*syn))
538
2.11M
  continue;
539
540
948k
      length = (* cd->extract_operand) (cd, CGEN_SYNTAX_FIELD (*syn),
541
948k
          ex_info, insn_value, fields, pc);
542
948k
      if (length <= 0)
543
0
  return length;
544
948k
    }
545
546
  /* We recognized and successfully extracted this insn.  */
547
404k
  return CGEN_INSN_BITSIZE (insn);
548
404k
}
549

550
/* Machine generated code added here.  */
551
552
const char * fr30_cgen_insert_operand
553
  (CGEN_CPU_DESC, int, CGEN_FIELDS *, CGEN_INSN_BYTES_PTR, bfd_vma);
554
555
/* Main entry point for operand insertion.
556
557
   This function is basically just a big switch statement.  Earlier versions
558
   used tables to look up the function to use, but
559
   - if the table contains both assembler and disassembler functions then
560
     the disassembler contains much of the assembler and vice-versa,
561
   - there's a lot of inlining possibilities as things grow,
562
   - using a switch statement avoids the function call overhead.
563
564
   This function could be moved into `parse_insn_normal', but keeping it
565
   separate makes clear the interface between `parse_insn_normal' and each of
566
   the handlers.  It's also needed by GAS to insert operands that couldn't be
567
   resolved during parsing.  */
568
569
const char *
570
fr30_cgen_insert_operand (CGEN_CPU_DESC cd,
571
           int opindex,
572
           CGEN_FIELDS * fields,
573
           CGEN_INSN_BYTES_PTR buffer,
574
           bfd_vma pc ATTRIBUTE_UNUSED)
575
0
{
576
0
  const char * errmsg = NULL;
577
0
  unsigned int total_length = CGEN_FIELDS_BITSIZE (fields);
578
579
0
  switch (opindex)
580
0
    {
581
0
    case FR30_OPERAND_CRI :
582
0
      errmsg = insert_normal (cd, fields->f_CRi, 0, 16, 12, 4, 16, total_length, buffer);
583
0
      break;
584
0
    case FR30_OPERAND_CRJ :
585
0
      errmsg = insert_normal (cd, fields->f_CRj, 0, 16, 8, 4, 16, total_length, buffer);
586
0
      break;
587
0
    case FR30_OPERAND_R13 :
588
0
      break;
589
0
    case FR30_OPERAND_R14 :
590
0
      break;
591
0
    case FR30_OPERAND_R15 :
592
0
      break;
593
0
    case FR30_OPERAND_RI :
594
0
      errmsg = insert_normal (cd, fields->f_Ri, 0, 0, 12, 4, 16, total_length, buffer);
595
0
      break;
596
0
    case FR30_OPERAND_RIC :
597
0
      errmsg = insert_normal (cd, fields->f_Ric, 0, 16, 12, 4, 16, total_length, buffer);
598
0
      break;
599
0
    case FR30_OPERAND_RJ :
600
0
      errmsg = insert_normal (cd, fields->f_Rj, 0, 0, 8, 4, 16, total_length, buffer);
601
0
      break;
602
0
    case FR30_OPERAND_RJC :
603
0
      errmsg = insert_normal (cd, fields->f_Rjc, 0, 16, 8, 4, 16, total_length, buffer);
604
0
      break;
605
0
    case FR30_OPERAND_RS1 :
606
0
      errmsg = insert_normal (cd, fields->f_Rs1, 0, 0, 8, 4, 16, total_length, buffer);
607
0
      break;
608
0
    case FR30_OPERAND_RS2 :
609
0
      errmsg = insert_normal (cd, fields->f_Rs2, 0, 0, 12, 4, 16, total_length, buffer);
610
0
      break;
611
0
    case FR30_OPERAND_CC :
612
0
      errmsg = insert_normal (cd, fields->f_cc, 0, 0, 4, 4, 16, total_length, buffer);
613
0
      break;
614
0
    case FR30_OPERAND_CCC :
615
0
      errmsg = insert_normal (cd, fields->f_ccc, 0, 16, 0, 8, 16, total_length, buffer);
616
0
      break;
617
0
    case FR30_OPERAND_DIR10 :
618
0
      {
619
0
        long value = fields->f_dir10;
620
0
        value = ((USI) (value) >> (2));
621
0
        errmsg = insert_normal (cd, value, 0, 0, 8, 8, 16, total_length, buffer);
622
0
      }
623
0
      break;
624
0
    case FR30_OPERAND_DIR8 :
625
0
      errmsg = insert_normal (cd, fields->f_dir8, 0, 0, 8, 8, 16, total_length, buffer);
626
0
      break;
627
0
    case FR30_OPERAND_DIR9 :
628
0
      {
629
0
        long value = fields->f_dir9;
630
0
        value = ((USI) (value) >> (1));
631
0
        errmsg = insert_normal (cd, value, 0, 0, 8, 8, 16, total_length, buffer);
632
0
      }
633
0
      break;
634
0
    case FR30_OPERAND_DISP10 :
635
0
      {
636
0
        long value = fields->f_disp10;
637
0
        value = ((SI) (value) >> (2));
638
0
        errmsg = insert_normal (cd, value, 0|(1<<CGEN_IFLD_SIGNED), 0, 4, 8, 16, total_length, buffer);
639
0
      }
640
0
      break;
641
0
    case FR30_OPERAND_DISP8 :
642
0
      errmsg = insert_normal (cd, fields->f_disp8, 0|(1<<CGEN_IFLD_SIGNED), 0, 4, 8, 16, total_length, buffer);
643
0
      break;
644
0
    case FR30_OPERAND_DISP9 :
645
0
      {
646
0
        long value = fields->f_disp9;
647
0
        value = ((SI) (value) >> (1));
648
0
        errmsg = insert_normal (cd, value, 0|(1<<CGEN_IFLD_SIGNED), 0, 4, 8, 16, total_length, buffer);
649
0
      }
650
0
      break;
651
0
    case FR30_OPERAND_I20 :
652
0
      {
653
0
{
654
0
  FLD (f_i20_4) = ((UINT) (FLD (f_i20)) >> (16));
655
0
  FLD (f_i20_16) = ((FLD (f_i20)) & (65535));
656
0
}
657
0
        errmsg = insert_normal (cd, fields->f_i20_4, 0, 0, 8, 4, 16, total_length, buffer);
658
0
        if (errmsg)
659
0
          break;
660
0
        errmsg = insert_normal (cd, fields->f_i20_16, 0, 16, 0, 16, 16, total_length, buffer);
661
0
        if (errmsg)
662
0
          break;
663
0
      }
664
0
      break;
665
0
    case FR30_OPERAND_I32 :
666
0
      errmsg = insert_normal (cd, fields->f_i32, 0|(1<<CGEN_IFLD_SIGN_OPT), 16, 0, 32, 32, total_length, buffer);
667
0
      break;
668
0
    case FR30_OPERAND_I8 :
669
0
      errmsg = insert_normal (cd, fields->f_i8, 0, 0, 4, 8, 16, total_length, buffer);
670
0
      break;
671
0
    case FR30_OPERAND_LABEL12 :
672
0
      {
673
0
        long value = fields->f_rel12;
674
0
        value = ((SI) (((value) - (((pc) + (2))))) >> (1));
675
0
        errmsg = insert_normal (cd, value, 0|(1<<CGEN_IFLD_SIGNED)|(1<<CGEN_IFLD_PCREL_ADDR), 0, 5, 11, 16, total_length, buffer);
676
0
      }
677
0
      break;
678
0
    case FR30_OPERAND_LABEL9 :
679
0
      {
680
0
        long value = fields->f_rel9;
681
0
        value = ((SI) (((value) - (((pc) + (2))))) >> (1));
682
0
        errmsg = insert_normal (cd, value, 0|(1<<CGEN_IFLD_SIGNED)|(1<<CGEN_IFLD_PCREL_ADDR), 0, 8, 8, 16, total_length, buffer);
683
0
      }
684
0
      break;
685
0
    case FR30_OPERAND_M4 :
686
0
      {
687
0
        long value = fields->f_m4;
688
0
        value = ((value) & (15));
689
0
        errmsg = insert_normal (cd, value, 0, 0, 8, 4, 16, total_length, buffer);
690
0
      }
691
0
      break;
692
0
    case FR30_OPERAND_PS :
693
0
      break;
694
0
    case FR30_OPERAND_REGLIST_HI_LD :
695
0
      errmsg = insert_normal (cd, fields->f_reglist_hi_ld, 0, 0, 8, 8, 16, total_length, buffer);
696
0
      break;
697
0
    case FR30_OPERAND_REGLIST_HI_ST :
698
0
      errmsg = insert_normal (cd, fields->f_reglist_hi_st, 0, 0, 8, 8, 16, total_length, buffer);
699
0
      break;
700
0
    case FR30_OPERAND_REGLIST_LOW_LD :
701
0
      errmsg = insert_normal (cd, fields->f_reglist_low_ld, 0, 0, 8, 8, 16, total_length, buffer);
702
0
      break;
703
0
    case FR30_OPERAND_REGLIST_LOW_ST :
704
0
      errmsg = insert_normal (cd, fields->f_reglist_low_st, 0, 0, 8, 8, 16, total_length, buffer);
705
0
      break;
706
0
    case FR30_OPERAND_S10 :
707
0
      {
708
0
        long value = fields->f_s10;
709
0
        value = ((SI) (value) >> (2));
710
0
        errmsg = insert_normal (cd, value, 0|(1<<CGEN_IFLD_SIGNED), 0, 8, 8, 16, total_length, buffer);
711
0
      }
712
0
      break;
713
0
    case FR30_OPERAND_U10 :
714
0
      {
715
0
        long value = fields->f_u10;
716
0
        value = ((USI) (value) >> (2));
717
0
        errmsg = insert_normal (cd, value, 0, 0, 8, 8, 16, total_length, buffer);
718
0
      }
719
0
      break;
720
0
    case FR30_OPERAND_U4 :
721
0
      errmsg = insert_normal (cd, fields->f_u4, 0, 0, 8, 4, 16, total_length, buffer);
722
0
      break;
723
0
    case FR30_OPERAND_U4C :
724
0
      errmsg = insert_normal (cd, fields->f_u4c, 0, 0, 12, 4, 16, total_length, buffer);
725
0
      break;
726
0
    case FR30_OPERAND_U8 :
727
0
      errmsg = insert_normal (cd, fields->f_u8, 0, 0, 8, 8, 16, total_length, buffer);
728
0
      break;
729
0
    case FR30_OPERAND_UDISP6 :
730
0
      {
731
0
        long value = fields->f_udisp6;
732
0
        value = ((USI) (value) >> (2));
733
0
        errmsg = insert_normal (cd, value, 0, 0, 8, 4, 16, total_length, buffer);
734
0
      }
735
0
      break;
736
737
0
    default :
738
      /* xgettext:c-format */
739
0
      opcodes_error_handler
740
0
  (_("internal error: unrecognized field %d while building insn"),
741
0
   opindex);
742
0
      abort ();
743
0
  }
744
745
0
  return errmsg;
746
0
}
747
748
int fr30_cgen_extract_operand
749
  (CGEN_CPU_DESC, int, CGEN_EXTRACT_INFO *, CGEN_INSN_INT, CGEN_FIELDS *, bfd_vma);
750
751
/* Main entry point for operand extraction.
752
   The result is <= 0 for error, >0 for success.
753
   ??? Actual values aren't well defined right now.
754
755
   This function is basically just a big switch statement.  Earlier versions
756
   used tables to look up the function to use, but
757
   - if the table contains both assembler and disassembler functions then
758
     the disassembler contains much of the assembler and vice-versa,
759
   - there's a lot of inlining possibilities as things grow,
760
   - using a switch statement avoids the function call overhead.
761
762
   This function could be moved into `print_insn_normal', but keeping it
763
   separate makes clear the interface between `print_insn_normal' and each of
764
   the handlers.  */
765
766
int
767
fr30_cgen_extract_operand (CGEN_CPU_DESC cd,
768
           int opindex,
769
           CGEN_EXTRACT_INFO *ex_info,
770
           CGEN_INSN_INT insn_value,
771
           CGEN_FIELDS * fields,
772
           bfd_vma pc)
773
948k
{
774
  /* Assume success (for those operands that are nops).  */
775
948k
  int length = 1;
776
948k
  unsigned int total_length = CGEN_FIELDS_BITSIZE (fields);
777
778
948k
  switch (opindex)
779
948k
    {
780
609
    case FR30_OPERAND_CRI :
781
609
      length = extract_normal (cd, ex_info, insn_value, 0, 16, 12, 4, 16, total_length, pc, & fields->f_CRi);
782
609
      break;
783
752
    case FR30_OPERAND_CRJ :
784
752
      length = extract_normal (cd, ex_info, insn_value, 0, 16, 8, 4, 16, total_length, pc, & fields->f_CRj);
785
752
      break;
786
129k
    case FR30_OPERAND_R13 :
787
129k
      break;
788
109k
    case FR30_OPERAND_R14 :
789
109k
      break;
790
8.99k
    case FR30_OPERAND_R15 :
791
8.99k
      break;
792
297k
    case FR30_OPERAND_RI :
793
297k
      length = extract_normal (cd, ex_info, insn_value, 0, 0, 12, 4, 16, total_length, pc, & fields->f_Ri);
794
297k
      break;
795
221
    case FR30_OPERAND_RIC :
796
221
      length = extract_normal (cd, ex_info, insn_value, 0, 16, 12, 4, 16, total_length, pc, & fields->f_Ric);
797
221
      break;
798
143k
    case FR30_OPERAND_RJ :
799
143k
      length = extract_normal (cd, ex_info, insn_value, 0, 0, 8, 4, 16, total_length, pc, & fields->f_Rj);
800
143k
      break;
801
78
    case FR30_OPERAND_RJC :
802
78
      length = extract_normal (cd, ex_info, insn_value, 0, 16, 8, 4, 16, total_length, pc, & fields->f_Rjc);
803
78
      break;
804
1.83k
    case FR30_OPERAND_RS1 :
805
1.83k
      length = extract_normal (cd, ex_info, insn_value, 0, 0, 8, 4, 16, total_length, pc, & fields->f_Rs1);
806
1.83k
      break;
807
2.04k
    case FR30_OPERAND_RS2 :
808
2.04k
      length = extract_normal (cd, ex_info, insn_value, 0, 0, 12, 4, 16, total_length, pc, & fields->f_Rs2);
809
2.04k
      break;
810
0
    case FR30_OPERAND_CC :
811
0
      length = extract_normal (cd, ex_info, insn_value, 0, 0, 4, 4, 16, total_length, pc, & fields->f_cc);
812
0
      break;
813
830
    case FR30_OPERAND_CCC :
814
830
      length = extract_normal (cd, ex_info, insn_value, 0, 16, 0, 8, 16, total_length, pc, & fields->f_ccc);
815
830
      break;
816
8.22k
    case FR30_OPERAND_DIR10 :
817
8.22k
      {
818
8.22k
        long value;
819
8.22k
        length = extract_normal (cd, ex_info, insn_value, 0, 0, 8, 8, 16, total_length, pc, & value);
820
8.22k
        value = ((value) << (2));
821
8.22k
        fields->f_dir10 = value;
822
8.22k
      }
823
8.22k
      break;
824
8.25k
    case FR30_OPERAND_DIR8 :
825
8.25k
      length = extract_normal (cd, ex_info, insn_value, 0, 0, 8, 8, 16, total_length, pc, & fields->f_dir8);
826
8.25k
      break;
827
5.87k
    case FR30_OPERAND_DIR9 :
828
5.87k
      {
829
5.87k
        long value;
830
5.87k
        length = extract_normal (cd, ex_info, insn_value, 0, 0, 8, 8, 16, total_length, pc, & value);
831
5.87k
        value = ((value) << (1));
832
5.87k
        fields->f_dir9 = value;
833
5.87k
      }
834
5.87k
      break;
835
36.4k
    case FR30_OPERAND_DISP10 :
836
36.4k
      {
837
36.4k
        long value;
838
36.4k
        length = extract_normal (cd, ex_info, insn_value, 0|(1<<CGEN_IFLD_SIGNED), 0, 4, 8, 16, total_length, pc, & value);
839
36.4k
        value = ((value) * (4));
840
36.4k
        fields->f_disp10 = value;
841
36.4k
      }
842
36.4k
      break;
843
41.0k
    case FR30_OPERAND_DISP8 :
844
41.0k
      length = extract_normal (cd, ex_info, insn_value, 0|(1<<CGEN_IFLD_SIGNED), 0, 4, 8, 16, total_length, pc, & fields->f_disp8);
845
41.0k
      break;
846
31.7k
    case FR30_OPERAND_DISP9 :
847
31.7k
      {
848
31.7k
        long value;
849
31.7k
        length = extract_normal (cd, ex_info, insn_value, 0|(1<<CGEN_IFLD_SIGNED), 0, 4, 8, 16, total_length, pc, & value);
850
31.7k
        value = ((value) * (2));
851
31.7k
        fields->f_disp9 = value;
852
31.7k
      }
853
31.7k
      break;
854
1.43k
    case FR30_OPERAND_I20 :
855
1.43k
      {
856
1.43k
        length = extract_normal (cd, ex_info, insn_value, 0, 0, 8, 4, 16, total_length, pc, & fields->f_i20_4);
857
1.43k
        if (length <= 0) break;
858
1.43k
        length = extract_normal (cd, ex_info, insn_value, 0, 16, 0, 16, 16, total_length, pc, & fields->f_i20_16);
859
1.43k
        if (length <= 0) break;
860
1.43k
{
861
1.43k
  FLD (f_i20) = ((((FLD (f_i20_4)) << (16))) | (FLD (f_i20_16)));
862
1.43k
}
863
1.43k
      }
864
0
      break;
865
160
    case FR30_OPERAND_I32 :
866
160
      length = extract_normal (cd, ex_info, insn_value, 0|(1<<CGEN_IFLD_SIGN_OPT), 16, 0, 32, 32, total_length, pc, & fields->f_i32);
867
160
      break;
868
13.0k
    case FR30_OPERAND_I8 :
869
13.0k
      length = extract_normal (cd, ex_info, insn_value, 0, 0, 4, 8, 16, total_length, pc, & fields->f_i8);
870
13.0k
      break;
871
12.2k
    case FR30_OPERAND_LABEL12 :
872
12.2k
      {
873
12.2k
        long value;
874
12.2k
        length = extract_normal (cd, ex_info, insn_value, 0|(1<<CGEN_IFLD_SIGNED)|(1<<CGEN_IFLD_PCREL_ADDR), 0, 5, 11, 16, total_length, pc, & value);
875
12.2k
        value = ((((value) * (2))) + (((pc) + (2))));
876
12.2k
        fields->f_rel12 = value;
877
12.2k
      }
878
12.2k
      break;
879
53.3k
    case FR30_OPERAND_LABEL9 :
880
53.3k
      {
881
53.3k
        long value;
882
53.3k
        length = extract_normal (cd, ex_info, insn_value, 0|(1<<CGEN_IFLD_SIGNED)|(1<<CGEN_IFLD_PCREL_ADDR), 0, 8, 8, 16, total_length, pc, & value);
883
53.3k
        value = ((((value) * (2))) + (((pc) + (2))));
884
53.3k
        fields->f_rel9 = value;
885
53.3k
      }
886
53.3k
      break;
887
2.32k
    case FR30_OPERAND_M4 :
888
2.32k
      {
889
2.32k
        long value;
890
2.32k
        length = extract_normal (cd, ex_info, insn_value, 0, 0, 8, 4, 16, total_length, pc, & value);
891
2.32k
        value = ((value) | (-16));
892
2.32k
        fields->f_m4 = value;
893
2.32k
      }
894
2.32k
      break;
895
599
    case FR30_OPERAND_PS :
896
599
      break;
897
3.18k
    case FR30_OPERAND_REGLIST_HI_LD :
898
3.18k
      length = extract_normal (cd, ex_info, insn_value, 0, 0, 8, 8, 16, total_length, pc, & fields->f_reglist_hi_ld);
899
3.18k
      break;
900
1.37k
    case FR30_OPERAND_REGLIST_HI_ST :
901
1.37k
      length = extract_normal (cd, ex_info, insn_value, 0, 0, 8, 8, 16, total_length, pc, & fields->f_reglist_hi_st);
902
1.37k
      break;
903
1.58k
    case FR30_OPERAND_REGLIST_LOW_LD :
904
1.58k
      length = extract_normal (cd, ex_info, insn_value, 0, 0, 8, 8, 16, total_length, pc, & fields->f_reglist_low_ld);
905
1.58k
      break;
906
2.44k
    case FR30_OPERAND_REGLIST_LOW_ST :
907
2.44k
      length = extract_normal (cd, ex_info, insn_value, 0, 0, 8, 8, 16, total_length, pc, & fields->f_reglist_low_st);
908
2.44k
      break;
909
1.26k
    case FR30_OPERAND_S10 :
910
1.26k
      {
911
1.26k
        long value;
912
1.26k
        length = extract_normal (cd, ex_info, insn_value, 0|(1<<CGEN_IFLD_SIGNED), 0, 8, 8, 16, total_length, pc, & value);
913
1.26k
        value = ((value) * (4));
914
1.26k
        fields->f_s10 = value;
915
1.26k
      }
916
1.26k
      break;
917
2.10k
    case FR30_OPERAND_U10 :
918
2.10k
      {
919
2.10k
        long value;
920
2.10k
        length = extract_normal (cd, ex_info, insn_value, 0, 0, 8, 8, 16, total_length, pc, & value);
921
2.10k
        value = ((value) << (2));
922
2.10k
        fields->f_u10 = value;
923
2.10k
      }
924
2.10k
      break;
925
16.6k
    case FR30_OPERAND_U4 :
926
16.6k
      length = extract_normal (cd, ex_info, insn_value, 0, 0, 8, 4, 16, total_length, pc, & fields->f_u4);
927
16.6k
      break;
928
830
    case FR30_OPERAND_U4C :
929
830
      length = extract_normal (cd, ex_info, insn_value, 0, 0, 12, 4, 16, total_length, pc, & fields->f_u4c);
930
830
      break;
931
4.66k
    case FR30_OPERAND_U8 :
932
4.66k
      length = extract_normal (cd, ex_info, insn_value, 0, 0, 8, 8, 16, total_length, pc, & fields->f_u8);
933
4.66k
      break;
934
3.89k
    case FR30_OPERAND_UDISP6 :
935
3.89k
      {
936
3.89k
        long value;
937
3.89k
        length = extract_normal (cd, ex_info, insn_value, 0, 0, 8, 4, 16, total_length, pc, & value);
938
3.89k
        value = ((value) << (2));
939
3.89k
        fields->f_udisp6 = value;
940
3.89k
      }
941
3.89k
      break;
942
943
0
    default :
944
      /* xgettext:c-format */
945
0
      opcodes_error_handler
946
0
  (_("internal error: unrecognized field %d while decoding insn"),
947
0
   opindex);
948
0
      abort ();
949
948k
    }
950
951
948k
  return length;
952
948k
}
953
954
cgen_insert_fn * const fr30_cgen_insert_handlers[] =
955
{
956
  insert_insn_normal,
957
};
958
959
cgen_extract_fn * const fr30_cgen_extract_handlers[] =
960
{
961
  extract_insn_normal,
962
};
963
964
int fr30_cgen_get_int_operand     (CGEN_CPU_DESC, int, const CGEN_FIELDS *);
965
bfd_vma fr30_cgen_get_vma_operand (CGEN_CPU_DESC, int, const CGEN_FIELDS *);
966
967
/* Getting values from cgen_fields is handled by a collection of functions.
968
   They are distinguished by the type of the VALUE argument they return.
969
   TODO: floating point, inlining support, remove cases where result type
970
   not appropriate.  */
971
972
int
973
fr30_cgen_get_int_operand (CGEN_CPU_DESC cd ATTRIBUTE_UNUSED,
974
           int opindex,
975
           const CGEN_FIELDS * fields)
976
0
{
977
0
  int value;
978
979
0
  switch (opindex)
980
0
    {
981
0
    case FR30_OPERAND_CRI :
982
0
      value = fields->f_CRi;
983
0
      break;
984
0
    case FR30_OPERAND_CRJ :
985
0
      value = fields->f_CRj;
986
0
      break;
987
0
    case FR30_OPERAND_R13 :
988
0
      value = 0;
989
0
      break;
990
0
    case FR30_OPERAND_R14 :
991
0
      value = 0;
992
0
      break;
993
0
    case FR30_OPERAND_R15 :
994
0
      value = 0;
995
0
      break;
996
0
    case FR30_OPERAND_RI :
997
0
      value = fields->f_Ri;
998
0
      break;
999
0
    case FR30_OPERAND_RIC :
1000
0
      value = fields->f_Ric;
1001
0
      break;
1002
0
    case FR30_OPERAND_RJ :
1003
0
      value = fields->f_Rj;
1004
0
      break;
1005
0
    case FR30_OPERAND_RJC :
1006
0
      value = fields->f_Rjc;
1007
0
      break;
1008
0
    case FR30_OPERAND_RS1 :
1009
0
      value = fields->f_Rs1;
1010
0
      break;
1011
0
    case FR30_OPERAND_RS2 :
1012
0
      value = fields->f_Rs2;
1013
0
      break;
1014
0
    case FR30_OPERAND_CC :
1015
0
      value = fields->f_cc;
1016
0
      break;
1017
0
    case FR30_OPERAND_CCC :
1018
0
      value = fields->f_ccc;
1019
0
      break;
1020
0
    case FR30_OPERAND_DIR10 :
1021
0
      value = fields->f_dir10;
1022
0
      break;
1023
0
    case FR30_OPERAND_DIR8 :
1024
0
      value = fields->f_dir8;
1025
0
      break;
1026
0
    case FR30_OPERAND_DIR9 :
1027
0
      value = fields->f_dir9;
1028
0
      break;
1029
0
    case FR30_OPERAND_DISP10 :
1030
0
      value = fields->f_disp10;
1031
0
      break;
1032
0
    case FR30_OPERAND_DISP8 :
1033
0
      value = fields->f_disp8;
1034
0
      break;
1035
0
    case FR30_OPERAND_DISP9 :
1036
0
      value = fields->f_disp9;
1037
0
      break;
1038
0
    case FR30_OPERAND_I20 :
1039
0
      value = fields->f_i20;
1040
0
      break;
1041
0
    case FR30_OPERAND_I32 :
1042
0
      value = fields->f_i32;
1043
0
      break;
1044
0
    case FR30_OPERAND_I8 :
1045
0
      value = fields->f_i8;
1046
0
      break;
1047
0
    case FR30_OPERAND_LABEL12 :
1048
0
      value = fields->f_rel12;
1049
0
      break;
1050
0
    case FR30_OPERAND_LABEL9 :
1051
0
      value = fields->f_rel9;
1052
0
      break;
1053
0
    case FR30_OPERAND_M4 :
1054
0
      value = fields->f_m4;
1055
0
      break;
1056
0
    case FR30_OPERAND_PS :
1057
0
      value = 0;
1058
0
      break;
1059
0
    case FR30_OPERAND_REGLIST_HI_LD :
1060
0
      value = fields->f_reglist_hi_ld;
1061
0
      break;
1062
0
    case FR30_OPERAND_REGLIST_HI_ST :
1063
0
      value = fields->f_reglist_hi_st;
1064
0
      break;
1065
0
    case FR30_OPERAND_REGLIST_LOW_LD :
1066
0
      value = fields->f_reglist_low_ld;
1067
0
      break;
1068
0
    case FR30_OPERAND_REGLIST_LOW_ST :
1069
0
      value = fields->f_reglist_low_st;
1070
0
      break;
1071
0
    case FR30_OPERAND_S10 :
1072
0
      value = fields->f_s10;
1073
0
      break;
1074
0
    case FR30_OPERAND_U10 :
1075
0
      value = fields->f_u10;
1076
0
      break;
1077
0
    case FR30_OPERAND_U4 :
1078
0
      value = fields->f_u4;
1079
0
      break;
1080
0
    case FR30_OPERAND_U4C :
1081
0
      value = fields->f_u4c;
1082
0
      break;
1083
0
    case FR30_OPERAND_U8 :
1084
0
      value = fields->f_u8;
1085
0
      break;
1086
0
    case FR30_OPERAND_UDISP6 :
1087
0
      value = fields->f_udisp6;
1088
0
      break;
1089
1090
0
    default :
1091
      /* xgettext:c-format */
1092
0
      opcodes_error_handler
1093
0
  (_("internal error: unrecognized field %d while getting int operand"),
1094
0
   opindex);
1095
0
      abort ();
1096
0
  }
1097
1098
0
  return value;
1099
0
}
1100
1101
bfd_vma
1102
fr30_cgen_get_vma_operand (CGEN_CPU_DESC cd ATTRIBUTE_UNUSED,
1103
           int opindex,
1104
           const CGEN_FIELDS * fields)
1105
0
{
1106
0
  bfd_vma value;
1107
1108
0
  switch (opindex)
1109
0
    {
1110
0
    case FR30_OPERAND_CRI :
1111
0
      value = fields->f_CRi;
1112
0
      break;
1113
0
    case FR30_OPERAND_CRJ :
1114
0
      value = fields->f_CRj;
1115
0
      break;
1116
0
    case FR30_OPERAND_R13 :
1117
0
      value = 0;
1118
0
      break;
1119
0
    case FR30_OPERAND_R14 :
1120
0
      value = 0;
1121
0
      break;
1122
0
    case FR30_OPERAND_R15 :
1123
0
      value = 0;
1124
0
      break;
1125
0
    case FR30_OPERAND_RI :
1126
0
      value = fields->f_Ri;
1127
0
      break;
1128
0
    case FR30_OPERAND_RIC :
1129
0
      value = fields->f_Ric;
1130
0
      break;
1131
0
    case FR30_OPERAND_RJ :
1132
0
      value = fields->f_Rj;
1133
0
      break;
1134
0
    case FR30_OPERAND_RJC :
1135
0
      value = fields->f_Rjc;
1136
0
      break;
1137
0
    case FR30_OPERAND_RS1 :
1138
0
      value = fields->f_Rs1;
1139
0
      break;
1140
0
    case FR30_OPERAND_RS2 :
1141
0
      value = fields->f_Rs2;
1142
0
      break;
1143
0
    case FR30_OPERAND_CC :
1144
0
      value = fields->f_cc;
1145
0
      break;
1146
0
    case FR30_OPERAND_CCC :
1147
0
      value = fields->f_ccc;
1148
0
      break;
1149
0
    case FR30_OPERAND_DIR10 :
1150
0
      value = fields->f_dir10;
1151
0
      break;
1152
0
    case FR30_OPERAND_DIR8 :
1153
0
      value = fields->f_dir8;
1154
0
      break;
1155
0
    case FR30_OPERAND_DIR9 :
1156
0
      value = fields->f_dir9;
1157
0
      break;
1158
0
    case FR30_OPERAND_DISP10 :
1159
0
      value = fields->f_disp10;
1160
0
      break;
1161
0
    case FR30_OPERAND_DISP8 :
1162
0
      value = fields->f_disp8;
1163
0
      break;
1164
0
    case FR30_OPERAND_DISP9 :
1165
0
      value = fields->f_disp9;
1166
0
      break;
1167
0
    case FR30_OPERAND_I20 :
1168
0
      value = fields->f_i20;
1169
0
      break;
1170
0
    case FR30_OPERAND_I32 :
1171
0
      value = fields->f_i32;
1172
0
      break;
1173
0
    case FR30_OPERAND_I8 :
1174
0
      value = fields->f_i8;
1175
0
      break;
1176
0
    case FR30_OPERAND_LABEL12 :
1177
0
      value = fields->f_rel12;
1178
0
      break;
1179
0
    case FR30_OPERAND_LABEL9 :
1180
0
      value = fields->f_rel9;
1181
0
      break;
1182
0
    case FR30_OPERAND_M4 :
1183
0
      value = fields->f_m4;
1184
0
      break;
1185
0
    case FR30_OPERAND_PS :
1186
0
      value = 0;
1187
0
      break;
1188
0
    case FR30_OPERAND_REGLIST_HI_LD :
1189
0
      value = fields->f_reglist_hi_ld;
1190
0
      break;
1191
0
    case FR30_OPERAND_REGLIST_HI_ST :
1192
0
      value = fields->f_reglist_hi_st;
1193
0
      break;
1194
0
    case FR30_OPERAND_REGLIST_LOW_LD :
1195
0
      value = fields->f_reglist_low_ld;
1196
0
      break;
1197
0
    case FR30_OPERAND_REGLIST_LOW_ST :
1198
0
      value = fields->f_reglist_low_st;
1199
0
      break;
1200
0
    case FR30_OPERAND_S10 :
1201
0
      value = fields->f_s10;
1202
0
      break;
1203
0
    case FR30_OPERAND_U10 :
1204
0
      value = fields->f_u10;
1205
0
      break;
1206
0
    case FR30_OPERAND_U4 :
1207
0
      value = fields->f_u4;
1208
0
      break;
1209
0
    case FR30_OPERAND_U4C :
1210
0
      value = fields->f_u4c;
1211
0
      break;
1212
0
    case FR30_OPERAND_U8 :
1213
0
      value = fields->f_u8;
1214
0
      break;
1215
0
    case FR30_OPERAND_UDISP6 :
1216
0
      value = fields->f_udisp6;
1217
0
      break;
1218
1219
0
    default :
1220
      /* xgettext:c-format */
1221
0
      opcodes_error_handler
1222
0
  (_("internal error: unrecognized field %d while getting vma operand"),
1223
0
   opindex);
1224
0
      abort ();
1225
0
  }
1226
1227
0
  return value;
1228
0
}
1229
1230
void fr30_cgen_set_int_operand  (CGEN_CPU_DESC, int, CGEN_FIELDS *, int);
1231
void fr30_cgen_set_vma_operand  (CGEN_CPU_DESC, int, CGEN_FIELDS *, bfd_vma);
1232
1233
/* Stuffing values in cgen_fields is handled by a collection of functions.
1234
   They are distinguished by the type of the VALUE argument they accept.
1235
   TODO: floating point, inlining support, remove cases where argument type
1236
   not appropriate.  */
1237
1238
void
1239
fr30_cgen_set_int_operand (CGEN_CPU_DESC cd ATTRIBUTE_UNUSED,
1240
           int opindex,
1241
           CGEN_FIELDS * fields,
1242
           int value)
1243
0
{
1244
0
  switch (opindex)
1245
0
    {
1246
0
    case FR30_OPERAND_CRI :
1247
0
      fields->f_CRi = value;
1248
0
      break;
1249
0
    case FR30_OPERAND_CRJ :
1250
0
      fields->f_CRj = value;
1251
0
      break;
1252
0
    case FR30_OPERAND_R13 :
1253
0
      break;
1254
0
    case FR30_OPERAND_R14 :
1255
0
      break;
1256
0
    case FR30_OPERAND_R15 :
1257
0
      break;
1258
0
    case FR30_OPERAND_RI :
1259
0
      fields->f_Ri = value;
1260
0
      break;
1261
0
    case FR30_OPERAND_RIC :
1262
0
      fields->f_Ric = value;
1263
0
      break;
1264
0
    case FR30_OPERAND_RJ :
1265
0
      fields->f_Rj = value;
1266
0
      break;
1267
0
    case FR30_OPERAND_RJC :
1268
0
      fields->f_Rjc = value;
1269
0
      break;
1270
0
    case FR30_OPERAND_RS1 :
1271
0
      fields->f_Rs1 = value;
1272
0
      break;
1273
0
    case FR30_OPERAND_RS2 :
1274
0
      fields->f_Rs2 = value;
1275
0
      break;
1276
0
    case FR30_OPERAND_CC :
1277
0
      fields->f_cc = value;
1278
0
      break;
1279
0
    case FR30_OPERAND_CCC :
1280
0
      fields->f_ccc = value;
1281
0
      break;
1282
0
    case FR30_OPERAND_DIR10 :
1283
0
      fields->f_dir10 = value;
1284
0
      break;
1285
0
    case FR30_OPERAND_DIR8 :
1286
0
      fields->f_dir8 = value;
1287
0
      break;
1288
0
    case FR30_OPERAND_DIR9 :
1289
0
      fields->f_dir9 = value;
1290
0
      break;
1291
0
    case FR30_OPERAND_DISP10 :
1292
0
      fields->f_disp10 = value;
1293
0
      break;
1294
0
    case FR30_OPERAND_DISP8 :
1295
0
      fields->f_disp8 = value;
1296
0
      break;
1297
0
    case FR30_OPERAND_DISP9 :
1298
0
      fields->f_disp9 = value;
1299
0
      break;
1300
0
    case FR30_OPERAND_I20 :
1301
0
      fields->f_i20 = value;
1302
0
      break;
1303
0
    case FR30_OPERAND_I32 :
1304
0
      fields->f_i32 = value;
1305
0
      break;
1306
0
    case FR30_OPERAND_I8 :
1307
0
      fields->f_i8 = value;
1308
0
      break;
1309
0
    case FR30_OPERAND_LABEL12 :
1310
0
      fields->f_rel12 = value;
1311
0
      break;
1312
0
    case FR30_OPERAND_LABEL9 :
1313
0
      fields->f_rel9 = value;
1314
0
      break;
1315
0
    case FR30_OPERAND_M4 :
1316
0
      fields->f_m4 = value;
1317
0
      break;
1318
0
    case FR30_OPERAND_PS :
1319
0
      break;
1320
0
    case FR30_OPERAND_REGLIST_HI_LD :
1321
0
      fields->f_reglist_hi_ld = value;
1322
0
      break;
1323
0
    case FR30_OPERAND_REGLIST_HI_ST :
1324
0
      fields->f_reglist_hi_st = value;
1325
0
      break;
1326
0
    case FR30_OPERAND_REGLIST_LOW_LD :
1327
0
      fields->f_reglist_low_ld = value;
1328
0
      break;
1329
0
    case FR30_OPERAND_REGLIST_LOW_ST :
1330
0
      fields->f_reglist_low_st = value;
1331
0
      break;
1332
0
    case FR30_OPERAND_S10 :
1333
0
      fields->f_s10 = value;
1334
0
      break;
1335
0
    case FR30_OPERAND_U10 :
1336
0
      fields->f_u10 = value;
1337
0
      break;
1338
0
    case FR30_OPERAND_U4 :
1339
0
      fields->f_u4 = value;
1340
0
      break;
1341
0
    case FR30_OPERAND_U4C :
1342
0
      fields->f_u4c = value;
1343
0
      break;
1344
0
    case FR30_OPERAND_U8 :
1345
0
      fields->f_u8 = value;
1346
0
      break;
1347
0
    case FR30_OPERAND_UDISP6 :
1348
0
      fields->f_udisp6 = value;
1349
0
      break;
1350
1351
0
    default :
1352
      /* xgettext:c-format */
1353
0
      opcodes_error_handler
1354
0
  (_("internal error: unrecognized field %d while setting int operand"),
1355
0
   opindex);
1356
0
      abort ();
1357
0
  }
1358
0
}
1359
1360
void
1361
fr30_cgen_set_vma_operand (CGEN_CPU_DESC cd ATTRIBUTE_UNUSED,
1362
           int opindex,
1363
           CGEN_FIELDS * fields,
1364
           bfd_vma value)
1365
0
{
1366
0
  switch (opindex)
1367
0
    {
1368
0
    case FR30_OPERAND_CRI :
1369
0
      fields->f_CRi = value;
1370
0
      break;
1371
0
    case FR30_OPERAND_CRJ :
1372
0
      fields->f_CRj = value;
1373
0
      break;
1374
0
    case FR30_OPERAND_R13 :
1375
0
      break;
1376
0
    case FR30_OPERAND_R14 :
1377
0
      break;
1378
0
    case FR30_OPERAND_R15 :
1379
0
      break;
1380
0
    case FR30_OPERAND_RI :
1381
0
      fields->f_Ri = value;
1382
0
      break;
1383
0
    case FR30_OPERAND_RIC :
1384
0
      fields->f_Ric = value;
1385
0
      break;
1386
0
    case FR30_OPERAND_RJ :
1387
0
      fields->f_Rj = value;
1388
0
      break;
1389
0
    case FR30_OPERAND_RJC :
1390
0
      fields->f_Rjc = value;
1391
0
      break;
1392
0
    case FR30_OPERAND_RS1 :
1393
0
      fields->f_Rs1 = value;
1394
0
      break;
1395
0
    case FR30_OPERAND_RS2 :
1396
0
      fields->f_Rs2 = value;
1397
0
      break;
1398
0
    case FR30_OPERAND_CC :
1399
0
      fields->f_cc = value;
1400
0
      break;
1401
0
    case FR30_OPERAND_CCC :
1402
0
      fields->f_ccc = value;
1403
0
      break;
1404
0
    case FR30_OPERAND_DIR10 :
1405
0
      fields->f_dir10 = value;
1406
0
      break;
1407
0
    case FR30_OPERAND_DIR8 :
1408
0
      fields->f_dir8 = value;
1409
0
      break;
1410
0
    case FR30_OPERAND_DIR9 :
1411
0
      fields->f_dir9 = value;
1412
0
      break;
1413
0
    case FR30_OPERAND_DISP10 :
1414
0
      fields->f_disp10 = value;
1415
0
      break;
1416
0
    case FR30_OPERAND_DISP8 :
1417
0
      fields->f_disp8 = value;
1418
0
      break;
1419
0
    case FR30_OPERAND_DISP9 :
1420
0
      fields->f_disp9 = value;
1421
0
      break;
1422
0
    case FR30_OPERAND_I20 :
1423
0
      fields->f_i20 = value;
1424
0
      break;
1425
0
    case FR30_OPERAND_I32 :
1426
0
      fields->f_i32 = value;
1427
0
      break;
1428
0
    case FR30_OPERAND_I8 :
1429
0
      fields->f_i8 = value;
1430
0
      break;
1431
0
    case FR30_OPERAND_LABEL12 :
1432
0
      fields->f_rel12 = value;
1433
0
      break;
1434
0
    case FR30_OPERAND_LABEL9 :
1435
0
      fields->f_rel9 = value;
1436
0
      break;
1437
0
    case FR30_OPERAND_M4 :
1438
0
      fields->f_m4 = value;
1439
0
      break;
1440
0
    case FR30_OPERAND_PS :
1441
0
      break;
1442
0
    case FR30_OPERAND_REGLIST_HI_LD :
1443
0
      fields->f_reglist_hi_ld = value;
1444
0
      break;
1445
0
    case FR30_OPERAND_REGLIST_HI_ST :
1446
0
      fields->f_reglist_hi_st = value;
1447
0
      break;
1448
0
    case FR30_OPERAND_REGLIST_LOW_LD :
1449
0
      fields->f_reglist_low_ld = value;
1450
0
      break;
1451
0
    case FR30_OPERAND_REGLIST_LOW_ST :
1452
0
      fields->f_reglist_low_st = value;
1453
0
      break;
1454
0
    case FR30_OPERAND_S10 :
1455
0
      fields->f_s10 = value;
1456
0
      break;
1457
0
    case FR30_OPERAND_U10 :
1458
0
      fields->f_u10 = value;
1459
0
      break;
1460
0
    case FR30_OPERAND_U4 :
1461
0
      fields->f_u4 = value;
1462
0
      break;
1463
0
    case FR30_OPERAND_U4C :
1464
0
      fields->f_u4c = value;
1465
0
      break;
1466
0
    case FR30_OPERAND_U8 :
1467
0
      fields->f_u8 = value;
1468
0
      break;
1469
0
    case FR30_OPERAND_UDISP6 :
1470
0
      fields->f_udisp6 = value;
1471
0
      break;
1472
1473
0
    default :
1474
      /* xgettext:c-format */
1475
0
      opcodes_error_handler
1476
0
  (_("internal error: unrecognized field %d while setting vma operand"),
1477
0
   opindex);
1478
0
      abort ();
1479
0
  }
1480
0
}
1481
1482
/* Function to call before using the instruction builder tables.  */
1483
1484
void
1485
fr30_cgen_init_ibld_table (CGEN_CPU_DESC cd)
1486
2
{
1487
2
  cd->insert_handlers = & fr30_cgen_insert_handlers[0];
1488
2
  cd->extract_handlers = & fr30_cgen_extract_handlers[0];
1489
1490
2
  cd->insert_operand = fr30_cgen_insert_operand;
1491
2
  cd->extract_operand = fr30_cgen_extract_operand;
1492
1493
2
  cd->get_int_operand = fr30_cgen_get_int_operand;
1494
2
  cd->set_int_operand = fr30_cgen_set_int_operand;
1495
2
  cd->get_vma_operand = fr30_cgen_get_vma_operand;
1496
2
  cd->set_vma_operand = fr30_cgen_set_vma_operand;
1497
2
}