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PR27755, powerpc-ld infinite loop
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1 /* DO NOT EDIT! -*- buffer-read-only: t -*- vi:set ro: */
2 /* Instruction building/extraction support for mt. -*- 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) 1996-2020 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 "mt-desc.h"
35 #include "mt-opc.h"
36 #include "cgen/basic-modes.h"
37 #include "opintl.h"
38 #include "safe-ctype.h"
39
40 #undef min
41 #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 #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 \f
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 {
88 unsigned long x,mask;
89 int shift;
90
91 x = cgen_get_insn_value (cd, bufp, word_length);
92
93 /* Written this way to avoid undefined behaviour. */
94 mask = (((1L << (length - 1)) - 1) << 1) | 1;
95 if (CGEN_INSN_LSB0_P)
96 shift = (start + 1) - length;
97 else
98 shift = (word_length - (start + length));
99 x = (x & ~(mask << shift)) | ((value & mask) << shift);
100
101 cgen_put_insn_value (cd, bufp, word_length, (bfd_vma) x);
102 }
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 {
133 static char errbuf[100];
134 /* Written this way to avoid undefined behaviour. */
135 unsigned long mask = (((1L << (length - 1)) - 1) << 1) | 1;
136
137 /* If LENGTH is zero, this operand doesn't contribute to the value. */
138 if (length == 0)
139 return NULL;
140
141 if (word_length > 8 * sizeof (CGEN_INSN_INT))
142 abort ();
143
144 /* For architectures with insns smaller than the base-insn-bitsize,
145 word_length may be too big. */
146 if (cd->min_insn_bitsize < cd->base_insn_bitsize)
147 {
148 if (word_offset == 0
149 && word_length > total_length)
150 word_length = total_length;
151 }
152
153 /* Ensure VALUE will fit. */
154 if (CGEN_BOOL_ATTR (attrs, CGEN_IFLD_SIGN_OPT))
155 {
156 long minval = - (1L << (length - 1));
157 unsigned long maxval = mask;
158
159 if ((value > 0 && (unsigned long) value > maxval)
160 || value < minval)
161 {
162 /* xgettext:c-format */
163 sprintf (errbuf,
164 _("operand out of range (%ld not between %ld and %lu)"),
165 value, minval, maxval);
166 return errbuf;
167 }
168 }
169 else if (! CGEN_BOOL_ATTR (attrs, CGEN_IFLD_SIGNED))
170 {
171 unsigned long maxval = mask;
172 unsigned long val = (unsigned long) value;
173
174 /* For hosts with a word size > 32 check to see if value has been sign
175 extended beyond 32 bits. If so then ignore these higher sign bits
176 as the user is attempting to store a 32-bit signed value into an
177 unsigned 32-bit field which is allowed. */
178 if (sizeof (unsigned long) > 4 && ((value >> 32) == -1))
179 val &= 0xFFFFFFFF;
180
181 if (val > maxval)
182 {
183 /* xgettext:c-format */
184 sprintf (errbuf,
185 _("operand out of range (0x%lx not between 0 and 0x%lx)"),
186 val, maxval);
187 return errbuf;
188 }
189 }
190 else
191 {
192 if (! cgen_signed_overflow_ok_p (cd))
193 {
194 long minval = - (1L << (length - 1));
195 long maxval = (1L << (length - 1)) - 1;
196
197 if (value < minval || value > maxval)
198 {
199 sprintf
200 /* xgettext:c-format */
201 (errbuf, _("operand out of range (%ld not between %ld and %ld)"),
202 value, minval, maxval);
203 return errbuf;
204 }
205 }
206 }
207
208 #if CGEN_INT_INSN_P
209
210 {
211 int shift_within_word, shift_to_word, shift;
212
213 /* How to shift the value to BIT0 of the word. */
214 shift_to_word = total_length - (word_offset + word_length);
215
216 /* How to shift the value to the field within the word. */
217 if (CGEN_INSN_LSB0_P)
218 shift_within_word = start + 1 - length;
219 else
220 shift_within_word = word_length - start - length;
221
222 /* The total SHIFT, then mask in the value. */
223 shift = shift_to_word + shift_within_word;
224 *buffer = (*buffer & ~(mask << shift)) | ((value & mask) << shift);
225 }
226
227 #else /* ! CGEN_INT_INSN_P */
228
229 {
230 unsigned char *bufp = (unsigned char *) buffer + word_offset / 8;
231
232 insert_1 (cd, value, start, length, word_length, bufp);
233 }
234
235 #endif /* ! CGEN_INT_INSN_P */
236
237 return NULL;
238 }
239
240 /* Default insn builder (insert handler).
241 The instruction is recorded in CGEN_INT_INSN_P byte order (meaning
242 that if CGEN_INSN_BYTES_PTR is an int * and thus, the value is
243 recorded in host byte order, otherwise BUFFER is an array of bytes
244 and the value is recorded in target byte order).
245 The result is an error message or NULL if success. */
246
247 static const char *
248 insert_insn_normal (CGEN_CPU_DESC cd,
249 const CGEN_INSN * insn,
250 CGEN_FIELDS * fields,
251 CGEN_INSN_BYTES_PTR buffer,
252 bfd_vma pc)
253 {
254 const CGEN_SYNTAX *syntax = CGEN_INSN_SYNTAX (insn);
255 unsigned long value;
256 const CGEN_SYNTAX_CHAR_TYPE * syn;
257
258 CGEN_INIT_INSERT (cd);
259 value = CGEN_INSN_BASE_VALUE (insn);
260
261 /* If we're recording insns as numbers (rather than a string of bytes),
262 target byte order handling is deferred until later. */
263
264 #if CGEN_INT_INSN_P
265
266 put_insn_int_value (cd, buffer, cd->base_insn_bitsize,
267 CGEN_FIELDS_BITSIZE (fields), value);
268
269 #else
270
271 cgen_put_insn_value (cd, buffer, min ((unsigned) cd->base_insn_bitsize,
272 (unsigned) CGEN_FIELDS_BITSIZE (fields)),
273 value);
274
275 #endif /* ! CGEN_INT_INSN_P */
276
277 /* ??? It would be better to scan the format's fields.
278 Still need to be able to insert a value based on the operand though;
279 e.g. storing a branch displacement that got resolved later.
280 Needs more thought first. */
281
282 for (syn = CGEN_SYNTAX_STRING (syntax); * syn; ++ syn)
283 {
284 const char *errmsg;
285
286 if (CGEN_SYNTAX_CHAR_P (* syn))
287 continue;
288
289 errmsg = (* cd->insert_operand) (cd, CGEN_SYNTAX_FIELD (*syn),
290 fields, buffer, pc);
291 if (errmsg)
292 return errmsg;
293 }
294
295 return NULL;
296 }
297
298 #if CGEN_INT_INSN_P
299 /* Cover function to store an insn value into an integral insn. Must go here
300 because it needs <prefix>-desc.h for CGEN_INT_INSN_P. */
301
302 static void
303 put_insn_int_value (CGEN_CPU_DESC cd ATTRIBUTE_UNUSED,
304 CGEN_INSN_BYTES_PTR buf,
305 int length,
306 int insn_length,
307 CGEN_INSN_INT value)
308 {
309 /* For architectures with insns smaller than the base-insn-bitsize,
310 length may be too big. */
311 if (length > insn_length)
312 *buf = value;
313 else
314 {
315 int shift = insn_length - length;
316 /* Written this way to avoid undefined behaviour. */
317 CGEN_INSN_INT mask = (((1L << (length - 1)) - 1) << 1) | 1;
318
319 *buf = (*buf & ~(mask << shift)) | ((value & mask) << shift);
320 }
321 }
322 #endif
323 \f
324 /* Operand extraction. */
325
326 #if ! CGEN_INT_INSN_P
327
328 /* Subroutine of extract_normal.
329 Ensure sufficient bytes are cached in EX_INFO.
330 OFFSET is the offset in bytes from the start of the insn of the value.
331 BYTES is the length of the needed value.
332 Returns 1 for success, 0 for failure. */
333
334 static CGEN_INLINE int
335 fill_cache (CGEN_CPU_DESC cd ATTRIBUTE_UNUSED,
336 CGEN_EXTRACT_INFO *ex_info,
337 int offset,
338 int bytes,
339 bfd_vma pc)
340 {
341 /* It's doubtful that the middle part has already been fetched so
342 we don't optimize that case. kiss. */
343 unsigned int mask;
344 disassemble_info *info = (disassemble_info *) ex_info->dis_info;
345
346 /* First do a quick check. */
347 mask = (1 << bytes) - 1;
348 if (((ex_info->valid >> offset) & mask) == mask)
349 return 1;
350
351 /* Search for the first byte we need to read. */
352 for (mask = 1 << offset; bytes > 0; --bytes, ++offset, mask <<= 1)
353 if (! (mask & ex_info->valid))
354 break;
355
356 if (bytes)
357 {
358 int status;
359
360 pc += offset;
361 status = (*info->read_memory_func)
362 (pc, ex_info->insn_bytes + offset, bytes, info);
363
364 if (status != 0)
365 {
366 (*info->memory_error_func) (status, pc, info);
367 return 0;
368 }
369
370 ex_info->valid |= ((1 << bytes) - 1) << offset;
371 }
372
373 return 1;
374 }
375
376 /* Subroutine of extract_normal. */
377
378 static CGEN_INLINE long
379 extract_1 (CGEN_CPU_DESC cd,
380 CGEN_EXTRACT_INFO *ex_info ATTRIBUTE_UNUSED,
381 int start,
382 int length,
383 int word_length,
384 unsigned char *bufp,
385 bfd_vma pc ATTRIBUTE_UNUSED)
386 {
387 unsigned long x;
388 int shift;
389
390 x = cgen_get_insn_value (cd, bufp, word_length);
391
392 if (CGEN_INSN_LSB0_P)
393 shift = (start + 1) - length;
394 else
395 shift = (word_length - (start + length));
396 return x >> shift;
397 }
398
399 #endif /* ! CGEN_INT_INSN_P */
400
401 /* Default extraction routine.
402
403 INSN_VALUE is the first base_insn_bitsize bits of the insn in host order,
404 or sometimes less for cases like the m32r where the base insn size is 32
405 but some insns are 16 bits.
406 ATTRS is a mask of the boolean attributes. We only need `SIGNED',
407 but for generality we take a bitmask of all of them.
408 WORD_OFFSET is the offset in bits from the start of the insn of the value.
409 WORD_LENGTH is the length of the word in bits in which the value resides.
410 START is the starting bit number in the word, architecture origin.
411 LENGTH is the length of VALUE in bits.
412 TOTAL_LENGTH is the total length of the insn in bits.
413
414 Returns 1 for success, 0 for failure. */
415
416 /* ??? The return code isn't properly used. wip. */
417
418 /* ??? This doesn't handle bfd_vma's. Create another function when
419 necessary. */
420
421 static int
422 extract_normal (CGEN_CPU_DESC cd,
423 #if ! CGEN_INT_INSN_P
424 CGEN_EXTRACT_INFO *ex_info,
425 #else
426 CGEN_EXTRACT_INFO *ex_info ATTRIBUTE_UNUSED,
427 #endif
428 CGEN_INSN_INT insn_value,
429 unsigned int attrs,
430 unsigned int word_offset,
431 unsigned int start,
432 unsigned int length,
433 unsigned int word_length,
434 unsigned int total_length,
435 #if ! CGEN_INT_INSN_P
436 bfd_vma pc,
437 #else
438 bfd_vma pc ATTRIBUTE_UNUSED,
439 #endif
440 long *valuep)
441 {
442 long value, mask;
443
444 /* If LENGTH is zero, this operand doesn't contribute to the value
445 so give it a standard value of zero. */
446 if (length == 0)
447 {
448 *valuep = 0;
449 return 1;
450 }
451
452 if (word_length > 8 * sizeof (CGEN_INSN_INT))
453 abort ();
454
455 /* For architectures with insns smaller than the insn-base-bitsize,
456 word_length may be too big. */
457 if (cd->min_insn_bitsize < cd->base_insn_bitsize)
458 {
459 if (word_offset + word_length > total_length)
460 word_length = total_length - word_offset;
461 }
462
463 /* Does the value reside in INSN_VALUE, and at the right alignment? */
464
465 if (CGEN_INT_INSN_P || (word_offset == 0 && word_length == total_length))
466 {
467 if (CGEN_INSN_LSB0_P)
468 value = insn_value >> ((word_offset + start + 1) - length);
469 else
470 value = insn_value >> (total_length - ( word_offset + start + length));
471 }
472
473 #if ! CGEN_INT_INSN_P
474
475 else
476 {
477 unsigned char *bufp = ex_info->insn_bytes + word_offset / 8;
478
479 if (word_length > 8 * sizeof (CGEN_INSN_INT))
480 abort ();
481
482 if (fill_cache (cd, ex_info, word_offset / 8, word_length / 8, pc) == 0)
483 return 0;
484
485 value = extract_1 (cd, ex_info, start, length, word_length, bufp, pc);
486 }
487
488 #endif /* ! CGEN_INT_INSN_P */
489
490 /* Written this way to avoid undefined behaviour. */
491 mask = (((1L << (length - 1)) - 1) << 1) | 1;
492
493 value &= mask;
494 /* sign extend? */
495 if (CGEN_BOOL_ATTR (attrs, CGEN_IFLD_SIGNED)
496 && (value & (1L << (length - 1))))
497 value |= ~mask;
498
499 *valuep = value;
500
501 return 1;
502 }
503
504 /* Default insn extractor.
505
506 INSN_VALUE is the first base_insn_bitsize bits, translated to host order.
507 The extracted fields are stored in FIELDS.
508 EX_INFO is used to handle reading variable length insns.
509 Return the length of the insn in bits, or 0 if no match,
510 or -1 if an error occurs fetching data (memory_error_func will have
511 been called). */
512
513 static int
514 extract_insn_normal (CGEN_CPU_DESC cd,
515 const CGEN_INSN *insn,
516 CGEN_EXTRACT_INFO *ex_info,
517 CGEN_INSN_INT insn_value,
518 CGEN_FIELDS *fields,
519 bfd_vma pc)
520 {
521 const CGEN_SYNTAX *syntax = CGEN_INSN_SYNTAX (insn);
522 const CGEN_SYNTAX_CHAR_TYPE *syn;
523
524 CGEN_FIELDS_BITSIZE (fields) = CGEN_INSN_BITSIZE (insn);
525
526 CGEN_INIT_EXTRACT (cd);
527
528 for (syn = CGEN_SYNTAX_STRING (syntax); *syn; ++syn)
529 {
530 int length;
531
532 if (CGEN_SYNTAX_CHAR_P (*syn))
533 continue;
534
535 length = (* cd->extract_operand) (cd, CGEN_SYNTAX_FIELD (*syn),
536 ex_info, insn_value, fields, pc);
537 if (length <= 0)
538 return length;
539 }
540
541 /* We recognized and successfully extracted this insn. */
542 return CGEN_INSN_BITSIZE (insn);
543 }
544 \f
545 /* Machine generated code added here. */
546
547 const char * mt_cgen_insert_operand
548 (CGEN_CPU_DESC, int, CGEN_FIELDS *, CGEN_INSN_BYTES_PTR, bfd_vma);
549
550 /* Main entry point for operand insertion.
551
552 This function is basically just a big switch statement. Earlier versions
553 used tables to look up the function to use, but
554 - if the table contains both assembler and disassembler functions then
555 the disassembler contains much of the assembler and vice-versa,
556 - there's a lot of inlining possibilities as things grow,
557 - using a switch statement avoids the function call overhead.
558
559 This function could be moved into `parse_insn_normal', but keeping it
560 separate makes clear the interface between `parse_insn_normal' and each of
561 the handlers. It's also needed by GAS to insert operands that couldn't be
562 resolved during parsing. */
563
564 const char *
565 mt_cgen_insert_operand (CGEN_CPU_DESC cd,
566 int opindex,
567 CGEN_FIELDS * fields,
568 CGEN_INSN_BYTES_PTR buffer,
569 bfd_vma pc ATTRIBUTE_UNUSED)
570 {
571 const char * errmsg = NULL;
572 unsigned int total_length = CGEN_FIELDS_BITSIZE (fields);
573
574 switch (opindex)
575 {
576 case MT_OPERAND_A23 :
577 errmsg = insert_normal (cd, fields->f_a23, 0, 0, 23, 1, 32, total_length, buffer);
578 break;
579 case MT_OPERAND_BALL :
580 errmsg = insert_normal (cd, fields->f_ball, 0, 0, 19, 1, 32, total_length, buffer);
581 break;
582 case MT_OPERAND_BALL2 :
583 errmsg = insert_normal (cd, fields->f_ball2, 0, 0, 15, 1, 32, total_length, buffer);
584 break;
585 case MT_OPERAND_BANKADDR :
586 errmsg = insert_normal (cd, fields->f_bankaddr, 0, 0, 25, 13, 32, total_length, buffer);
587 break;
588 case MT_OPERAND_BRC :
589 errmsg = insert_normal (cd, fields->f_brc, 0, 0, 18, 3, 32, total_length, buffer);
590 break;
591 case MT_OPERAND_BRC2 :
592 errmsg = insert_normal (cd, fields->f_brc2, 0, 0, 14, 3, 32, total_length, buffer);
593 break;
594 case MT_OPERAND_CB1INCR :
595 errmsg = insert_normal (cd, fields->f_cb1incr, 0|(1<<CGEN_IFLD_SIGNED), 0, 19, 6, 32, total_length, buffer);
596 break;
597 case MT_OPERAND_CB1SEL :
598 errmsg = insert_normal (cd, fields->f_cb1sel, 0, 0, 25, 3, 32, total_length, buffer);
599 break;
600 case MT_OPERAND_CB2INCR :
601 errmsg = insert_normal (cd, fields->f_cb2incr, 0|(1<<CGEN_IFLD_SIGNED), 0, 13, 6, 32, total_length, buffer);
602 break;
603 case MT_OPERAND_CB2SEL :
604 errmsg = insert_normal (cd, fields->f_cb2sel, 0, 0, 22, 3, 32, total_length, buffer);
605 break;
606 case MT_OPERAND_CBRB :
607 errmsg = insert_normal (cd, fields->f_cbrb, 0, 0, 10, 1, 32, total_length, buffer);
608 break;
609 case MT_OPERAND_CBS :
610 errmsg = insert_normal (cd, fields->f_cbs, 0, 0, 19, 2, 32, total_length, buffer);
611 break;
612 case MT_OPERAND_CBX :
613 errmsg = insert_normal (cd, fields->f_cbx, 0, 0, 14, 3, 32, total_length, buffer);
614 break;
615 case MT_OPERAND_CCB :
616 errmsg = insert_normal (cd, fields->f_ccb, 0, 0, 11, 1, 32, total_length, buffer);
617 break;
618 case MT_OPERAND_CDB :
619 errmsg = insert_normal (cd, fields->f_cdb, 0, 0, 10, 1, 32, total_length, buffer);
620 break;
621 case MT_OPERAND_CELL :
622 errmsg = insert_normal (cd, fields->f_cell, 0, 0, 9, 3, 32, total_length, buffer);
623 break;
624 case MT_OPERAND_COLNUM :
625 errmsg = insert_normal (cd, fields->f_colnum, 0, 0, 18, 3, 32, total_length, buffer);
626 break;
627 case MT_OPERAND_CONTNUM :
628 errmsg = insert_normal (cd, fields->f_contnum, 0, 0, 8, 9, 32, total_length, buffer);
629 break;
630 case MT_OPERAND_CR :
631 errmsg = insert_normal (cd, fields->f_cr, 0, 0, 22, 3, 32, total_length, buffer);
632 break;
633 case MT_OPERAND_CTXDISP :
634 errmsg = insert_normal (cd, fields->f_ctxdisp, 0, 0, 5, 6, 32, total_length, buffer);
635 break;
636 case MT_OPERAND_DUP :
637 errmsg = insert_normal (cd, fields->f_dup, 0, 0, 6, 1, 32, total_length, buffer);
638 break;
639 case MT_OPERAND_FBDISP :
640 errmsg = insert_normal (cd, fields->f_fbdisp, 0, 0, 15, 6, 32, total_length, buffer);
641 break;
642 case MT_OPERAND_FBINCR :
643 errmsg = insert_normal (cd, fields->f_fbincr, 0, 0, 23, 4, 32, total_length, buffer);
644 break;
645 case MT_OPERAND_FRDR :
646 errmsg = insert_normal (cd, fields->f_dr, 0|(1<<CGEN_IFLD_ABS_ADDR), 0, 19, 4, 32, total_length, buffer);
647 break;
648 case MT_OPERAND_FRDRRR :
649 errmsg = insert_normal (cd, fields->f_drrr, 0|(1<<CGEN_IFLD_ABS_ADDR), 0, 15, 4, 32, total_length, buffer);
650 break;
651 case MT_OPERAND_FRSR1 :
652 errmsg = insert_normal (cd, fields->f_sr1, 0|(1<<CGEN_IFLD_ABS_ADDR), 0, 23, 4, 32, total_length, buffer);
653 break;
654 case MT_OPERAND_FRSR2 :
655 errmsg = insert_normal (cd, fields->f_sr2, 0|(1<<CGEN_IFLD_ABS_ADDR), 0, 19, 4, 32, total_length, buffer);
656 break;
657 case MT_OPERAND_ID :
658 errmsg = insert_normal (cd, fields->f_id, 0, 0, 14, 1, 32, total_length, buffer);
659 break;
660 case MT_OPERAND_IMM16 :
661 {
662 long value = fields->f_imm16s;
663 value = ((value) + (0));
664 errmsg = insert_normal (cd, value, 0|(1<<CGEN_IFLD_SIGNED), 0, 15, 16, 32, total_length, buffer);
665 }
666 break;
667 case MT_OPERAND_IMM16L :
668 errmsg = insert_normal (cd, fields->f_imm16l, 0, 0, 23, 16, 32, total_length, buffer);
669 break;
670 case MT_OPERAND_IMM16O :
671 {
672 long value = fields->f_imm16s;
673 value = ((value) + (0));
674 errmsg = insert_normal (cd, value, 0|(1<<CGEN_IFLD_SIGNED), 0, 15, 16, 32, total_length, buffer);
675 }
676 break;
677 case MT_OPERAND_IMM16Z :
678 errmsg = insert_normal (cd, fields->f_imm16u, 0, 0, 15, 16, 32, total_length, buffer);
679 break;
680 case MT_OPERAND_INCAMT :
681 errmsg = insert_normal (cd, fields->f_incamt, 0, 0, 19, 8, 32, total_length, buffer);
682 break;
683 case MT_OPERAND_INCR :
684 errmsg = insert_normal (cd, fields->f_incr, 0, 0, 17, 6, 32, total_length, buffer);
685 break;
686 case MT_OPERAND_LENGTH :
687 errmsg = insert_normal (cd, fields->f_length, 0, 0, 15, 3, 32, total_length, buffer);
688 break;
689 case MT_OPERAND_LOOPSIZE :
690 {
691 long value = fields->f_loopo;
692 value = ((USI) (value) >> (2));
693 errmsg = insert_normal (cd, value, 0, 0, 7, 8, 32, total_length, buffer);
694 }
695 break;
696 case MT_OPERAND_MASK :
697 errmsg = insert_normal (cd, fields->f_mask, 0, 0, 25, 16, 32, total_length, buffer);
698 break;
699 case MT_OPERAND_MASK1 :
700 errmsg = insert_normal (cd, fields->f_mask1, 0, 0, 22, 3, 32, total_length, buffer);
701 break;
702 case MT_OPERAND_MODE :
703 errmsg = insert_normal (cd, fields->f_mode, 0, 0, 25, 2, 32, total_length, buffer);
704 break;
705 case MT_OPERAND_PERM :
706 errmsg = insert_normal (cd, fields->f_perm, 0, 0, 25, 2, 32, total_length, buffer);
707 break;
708 case MT_OPERAND_RBBC :
709 errmsg = insert_normal (cd, fields->f_rbbc, 0, 0, 25, 2, 32, total_length, buffer);
710 break;
711 case MT_OPERAND_RC :
712 errmsg = insert_normal (cd, fields->f_rc, 0, 0, 15, 1, 32, total_length, buffer);
713 break;
714 case MT_OPERAND_RC1 :
715 errmsg = insert_normal (cd, fields->f_rc1, 0, 0, 11, 1, 32, total_length, buffer);
716 break;
717 case MT_OPERAND_RC2 :
718 errmsg = insert_normal (cd, fields->f_rc2, 0, 0, 6, 1, 32, total_length, buffer);
719 break;
720 case MT_OPERAND_RC3 :
721 errmsg = insert_normal (cd, fields->f_rc3, 0, 0, 7, 1, 32, total_length, buffer);
722 break;
723 case MT_OPERAND_RCNUM :
724 errmsg = insert_normal (cd, fields->f_rcnum, 0, 0, 14, 3, 32, total_length, buffer);
725 break;
726 case MT_OPERAND_RDA :
727 errmsg = insert_normal (cd, fields->f_rda, 0, 0, 25, 1, 32, total_length, buffer);
728 break;
729 case MT_OPERAND_ROWNUM :
730 errmsg = insert_normal (cd, fields->f_rownum, 0, 0, 14, 3, 32, total_length, buffer);
731 break;
732 case MT_OPERAND_ROWNUM1 :
733 errmsg = insert_normal (cd, fields->f_rownum1, 0, 0, 12, 3, 32, total_length, buffer);
734 break;
735 case MT_OPERAND_ROWNUM2 :
736 errmsg = insert_normal (cd, fields->f_rownum2, 0, 0, 9, 3, 32, total_length, buffer);
737 break;
738 case MT_OPERAND_SIZE :
739 errmsg = insert_normal (cd, fields->f_size, 0, 0, 13, 14, 32, total_length, buffer);
740 break;
741 case MT_OPERAND_TYPE :
742 errmsg = insert_normal (cd, fields->f_type, 0, 0, 21, 2, 32, total_length, buffer);
743 break;
744 case MT_OPERAND_WR :
745 errmsg = insert_normal (cd, fields->f_wr, 0, 0, 24, 1, 32, total_length, buffer);
746 break;
747 case MT_OPERAND_XMODE :
748 errmsg = insert_normal (cd, fields->f_xmode, 0, 0, 23, 1, 32, total_length, buffer);
749 break;
750
751 default :
752 /* xgettext:c-format */
753 opcodes_error_handler
754 (_("internal error: unrecognized field %d while building insn"),
755 opindex);
756 abort ();
757 }
758
759 return errmsg;
760 }
761
762 int mt_cgen_extract_operand
763 (CGEN_CPU_DESC, int, CGEN_EXTRACT_INFO *, CGEN_INSN_INT, CGEN_FIELDS *, bfd_vma);
764
765 /* Main entry point for operand extraction.
766 The result is <= 0 for error, >0 for success.
767 ??? Actual values aren't well defined right now.
768
769 This function is basically just a big switch statement. Earlier versions
770 used tables to look up the function to use, but
771 - if the table contains both assembler and disassembler functions then
772 the disassembler contains much of the assembler and vice-versa,
773 - there's a lot of inlining possibilities as things grow,
774 - using a switch statement avoids the function call overhead.
775
776 This function could be moved into `print_insn_normal', but keeping it
777 separate makes clear the interface between `print_insn_normal' and each of
778 the handlers. */
779
780 int
781 mt_cgen_extract_operand (CGEN_CPU_DESC cd,
782 int opindex,
783 CGEN_EXTRACT_INFO *ex_info,
784 CGEN_INSN_INT insn_value,
785 CGEN_FIELDS * fields,
786 bfd_vma pc)
787 {
788 /* Assume success (for those operands that are nops). */
789 int length = 1;
790 unsigned int total_length = CGEN_FIELDS_BITSIZE (fields);
791
792 switch (opindex)
793 {
794 case MT_OPERAND_A23 :
795 length = extract_normal (cd, ex_info, insn_value, 0, 0, 23, 1, 32, total_length, pc, & fields->f_a23);
796 break;
797 case MT_OPERAND_BALL :
798 length = extract_normal (cd, ex_info, insn_value, 0, 0, 19, 1, 32, total_length, pc, & fields->f_ball);
799 break;
800 case MT_OPERAND_BALL2 :
801 length = extract_normal (cd, ex_info, insn_value, 0, 0, 15, 1, 32, total_length, pc, & fields->f_ball2);
802 break;
803 case MT_OPERAND_BANKADDR :
804 length = extract_normal (cd, ex_info, insn_value, 0, 0, 25, 13, 32, total_length, pc, & fields->f_bankaddr);
805 break;
806 case MT_OPERAND_BRC :
807 length = extract_normal (cd, ex_info, insn_value, 0, 0, 18, 3, 32, total_length, pc, & fields->f_brc);
808 break;
809 case MT_OPERAND_BRC2 :
810 length = extract_normal (cd, ex_info, insn_value, 0, 0, 14, 3, 32, total_length, pc, & fields->f_brc2);
811 break;
812 case MT_OPERAND_CB1INCR :
813 length = extract_normal (cd, ex_info, insn_value, 0|(1<<CGEN_IFLD_SIGNED), 0, 19, 6, 32, total_length, pc, & fields->f_cb1incr);
814 break;
815 case MT_OPERAND_CB1SEL :
816 length = extract_normal (cd, ex_info, insn_value, 0, 0, 25, 3, 32, total_length, pc, & fields->f_cb1sel);
817 break;
818 case MT_OPERAND_CB2INCR :
819 length = extract_normal (cd, ex_info, insn_value, 0|(1<<CGEN_IFLD_SIGNED), 0, 13, 6, 32, total_length, pc, & fields->f_cb2incr);
820 break;
821 case MT_OPERAND_CB2SEL :
822 length = extract_normal (cd, ex_info, insn_value, 0, 0, 22, 3, 32, total_length, pc, & fields->f_cb2sel);
823 break;
824 case MT_OPERAND_CBRB :
825 length = extract_normal (cd, ex_info, insn_value, 0, 0, 10, 1, 32, total_length, pc, & fields->f_cbrb);
826 break;
827 case MT_OPERAND_CBS :
828 length = extract_normal (cd, ex_info, insn_value, 0, 0, 19, 2, 32, total_length, pc, & fields->f_cbs);
829 break;
830 case MT_OPERAND_CBX :
831 length = extract_normal (cd, ex_info, insn_value, 0, 0, 14, 3, 32, total_length, pc, & fields->f_cbx);
832 break;
833 case MT_OPERAND_CCB :
834 length = extract_normal (cd, ex_info, insn_value, 0, 0, 11, 1, 32, total_length, pc, & fields->f_ccb);
835 break;
836 case MT_OPERAND_CDB :
837 length = extract_normal (cd, ex_info, insn_value, 0, 0, 10, 1, 32, total_length, pc, & fields->f_cdb);
838 break;
839 case MT_OPERAND_CELL :
840 length = extract_normal (cd, ex_info, insn_value, 0, 0, 9, 3, 32, total_length, pc, & fields->f_cell);
841 break;
842 case MT_OPERAND_COLNUM :
843 length = extract_normal (cd, ex_info, insn_value, 0, 0, 18, 3, 32, total_length, pc, & fields->f_colnum);
844 break;
845 case MT_OPERAND_CONTNUM :
846 length = extract_normal (cd, ex_info, insn_value, 0, 0, 8, 9, 32, total_length, pc, & fields->f_contnum);
847 break;
848 case MT_OPERAND_CR :
849 length = extract_normal (cd, ex_info, insn_value, 0, 0, 22, 3, 32, total_length, pc, & fields->f_cr);
850 break;
851 case MT_OPERAND_CTXDISP :
852 length = extract_normal (cd, ex_info, insn_value, 0, 0, 5, 6, 32, total_length, pc, & fields->f_ctxdisp);
853 break;
854 case MT_OPERAND_DUP :
855 length = extract_normal (cd, ex_info, insn_value, 0, 0, 6, 1, 32, total_length, pc, & fields->f_dup);
856 break;
857 case MT_OPERAND_FBDISP :
858 length = extract_normal (cd, ex_info, insn_value, 0, 0, 15, 6, 32, total_length, pc, & fields->f_fbdisp);
859 break;
860 case MT_OPERAND_FBINCR :
861 length = extract_normal (cd, ex_info, insn_value, 0, 0, 23, 4, 32, total_length, pc, & fields->f_fbincr);
862 break;
863 case MT_OPERAND_FRDR :
864 length = extract_normal (cd, ex_info, insn_value, 0|(1<<CGEN_IFLD_ABS_ADDR), 0, 19, 4, 32, total_length, pc, & fields->f_dr);
865 break;
866 case MT_OPERAND_FRDRRR :
867 length = extract_normal (cd, ex_info, insn_value, 0|(1<<CGEN_IFLD_ABS_ADDR), 0, 15, 4, 32, total_length, pc, & fields->f_drrr);
868 break;
869 case MT_OPERAND_FRSR1 :
870 length = extract_normal (cd, ex_info, insn_value, 0|(1<<CGEN_IFLD_ABS_ADDR), 0, 23, 4, 32, total_length, pc, & fields->f_sr1);
871 break;
872 case MT_OPERAND_FRSR2 :
873 length = extract_normal (cd, ex_info, insn_value, 0|(1<<CGEN_IFLD_ABS_ADDR), 0, 19, 4, 32, total_length, pc, & fields->f_sr2);
874 break;
875 case MT_OPERAND_ID :
876 length = extract_normal (cd, ex_info, insn_value, 0, 0, 14, 1, 32, total_length, pc, & fields->f_id);
877 break;
878 case MT_OPERAND_IMM16 :
879 {
880 long value;
881 length = extract_normal (cd, ex_info, insn_value, 0|(1<<CGEN_IFLD_SIGNED), 0, 15, 16, 32, total_length, pc, & value);
882 value = ((value) + (0));
883 fields->f_imm16s = value;
884 }
885 break;
886 case MT_OPERAND_IMM16L :
887 length = extract_normal (cd, ex_info, insn_value, 0, 0, 23, 16, 32, total_length, pc, & fields->f_imm16l);
888 break;
889 case MT_OPERAND_IMM16O :
890 {
891 long value;
892 length = extract_normal (cd, ex_info, insn_value, 0|(1<<CGEN_IFLD_SIGNED), 0, 15, 16, 32, total_length, pc, & value);
893 value = ((value) + (0));
894 fields->f_imm16s = value;
895 }
896 break;
897 case MT_OPERAND_IMM16Z :
898 length = extract_normal (cd, ex_info, insn_value, 0, 0, 15, 16, 32, total_length, pc, & fields->f_imm16u);
899 break;
900 case MT_OPERAND_INCAMT :
901 length = extract_normal (cd, ex_info, insn_value, 0, 0, 19, 8, 32, total_length, pc, & fields->f_incamt);
902 break;
903 case MT_OPERAND_INCR :
904 length = extract_normal (cd, ex_info, insn_value, 0, 0, 17, 6, 32, total_length, pc, & fields->f_incr);
905 break;
906 case MT_OPERAND_LENGTH :
907 length = extract_normal (cd, ex_info, insn_value, 0, 0, 15, 3, 32, total_length, pc, & fields->f_length);
908 break;
909 case MT_OPERAND_LOOPSIZE :
910 {
911 long value;
912 length = extract_normal (cd, ex_info, insn_value, 0, 0, 7, 8, 32, total_length, pc, & value);
913 value = ((((value) << (2))) + (8));
914 fields->f_loopo = value;
915 }
916 break;
917 case MT_OPERAND_MASK :
918 length = extract_normal (cd, ex_info, insn_value, 0, 0, 25, 16, 32, total_length, pc, & fields->f_mask);
919 break;
920 case MT_OPERAND_MASK1 :
921 length = extract_normal (cd, ex_info, insn_value, 0, 0, 22, 3, 32, total_length, pc, & fields->f_mask1);
922 break;
923 case MT_OPERAND_MODE :
924 length = extract_normal (cd, ex_info, insn_value, 0, 0, 25, 2, 32, total_length, pc, & fields->f_mode);
925 break;
926 case MT_OPERAND_PERM :
927 length = extract_normal (cd, ex_info, insn_value, 0, 0, 25, 2, 32, total_length, pc, & fields->f_perm);
928 break;
929 case MT_OPERAND_RBBC :
930 length = extract_normal (cd, ex_info, insn_value, 0, 0, 25, 2, 32, total_length, pc, & fields->f_rbbc);
931 break;
932 case MT_OPERAND_RC :
933 length = extract_normal (cd, ex_info, insn_value, 0, 0, 15, 1, 32, total_length, pc, & fields->f_rc);
934 break;
935 case MT_OPERAND_RC1 :
936 length = extract_normal (cd, ex_info, insn_value, 0, 0, 11, 1, 32, total_length, pc, & fields->f_rc1);
937 break;
938 case MT_OPERAND_RC2 :
939 length = extract_normal (cd, ex_info, insn_value, 0, 0, 6, 1, 32, total_length, pc, & fields->f_rc2);
940 break;
941 case MT_OPERAND_RC3 :
942 length = extract_normal (cd, ex_info, insn_value, 0, 0, 7, 1, 32, total_length, pc, & fields->f_rc3);
943 break;
944 case MT_OPERAND_RCNUM :
945 length = extract_normal (cd, ex_info, insn_value, 0, 0, 14, 3, 32, total_length, pc, & fields->f_rcnum);
946 break;
947 case MT_OPERAND_RDA :
948 length = extract_normal (cd, ex_info, insn_value, 0, 0, 25, 1, 32, total_length, pc, & fields->f_rda);
949 break;
950 case MT_OPERAND_ROWNUM :
951 length = extract_normal (cd, ex_info, insn_value, 0, 0, 14, 3, 32, total_length, pc, & fields->f_rownum);
952 break;
953 case MT_OPERAND_ROWNUM1 :
954 length = extract_normal (cd, ex_info, insn_value, 0, 0, 12, 3, 32, total_length, pc, & fields->f_rownum1);
955 break;
956 case MT_OPERAND_ROWNUM2 :
957 length = extract_normal (cd, ex_info, insn_value, 0, 0, 9, 3, 32, total_length, pc, & fields->f_rownum2);
958 break;
959 case MT_OPERAND_SIZE :
960 length = extract_normal (cd, ex_info, insn_value, 0, 0, 13, 14, 32, total_length, pc, & fields->f_size);
961 break;
962 case MT_OPERAND_TYPE :
963 length = extract_normal (cd, ex_info, insn_value, 0, 0, 21, 2, 32, total_length, pc, & fields->f_type);
964 break;
965 case MT_OPERAND_WR :
966 length = extract_normal (cd, ex_info, insn_value, 0, 0, 24, 1, 32, total_length, pc, & fields->f_wr);
967 break;
968 case MT_OPERAND_XMODE :
969 length = extract_normal (cd, ex_info, insn_value, 0, 0, 23, 1, 32, total_length, pc, & fields->f_xmode);
970 break;
971
972 default :
973 /* xgettext:c-format */
974 opcodes_error_handler
975 (_("internal error: unrecognized field %d while decoding insn"),
976 opindex);
977 abort ();
978 }
979
980 return length;
981 }
982
983 cgen_insert_fn * const mt_cgen_insert_handlers[] =
984 {
985 insert_insn_normal,
986 };
987
988 cgen_extract_fn * const mt_cgen_extract_handlers[] =
989 {
990 extract_insn_normal,
991 };
992
993 int mt_cgen_get_int_operand (CGEN_CPU_DESC, int, const CGEN_FIELDS *);
994 bfd_vma mt_cgen_get_vma_operand (CGEN_CPU_DESC, int, const CGEN_FIELDS *);
995
996 /* Getting values from cgen_fields is handled by a collection of functions.
997 They are distinguished by the type of the VALUE argument they return.
998 TODO: floating point, inlining support, remove cases where result type
999 not appropriate. */
1000
1001 int
1002 mt_cgen_get_int_operand (CGEN_CPU_DESC cd ATTRIBUTE_UNUSED,
1003 int opindex,
1004 const CGEN_FIELDS * fields)
1005 {
1006 int value;
1007
1008 switch (opindex)
1009 {
1010 case MT_OPERAND_A23 :
1011 value = fields->f_a23;
1012 break;
1013 case MT_OPERAND_BALL :
1014 value = fields->f_ball;
1015 break;
1016 case MT_OPERAND_BALL2 :
1017 value = fields->f_ball2;
1018 break;
1019 case MT_OPERAND_BANKADDR :
1020 value = fields->f_bankaddr;
1021 break;
1022 case MT_OPERAND_BRC :
1023 value = fields->f_brc;
1024 break;
1025 case MT_OPERAND_BRC2 :
1026 value = fields->f_brc2;
1027 break;
1028 case MT_OPERAND_CB1INCR :
1029 value = fields->f_cb1incr;
1030 break;
1031 case MT_OPERAND_CB1SEL :
1032 value = fields->f_cb1sel;
1033 break;
1034 case MT_OPERAND_CB2INCR :
1035 value = fields->f_cb2incr;
1036 break;
1037 case MT_OPERAND_CB2SEL :
1038 value = fields->f_cb2sel;
1039 break;
1040 case MT_OPERAND_CBRB :
1041 value = fields->f_cbrb;
1042 break;
1043 case MT_OPERAND_CBS :
1044 value = fields->f_cbs;
1045 break;
1046 case MT_OPERAND_CBX :
1047 value = fields->f_cbx;
1048 break;
1049 case MT_OPERAND_CCB :
1050 value = fields->f_ccb;
1051 break;
1052 case MT_OPERAND_CDB :
1053 value = fields->f_cdb;
1054 break;
1055 case MT_OPERAND_CELL :
1056 value = fields->f_cell;
1057 break;
1058 case MT_OPERAND_COLNUM :
1059 value = fields->f_colnum;
1060 break;
1061 case MT_OPERAND_CONTNUM :
1062 value = fields->f_contnum;
1063 break;
1064 case MT_OPERAND_CR :
1065 value = fields->f_cr;
1066 break;
1067 case MT_OPERAND_CTXDISP :
1068 value = fields->f_ctxdisp;
1069 break;
1070 case MT_OPERAND_DUP :
1071 value = fields->f_dup;
1072 break;
1073 case MT_OPERAND_FBDISP :
1074 value = fields->f_fbdisp;
1075 break;
1076 case MT_OPERAND_FBINCR :
1077 value = fields->f_fbincr;
1078 break;
1079 case MT_OPERAND_FRDR :
1080 value = fields->f_dr;
1081 break;
1082 case MT_OPERAND_FRDRRR :
1083 value = fields->f_drrr;
1084 break;
1085 case MT_OPERAND_FRSR1 :
1086 value = fields->f_sr1;
1087 break;
1088 case MT_OPERAND_FRSR2 :
1089 value = fields->f_sr2;
1090 break;
1091 case MT_OPERAND_ID :
1092 value = fields->f_id;
1093 break;
1094 case MT_OPERAND_IMM16 :
1095 value = fields->f_imm16s;
1096 break;
1097 case MT_OPERAND_IMM16L :
1098 value = fields->f_imm16l;
1099 break;
1100 case MT_OPERAND_IMM16O :
1101 value = fields->f_imm16s;
1102 break;
1103 case MT_OPERAND_IMM16Z :
1104 value = fields->f_imm16u;
1105 break;
1106 case MT_OPERAND_INCAMT :
1107 value = fields->f_incamt;
1108 break;
1109 case MT_OPERAND_INCR :
1110 value = fields->f_incr;
1111 break;
1112 case MT_OPERAND_LENGTH :
1113 value = fields->f_length;
1114 break;
1115 case MT_OPERAND_LOOPSIZE :
1116 value = fields->f_loopo;
1117 break;
1118 case MT_OPERAND_MASK :
1119 value = fields->f_mask;
1120 break;
1121 case MT_OPERAND_MASK1 :
1122 value = fields->f_mask1;
1123 break;
1124 case MT_OPERAND_MODE :
1125 value = fields->f_mode;
1126 break;
1127 case MT_OPERAND_PERM :
1128 value = fields->f_perm;
1129 break;
1130 case MT_OPERAND_RBBC :
1131 value = fields->f_rbbc;
1132 break;
1133 case MT_OPERAND_RC :
1134 value = fields->f_rc;
1135 break;
1136 case MT_OPERAND_RC1 :
1137 value = fields->f_rc1;
1138 break;
1139 case MT_OPERAND_RC2 :
1140 value = fields->f_rc2;
1141 break;
1142 case MT_OPERAND_RC3 :
1143 value = fields->f_rc3;
1144 break;
1145 case MT_OPERAND_RCNUM :
1146 value = fields->f_rcnum;
1147 break;
1148 case MT_OPERAND_RDA :
1149 value = fields->f_rda;
1150 break;
1151 case MT_OPERAND_ROWNUM :
1152 value = fields->f_rownum;
1153 break;
1154 case MT_OPERAND_ROWNUM1 :
1155 value = fields->f_rownum1;
1156 break;
1157 case MT_OPERAND_ROWNUM2 :
1158 value = fields->f_rownum2;
1159 break;
1160 case MT_OPERAND_SIZE :
1161 value = fields->f_size;
1162 break;
1163 case MT_OPERAND_TYPE :
1164 value = fields->f_type;
1165 break;
1166 case MT_OPERAND_WR :
1167 value = fields->f_wr;
1168 break;
1169 case MT_OPERAND_XMODE :
1170 value = fields->f_xmode;
1171 break;
1172
1173 default :
1174 /* xgettext:c-format */
1175 opcodes_error_handler
1176 (_("internal error: unrecognized field %d while getting int operand"),
1177 opindex);
1178 abort ();
1179 }
1180
1181 return value;
1182 }
1183
1184 bfd_vma
1185 mt_cgen_get_vma_operand (CGEN_CPU_DESC cd ATTRIBUTE_UNUSED,
1186 int opindex,
1187 const CGEN_FIELDS * fields)
1188 {
1189 bfd_vma value;
1190
1191 switch (opindex)
1192 {
1193 case MT_OPERAND_A23 :
1194 value = fields->f_a23;
1195 break;
1196 case MT_OPERAND_BALL :
1197 value = fields->f_ball;
1198 break;
1199 case MT_OPERAND_BALL2 :
1200 value = fields->f_ball2;
1201 break;
1202 case MT_OPERAND_BANKADDR :
1203 value = fields->f_bankaddr;
1204 break;
1205 case MT_OPERAND_BRC :
1206 value = fields->f_brc;
1207 break;
1208 case MT_OPERAND_BRC2 :
1209 value = fields->f_brc2;
1210 break;
1211 case MT_OPERAND_CB1INCR :
1212 value = fields->f_cb1incr;
1213 break;
1214 case MT_OPERAND_CB1SEL :
1215 value = fields->f_cb1sel;
1216 break;
1217 case MT_OPERAND_CB2INCR :
1218 value = fields->f_cb2incr;
1219 break;
1220 case MT_OPERAND_CB2SEL :
1221 value = fields->f_cb2sel;
1222 break;
1223 case MT_OPERAND_CBRB :
1224 value = fields->f_cbrb;
1225 break;
1226 case MT_OPERAND_CBS :
1227 value = fields->f_cbs;
1228 break;
1229 case MT_OPERAND_CBX :
1230 value = fields->f_cbx;
1231 break;
1232 case MT_OPERAND_CCB :
1233 value = fields->f_ccb;
1234 break;
1235 case MT_OPERAND_CDB :
1236 value = fields->f_cdb;
1237 break;
1238 case MT_OPERAND_CELL :
1239 value = fields->f_cell;
1240 break;
1241 case MT_OPERAND_COLNUM :
1242 value = fields->f_colnum;
1243 break;
1244 case MT_OPERAND_CONTNUM :
1245 value = fields->f_contnum;
1246 break;
1247 case MT_OPERAND_CR :
1248 value = fields->f_cr;
1249 break;
1250 case MT_OPERAND_CTXDISP :
1251 value = fields->f_ctxdisp;
1252 break;
1253 case MT_OPERAND_DUP :
1254 value = fields->f_dup;
1255 break;
1256 case MT_OPERAND_FBDISP :
1257 value = fields->f_fbdisp;
1258 break;
1259 case MT_OPERAND_FBINCR :
1260 value = fields->f_fbincr;
1261 break;
1262 case MT_OPERAND_FRDR :
1263 value = fields->f_dr;
1264 break;
1265 case MT_OPERAND_FRDRRR :
1266 value = fields->f_drrr;
1267 break;
1268 case MT_OPERAND_FRSR1 :
1269 value = fields->f_sr1;
1270 break;
1271 case MT_OPERAND_FRSR2 :
1272 value = fields->f_sr2;
1273 break;
1274 case MT_OPERAND_ID :
1275 value = fields->f_id;
1276 break;
1277 case MT_OPERAND_IMM16 :
1278 value = fields->f_imm16s;
1279 break;
1280 case MT_OPERAND_IMM16L :
1281 value = fields->f_imm16l;
1282 break;
1283 case MT_OPERAND_IMM16O :
1284 value = fields->f_imm16s;
1285 break;
1286 case MT_OPERAND_IMM16Z :
1287 value = fields->f_imm16u;
1288 break;
1289 case MT_OPERAND_INCAMT :
1290 value = fields->f_incamt;
1291 break;
1292 case MT_OPERAND_INCR :
1293 value = fields->f_incr;
1294 break;
1295 case MT_OPERAND_LENGTH :
1296 value = fields->f_length;
1297 break;
1298 case MT_OPERAND_LOOPSIZE :
1299 value = fields->f_loopo;
1300 break;
1301 case MT_OPERAND_MASK :
1302 value = fields->f_mask;
1303 break;
1304 case MT_OPERAND_MASK1 :
1305 value = fields->f_mask1;
1306 break;
1307 case MT_OPERAND_MODE :
1308 value = fields->f_mode;
1309 break;
1310 case MT_OPERAND_PERM :
1311 value = fields->f_perm;
1312 break;
1313 case MT_OPERAND_RBBC :
1314 value = fields->f_rbbc;
1315 break;
1316 case MT_OPERAND_RC :
1317 value = fields->f_rc;
1318 break;
1319 case MT_OPERAND_RC1 :
1320 value = fields->f_rc1;
1321 break;
1322 case MT_OPERAND_RC2 :
1323 value = fields->f_rc2;
1324 break;
1325 case MT_OPERAND_RC3 :
1326 value = fields->f_rc3;
1327 break;
1328 case MT_OPERAND_RCNUM :
1329 value = fields->f_rcnum;
1330 break;
1331 case MT_OPERAND_RDA :
1332 value = fields->f_rda;
1333 break;
1334 case MT_OPERAND_ROWNUM :
1335 value = fields->f_rownum;
1336 break;
1337 case MT_OPERAND_ROWNUM1 :
1338 value = fields->f_rownum1;
1339 break;
1340 case MT_OPERAND_ROWNUM2 :
1341 value = fields->f_rownum2;
1342 break;
1343 case MT_OPERAND_SIZE :
1344 value = fields->f_size;
1345 break;
1346 case MT_OPERAND_TYPE :
1347 value = fields->f_type;
1348 break;
1349 case MT_OPERAND_WR :
1350 value = fields->f_wr;
1351 break;
1352 case MT_OPERAND_XMODE :
1353 value = fields->f_xmode;
1354 break;
1355
1356 default :
1357 /* xgettext:c-format */
1358 opcodes_error_handler
1359 (_("internal error: unrecognized field %d while getting vma operand"),
1360 opindex);
1361 abort ();
1362 }
1363
1364 return value;
1365 }
1366
1367 void mt_cgen_set_int_operand (CGEN_CPU_DESC, int, CGEN_FIELDS *, int);
1368 void mt_cgen_set_vma_operand (CGEN_CPU_DESC, int, CGEN_FIELDS *, bfd_vma);
1369
1370 /* Stuffing values in cgen_fields is handled by a collection of functions.
1371 They are distinguished by the type of the VALUE argument they accept.
1372 TODO: floating point, inlining support, remove cases where argument type
1373 not appropriate. */
1374
1375 void
1376 mt_cgen_set_int_operand (CGEN_CPU_DESC cd ATTRIBUTE_UNUSED,
1377 int opindex,
1378 CGEN_FIELDS * fields,
1379 int value)
1380 {
1381 switch (opindex)
1382 {
1383 case MT_OPERAND_A23 :
1384 fields->f_a23 = value;
1385 break;
1386 case MT_OPERAND_BALL :
1387 fields->f_ball = value;
1388 break;
1389 case MT_OPERAND_BALL2 :
1390 fields->f_ball2 = value;
1391 break;
1392 case MT_OPERAND_BANKADDR :
1393 fields->f_bankaddr = value;
1394 break;
1395 case MT_OPERAND_BRC :
1396 fields->f_brc = value;
1397 break;
1398 case MT_OPERAND_BRC2 :
1399 fields->f_brc2 = value;
1400 break;
1401 case MT_OPERAND_CB1INCR :
1402 fields->f_cb1incr = value;
1403 break;
1404 case MT_OPERAND_CB1SEL :
1405 fields->f_cb1sel = value;
1406 break;
1407 case MT_OPERAND_CB2INCR :
1408 fields->f_cb2incr = value;
1409 break;
1410 case MT_OPERAND_CB2SEL :
1411 fields->f_cb2sel = value;
1412 break;
1413 case MT_OPERAND_CBRB :
1414 fields->f_cbrb = value;
1415 break;
1416 case MT_OPERAND_CBS :
1417 fields->f_cbs = value;
1418 break;
1419 case MT_OPERAND_CBX :
1420 fields->f_cbx = value;
1421 break;
1422 case MT_OPERAND_CCB :
1423 fields->f_ccb = value;
1424 break;
1425 case MT_OPERAND_CDB :
1426 fields->f_cdb = value;
1427 break;
1428 case MT_OPERAND_CELL :
1429 fields->f_cell = value;
1430 break;
1431 case MT_OPERAND_COLNUM :
1432 fields->f_colnum = value;
1433 break;
1434 case MT_OPERAND_CONTNUM :
1435 fields->f_contnum = value;
1436 break;
1437 case MT_OPERAND_CR :
1438 fields->f_cr = value;
1439 break;
1440 case MT_OPERAND_CTXDISP :
1441 fields->f_ctxdisp = value;
1442 break;
1443 case MT_OPERAND_DUP :
1444 fields->f_dup = value;
1445 break;
1446 case MT_OPERAND_FBDISP :
1447 fields->f_fbdisp = value;
1448 break;
1449 case MT_OPERAND_FBINCR :
1450 fields->f_fbincr = value;
1451 break;
1452 case MT_OPERAND_FRDR :
1453 fields->f_dr = value;
1454 break;
1455 case MT_OPERAND_FRDRRR :
1456 fields->f_drrr = value;
1457 break;
1458 case MT_OPERAND_FRSR1 :
1459 fields->f_sr1 = value;
1460 break;
1461 case MT_OPERAND_FRSR2 :
1462 fields->f_sr2 = value;
1463 break;
1464 case MT_OPERAND_ID :
1465 fields->f_id = value;
1466 break;
1467 case MT_OPERAND_IMM16 :
1468 fields->f_imm16s = value;
1469 break;
1470 case MT_OPERAND_IMM16L :
1471 fields->f_imm16l = value;
1472 break;
1473 case MT_OPERAND_IMM16O :
1474 fields->f_imm16s = value;
1475 break;
1476 case MT_OPERAND_IMM16Z :
1477 fields->f_imm16u = value;
1478 break;
1479 case MT_OPERAND_INCAMT :
1480 fields->f_incamt = value;
1481 break;
1482 case MT_OPERAND_INCR :
1483 fields->f_incr = value;
1484 break;
1485 case MT_OPERAND_LENGTH :
1486 fields->f_length = value;
1487 break;
1488 case MT_OPERAND_LOOPSIZE :
1489 fields->f_loopo = value;
1490 break;
1491 case MT_OPERAND_MASK :
1492 fields->f_mask = value;
1493 break;
1494 case MT_OPERAND_MASK1 :
1495 fields->f_mask1 = value;
1496 break;
1497 case MT_OPERAND_MODE :
1498 fields->f_mode = value;
1499 break;
1500 case MT_OPERAND_PERM :
1501 fields->f_perm = value;
1502 break;
1503 case MT_OPERAND_RBBC :
1504 fields->f_rbbc = value;
1505 break;
1506 case MT_OPERAND_RC :
1507 fields->f_rc = value;
1508 break;
1509 case MT_OPERAND_RC1 :
1510 fields->f_rc1 = value;
1511 break;
1512 case MT_OPERAND_RC2 :
1513 fields->f_rc2 = value;
1514 break;
1515 case MT_OPERAND_RC3 :
1516 fields->f_rc3 = value;
1517 break;
1518 case MT_OPERAND_RCNUM :
1519 fields->f_rcnum = value;
1520 break;
1521 case MT_OPERAND_RDA :
1522 fields->f_rda = value;
1523 break;
1524 case MT_OPERAND_ROWNUM :
1525 fields->f_rownum = value;
1526 break;
1527 case MT_OPERAND_ROWNUM1 :
1528 fields->f_rownum1 = value;
1529 break;
1530 case MT_OPERAND_ROWNUM2 :
1531 fields->f_rownum2 = value;
1532 break;
1533 case MT_OPERAND_SIZE :
1534 fields->f_size = value;
1535 break;
1536 case MT_OPERAND_TYPE :
1537 fields->f_type = value;
1538 break;
1539 case MT_OPERAND_WR :
1540 fields->f_wr = value;
1541 break;
1542 case MT_OPERAND_XMODE :
1543 fields->f_xmode = value;
1544 break;
1545
1546 default :
1547 /* xgettext:c-format */
1548 opcodes_error_handler
1549 (_("internal error: unrecognized field %d while setting int operand"),
1550 opindex);
1551 abort ();
1552 }
1553 }
1554
1555 void
1556 mt_cgen_set_vma_operand (CGEN_CPU_DESC cd ATTRIBUTE_UNUSED,
1557 int opindex,
1558 CGEN_FIELDS * fields,
1559 bfd_vma value)
1560 {
1561 switch (opindex)
1562 {
1563 case MT_OPERAND_A23 :
1564 fields->f_a23 = value;
1565 break;
1566 case MT_OPERAND_BALL :
1567 fields->f_ball = value;
1568 break;
1569 case MT_OPERAND_BALL2 :
1570 fields->f_ball2 = value;
1571 break;
1572 case MT_OPERAND_BANKADDR :
1573 fields->f_bankaddr = value;
1574 break;
1575 case MT_OPERAND_BRC :
1576 fields->f_brc = value;
1577 break;
1578 case MT_OPERAND_BRC2 :
1579 fields->f_brc2 = value;
1580 break;
1581 case MT_OPERAND_CB1INCR :
1582 fields->f_cb1incr = value;
1583 break;
1584 case MT_OPERAND_CB1SEL :
1585 fields->f_cb1sel = value;
1586 break;
1587 case MT_OPERAND_CB2INCR :
1588 fields->f_cb2incr = value;
1589 break;
1590 case MT_OPERAND_CB2SEL :
1591 fields->f_cb2sel = value;
1592 break;
1593 case MT_OPERAND_CBRB :
1594 fields->f_cbrb = value;
1595 break;
1596 case MT_OPERAND_CBS :
1597 fields->f_cbs = value;
1598 break;
1599 case MT_OPERAND_CBX :
1600 fields->f_cbx = value;
1601 break;
1602 case MT_OPERAND_CCB :
1603 fields->f_ccb = value;
1604 break;
1605 case MT_OPERAND_CDB :
1606 fields->f_cdb = value;
1607 break;
1608 case MT_OPERAND_CELL :
1609 fields->f_cell = value;
1610 break;
1611 case MT_OPERAND_COLNUM :
1612 fields->f_colnum = value;
1613 break;
1614 case MT_OPERAND_CONTNUM :
1615 fields->f_contnum = value;
1616 break;
1617 case MT_OPERAND_CR :
1618 fields->f_cr = value;
1619 break;
1620 case MT_OPERAND_CTXDISP :
1621 fields->f_ctxdisp = value;
1622 break;
1623 case MT_OPERAND_DUP :
1624 fields->f_dup = value;
1625 break;
1626 case MT_OPERAND_FBDISP :
1627 fields->f_fbdisp = value;
1628 break;
1629 case MT_OPERAND_FBINCR :
1630 fields->f_fbincr = value;
1631 break;
1632 case MT_OPERAND_FRDR :
1633 fields->f_dr = value;
1634 break;
1635 case MT_OPERAND_FRDRRR :
1636 fields->f_drrr = value;
1637 break;
1638 case MT_OPERAND_FRSR1 :
1639 fields->f_sr1 = value;
1640 break;
1641 case MT_OPERAND_FRSR2 :
1642 fields->f_sr2 = value;
1643 break;
1644 case MT_OPERAND_ID :
1645 fields->f_id = value;
1646 break;
1647 case MT_OPERAND_IMM16 :
1648 fields->f_imm16s = value;
1649 break;
1650 case MT_OPERAND_IMM16L :
1651 fields->f_imm16l = value;
1652 break;
1653 case MT_OPERAND_IMM16O :
1654 fields->f_imm16s = value;
1655 break;
1656 case MT_OPERAND_IMM16Z :
1657 fields->f_imm16u = value;
1658 break;
1659 case MT_OPERAND_INCAMT :
1660 fields->f_incamt = value;
1661 break;
1662 case MT_OPERAND_INCR :
1663 fields->f_incr = value;
1664 break;
1665 case MT_OPERAND_LENGTH :
1666 fields->f_length = value;
1667 break;
1668 case MT_OPERAND_LOOPSIZE :
1669 fields->f_loopo = value;
1670 break;
1671 case MT_OPERAND_MASK :
1672 fields->f_mask = value;
1673 break;
1674 case MT_OPERAND_MASK1 :
1675 fields->f_mask1 = value;
1676 break;
1677 case MT_OPERAND_MODE :
1678 fields->f_mode = value;
1679 break;
1680 case MT_OPERAND_PERM :
1681 fields->f_perm = value;
1682 break;
1683 case MT_OPERAND_RBBC :
1684 fields->f_rbbc = value;
1685 break;
1686 case MT_OPERAND_RC :
1687 fields->f_rc = value;
1688 break;
1689 case MT_OPERAND_RC1 :
1690 fields->f_rc1 = value;
1691 break;
1692 case MT_OPERAND_RC2 :
1693 fields->f_rc2 = value;
1694 break;
1695 case MT_OPERAND_RC3 :
1696 fields->f_rc3 = value;
1697 break;
1698 case MT_OPERAND_RCNUM :
1699 fields->f_rcnum = value;
1700 break;
1701 case MT_OPERAND_RDA :
1702 fields->f_rda = value;
1703 break;
1704 case MT_OPERAND_ROWNUM :
1705 fields->f_rownum = value;
1706 break;
1707 case MT_OPERAND_ROWNUM1 :
1708 fields->f_rownum1 = value;
1709 break;
1710 case MT_OPERAND_ROWNUM2 :
1711 fields->f_rownum2 = value;
1712 break;
1713 case MT_OPERAND_SIZE :
1714 fields->f_size = value;
1715 break;
1716 case MT_OPERAND_TYPE :
1717 fields->f_type = value;
1718 break;
1719 case MT_OPERAND_WR :
1720 fields->f_wr = value;
1721 break;
1722 case MT_OPERAND_XMODE :
1723 fields->f_xmode = value;
1724 break;
1725
1726 default :
1727 /* xgettext:c-format */
1728 opcodes_error_handler
1729 (_("internal error: unrecognized field %d while setting vma operand"),
1730 opindex);
1731 abort ();
1732 }
1733 }
1734
1735 /* Function to call before using the instruction builder tables. */
1736
1737 void
1738 mt_cgen_init_ibld_table (CGEN_CPU_DESC cd)
1739 {
1740 cd->insert_handlers = & mt_cgen_insert_handlers[0];
1741 cd->extract_handlers = & mt_cgen_extract_handlers[0];
1742
1743 cd->insert_operand = mt_cgen_insert_operand;
1744 cd->extract_operand = mt_cgen_extract_operand;
1745
1746 cd->get_int_operand = mt_cgen_get_int_operand;
1747 cd->set_int_operand = mt_cgen_set_int_operand;
1748 cd->get_vma_operand = mt_cgen_get_vma_operand;
1749 cd->set_vma_operand = mt_cgen_set_vma_operand;
1750 }