1 /* Instruction building/extraction support for fr30. -*- C -*-
3 THIS FILE IS MACHINE GENERATED WITH CGEN: Cpu tools GENerator.
4 - the resultant file is machine generated, cgen-ibld.in isn't
6 Copyright 1996, 1997, 1998, 1999, 2000, 2001 Free Software Foundation, Inc.
8 This file is part of the GNU Binutils and GDB, the GNU debugger.
10 This program is free software; you can redistribute it and/or modify
11 it under the terms of the GNU General Public License as published by
12 the Free Software Foundation; either version 2, or (at your option)
15 This program is distributed in the hope that it will be useful,
16 but WITHOUT ANY WARRANTY; without even the implied warranty of
17 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
18 GNU General Public License for more details.
20 You should have received a copy of the GNU General Public License
21 along with this program; if not, write to the Free Software Foundation, Inc.,
22 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA. */
24 /* ??? Eventually more and more of this stuff can go to cpu-independent files.
33 #include "fr30-desc.h"
36 #include "safe-ctype.h"
39 #define min(a,b) ((a) < (b) ? (a) : (b))
41 #define max(a,b) ((a) > (b) ? (a) : (b))
43 /* Used by the ifield rtx function. */
44 #define FLD(f) (fields->f)
46 static const char * insert_normal
47 PARAMS ((CGEN_CPU_DESC
, long, unsigned int, unsigned int, unsigned int,
48 unsigned int, unsigned int, unsigned int, CGEN_INSN_BYTES_PTR
));
49 static const char * insert_insn_normal
50 PARAMS ((CGEN_CPU_DESC
, const CGEN_INSN
*,
51 CGEN_FIELDS
*, CGEN_INSN_BYTES_PTR
, bfd_vma
));
52 static int extract_normal
53 PARAMS ((CGEN_CPU_DESC
, CGEN_EXTRACT_INFO
*, CGEN_INSN_INT
,
54 unsigned int, unsigned int, unsigned int, unsigned int,
55 unsigned int, unsigned int, bfd_vma
, long *));
56 static int extract_insn_normal
57 PARAMS ((CGEN_CPU_DESC
, const CGEN_INSN
*, CGEN_EXTRACT_INFO
*,
58 CGEN_INSN_INT
, CGEN_FIELDS
*, bfd_vma
));
60 static void put_insn_int_value
61 PARAMS ((CGEN_CPU_DESC
, CGEN_INSN_BYTES_PTR
, int, int, CGEN_INSN_INT
));
64 static CGEN_INLINE
void insert_1
65 PARAMS ((CGEN_CPU_DESC
, unsigned long, int, int, int, unsigned char *));
66 static CGEN_INLINE
int fill_cache
67 PARAMS ((CGEN_CPU_DESC
, CGEN_EXTRACT_INFO
*, int, int, bfd_vma
));
68 static CGEN_INLINE
long extract_1
69 PARAMS ((CGEN_CPU_DESC
, CGEN_EXTRACT_INFO
*, int, int, int,
70 unsigned char *, bfd_vma
));
73 /* Operand insertion. */
77 /* Subroutine of insert_normal. */
79 static CGEN_INLINE
void
80 insert_1 (cd
, value
, start
, length
, word_length
, bufp
)
83 int start
,length
,word_length
;
89 x
= cgen_get_insn_value (cd
, bufp
, word_length
);
91 /* Written this way to avoid undefined behaviour. */
92 mask
= (((1L << (length
- 1)) - 1) << 1) | 1;
94 shift
= (start
+ 1) - length
;
96 shift
= (word_length
- (start
+ length
));
97 x
= (x
& ~(mask
<< shift
)) | ((value
& mask
) << shift
);
99 cgen_put_insn_value (cd
, bufp
, word_length
, (bfd_vma
) x
);
102 #endif /* ! CGEN_INT_INSN_P */
104 /* Default insertion routine.
106 ATTRS is a mask of the boolean attributes.
107 WORD_OFFSET is the offset in bits from the start of the insn of the value.
108 WORD_LENGTH is the length of the word in bits in which the value resides.
109 START is the starting bit number in the word, architecture origin.
110 LENGTH is the length of VALUE in bits.
111 TOTAL_LENGTH is the total length of the insn in bits.
113 The result is an error message or NULL if success. */
115 /* ??? This duplicates functionality with bfd's howto table and
116 bfd_install_relocation. */
117 /* ??? This doesn't handle bfd_vma's. Create another function when
121 insert_normal (cd
, value
, attrs
, word_offset
, start
, length
, word_length
,
122 total_length
, buffer
)
126 unsigned int word_offset
, start
, length
, word_length
, total_length
;
127 CGEN_INSN_BYTES_PTR buffer
;
129 static char errbuf
[100];
130 /* Written this way to avoid undefined behaviour. */
131 unsigned long mask
= (((1L << (length
- 1)) - 1) << 1) | 1;
133 /* If LENGTH is zero, this operand doesn't contribute to the value. */
143 if (word_length
> 32)
146 /* For architectures with insns smaller than the base-insn-bitsize,
147 word_length may be too big. */
148 if (cd
->min_insn_bitsize
< cd
->base_insn_bitsize
)
151 && word_length
> total_length
)
152 word_length
= total_length
;
155 /* Ensure VALUE will fit. */
156 if (CGEN_BOOL_ATTR (attrs
, CGEN_IFLD_SIGN_OPT
))
158 long minval
= - (1L << (length
- 1));
159 unsigned long maxval
= mask
;
161 if ((value
> 0 && (unsigned long) value
> maxval
)
164 /* xgettext:c-format */
166 _("operand out of range (%ld not between %ld and %lu)"),
167 value
, minval
, maxval
);
171 else if (! CGEN_BOOL_ATTR (attrs
, CGEN_IFLD_SIGNED
))
173 unsigned long maxval
= mask
;
175 if ((unsigned long) value
> maxval
)
177 /* xgettext:c-format */
179 _("operand out of range (%lu not between 0 and %lu)"),
186 if (! cgen_signed_overflow_ok_p (cd
))
188 long minval
= - (1L << (length
- 1));
189 long maxval
= (1L << (length
- 1)) - 1;
191 if (value
< minval
|| value
> maxval
)
194 /* xgettext:c-format */
195 (errbuf
, _("operand out of range (%ld not between %ld and %ld)"),
196 value
, minval
, maxval
);
207 if (CGEN_INSN_LSB0_P
)
208 shift
= (word_offset
+ start
+ 1) - length
;
210 shift
= total_length
- (word_offset
+ start
+ length
);
211 *buffer
= (*buffer
& ~(mask
<< shift
)) | ((value
& mask
) << shift
);
214 #else /* ! CGEN_INT_INSN_P */
217 unsigned char *bufp
= (unsigned char *) buffer
+ word_offset
/ 8;
219 insert_1 (cd
, value
, start
, length
, word_length
, bufp
);
222 #endif /* ! CGEN_INT_INSN_P */
227 /* Default insn builder (insert handler).
228 The instruction is recorded in CGEN_INT_INSN_P byte order (meaning
229 that if CGEN_INSN_BYTES_PTR is an int * and thus, the value is
230 recorded in host byte order, otherwise BUFFER is an array of bytes
231 and the value is recorded in target byte order).
232 The result is an error message or NULL if success. */
235 insert_insn_normal (cd
, insn
, fields
, buffer
, pc
)
237 const CGEN_INSN
* insn
;
238 CGEN_FIELDS
* fields
;
239 CGEN_INSN_BYTES_PTR buffer
;
242 const CGEN_SYNTAX
*syntax
= CGEN_INSN_SYNTAX (insn
);
244 const CGEN_SYNTAX_CHAR_TYPE
* syn
;
246 CGEN_INIT_INSERT (cd
);
247 value
= CGEN_INSN_BASE_VALUE (insn
);
249 /* If we're recording insns as numbers (rather than a string of bytes),
250 target byte order handling is deferred until later. */
254 put_insn_int_value (cd
, buffer
, cd
->base_insn_bitsize
,
255 CGEN_FIELDS_BITSIZE (fields
), value
);
259 cgen_put_insn_value (cd
, buffer
, min ((unsigned) cd
->base_insn_bitsize
,
260 (unsigned) CGEN_FIELDS_BITSIZE (fields
)),
263 #endif /* ! CGEN_INT_INSN_P */
265 /* ??? It would be better to scan the format's fields.
266 Still need to be able to insert a value based on the operand though;
267 e.g. storing a branch displacement that got resolved later.
268 Needs more thought first. */
270 for (syn
= CGEN_SYNTAX_STRING (syntax
); * syn
; ++ syn
)
274 if (CGEN_SYNTAX_CHAR_P (* syn
))
277 errmsg
= (* cd
->insert_operand
) (cd
, CGEN_SYNTAX_FIELD (*syn
),
287 /* Cover function to store an insn value into an integral insn. Must go here
288 because it needs <prefix>-desc.h for CGEN_INT_INSN_P. */
291 put_insn_int_value (cd
, buf
, length
, insn_length
, value
)
292 CGEN_CPU_DESC cd ATTRIBUTE_UNUSED
;
293 CGEN_INSN_BYTES_PTR buf
;
298 /* For architectures with insns smaller than the base-insn-bitsize,
299 length may be too big. */
300 if (length
> insn_length
)
304 int shift
= insn_length
- length
;
305 /* Written this way to avoid undefined behaviour. */
306 CGEN_INSN_INT mask
= (((1L << (length
- 1)) - 1) << 1) | 1;
307 *buf
= (*buf
& ~(mask
<< shift
)) | ((value
& mask
) << shift
);
312 /* Operand extraction. */
314 #if ! CGEN_INT_INSN_P
316 /* Subroutine of extract_normal.
317 Ensure sufficient bytes are cached in EX_INFO.
318 OFFSET is the offset in bytes from the start of the insn of the value.
319 BYTES is the length of the needed value.
320 Returns 1 for success, 0 for failure. */
322 static CGEN_INLINE
int
323 fill_cache (cd
, ex_info
, offset
, bytes
, pc
)
324 CGEN_CPU_DESC cd ATTRIBUTE_UNUSED
;
325 CGEN_EXTRACT_INFO
*ex_info
;
329 /* It's doubtful that the middle part has already been fetched so
330 we don't optimize that case. kiss. */
332 disassemble_info
*info
= (disassemble_info
*) ex_info
->dis_info
;
334 /* First do a quick check. */
335 mask
= (1 << bytes
) - 1;
336 if (((ex_info
->valid
>> offset
) & mask
) == mask
)
339 /* Search for the first byte we need to read. */
340 for (mask
= 1 << offset
; bytes
> 0; --bytes
, ++offset
, mask
<<= 1)
341 if (! (mask
& ex_info
->valid
))
349 status
= (*info
->read_memory_func
)
350 (pc
, ex_info
->insn_bytes
+ offset
, bytes
, info
);
354 (*info
->memory_error_func
) (status
, pc
, info
);
358 ex_info
->valid
|= ((1 << bytes
) - 1) << offset
;
364 /* Subroutine of extract_normal. */
366 static CGEN_INLINE
long
367 extract_1 (cd
, ex_info
, start
, length
, word_length
, bufp
, pc
)
369 CGEN_EXTRACT_INFO
*ex_info ATTRIBUTE_UNUSED
;
370 int start
,length
,word_length
;
372 bfd_vma pc ATTRIBUTE_UNUSED
;
377 int big_p
= CGEN_CPU_INSN_ENDIAN (cd
) == CGEN_ENDIAN_BIG
;
379 x
= cgen_get_insn_value (cd
, bufp
, word_length
);
381 if (CGEN_INSN_LSB0_P
)
382 shift
= (start
+ 1) - length
;
384 shift
= (word_length
- (start
+ length
));
388 #endif /* ! CGEN_INT_INSN_P */
390 /* Default extraction routine.
392 INSN_VALUE is the first base_insn_bitsize bits of the insn in host order,
393 or sometimes less for cases like the m32r where the base insn size is 32
394 but some insns are 16 bits.
395 ATTRS is a mask of the boolean attributes. We only need `SIGNED',
396 but for generality we take a bitmask of all of them.
397 WORD_OFFSET is the offset in bits from the start of the insn of the value.
398 WORD_LENGTH is the length of the word in bits in which the value resides.
399 START is the starting bit number in the word, architecture origin.
400 LENGTH is the length of VALUE in bits.
401 TOTAL_LENGTH is the total length of the insn in bits.
403 Returns 1 for success, 0 for failure. */
405 /* ??? The return code isn't properly used. wip. */
407 /* ??? This doesn't handle bfd_vma's. Create another function when
411 extract_normal (cd
, ex_info
, insn_value
, attrs
, word_offset
, start
, length
,
412 word_length
, total_length
, pc
, valuep
)
414 #if ! CGEN_INT_INSN_P
415 CGEN_EXTRACT_INFO
*ex_info
;
417 CGEN_EXTRACT_INFO
*ex_info ATTRIBUTE_UNUSED
;
419 CGEN_INSN_INT insn_value
;
421 unsigned int word_offset
, start
, length
, word_length
, total_length
;
422 #if ! CGEN_INT_INSN_P
425 bfd_vma pc ATTRIBUTE_UNUSED
;
431 /* If LENGTH is zero, this operand doesn't contribute to the value
432 so give it a standard value of zero. */
445 if (word_length
> 32)
448 /* For architectures with insns smaller than the insn-base-bitsize,
449 word_length may be too big. */
450 if (cd
->min_insn_bitsize
< cd
->base_insn_bitsize
)
453 && word_length
> total_length
)
454 word_length
= total_length
;
457 /* Does the value reside in INSN_VALUE, and at the right alignment? */
459 if (CGEN_INT_INSN_P
|| (word_offset
== 0 && word_length
== total_length
))
461 if (CGEN_INSN_LSB0_P
)
462 value
= insn_value
>> ((word_offset
+ start
+ 1) - length
);
464 value
= insn_value
>> (total_length
- ( word_offset
+ start
+ length
));
467 #if ! CGEN_INT_INSN_P
471 unsigned char *bufp
= ex_info
->insn_bytes
+ word_offset
/ 8;
473 if (word_length
> 32)
476 if (fill_cache (cd
, ex_info
, word_offset
/ 8, word_length
/ 8, pc
) == 0)
479 value
= extract_1 (cd
, ex_info
, start
, length
, word_length
, bufp
, pc
);
482 #endif /* ! CGEN_INT_INSN_P */
484 /* Written this way to avoid undefined behaviour. */
485 mask
= (((1L << (length
- 1)) - 1) << 1) | 1;
489 if (CGEN_BOOL_ATTR (attrs
, CGEN_IFLD_SIGNED
)
490 && (value
& (1L << (length
- 1))))
498 /* Default insn extractor.
500 INSN_VALUE is the first base_insn_bitsize bits, translated to host order.
501 The extracted fields are stored in FIELDS.
502 EX_INFO is used to handle reading variable length insns.
503 Return the length of the insn in bits, or 0 if no match,
504 or -1 if an error occurs fetching data (memory_error_func will have
508 extract_insn_normal (cd
, insn
, ex_info
, insn_value
, fields
, pc
)
510 const CGEN_INSN
*insn
;
511 CGEN_EXTRACT_INFO
*ex_info
;
512 CGEN_INSN_INT insn_value
;
516 const CGEN_SYNTAX
*syntax
= CGEN_INSN_SYNTAX (insn
);
517 const CGEN_SYNTAX_CHAR_TYPE
*syn
;
519 CGEN_FIELDS_BITSIZE (fields
) = CGEN_INSN_BITSIZE (insn
);
521 CGEN_INIT_EXTRACT (cd
);
523 for (syn
= CGEN_SYNTAX_STRING (syntax
); *syn
; ++syn
)
527 if (CGEN_SYNTAX_CHAR_P (*syn
))
530 length
= (* cd
->extract_operand
) (cd
, CGEN_SYNTAX_FIELD (*syn
),
531 ex_info
, insn_value
, fields
, pc
);
536 /* We recognized and successfully extracted this insn. */
537 return CGEN_INSN_BITSIZE (insn
);
540 /* machine generated code added here */
542 const char * fr30_cgen_insert_operand
543 PARAMS ((CGEN_CPU_DESC
, int, CGEN_FIELDS
*, CGEN_INSN_BYTES_PTR
, bfd_vma
));
545 /* Main entry point for operand insertion.
547 This function is basically just a big switch statement. Earlier versions
548 used tables to look up the function to use, but
549 - if the table contains both assembler and disassembler functions then
550 the disassembler contains much of the assembler and vice-versa,
551 - there's a lot of inlining possibilities as things grow,
552 - using a switch statement avoids the function call overhead.
554 This function could be moved into `parse_insn_normal', but keeping it
555 separate makes clear the interface between `parse_insn_normal' and each of
556 the handlers. It's also needed by GAS to insert operands that couldn't be
557 resolved during parsing. */
560 fr30_cgen_insert_operand (cd
, opindex
, fields
, buffer
, pc
)
563 CGEN_FIELDS
* fields
;
564 CGEN_INSN_BYTES_PTR buffer
;
565 bfd_vma pc ATTRIBUTE_UNUSED
;
567 const char * errmsg
= NULL
;
568 unsigned int total_length
= CGEN_FIELDS_BITSIZE (fields
);
572 case FR30_OPERAND_CRI
:
573 errmsg
= insert_normal (cd
, fields
->f_CRi
, 0, 16, 12, 4, 16, total_length
, buffer
);
575 case FR30_OPERAND_CRJ
:
576 errmsg
= insert_normal (cd
, fields
->f_CRj
, 0, 16, 8, 4, 16, total_length
, buffer
);
578 case FR30_OPERAND_R13
:
580 case FR30_OPERAND_R14
:
582 case FR30_OPERAND_R15
:
584 case FR30_OPERAND_RI
:
585 errmsg
= insert_normal (cd
, fields
->f_Ri
, 0, 0, 12, 4, 16, total_length
, buffer
);
587 case FR30_OPERAND_RIC
:
588 errmsg
= insert_normal (cd
, fields
->f_Ric
, 0, 16, 12, 4, 16, total_length
, buffer
);
590 case FR30_OPERAND_RJ
:
591 errmsg
= insert_normal (cd
, fields
->f_Rj
, 0, 0, 8, 4, 16, total_length
, buffer
);
593 case FR30_OPERAND_RJC
:
594 errmsg
= insert_normal (cd
, fields
->f_Rjc
, 0, 16, 8, 4, 16, total_length
, buffer
);
596 case FR30_OPERAND_RS1
:
597 errmsg
= insert_normal (cd
, fields
->f_Rs1
, 0, 0, 8, 4, 16, total_length
, buffer
);
599 case FR30_OPERAND_RS2
:
600 errmsg
= insert_normal (cd
, fields
->f_Rs2
, 0, 0, 12, 4, 16, total_length
, buffer
);
602 case FR30_OPERAND_CC
:
603 errmsg
= insert_normal (cd
, fields
->f_cc
, 0, 0, 4, 4, 16, total_length
, buffer
);
605 case FR30_OPERAND_CCC
:
606 errmsg
= insert_normal (cd
, fields
->f_ccc
, 0, 16, 0, 8, 16, total_length
, buffer
);
608 case FR30_OPERAND_DIR10
:
610 long value
= fields
->f_dir10
;
611 value
= ((unsigned int) (value
) >> (2));
612 errmsg
= insert_normal (cd
, value
, 0, 0, 8, 8, 16, total_length
, buffer
);
615 case FR30_OPERAND_DIR8
:
616 errmsg
= insert_normal (cd
, fields
->f_dir8
, 0, 0, 8, 8, 16, total_length
, buffer
);
618 case FR30_OPERAND_DIR9
:
620 long value
= fields
->f_dir9
;
621 value
= ((unsigned int) (value
) >> (1));
622 errmsg
= insert_normal (cd
, value
, 0, 0, 8, 8, 16, total_length
, buffer
);
625 case FR30_OPERAND_DISP10
:
627 long value
= fields
->f_disp10
;
628 value
= ((int) (value
) >> (2));
629 errmsg
= insert_normal (cd
, value
, 0|(1<<CGEN_IFLD_SIGNED
), 0, 4, 8, 16, total_length
, buffer
);
632 case FR30_OPERAND_DISP8
:
633 errmsg
= insert_normal (cd
, fields
->f_disp8
, 0|(1<<CGEN_IFLD_SIGNED
), 0, 4, 8, 16, total_length
, buffer
);
635 case FR30_OPERAND_DISP9
:
637 long value
= fields
->f_disp9
;
638 value
= ((int) (value
) >> (1));
639 errmsg
= insert_normal (cd
, value
, 0|(1<<CGEN_IFLD_SIGNED
), 0, 4, 8, 16, total_length
, buffer
);
642 case FR30_OPERAND_I20
:
645 FLD (f_i20_4
) = ((unsigned int) (FLD (f_i20
)) >> (16));
646 FLD (f_i20_16
) = ((FLD (f_i20
)) & (65535));
648 errmsg
= insert_normal (cd
, fields
->f_i20_4
, 0, 0, 8, 4, 16, total_length
, buffer
);
651 errmsg
= insert_normal (cd
, fields
->f_i20_16
, 0, 16, 0, 16, 16, total_length
, buffer
);
656 case FR30_OPERAND_I32
:
657 errmsg
= insert_normal (cd
, fields
->f_i32
, 0|(1<<CGEN_IFLD_SIGN_OPT
), 16, 0, 32, 32, total_length
, buffer
);
659 case FR30_OPERAND_I8
:
660 errmsg
= insert_normal (cd
, fields
->f_i8
, 0, 0, 4, 8, 16, total_length
, buffer
);
662 case FR30_OPERAND_LABEL12
:
664 long value
= fields
->f_rel12
;
665 value
= ((int) (((value
) - (((pc
) + (2))))) >> (1));
666 errmsg
= insert_normal (cd
, value
, 0|(1<<CGEN_IFLD_SIGNED
)|(1<<CGEN_IFLD_PCREL_ADDR
), 0, 5, 11, 16, total_length
, buffer
);
669 case FR30_OPERAND_LABEL9
:
671 long value
= fields
->f_rel9
;
672 value
= ((int) (((value
) - (((pc
) + (2))))) >> (1));
673 errmsg
= insert_normal (cd
, value
, 0|(1<<CGEN_IFLD_SIGNED
)|(1<<CGEN_IFLD_PCREL_ADDR
), 0, 8, 8, 16, total_length
, buffer
);
676 case FR30_OPERAND_M4
:
678 long value
= fields
->f_m4
;
679 value
= ((value
) & (15));
680 errmsg
= insert_normal (cd
, value
, 0, 0, 8, 4, 16, total_length
, buffer
);
683 case FR30_OPERAND_PS
:
685 case FR30_OPERAND_REGLIST_HI_LD
:
686 errmsg
= insert_normal (cd
, fields
->f_reglist_hi_ld
, 0, 0, 8, 8, 16, total_length
, buffer
);
688 case FR30_OPERAND_REGLIST_HI_ST
:
689 errmsg
= insert_normal (cd
, fields
->f_reglist_hi_st
, 0, 0, 8, 8, 16, total_length
, buffer
);
691 case FR30_OPERAND_REGLIST_LOW_LD
:
692 errmsg
= insert_normal (cd
, fields
->f_reglist_low_ld
, 0, 0, 8, 8, 16, total_length
, buffer
);
694 case FR30_OPERAND_REGLIST_LOW_ST
:
695 errmsg
= insert_normal (cd
, fields
->f_reglist_low_st
, 0, 0, 8, 8, 16, total_length
, buffer
);
697 case FR30_OPERAND_S10
:
699 long value
= fields
->f_s10
;
700 value
= ((int) (value
) >> (2));
701 errmsg
= insert_normal (cd
, value
, 0|(1<<CGEN_IFLD_SIGNED
), 0, 8, 8, 16, total_length
, buffer
);
704 case FR30_OPERAND_U10
:
706 long value
= fields
->f_u10
;
707 value
= ((unsigned int) (value
) >> (2));
708 errmsg
= insert_normal (cd
, value
, 0, 0, 8, 8, 16, total_length
, buffer
);
711 case FR30_OPERAND_U4
:
712 errmsg
= insert_normal (cd
, fields
->f_u4
, 0, 0, 8, 4, 16, total_length
, buffer
);
714 case FR30_OPERAND_U4C
:
715 errmsg
= insert_normal (cd
, fields
->f_u4c
, 0, 0, 12, 4, 16, total_length
, buffer
);
717 case FR30_OPERAND_U8
:
718 errmsg
= insert_normal (cd
, fields
->f_u8
, 0, 0, 8, 8, 16, total_length
, buffer
);
720 case FR30_OPERAND_UDISP6
:
722 long value
= fields
->f_udisp6
;
723 value
= ((unsigned int) (value
) >> (2));
724 errmsg
= insert_normal (cd
, value
, 0, 0, 8, 4, 16, total_length
, buffer
);
729 /* xgettext:c-format */
730 fprintf (stderr
, _("Unrecognized field %d while building insn.\n"),
738 int fr30_cgen_extract_operand
739 PARAMS ((CGEN_CPU_DESC
, int, CGEN_EXTRACT_INFO
*, CGEN_INSN_INT
,
740 CGEN_FIELDS
*, bfd_vma
));
742 /* Main entry point for operand extraction.
743 The result is <= 0 for error, >0 for success.
744 ??? Actual values aren't well defined right now.
746 This function is basically just a big switch statement. Earlier versions
747 used tables to look up the function to use, but
748 - if the table contains both assembler and disassembler functions then
749 the disassembler contains much of the assembler and vice-versa,
750 - there's a lot of inlining possibilities as things grow,
751 - using a switch statement avoids the function call overhead.
753 This function could be moved into `print_insn_normal', but keeping it
754 separate makes clear the interface between `print_insn_normal' and each of
758 fr30_cgen_extract_operand (cd
, opindex
, ex_info
, insn_value
, fields
, pc
)
761 CGEN_EXTRACT_INFO
*ex_info
;
762 CGEN_INSN_INT insn_value
;
763 CGEN_FIELDS
* fields
;
766 /* Assume success (for those operands that are nops). */
768 unsigned int total_length
= CGEN_FIELDS_BITSIZE (fields
);
772 case FR30_OPERAND_CRI
:
773 length
= extract_normal (cd
, ex_info
, insn_value
, 0, 16, 12, 4, 16, total_length
, pc
, & fields
->f_CRi
);
775 case FR30_OPERAND_CRJ
:
776 length
= extract_normal (cd
, ex_info
, insn_value
, 0, 16, 8, 4, 16, total_length
, pc
, & fields
->f_CRj
);
778 case FR30_OPERAND_R13
:
780 case FR30_OPERAND_R14
:
782 case FR30_OPERAND_R15
:
784 case FR30_OPERAND_RI
:
785 length
= extract_normal (cd
, ex_info
, insn_value
, 0, 0, 12, 4, 16, total_length
, pc
, & fields
->f_Ri
);
787 case FR30_OPERAND_RIC
:
788 length
= extract_normal (cd
, ex_info
, insn_value
, 0, 16, 12, 4, 16, total_length
, pc
, & fields
->f_Ric
);
790 case FR30_OPERAND_RJ
:
791 length
= extract_normal (cd
, ex_info
, insn_value
, 0, 0, 8, 4, 16, total_length
, pc
, & fields
->f_Rj
);
793 case FR30_OPERAND_RJC
:
794 length
= extract_normal (cd
, ex_info
, insn_value
, 0, 16, 8, 4, 16, total_length
, pc
, & fields
->f_Rjc
);
796 case FR30_OPERAND_RS1
:
797 length
= extract_normal (cd
, ex_info
, insn_value
, 0, 0, 8, 4, 16, total_length
, pc
, & fields
->f_Rs1
);
799 case FR30_OPERAND_RS2
:
800 length
= extract_normal (cd
, ex_info
, insn_value
, 0, 0, 12, 4, 16, total_length
, pc
, & fields
->f_Rs2
);
802 case FR30_OPERAND_CC
:
803 length
= extract_normal (cd
, ex_info
, insn_value
, 0, 0, 4, 4, 16, total_length
, pc
, & fields
->f_cc
);
805 case FR30_OPERAND_CCC
:
806 length
= extract_normal (cd
, ex_info
, insn_value
, 0, 16, 0, 8, 16, total_length
, pc
, & fields
->f_ccc
);
808 case FR30_OPERAND_DIR10
:
811 length
= extract_normal (cd
, ex_info
, insn_value
, 0, 0, 8, 8, 16, total_length
, pc
, & value
);
812 value
= ((value
) << (2));
813 fields
->f_dir10
= value
;
816 case FR30_OPERAND_DIR8
:
817 length
= extract_normal (cd
, ex_info
, insn_value
, 0, 0, 8, 8, 16, total_length
, pc
, & fields
->f_dir8
);
819 case FR30_OPERAND_DIR9
:
822 length
= extract_normal (cd
, ex_info
, insn_value
, 0, 0, 8, 8, 16, total_length
, pc
, & value
);
823 value
= ((value
) << (1));
824 fields
->f_dir9
= value
;
827 case FR30_OPERAND_DISP10
:
830 length
= extract_normal (cd
, ex_info
, insn_value
, 0|(1<<CGEN_IFLD_SIGNED
), 0, 4, 8, 16, total_length
, pc
, & value
);
831 value
= ((value
) << (2));
832 fields
->f_disp10
= value
;
835 case FR30_OPERAND_DISP8
:
836 length
= extract_normal (cd
, ex_info
, insn_value
, 0|(1<<CGEN_IFLD_SIGNED
), 0, 4, 8, 16, total_length
, pc
, & fields
->f_disp8
);
838 case FR30_OPERAND_DISP9
:
841 length
= extract_normal (cd
, ex_info
, insn_value
, 0|(1<<CGEN_IFLD_SIGNED
), 0, 4, 8, 16, total_length
, pc
, & value
);
842 value
= ((value
) << (1));
843 fields
->f_disp9
= value
;
846 case FR30_OPERAND_I20
:
848 length
= extract_normal (cd
, ex_info
, insn_value
, 0, 0, 8, 4, 16, total_length
, pc
, & fields
->f_i20_4
);
849 if (length
<= 0) break;
850 length
= extract_normal (cd
, ex_info
, insn_value
, 0, 16, 0, 16, 16, total_length
, pc
, & fields
->f_i20_16
);
851 if (length
<= 0) break;
853 FLD (f_i20
) = ((((FLD (f_i20_4
)) << (16))) | (FLD (f_i20_16
)));
857 case FR30_OPERAND_I32
:
858 length
= extract_normal (cd
, ex_info
, insn_value
, 0|(1<<CGEN_IFLD_SIGN_OPT
), 16, 0, 32, 32, total_length
, pc
, & fields
->f_i32
);
860 case FR30_OPERAND_I8
:
861 length
= extract_normal (cd
, ex_info
, insn_value
, 0, 0, 4, 8, 16, total_length
, pc
, & fields
->f_i8
);
863 case FR30_OPERAND_LABEL12
:
866 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
);
867 value
= ((((value
) << (1))) + (((pc
) + (2))));
868 fields
->f_rel12
= value
;
871 case FR30_OPERAND_LABEL9
:
874 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
);
875 value
= ((((value
) << (1))) + (((pc
) + (2))));
876 fields
->f_rel9
= value
;
879 case FR30_OPERAND_M4
:
882 length
= extract_normal (cd
, ex_info
, insn_value
, 0, 0, 8, 4, 16, total_length
, pc
, & value
);
883 value
= ((value
) | (((-1) << (4))));
884 fields
->f_m4
= value
;
887 case FR30_OPERAND_PS
:
889 case FR30_OPERAND_REGLIST_HI_LD
:
890 length
= extract_normal (cd
, ex_info
, insn_value
, 0, 0, 8, 8, 16, total_length
, pc
, & fields
->f_reglist_hi_ld
);
892 case FR30_OPERAND_REGLIST_HI_ST
:
893 length
= extract_normal (cd
, ex_info
, insn_value
, 0, 0, 8, 8, 16, total_length
, pc
, & fields
->f_reglist_hi_st
);
895 case FR30_OPERAND_REGLIST_LOW_LD
:
896 length
= extract_normal (cd
, ex_info
, insn_value
, 0, 0, 8, 8, 16, total_length
, pc
, & fields
->f_reglist_low_ld
);
898 case FR30_OPERAND_REGLIST_LOW_ST
:
899 length
= extract_normal (cd
, ex_info
, insn_value
, 0, 0, 8, 8, 16, total_length
, pc
, & fields
->f_reglist_low_st
);
901 case FR30_OPERAND_S10
:
904 length
= extract_normal (cd
, ex_info
, insn_value
, 0|(1<<CGEN_IFLD_SIGNED
), 0, 8, 8, 16, total_length
, pc
, & value
);
905 value
= ((value
) << (2));
906 fields
->f_s10
= value
;
909 case FR30_OPERAND_U10
:
912 length
= extract_normal (cd
, ex_info
, insn_value
, 0, 0, 8, 8, 16, total_length
, pc
, & value
);
913 value
= ((value
) << (2));
914 fields
->f_u10
= value
;
917 case FR30_OPERAND_U4
:
918 length
= extract_normal (cd
, ex_info
, insn_value
, 0, 0, 8, 4, 16, total_length
, pc
, & fields
->f_u4
);
920 case FR30_OPERAND_U4C
:
921 length
= extract_normal (cd
, ex_info
, insn_value
, 0, 0, 12, 4, 16, total_length
, pc
, & fields
->f_u4c
);
923 case FR30_OPERAND_U8
:
924 length
= extract_normal (cd
, ex_info
, insn_value
, 0, 0, 8, 8, 16, total_length
, pc
, & fields
->f_u8
);
926 case FR30_OPERAND_UDISP6
:
929 length
= extract_normal (cd
, ex_info
, insn_value
, 0, 0, 8, 4, 16, total_length
, pc
, & value
);
930 value
= ((value
) << (2));
931 fields
->f_udisp6
= value
;
936 /* xgettext:c-format */
937 fprintf (stderr
, _("Unrecognized field %d while decoding insn.\n"),
945 cgen_insert_fn
* const fr30_cgen_insert_handlers
[] =
950 cgen_extract_fn
* const fr30_cgen_extract_handlers
[] =
955 int fr30_cgen_get_int_operand
956 PARAMS ((CGEN_CPU_DESC
, int, const CGEN_FIELDS
*));
957 bfd_vma fr30_cgen_get_vma_operand
958 PARAMS ((CGEN_CPU_DESC
, int, const CGEN_FIELDS
*));
960 /* Getting values from cgen_fields is handled by a collection of functions.
961 They are distinguished by the type of the VALUE argument they return.
962 TODO: floating point, inlining support, remove cases where result type
966 fr30_cgen_get_int_operand (cd
, opindex
, fields
)
967 CGEN_CPU_DESC cd ATTRIBUTE_UNUSED
;
969 const CGEN_FIELDS
* fields
;
975 case FR30_OPERAND_CRI
:
976 value
= fields
->f_CRi
;
978 case FR30_OPERAND_CRJ
:
979 value
= fields
->f_CRj
;
981 case FR30_OPERAND_R13
:
984 case FR30_OPERAND_R14
:
987 case FR30_OPERAND_R15
:
990 case FR30_OPERAND_RI
:
991 value
= fields
->f_Ri
;
993 case FR30_OPERAND_RIC
:
994 value
= fields
->f_Ric
;
996 case FR30_OPERAND_RJ
:
997 value
= fields
->f_Rj
;
999 case FR30_OPERAND_RJC
:
1000 value
= fields
->f_Rjc
;
1002 case FR30_OPERAND_RS1
:
1003 value
= fields
->f_Rs1
;
1005 case FR30_OPERAND_RS2
:
1006 value
= fields
->f_Rs2
;
1008 case FR30_OPERAND_CC
:
1009 value
= fields
->f_cc
;
1011 case FR30_OPERAND_CCC
:
1012 value
= fields
->f_ccc
;
1014 case FR30_OPERAND_DIR10
:
1015 value
= fields
->f_dir10
;
1017 case FR30_OPERAND_DIR8
:
1018 value
= fields
->f_dir8
;
1020 case FR30_OPERAND_DIR9
:
1021 value
= fields
->f_dir9
;
1023 case FR30_OPERAND_DISP10
:
1024 value
= fields
->f_disp10
;
1026 case FR30_OPERAND_DISP8
:
1027 value
= fields
->f_disp8
;
1029 case FR30_OPERAND_DISP9
:
1030 value
= fields
->f_disp9
;
1032 case FR30_OPERAND_I20
:
1033 value
= fields
->f_i20
;
1035 case FR30_OPERAND_I32
:
1036 value
= fields
->f_i32
;
1038 case FR30_OPERAND_I8
:
1039 value
= fields
->f_i8
;
1041 case FR30_OPERAND_LABEL12
:
1042 value
= fields
->f_rel12
;
1044 case FR30_OPERAND_LABEL9
:
1045 value
= fields
->f_rel9
;
1047 case FR30_OPERAND_M4
:
1048 value
= fields
->f_m4
;
1050 case FR30_OPERAND_PS
:
1053 case FR30_OPERAND_REGLIST_HI_LD
:
1054 value
= fields
->f_reglist_hi_ld
;
1056 case FR30_OPERAND_REGLIST_HI_ST
:
1057 value
= fields
->f_reglist_hi_st
;
1059 case FR30_OPERAND_REGLIST_LOW_LD
:
1060 value
= fields
->f_reglist_low_ld
;
1062 case FR30_OPERAND_REGLIST_LOW_ST
:
1063 value
= fields
->f_reglist_low_st
;
1065 case FR30_OPERAND_S10
:
1066 value
= fields
->f_s10
;
1068 case FR30_OPERAND_U10
:
1069 value
= fields
->f_u10
;
1071 case FR30_OPERAND_U4
:
1072 value
= fields
->f_u4
;
1074 case FR30_OPERAND_U4C
:
1075 value
= fields
->f_u4c
;
1077 case FR30_OPERAND_U8
:
1078 value
= fields
->f_u8
;
1080 case FR30_OPERAND_UDISP6
:
1081 value
= fields
->f_udisp6
;
1085 /* xgettext:c-format */
1086 fprintf (stderr
, _("Unrecognized field %d while getting int operand.\n"),
1095 fr30_cgen_get_vma_operand (cd
, opindex
, fields
)
1096 CGEN_CPU_DESC cd ATTRIBUTE_UNUSED
;
1098 const CGEN_FIELDS
* fields
;
1104 case FR30_OPERAND_CRI
:
1105 value
= fields
->f_CRi
;
1107 case FR30_OPERAND_CRJ
:
1108 value
= fields
->f_CRj
;
1110 case FR30_OPERAND_R13
:
1113 case FR30_OPERAND_R14
:
1116 case FR30_OPERAND_R15
:
1119 case FR30_OPERAND_RI
:
1120 value
= fields
->f_Ri
;
1122 case FR30_OPERAND_RIC
:
1123 value
= fields
->f_Ric
;
1125 case FR30_OPERAND_RJ
:
1126 value
= fields
->f_Rj
;
1128 case FR30_OPERAND_RJC
:
1129 value
= fields
->f_Rjc
;
1131 case FR30_OPERAND_RS1
:
1132 value
= fields
->f_Rs1
;
1134 case FR30_OPERAND_RS2
:
1135 value
= fields
->f_Rs2
;
1137 case FR30_OPERAND_CC
:
1138 value
= fields
->f_cc
;
1140 case FR30_OPERAND_CCC
:
1141 value
= fields
->f_ccc
;
1143 case FR30_OPERAND_DIR10
:
1144 value
= fields
->f_dir10
;
1146 case FR30_OPERAND_DIR8
:
1147 value
= fields
->f_dir8
;
1149 case FR30_OPERAND_DIR9
:
1150 value
= fields
->f_dir9
;
1152 case FR30_OPERAND_DISP10
:
1153 value
= fields
->f_disp10
;
1155 case FR30_OPERAND_DISP8
:
1156 value
= fields
->f_disp8
;
1158 case FR30_OPERAND_DISP9
:
1159 value
= fields
->f_disp9
;
1161 case FR30_OPERAND_I20
:
1162 value
= fields
->f_i20
;
1164 case FR30_OPERAND_I32
:
1165 value
= fields
->f_i32
;
1167 case FR30_OPERAND_I8
:
1168 value
= fields
->f_i8
;
1170 case FR30_OPERAND_LABEL12
:
1171 value
= fields
->f_rel12
;
1173 case FR30_OPERAND_LABEL9
:
1174 value
= fields
->f_rel9
;
1176 case FR30_OPERAND_M4
:
1177 value
= fields
->f_m4
;
1179 case FR30_OPERAND_PS
:
1182 case FR30_OPERAND_REGLIST_HI_LD
:
1183 value
= fields
->f_reglist_hi_ld
;
1185 case FR30_OPERAND_REGLIST_HI_ST
:
1186 value
= fields
->f_reglist_hi_st
;
1188 case FR30_OPERAND_REGLIST_LOW_LD
:
1189 value
= fields
->f_reglist_low_ld
;
1191 case FR30_OPERAND_REGLIST_LOW_ST
:
1192 value
= fields
->f_reglist_low_st
;
1194 case FR30_OPERAND_S10
:
1195 value
= fields
->f_s10
;
1197 case FR30_OPERAND_U10
:
1198 value
= fields
->f_u10
;
1200 case FR30_OPERAND_U4
:
1201 value
= fields
->f_u4
;
1203 case FR30_OPERAND_U4C
:
1204 value
= fields
->f_u4c
;
1206 case FR30_OPERAND_U8
:
1207 value
= fields
->f_u8
;
1209 case FR30_OPERAND_UDISP6
:
1210 value
= fields
->f_udisp6
;
1214 /* xgettext:c-format */
1215 fprintf (stderr
, _("Unrecognized field %d while getting vma operand.\n"),
1223 void fr30_cgen_set_int_operand
1224 PARAMS ((CGEN_CPU_DESC
, int, CGEN_FIELDS
*, int));
1225 void fr30_cgen_set_vma_operand
1226 PARAMS ((CGEN_CPU_DESC
, int, CGEN_FIELDS
*, bfd_vma
));
1228 /* Stuffing values in cgen_fields is handled by a collection of functions.
1229 They are distinguished by the type of the VALUE argument they accept.
1230 TODO: floating point, inlining support, remove cases where argument type
1234 fr30_cgen_set_int_operand (cd
, opindex
, fields
, value
)
1235 CGEN_CPU_DESC cd ATTRIBUTE_UNUSED
;
1237 CGEN_FIELDS
* fields
;
1242 case FR30_OPERAND_CRI
:
1243 fields
->f_CRi
= value
;
1245 case FR30_OPERAND_CRJ
:
1246 fields
->f_CRj
= value
;
1248 case FR30_OPERAND_R13
:
1250 case FR30_OPERAND_R14
:
1252 case FR30_OPERAND_R15
:
1254 case FR30_OPERAND_RI
:
1255 fields
->f_Ri
= value
;
1257 case FR30_OPERAND_RIC
:
1258 fields
->f_Ric
= value
;
1260 case FR30_OPERAND_RJ
:
1261 fields
->f_Rj
= value
;
1263 case FR30_OPERAND_RJC
:
1264 fields
->f_Rjc
= value
;
1266 case FR30_OPERAND_RS1
:
1267 fields
->f_Rs1
= value
;
1269 case FR30_OPERAND_RS2
:
1270 fields
->f_Rs2
= value
;
1272 case FR30_OPERAND_CC
:
1273 fields
->f_cc
= value
;
1275 case FR30_OPERAND_CCC
:
1276 fields
->f_ccc
= value
;
1278 case FR30_OPERAND_DIR10
:
1279 fields
->f_dir10
= value
;
1281 case FR30_OPERAND_DIR8
:
1282 fields
->f_dir8
= value
;
1284 case FR30_OPERAND_DIR9
:
1285 fields
->f_dir9
= value
;
1287 case FR30_OPERAND_DISP10
:
1288 fields
->f_disp10
= value
;
1290 case FR30_OPERAND_DISP8
:
1291 fields
->f_disp8
= value
;
1293 case FR30_OPERAND_DISP9
:
1294 fields
->f_disp9
= value
;
1296 case FR30_OPERAND_I20
:
1297 fields
->f_i20
= value
;
1299 case FR30_OPERAND_I32
:
1300 fields
->f_i32
= value
;
1302 case FR30_OPERAND_I8
:
1303 fields
->f_i8
= value
;
1305 case FR30_OPERAND_LABEL12
:
1306 fields
->f_rel12
= value
;
1308 case FR30_OPERAND_LABEL9
:
1309 fields
->f_rel9
= value
;
1311 case FR30_OPERAND_M4
:
1312 fields
->f_m4
= value
;
1314 case FR30_OPERAND_PS
:
1316 case FR30_OPERAND_REGLIST_HI_LD
:
1317 fields
->f_reglist_hi_ld
= value
;
1319 case FR30_OPERAND_REGLIST_HI_ST
:
1320 fields
->f_reglist_hi_st
= value
;
1322 case FR30_OPERAND_REGLIST_LOW_LD
:
1323 fields
->f_reglist_low_ld
= value
;
1325 case FR30_OPERAND_REGLIST_LOW_ST
:
1326 fields
->f_reglist_low_st
= value
;
1328 case FR30_OPERAND_S10
:
1329 fields
->f_s10
= value
;
1331 case FR30_OPERAND_U10
:
1332 fields
->f_u10
= value
;
1334 case FR30_OPERAND_U4
:
1335 fields
->f_u4
= value
;
1337 case FR30_OPERAND_U4C
:
1338 fields
->f_u4c
= value
;
1340 case FR30_OPERAND_U8
:
1341 fields
->f_u8
= value
;
1343 case FR30_OPERAND_UDISP6
:
1344 fields
->f_udisp6
= value
;
1348 /* xgettext:c-format */
1349 fprintf (stderr
, _("Unrecognized field %d while setting int operand.\n"),
1356 fr30_cgen_set_vma_operand (cd
, opindex
, fields
, value
)
1357 CGEN_CPU_DESC cd ATTRIBUTE_UNUSED
;
1359 CGEN_FIELDS
* fields
;
1364 case FR30_OPERAND_CRI
:
1365 fields
->f_CRi
= value
;
1367 case FR30_OPERAND_CRJ
:
1368 fields
->f_CRj
= value
;
1370 case FR30_OPERAND_R13
:
1372 case FR30_OPERAND_R14
:
1374 case FR30_OPERAND_R15
:
1376 case FR30_OPERAND_RI
:
1377 fields
->f_Ri
= value
;
1379 case FR30_OPERAND_RIC
:
1380 fields
->f_Ric
= value
;
1382 case FR30_OPERAND_RJ
:
1383 fields
->f_Rj
= value
;
1385 case FR30_OPERAND_RJC
:
1386 fields
->f_Rjc
= value
;
1388 case FR30_OPERAND_RS1
:
1389 fields
->f_Rs1
= value
;
1391 case FR30_OPERAND_RS2
:
1392 fields
->f_Rs2
= value
;
1394 case FR30_OPERAND_CC
:
1395 fields
->f_cc
= value
;
1397 case FR30_OPERAND_CCC
:
1398 fields
->f_ccc
= value
;
1400 case FR30_OPERAND_DIR10
:
1401 fields
->f_dir10
= value
;
1403 case FR30_OPERAND_DIR8
:
1404 fields
->f_dir8
= value
;
1406 case FR30_OPERAND_DIR9
:
1407 fields
->f_dir9
= value
;
1409 case FR30_OPERAND_DISP10
:
1410 fields
->f_disp10
= value
;
1412 case FR30_OPERAND_DISP8
:
1413 fields
->f_disp8
= value
;
1415 case FR30_OPERAND_DISP9
:
1416 fields
->f_disp9
= value
;
1418 case FR30_OPERAND_I20
:
1419 fields
->f_i20
= value
;
1421 case FR30_OPERAND_I32
:
1422 fields
->f_i32
= value
;
1424 case FR30_OPERAND_I8
:
1425 fields
->f_i8
= value
;
1427 case FR30_OPERAND_LABEL12
:
1428 fields
->f_rel12
= value
;
1430 case FR30_OPERAND_LABEL9
:
1431 fields
->f_rel9
= value
;
1433 case FR30_OPERAND_M4
:
1434 fields
->f_m4
= value
;
1436 case FR30_OPERAND_PS
:
1438 case FR30_OPERAND_REGLIST_HI_LD
:
1439 fields
->f_reglist_hi_ld
= value
;
1441 case FR30_OPERAND_REGLIST_HI_ST
:
1442 fields
->f_reglist_hi_st
= value
;
1444 case FR30_OPERAND_REGLIST_LOW_LD
:
1445 fields
->f_reglist_low_ld
= value
;
1447 case FR30_OPERAND_REGLIST_LOW_ST
:
1448 fields
->f_reglist_low_st
= value
;
1450 case FR30_OPERAND_S10
:
1451 fields
->f_s10
= value
;
1453 case FR30_OPERAND_U10
:
1454 fields
->f_u10
= value
;
1456 case FR30_OPERAND_U4
:
1457 fields
->f_u4
= value
;
1459 case FR30_OPERAND_U4C
:
1460 fields
->f_u4c
= value
;
1462 case FR30_OPERAND_U8
:
1463 fields
->f_u8
= value
;
1465 case FR30_OPERAND_UDISP6
:
1466 fields
->f_udisp6
= value
;
1470 /* xgettext:c-format */
1471 fprintf (stderr
, _("Unrecognized field %d while setting vma operand.\n"),
1477 /* Function to call before using the instruction builder tables. */
1480 fr30_cgen_init_ibld_table (cd
)
1483 cd
->insert_handlers
= & fr30_cgen_insert_handlers
[0];
1484 cd
->extract_handlers
= & fr30_cgen_extract_handlers
[0];
1486 cd
->insert_operand
= fr30_cgen_insert_operand
;
1487 cd
->extract_operand
= fr30_cgen_extract_operand
;
1489 cd
->get_int_operand
= fr30_cgen_get_int_operand
;
1490 cd
->set_int_operand
= fr30_cgen_set_int_operand
;
1491 cd
->get_vma_operand
= fr30_cgen_get_vma_operand
;
1492 cd
->set_vma_operand
= fr30_cgen_set_vma_operand
;