Remove i860, i960, bout and aout-adobe targets
[deliverable/binutils-gdb.git] / opcodes / arc-opc.c
... / ...
CommitLineData
1/* Opcode table for the ARC.
2 Copyright (C) 1994-2018 Free Software Foundation, Inc.
3
4 Contributed by Claudiu Zissulescu (claziss@synopsys.com)
5
6 This file is part of libopcodes.
7
8 This library is free software; you can redistribute it and/or modify
9 it under the terms of the GNU General Public License as published by
10 the Free Software Foundation; either version 3, or (at your option)
11 any later version.
12
13 It is distributed in the hope that it will be useful, but WITHOUT
14 ANY WARRANTY; without even the implied warranty of MERCHANTABILITY
15 or FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public
16 License for more details.
17
18 You should have received a copy of the GNU General Public License
19 along with this program; if not, write to the Free Software Foundation,
20 Inc., 51 Franklin Street - Fifth Floor, Boston, MA 02110-1301, USA. */
21
22#include "sysdep.h"
23#include <stdio.h>
24#include "bfd.h"
25#include "opcode/arc.h"
26#include "opintl.h"
27#include "libiberty.h"
28
29/* ARC NPS400 Support: The ARC NPS400 core is an ARC700 with some custom
30 instructions. All NPS400 features are built into all ARC target builds as
31 this reduces the chances that regressions might creep in. */
32
33/* Insert RA register into a 32-bit opcode, with checks. */
34
35static unsigned long long
36insert_ra_chk (unsigned long long insn,
37 long long value,
38 const char ** errmsg)
39{
40 if (value == 60)
41 *errmsg = _("LP_COUNT register cannot be used as destination register");
42
43 return insn | (value & 0x3F);
44}
45
46/* Insert RB register into a 32-bit opcode. */
47
48static unsigned long long
49insert_rb (unsigned long long insn,
50 long long value,
51 const char ** errmsg ATTRIBUTE_UNUSED)
52{
53 return insn | ((value & 0x07) << 24) | (((value >> 3) & 0x07) << 12);
54}
55
56/* Insert RB register with checks. */
57
58static unsigned long long
59insert_rb_chk (unsigned long long insn,
60 long long value,
61 const char ** errmsg)
62{
63 if (value == 60)
64 *errmsg = _("LP_COUNT register cannot be used as destination register");
65
66 return insn | ((value & 0x07) << 24) | (((value >> 3) & 0x07) << 12);
67}
68
69static long long
70extract_rb (unsigned long long insn,
71 bfd_boolean * invalid)
72{
73 int value = (((insn >> 12) & 0x07) << 3) | ((insn >> 24) & 0x07);
74
75 if (value == 0x3e && invalid)
76 *invalid = TRUE; /* A limm operand, it should be extracted in a
77 different way. */
78
79 return value;
80}
81
82static unsigned long long
83insert_rad (unsigned long long insn,
84 long long value,
85 const char ** errmsg)
86{
87 if (value & 0x01)
88 *errmsg = _("cannot use odd number destination register");
89 if (value == 60)
90 *errmsg = _("LP_COUNT register cannot be used as destination register");
91
92 return insn | (value & 0x3F);
93}
94
95static unsigned long long
96insert_rcd (unsigned long long insn,
97 long long value,
98 const char ** errmsg)
99{
100 if (value & 0x01)
101 *errmsg = _("cannot use odd number source register");
102
103 return insn | ((value & 0x3F) << 6);
104}
105
106/* Dummy insert ZERO operand function. */
107
108static unsigned long long
109insert_za (unsigned long long insn,
110 long long value,
111 const char ** errmsg)
112{
113 if (value)
114 *errmsg = _("operand is not zero");
115 return insn;
116}
117
118/* Insert Y-bit in bbit/br instructions. This function is called only
119 when solving fixups. */
120
121static unsigned long long
122insert_Ybit (unsigned long long insn,
123 long long value,
124 const char ** errmsg ATTRIBUTE_UNUSED)
125{
126 if (value > 0)
127 insn |= 0x08;
128
129 return insn;
130}
131
132/* Insert Y-bit in bbit/br instructions. This function is called only
133 when solving fixups. */
134
135static unsigned long long
136insert_NYbit (unsigned long long insn,
137 long long value,
138 const char ** errmsg ATTRIBUTE_UNUSED)
139{
140 if (value < 0)
141 insn |= 0x08;
142
143 return insn;
144}
145
146/* Insert H register into a 16-bit opcode. */
147
148static unsigned long long
149insert_rhv1 (unsigned long long insn,
150 long long value,
151 const char ** errmsg ATTRIBUTE_UNUSED)
152{
153 return insn |= ((value & 0x07) << 5) | ((value >> 3) & 0x07);
154}
155
156static long long
157extract_rhv1 (unsigned long long insn,
158 bfd_boolean * invalid ATTRIBUTE_UNUSED)
159{
160 int value = ((insn & 0x7) << 3) | ((insn >> 5) & 0x7);
161
162 return value;
163}
164
165/* Insert H register into a 16-bit opcode. */
166
167static unsigned long long
168insert_rhv2 (unsigned long long insn,
169 long long value,
170 const char ** errmsg)
171{
172 if (value == 0x1E)
173 *errmsg = _("register R30 is a limm indicator");
174 else if (value < 0 || value > 31)
175 *errmsg = _("register out of range");
176 return insn |= ((value & 0x07) << 5) | ((value >> 3) & 0x03);
177}
178
179static long long
180extract_rhv2 (unsigned long long insn,
181 bfd_boolean * invalid ATTRIBUTE_UNUSED)
182{
183 int value = ((insn >> 5) & 0x07) | ((insn & 0x03) << 3);
184
185 return value;
186}
187
188static unsigned long long
189insert_r0 (unsigned long long insn,
190 long long value,
191 const char ** errmsg)
192{
193 if (value != 0)
194 *errmsg = _("register must be R0");
195 return insn;
196}
197
198static long long
199extract_r0 (unsigned long long insn ATTRIBUTE_UNUSED,
200 bfd_boolean * invalid ATTRIBUTE_UNUSED)
201{
202 return 0;
203}
204
205
206static unsigned long long
207insert_r1 (unsigned long long insn,
208 long long value,
209 const char ** errmsg)
210{
211 if (value != 1)
212 *errmsg = _("register must be R1");
213 return insn;
214}
215
216static long long
217extract_r1 (unsigned long long insn ATTRIBUTE_UNUSED,
218 bfd_boolean * invalid ATTRIBUTE_UNUSED)
219{
220 return 1;
221}
222
223static unsigned long long
224insert_r2 (unsigned long long insn,
225 long long value,
226 const char ** errmsg)
227{
228 if (value != 2)
229 *errmsg = _("register must be R2");
230 return insn;
231}
232
233static long long
234extract_r2 (unsigned long long insn ATTRIBUTE_UNUSED,
235 bfd_boolean * invalid ATTRIBUTE_UNUSED)
236{
237 return 2;
238}
239
240static unsigned long long
241insert_r3 (unsigned long long insn,
242 long long value,
243 const char ** errmsg)
244{
245 if (value != 3)
246 *errmsg = _("register must be R3");
247 return insn;
248}
249
250static long long
251extract_r3 (unsigned long long insn ATTRIBUTE_UNUSED,
252 bfd_boolean * invalid ATTRIBUTE_UNUSED)
253{
254 return 3;
255}
256
257static unsigned long long
258insert_sp (unsigned long long insn,
259 long long value,
260 const char ** errmsg)
261{
262 if (value != 28)
263 *errmsg = _("register must be SP");
264 return insn;
265}
266
267static long long
268extract_sp (unsigned long long insn ATTRIBUTE_UNUSED,
269 bfd_boolean * invalid ATTRIBUTE_UNUSED)
270{
271 return 28;
272}
273
274static unsigned long long
275insert_gp (unsigned long long insn,
276 long long value,
277 const char ** errmsg)
278{
279 if (value != 26)
280 *errmsg = _("register must be GP");
281 return insn;
282}
283
284static long long
285extract_gp (unsigned long long insn ATTRIBUTE_UNUSED,
286 bfd_boolean * invalid ATTRIBUTE_UNUSED)
287{
288 return 26;
289}
290
291static unsigned long long
292insert_pcl (unsigned long long insn,
293 long long value,
294 const char ** errmsg)
295{
296 if (value != 63)
297 *errmsg = _("register must be PCL");
298 return insn;
299}
300
301static long long
302extract_pcl (unsigned long long insn ATTRIBUTE_UNUSED,
303 bfd_boolean * invalid ATTRIBUTE_UNUSED)
304{
305 return 63;
306}
307
308static unsigned long long
309insert_blink (unsigned long long insn,
310 long long value,
311 const char ** errmsg)
312{
313 if (value != 31)
314 *errmsg = _("register must be BLINK");
315 return insn;
316}
317
318static long long
319extract_blink (unsigned long long insn ATTRIBUTE_UNUSED,
320 bfd_boolean * invalid ATTRIBUTE_UNUSED)
321{
322 return 31;
323}
324
325static unsigned long long
326insert_ilink1 (unsigned long long insn,
327 long long value,
328 const char ** errmsg)
329{
330 if (value != 29)
331 *errmsg = _("register must be ILINK1");
332 return insn;
333}
334
335static long long
336extract_ilink1 (unsigned long long insn ATTRIBUTE_UNUSED,
337 bfd_boolean * invalid ATTRIBUTE_UNUSED)
338{
339 return 29;
340}
341
342static unsigned long long
343insert_ilink2 (unsigned long long insn,
344 long long value,
345 const char ** errmsg)
346{
347 if (value != 30)
348 *errmsg = _("register must be ILINK2");
349 return insn;
350}
351
352static long long
353extract_ilink2 (unsigned long long insn ATTRIBUTE_UNUSED,
354 bfd_boolean * invalid ATTRIBUTE_UNUSED)
355{
356 return 30;
357}
358
359static unsigned long long
360insert_ras (unsigned long long insn,
361 long long value,
362 const char ** errmsg)
363{
364 switch (value)
365 {
366 case 0:
367 case 1:
368 case 2:
369 case 3:
370 insn |= value;
371 break;
372 case 12:
373 case 13:
374 case 14:
375 case 15:
376 insn |= (value - 8);
377 break;
378 default:
379 *errmsg = _("register must be either r0-r3 or r12-r15");
380 break;
381 }
382 return insn;
383}
384
385static long long
386extract_ras (unsigned long long insn,
387 bfd_boolean * invalid ATTRIBUTE_UNUSED)
388{
389 int value = insn & 0x07;
390
391 if (value > 3)
392 return (value + 8);
393 else
394 return value;
395}
396
397static unsigned long long
398insert_rbs (unsigned long long insn,
399 long long value,
400 const char ** errmsg)
401{
402 switch (value)
403 {
404 case 0:
405 case 1:
406 case 2:
407 case 3:
408 insn |= value << 8;
409 break;
410 case 12:
411 case 13:
412 case 14:
413 case 15:
414 insn |= ((value - 8)) << 8;
415 break;
416 default:
417 *errmsg = _("register must be either r0-r3 or r12-r15");
418 break;
419 }
420 return insn;
421}
422
423static long long
424extract_rbs (unsigned long long insn,
425 bfd_boolean * invalid ATTRIBUTE_UNUSED)
426{
427 int value = (insn >> 8) & 0x07;
428
429 if (value > 3)
430 return (value + 8);
431 else
432 return value;
433}
434
435static unsigned long long
436insert_rcs (unsigned long long insn,
437 long long value,
438 const char ** errmsg)
439{
440 switch (value)
441 {
442 case 0:
443 case 1:
444 case 2:
445 case 3:
446 insn |= value << 5;
447 break;
448 case 12:
449 case 13:
450 case 14:
451 case 15:
452 insn |= ((value - 8)) << 5;
453 break;
454 default:
455 *errmsg = _("register must be either r0-r3 or r12-r15");
456 break;
457 }
458 return insn;
459}
460
461static long long
462extract_rcs (unsigned long long insn,
463 bfd_boolean * invalid ATTRIBUTE_UNUSED)
464{
465 int value = (insn >> 5) & 0x07;
466
467 if (value > 3)
468 return (value + 8);
469 else
470 return value;
471}
472
473static unsigned long long
474insert_simm3s (unsigned long long insn,
475 long long value,
476 const char ** errmsg)
477{
478 int tmp = 0;
479 switch (value)
480 {
481 case -1:
482 tmp = 0x07;
483 break;
484 case 0:
485 tmp = 0x00;
486 break;
487 case 1:
488 tmp = 0x01;
489 break;
490 case 2:
491 tmp = 0x02;
492 break;
493 case 3:
494 tmp = 0x03;
495 break;
496 case 4:
497 tmp = 0x04;
498 break;
499 case 5:
500 tmp = 0x05;
501 break;
502 case 6:
503 tmp = 0x06;
504 break;
505 default:
506 *errmsg = _("accepted values are from -1 to 6");
507 break;
508 }
509
510 insn |= tmp << 8;
511 return insn;
512}
513
514static long long
515extract_simm3s (unsigned long long insn,
516 bfd_boolean * invalid ATTRIBUTE_UNUSED)
517{
518 int value = (insn >> 8) & 0x07;
519
520 if (value == 7)
521 return -1;
522 else
523 return value;
524}
525
526static unsigned long long
527insert_rrange (unsigned long long insn,
528 long long value,
529 const char ** errmsg)
530{
531 int reg1 = (value >> 16) & 0xFFFF;
532 int reg2 = value & 0xFFFF;
533
534 if (reg1 != 13)
535 *errmsg = _("first register of the range should be r13");
536 else if (reg2 < 13 || reg2 > 26)
537 *errmsg = _("last register of the range doesn't fit");
538 else
539 insn |= ((reg2 - 12) & 0x0F) << 1;
540 return insn;
541}
542
543static long long
544extract_rrange (unsigned long long insn,
545 bfd_boolean * invalid ATTRIBUTE_UNUSED)
546{
547 return (insn >> 1) & 0x0F;
548}
549
550static unsigned long long
551insert_r13el (unsigned long long insn,
552 long long int value,
553 const char **errmsg)
554{
555 if (value != 13)
556 {
557 *errmsg = _("invalid register number, should be fp");
558 return insn;
559 }
560
561 insn |= 0x02;
562 return insn;
563}
564
565static unsigned long long
566insert_fpel (unsigned long long insn,
567 long long value,
568 const char ** errmsg)
569{
570 if (value != 27)
571 {
572 *errmsg = _("invalid register number, should be fp");
573 return insn;
574 }
575
576 insn |= 0x0100;
577 return insn;
578}
579
580static long long
581extract_fpel (unsigned long long insn,
582 bfd_boolean * invalid ATTRIBUTE_UNUSED)
583{
584 return (insn & 0x0100) ? 27 : -1;
585}
586
587static unsigned long long
588insert_blinkel (unsigned long long insn,
589 long long value,
590 const char ** errmsg)
591{
592 if (value != 31)
593 {
594 *errmsg = _("invalid register number, should be blink");
595 return insn;
596 }
597
598 insn |= 0x0200;
599 return insn;
600}
601
602static long long
603extract_blinkel (unsigned long long insn,
604 bfd_boolean * invalid ATTRIBUTE_UNUSED)
605{
606 return (insn & 0x0200) ? 31 : -1;
607}
608
609static unsigned long long
610insert_pclel (unsigned long long insn,
611 long long value,
612 const char ** errmsg)
613{
614 if (value != 63)
615 {
616 *errmsg = _("invalid register number, should be pcl");
617 return insn;
618 }
619
620 insn |= 0x0400;
621 return insn;
622}
623
624static long long
625extract_pclel (unsigned long long insn,
626 bfd_boolean * invalid ATTRIBUTE_UNUSED)
627{
628 return (insn & 0x0400) ? 63 : -1;
629}
630
631#define INSERT_W6
632
633/* mask = 00000000000000000000111111000000
634 insn = 00011bbb000000000BBBwwwwwwDaaZZ1. */
635
636static unsigned long long
637insert_w6 (unsigned long long insn,
638 long long value,
639 const char ** errmsg ATTRIBUTE_UNUSED)
640{
641 insn |= ((value >> 0) & 0x003f) << 6;
642
643 return insn;
644}
645
646#define EXTRACT_W6
647
648/* mask = 00000000000000000000111111000000. */
649
650static long long
651extract_w6 (unsigned long long insn,
652 bfd_boolean * invalid ATTRIBUTE_UNUSED)
653{
654 unsigned value = 0;
655
656 value |= ((insn >> 6) & 0x003f) << 0;
657
658 return value;
659}
660
661#define INSERT_G_S
662
663/* mask = 0000011100022000
664 insn = 01000ggghhhGG0HH. */
665
666static unsigned long long
667insert_g_s (unsigned long long insn,
668 long long value,
669 const char ** errmsg ATTRIBUTE_UNUSED)
670{
671 insn |= ((value >> 0) & 0x0007) << 8;
672 insn |= ((value >> 3) & 0x0003) << 3;
673
674 return insn;
675}
676
677#define EXTRACT_G_S
678
679/* mask = 0000011100022000. */
680
681static long long
682extract_g_s (unsigned long long insn,
683 bfd_boolean * invalid ATTRIBUTE_UNUSED)
684{
685 int value = 0;
686 int signbit = 1 << (6 - 1);
687
688 value |= ((insn >> 8) & 0x0007) << 0;
689 value |= ((insn >> 3) & 0x0003) << 3;
690
691 /* Extend the sign. */
692 value = (value ^ signbit) - signbit;
693
694 return value;
695}
696
697/* ARC NPS400 Support: See comment near head of file. */
698#define MAKE_3BIT_REG_INSERT_EXTRACT_FUNCS(NAME,OFFSET) \
699static unsigned long long \
700insert_nps_3bit_reg_at_##OFFSET##_##NAME \
701 (unsigned long long insn, \
702 long long value, \
703 const char ** errmsg) \
704{ \
705 switch (value) \
706 { \
707 case 0: \
708 case 1: \
709 case 2: \
710 case 3: \
711 insn |= value << (OFFSET); \
712 break; \
713 case 12: \
714 case 13: \
715 case 14: \
716 case 15: \
717 insn |= (value - 8) << (OFFSET); \
718 break; \
719 default: \
720 *errmsg = _("register must be either r0-r3 or r12-r15"); \
721 break; \
722 } \
723 return insn; \
724} \
725 \
726static long long \
727extract_nps_3bit_reg_at_##OFFSET##_##NAME \
728 (unsigned long long insn, \
729 bfd_boolean * invalid ATTRIBUTE_UNUSED) \
730{ \
731 int value = (insn >> (OFFSET)) & 0x07; \
732 if (value > 3) \
733 value += 8; \
734 return value; \
735} \
736
737MAKE_3BIT_REG_INSERT_EXTRACT_FUNCS(dst,8)
738MAKE_3BIT_REG_INSERT_EXTRACT_FUNCS(dst,24)
739MAKE_3BIT_REG_INSERT_EXTRACT_FUNCS(dst,40)
740MAKE_3BIT_REG_INSERT_EXTRACT_FUNCS(dst,56)
741
742MAKE_3BIT_REG_INSERT_EXTRACT_FUNCS(src2,5)
743MAKE_3BIT_REG_INSERT_EXTRACT_FUNCS(src2,21)
744MAKE_3BIT_REG_INSERT_EXTRACT_FUNCS(src2,37)
745MAKE_3BIT_REG_INSERT_EXTRACT_FUNCS(src2,53)
746
747static unsigned long long
748insert_nps_bitop_size_2b (unsigned long long insn,
749 long long value,
750 const char ** errmsg)
751{
752 switch (value)
753 {
754 case 1:
755 value = 0;
756 break;
757 case 2:
758 value = 1;
759 break;
760 case 4:
761 value = 2;
762 break;
763 case 8:
764 value = 3;
765 break;
766 default:
767 value = 0;
768 *errmsg = _("invalid size, should be 1, 2, 4, or 8");
769 break;
770 }
771
772 insn |= value << 10;
773 return insn;
774}
775
776static long long
777extract_nps_bitop_size_2b (unsigned long long insn,
778 bfd_boolean * invalid ATTRIBUTE_UNUSED)
779{
780 return 1 << ((insn >> 10) & 0x3);
781}
782
783static unsigned long long
784insert_nps_bitop_uimm8 (unsigned long long insn,
785 long long value,
786 const char ** errmsg ATTRIBUTE_UNUSED)
787{
788 insn |= ((value >> 5) & 7) << 12;
789 insn |= (value & 0x1f);
790 return insn;
791}
792
793static long long
794extract_nps_bitop_uimm8 (unsigned long long insn,
795 bfd_boolean * invalid ATTRIBUTE_UNUSED)
796{
797 return (((insn >> 12) & 0x7) << 5) | (insn & 0x1f);
798}
799
800static unsigned long long
801insert_nps_rflt_uimm6 (unsigned long long insn,
802 long long value,
803 const char ** errmsg)
804{
805 switch (value)
806 {
807 case 1:
808 case 2:
809 case 4:
810 break;
811
812 default:
813 *errmsg = _("invalid immediate, must be 1, 2, or 4");
814 value = 0;
815 }
816
817 insn |= (value << 6);
818 return insn;
819}
820
821static long long
822extract_nps_rflt_uimm6 (unsigned long long insn,
823 bfd_boolean * invalid ATTRIBUTE_UNUSED)
824{
825 return (insn >> 6) & 0x3f;
826}
827
828static unsigned long long
829insert_nps_dst_pos_and_size (unsigned long long insn,
830 long long value,
831 const char ** errmsg ATTRIBUTE_UNUSED)
832{
833 insn |= ((value & 0x1f) | (((32 - value - 1) & 0x1f) << 10));
834 return insn;
835}
836
837static long long
838extract_nps_dst_pos_and_size (unsigned long long insn,
839 bfd_boolean * invalid ATTRIBUTE_UNUSED)
840{
841 return (insn & 0x1f);
842}
843
844static unsigned long long
845insert_nps_cmem_uimm16 (unsigned long long insn,
846 long long value,
847 const char ** errmsg)
848{
849 int top = (value >> 16) & 0xffff;
850
851 if (top != 0x0 && top != NPS_CMEM_HIGH_VALUE)
852 *errmsg = _("invalid value for CMEM ld/st immediate");
853 insn |= (value & 0xffff);
854 return insn;
855}
856
857static long long
858extract_nps_cmem_uimm16 (unsigned long long insn,
859 bfd_boolean * invalid ATTRIBUTE_UNUSED)
860{
861 return (NPS_CMEM_HIGH_VALUE << 16) | (insn & 0xffff);
862}
863
864static unsigned long long
865insert_nps_imm_offset (unsigned long long insn,
866 long long value,
867 const char ** errmsg)
868{
869 switch (value)
870 {
871 case 0:
872 case 16:
873 case 32:
874 case 48:
875 case 64:
876 value = value >> 4;
877 break;
878 default:
879 *errmsg = _("invalid position, should be 0, 16, 32, 48 or 64.");
880 value = 0;
881 }
882 insn |= (value << 10);
883 return insn;
884}
885
886static long long
887extract_nps_imm_offset (unsigned long long insn,
888 bfd_boolean * invalid ATTRIBUTE_UNUSED)
889{
890 return ((insn >> 10) & 0x7) * 16;
891}
892
893static unsigned long long
894insert_nps_imm_entry (unsigned long long insn,
895 long long value,
896 const char ** errmsg)
897{
898 switch (value)
899 {
900 case 16:
901 value = 0;
902 break;
903 case 32:
904 value = 1;
905 break;
906 case 64:
907 value = 2;
908 break;
909 case 128:
910 value = 3;
911 break;
912 default:
913 *errmsg = _("invalid position, should be 16, 32, 64 or 128.");
914 value = 0;
915 }
916 insn |= (value << 2);
917 return insn;
918}
919
920static long long
921extract_nps_imm_entry (unsigned long long insn,
922 bfd_boolean * invalid ATTRIBUTE_UNUSED)
923{
924 int imm_entry = ((insn >> 2) & 0x7);
925 return (1 << (imm_entry + 4));
926}
927
928static unsigned long long
929insert_nps_size_16bit (unsigned long long insn,
930 long long value,
931 const char ** errmsg)
932{
933 if ((value < 1) || (value > 64))
934 {
935 *errmsg = _("invalid size value must be on range 1-64.");
936 value = 0;
937 }
938 value = value & 0x3f;
939 insn |= (value << 6);
940 return insn;
941}
942
943static long long
944extract_nps_size_16bit (unsigned long long insn,
945 bfd_boolean * invalid ATTRIBUTE_UNUSED)
946{
947 return ((insn & 0xfc0) >> 6) ? ((insn & 0xfc0) >> 6) : 64;
948}
949
950
951#define MAKE_SRC_POS_INSERT_EXTRACT_FUNCS(NAME,SHIFT) \
952static unsigned long long \
953insert_nps_##NAME##_pos (unsigned long long insn, \
954 long long value, \
955 const char ** errmsg) \
956{ \
957 switch (value) \
958 { \
959 case 0: \
960 case 8: \
961 case 16: \
962 case 24: \
963 value = value / 8; \
964 break; \
965 default: \
966 *errmsg = _("invalid position, should be 0, 8, 16, or 24"); \
967 value = 0; \
968 } \
969 insn |= (value << SHIFT); \
970 return insn; \
971} \
972 \
973static long long \
974extract_nps_##NAME##_pos (unsigned long long insn, \
975 bfd_boolean * invalid ATTRIBUTE_UNUSED) \
976{ \
977 return ((insn >> SHIFT) & 0x3) * 8; \
978}
979
980MAKE_SRC_POS_INSERT_EXTRACT_FUNCS (src2, 12)
981MAKE_SRC_POS_INSERT_EXTRACT_FUNCS (src1, 10)
982
983#define MAKE_BIAS_INSERT_EXTRACT_FUNCS(NAME,LOWER,UPPER,BITS,BIAS,SHIFT) \
984static unsigned long long \
985insert_nps_##NAME (unsigned long long insn, \
986 long long value, \
987 const char ** errmsg) \
988 { \
989 if (value < LOWER || value > UPPER) \
990 { \
991 *errmsg = _("invalid size, value must be " \
992 #LOWER " to " #UPPER "."); \
993 return insn; \
994 } \
995 value -= BIAS; \
996 insn |= (value << SHIFT); \
997 return insn; \
998 } \
999 \
1000static long long \
1001extract_nps_##NAME (unsigned long long insn, \
1002 bfd_boolean * invalid ATTRIBUTE_UNUSED) \
1003{ \
1004 return ((insn >> SHIFT) & ((1 << BITS) - 1)) + BIAS; \
1005}
1006
1007MAKE_BIAS_INSERT_EXTRACT_FUNCS (addb_size,2,32,5,1,5)
1008MAKE_BIAS_INSERT_EXTRACT_FUNCS (andb_size,1,32,5,1,5)
1009MAKE_BIAS_INSERT_EXTRACT_FUNCS (fxorb_size,8,32,5,8,5)
1010MAKE_BIAS_INSERT_EXTRACT_FUNCS (wxorb_size,16,32,5,16,5)
1011MAKE_BIAS_INSERT_EXTRACT_FUNCS (bitop_size,1,32,5,1,10)
1012MAKE_BIAS_INSERT_EXTRACT_FUNCS (qcmp_size,1,8,3,1,9)
1013MAKE_BIAS_INSERT_EXTRACT_FUNCS (bitop1_size,1,32,5,1,20)
1014MAKE_BIAS_INSERT_EXTRACT_FUNCS (bitop2_size,1,32,5,1,25)
1015MAKE_BIAS_INSERT_EXTRACT_FUNCS (hash_width,1,32,5,1,6)
1016MAKE_BIAS_INSERT_EXTRACT_FUNCS (hash_len,1,8,3,1,2)
1017MAKE_BIAS_INSERT_EXTRACT_FUNCS (index3,4,7,2,4,0)
1018
1019static long long
1020extract_nps_qcmp_m3 (unsigned long long insn,
1021 bfd_boolean * invalid)
1022{
1023 int m3 = (insn >> 5) & 0xf;
1024 if (m3 == 0xf)
1025 *invalid = TRUE;
1026 return m3;
1027}
1028
1029static long long
1030extract_nps_qcmp_m2 (unsigned long long insn,
1031 bfd_boolean * invalid)
1032{
1033 bfd_boolean tmp_invalid = FALSE;
1034 int m2 = (insn >> 15) & 0x1;
1035 int m3 = extract_nps_qcmp_m3 (insn, &tmp_invalid);
1036
1037 if (m2 == 0 && m3 == 0xf)
1038 *invalid = TRUE;
1039 return m2;
1040}
1041
1042static long long
1043extract_nps_qcmp_m1 (unsigned long long insn,
1044 bfd_boolean * invalid)
1045{
1046 bfd_boolean tmp_invalid = FALSE;
1047 int m1 = (insn >> 14) & 0x1;
1048 int m2 = extract_nps_qcmp_m2 (insn, &tmp_invalid);
1049 int m3 = extract_nps_qcmp_m3 (insn, &tmp_invalid);
1050
1051 if (m1 == 0 && m2 == 0 && m3 == 0xf)
1052 *invalid = TRUE;
1053 return m1;
1054}
1055
1056static unsigned long long
1057insert_nps_calc_entry_size (unsigned long long insn,
1058 long long value,
1059 const char ** errmsg)
1060{
1061 unsigned pwr;
1062
1063 if (value < 1 || value > 256)
1064 {
1065 *errmsg = _("value out of range 1 - 256");
1066 return 0;
1067 }
1068
1069 for (pwr = 0; (value & 1) == 0; value >>= 1)
1070 ++pwr;
1071
1072 if (value != 1)
1073 {
1074 *errmsg = _("value must be power of 2");
1075 return 0;
1076 }
1077
1078 return insn | (pwr << 8);
1079}
1080
1081static long long
1082extract_nps_calc_entry_size (unsigned long long insn,
1083 bfd_boolean * invalid ATTRIBUTE_UNUSED)
1084{
1085 unsigned entry_size = (insn >> 8) & 0xf;
1086 return 1 << entry_size;
1087}
1088
1089static unsigned long long
1090insert_nps_bitop_mod4 (unsigned long long insn,
1091 long long value,
1092 const char ** errmsg ATTRIBUTE_UNUSED)
1093{
1094 return insn | ((value & 0x2) << 30) | ((value & 0x1) << 47);
1095}
1096
1097static long long
1098extract_nps_bitop_mod4 (unsigned long long insn,
1099 bfd_boolean * invalid ATTRIBUTE_UNUSED)
1100{
1101 return ((insn >> 30) & 0x2) | ((insn >> 47) & 0x1);
1102}
1103
1104static unsigned long long
1105insert_nps_bitop_dst_pos3_pos4 (unsigned long long insn,
1106 long long value,
1107 const char ** errmsg ATTRIBUTE_UNUSED)
1108{
1109 return insn | (value << 42) | (value << 37);
1110}
1111
1112static long long
1113extract_nps_bitop_dst_pos3_pos4 (unsigned long long insn,
1114 bfd_boolean * invalid)
1115{
1116 if (((insn >> 42) & 0x1f) != ((insn >> 37) & 0x1f))
1117 *invalid = TRUE;
1118 return ((insn >> 37) & 0x1f);
1119}
1120
1121static unsigned long long
1122insert_nps_bitop_ins_ext (unsigned long long insn,
1123 long long value,
1124 const char ** errmsg)
1125{
1126 if (value < 0 || value > 28)
1127 *errmsg = _("value must be in the range 0 to 28");
1128 return insn | (value << 20);
1129}
1130
1131static long long
1132extract_nps_bitop_ins_ext (unsigned long long insn,
1133 bfd_boolean * invalid)
1134{
1135 int value = (insn >> 20) & 0x1f;
1136
1137 if (value > 28)
1138 *invalid = TRUE;
1139 return value;
1140}
1141
1142#define MAKE_1BASED_INSERT_EXTRACT_FUNCS(NAME,SHIFT,UPPER,BITS) \
1143static unsigned long long \
1144insert_nps_##NAME (unsigned long long insn, \
1145 long long value, \
1146 const char ** errmsg) \
1147{ \
1148 if (value < 1 || value > UPPER) \
1149 *errmsg = _("value must be in the range 1 to " #UPPER); \
1150 if (value == UPPER) \
1151 value = 0; \
1152 return insn | (value << SHIFT); \
1153} \
1154 \
1155static long long \
1156extract_nps_##NAME (unsigned long long insn, \
1157 bfd_boolean * invalid ATTRIBUTE_UNUSED) \
1158{ \
1159 int value = (insn >> SHIFT) & ((1 << BITS) - 1); \
1160 if (value == 0) \
1161 value = UPPER; \
1162 return value; \
1163}
1164
1165MAKE_1BASED_INSERT_EXTRACT_FUNCS (field_size, 6, 8, 3)
1166MAKE_1BASED_INSERT_EXTRACT_FUNCS (shift_factor, 9, 8, 3)
1167MAKE_1BASED_INSERT_EXTRACT_FUNCS (bits_to_scramble, 12, 8, 3)
1168MAKE_1BASED_INSERT_EXTRACT_FUNCS (bdlen_max_len, 5, 256, 8)
1169MAKE_1BASED_INSERT_EXTRACT_FUNCS (bd_num_buff, 6, 8, 3)
1170MAKE_1BASED_INSERT_EXTRACT_FUNCS (pmu_num_job, 6, 4, 2)
1171MAKE_1BASED_INSERT_EXTRACT_FUNCS (proto_size, 16, 64, 6)
1172
1173static unsigned long long
1174insert_nps_min_hofs (unsigned long long insn,
1175 long long value,
1176 const char ** errmsg)
1177{
1178 if (value < 0 || value > 240)
1179 *errmsg = _("value must be in the range 0 to 240");
1180 if ((value % 16) != 0)
1181 *errmsg = _("value must be a multiple of 16");
1182 value = value / 16;
1183 return insn | (value << 6);
1184}
1185
1186static long long
1187extract_nps_min_hofs (unsigned long long insn,
1188 bfd_boolean * invalid ATTRIBUTE_UNUSED)
1189{
1190 int value = (insn >> 6) & 0xF;
1191 return value * 16;
1192}
1193
1194#define MAKE_INSERT_NPS_ADDRTYPE(NAME, VALUE) \
1195static unsigned long long \
1196insert_nps_##NAME (unsigned long long insn, \
1197 long long value, \
1198 const char ** errmsg) \
1199{ \
1200 if (value != ARC_NPS400_ADDRTYPE_##VALUE) \
1201 *errmsg = _("invalid address type for operand"); \
1202 return insn; \
1203} \
1204 \
1205static long long \
1206extract_nps_##NAME (unsigned long long insn ATTRIBUTE_UNUSED, \
1207 bfd_boolean * invalid ATTRIBUTE_UNUSED) \
1208{ \
1209 return ARC_NPS400_ADDRTYPE_##VALUE; \
1210}
1211
1212MAKE_INSERT_NPS_ADDRTYPE (bd, BD)
1213MAKE_INSERT_NPS_ADDRTYPE (jid, JID)
1214MAKE_INSERT_NPS_ADDRTYPE (lbd, LBD)
1215MAKE_INSERT_NPS_ADDRTYPE (mbd, MBD)
1216MAKE_INSERT_NPS_ADDRTYPE (sd, SD)
1217MAKE_INSERT_NPS_ADDRTYPE (sm, SM)
1218MAKE_INSERT_NPS_ADDRTYPE (xa, XA)
1219MAKE_INSERT_NPS_ADDRTYPE (xd, XD)
1220MAKE_INSERT_NPS_ADDRTYPE (cd, CD)
1221MAKE_INSERT_NPS_ADDRTYPE (cbd, CBD)
1222MAKE_INSERT_NPS_ADDRTYPE (cjid, CJID)
1223MAKE_INSERT_NPS_ADDRTYPE (clbd, CLBD)
1224MAKE_INSERT_NPS_ADDRTYPE (cm, CM)
1225MAKE_INSERT_NPS_ADDRTYPE (csd, CSD)
1226MAKE_INSERT_NPS_ADDRTYPE (cxa, CXA)
1227MAKE_INSERT_NPS_ADDRTYPE (cxd, CXD)
1228
1229static unsigned long long
1230insert_nps_rbdouble_64 (unsigned long long insn,
1231 long long value,
1232 const char ** errmsg)
1233{
1234 if (value < 0 || value > 31)
1235 *errmsg = _("value must be in the range 0 to 31");
1236 return insn | (value << 43) | (value << 48);
1237}
1238
1239
1240static long long
1241extract_nps_rbdouble_64 (unsigned long long insn,
1242 bfd_boolean * invalid)
1243{
1244 int value1 = (insn >> 43) & 0x1F;
1245 int value2 = (insn >> 48) & 0x1F;
1246
1247 if (value1 != value2)
1248 *invalid = TRUE;
1249
1250 return value1;
1251}
1252
1253static unsigned long long
1254insert_nps_misc_imm_offset (unsigned long long insn,
1255 long long value,
1256 const char ** errmsg)
1257{
1258 if (value & 0x3)
1259 {
1260 *errmsg = _("invalid position, should be one of: 0,4,8,...124.");
1261 value = 0;
1262 }
1263 insn |= (value << 6);
1264 return insn;
1265}
1266
1267static long long int
1268extract_nps_misc_imm_offset (unsigned long long insn,
1269 bfd_boolean * invalid ATTRIBUTE_UNUSED)
1270{
1271 return ((insn >> 8) & 0x1f) * 4;
1272}
1273
1274static long long int
1275extract_uimm12_20 (unsigned long long insn ATTRIBUTE_UNUSED,
1276 bfd_boolean * invalid ATTRIBUTE_UNUSED)
1277{
1278 int value = 0;
1279
1280 value |= ((insn >> 6) & 0x003f) << 0;
1281 value |= ((insn >> 0) & 0x003f) << 6;
1282
1283 return value;
1284}
1285
1286/* Include the generic extract/insert functions. Order is important
1287 as some of the functions present in the .h may be disabled via
1288 defines. */
1289#include "arc-fxi.h"
1290
1291/* The flag operands table.
1292
1293 The format of the table is
1294 NAME CODE BITS SHIFT FAVAIL. */
1295const struct arc_flag_operand arc_flag_operands[] =
1296{
1297#define F_NULL 0
1298 { 0, 0, 0, 0, 0},
1299#define F_ALWAYS (F_NULL + 1)
1300 { "al", 0, 0, 0, 0 },
1301#define F_RA (F_ALWAYS + 1)
1302 { "ra", 0, 0, 0, 0 },
1303#define F_EQUAL (F_RA + 1)
1304 { "eq", 1, 5, 0, 1 },
1305#define F_ZERO (F_EQUAL + 1)
1306 { "z", 1, 5, 0, 0 },
1307#define F_NOTEQUAL (F_ZERO + 1)
1308 { "ne", 2, 5, 0, 1 },
1309#define F_NOTZERO (F_NOTEQUAL + 1)
1310 { "nz", 2, 5, 0, 0 },
1311#define F_POZITIVE (F_NOTZERO + 1)
1312 { "p", 3, 5, 0, 1 },
1313#define F_PL (F_POZITIVE + 1)
1314 { "pl", 3, 5, 0, 0 },
1315#define F_NEGATIVE (F_PL + 1)
1316 { "n", 4, 5, 0, 1 },
1317#define F_MINUS (F_NEGATIVE + 1)
1318 { "mi", 4, 5, 0, 0 },
1319#define F_CARRY (F_MINUS + 1)
1320 { "c", 5, 5, 0, 1 },
1321#define F_CARRYSET (F_CARRY + 1)
1322 { "cs", 5, 5, 0, 0 },
1323#define F_LOWER (F_CARRYSET + 1)
1324 { "lo", 5, 5, 0, 0 },
1325#define F_CARRYCLR (F_LOWER + 1)
1326 { "cc", 6, 5, 0, 0 },
1327#define F_NOTCARRY (F_CARRYCLR + 1)
1328 { "nc", 6, 5, 0, 1 },
1329#define F_HIGHER (F_NOTCARRY + 1)
1330 { "hs", 6, 5, 0, 0 },
1331#define F_OVERFLOWSET (F_HIGHER + 1)
1332 { "vs", 7, 5, 0, 0 },
1333#define F_OVERFLOW (F_OVERFLOWSET + 1)
1334 { "v", 7, 5, 0, 1 },
1335#define F_NOTOVERFLOW (F_OVERFLOW + 1)
1336 { "nv", 8, 5, 0, 1 },
1337#define F_OVERFLOWCLR (F_NOTOVERFLOW + 1)
1338 { "vc", 8, 5, 0, 0 },
1339#define F_GT (F_OVERFLOWCLR + 1)
1340 { "gt", 9, 5, 0, 1 },
1341#define F_GE (F_GT + 1)
1342 { "ge", 10, 5, 0, 1 },
1343#define F_LT (F_GE + 1)
1344 { "lt", 11, 5, 0, 1 },
1345#define F_LE (F_LT + 1)
1346 { "le", 12, 5, 0, 1 },
1347#define F_HI (F_LE + 1)
1348 { "hi", 13, 5, 0, 1 },
1349#define F_LS (F_HI + 1)
1350 { "ls", 14, 5, 0, 1 },
1351#define F_PNZ (F_LS + 1)
1352 { "pnz", 15, 5, 0, 1 },
1353#define F_NJ (F_PNZ + 1)
1354 { "nj", 21, 5, 0, 1 },
1355#define F_NM (F_NJ + 1)
1356 { "nm", 23, 5, 0, 1 },
1357#define F_NO_T (F_NM + 1)
1358 { "nt", 24, 5, 0, 1 },
1359
1360 /* FLAG. */
1361#define F_FLAG (F_NO_T + 1)
1362 { "f", 1, 1, 15, 1 },
1363#define F_FFAKE (F_FLAG + 1)
1364 { "f", 0, 0, 0, 1 },
1365
1366 /* Delay slot. */
1367#define F_ND (F_FFAKE + 1)
1368 { "nd", 0, 1, 5, 0 },
1369#define F_D (F_ND + 1)
1370 { "d", 1, 1, 5, 1 },
1371#define F_DFAKE (F_D + 1)
1372 { "d", 0, 0, 0, 1 },
1373#define F_DNZ_ND (F_DFAKE + 1)
1374 { "nd", 0, 1, 16, 0 },
1375#define F_DNZ_D (F_DNZ_ND + 1)
1376 { "d", 1, 1, 16, 1 },
1377
1378 /* Data size. */
1379#define F_SIZEB1 (F_DNZ_D + 1)
1380 { "b", 1, 2, 1, 1 },
1381#define F_SIZEB7 (F_SIZEB1 + 1)
1382 { "b", 1, 2, 7, 1 },
1383#define F_SIZEB17 (F_SIZEB7 + 1)
1384 { "b", 1, 2, 17, 1 },
1385#define F_SIZEW1 (F_SIZEB17 + 1)
1386 { "w", 2, 2, 1, 0 },
1387#define F_SIZEW7 (F_SIZEW1 + 1)
1388 { "w", 2, 2, 7, 0 },
1389#define F_SIZEW17 (F_SIZEW7 + 1)
1390 { "w", 2, 2, 17, 0 },
1391
1392 /* Sign extension. */
1393#define F_SIGN6 (F_SIZEW17 + 1)
1394 { "x", 1, 1, 6, 1 },
1395#define F_SIGN16 (F_SIGN6 + 1)
1396 { "x", 1, 1, 16, 1 },
1397#define F_SIGNX (F_SIGN16 + 1)
1398 { "x", 0, 0, 0, 1 },
1399
1400 /* Address write-back modes. */
1401#define F_A3 (F_SIGNX + 1)
1402 { "a", 1, 2, 3, 0 },
1403#define F_A9 (F_A3 + 1)
1404 { "a", 1, 2, 9, 0 },
1405#define F_A22 (F_A9 + 1)
1406 { "a", 1, 2, 22, 0 },
1407#define F_AW3 (F_A22 + 1)
1408 { "aw", 1, 2, 3, 1 },
1409#define F_AW9 (F_AW3 + 1)
1410 { "aw", 1, 2, 9, 1 },
1411#define F_AW22 (F_AW9 + 1)
1412 { "aw", 1, 2, 22, 1 },
1413#define F_AB3 (F_AW22 + 1)
1414 { "ab", 2, 2, 3, 1 },
1415#define F_AB9 (F_AB3 + 1)
1416 { "ab", 2, 2, 9, 1 },
1417#define F_AB22 (F_AB9 + 1)
1418 { "ab", 2, 2, 22, 1 },
1419#define F_AS3 (F_AB22 + 1)
1420 { "as", 3, 2, 3, 1 },
1421#define F_AS9 (F_AS3 + 1)
1422 { "as", 3, 2, 9, 1 },
1423#define F_AS22 (F_AS9 + 1)
1424 { "as", 3, 2, 22, 1 },
1425#define F_ASFAKE (F_AS22 + 1)
1426 { "as", 0, 0, 0, 1 },
1427
1428 /* Cache bypass. */
1429#define F_DI5 (F_ASFAKE + 1)
1430 { "di", 1, 1, 5, 1 },
1431#define F_DI11 (F_DI5 + 1)
1432 { "di", 1, 1, 11, 1 },
1433#define F_DI14 (F_DI11 + 1)
1434 { "di", 1, 1, 14, 1 },
1435#define F_DI15 (F_DI14 + 1)
1436 { "di", 1, 1, 15, 1 },
1437
1438 /* ARCv2 specific. */
1439#define F_NT (F_DI15 + 1)
1440 { "nt", 0, 1, 3, 1},
1441#define F_T (F_NT + 1)
1442 { "t", 1, 1, 3, 1},
1443#define F_H1 (F_T + 1)
1444 { "h", 2, 2, 1, 1 },
1445#define F_H7 (F_H1 + 1)
1446 { "h", 2, 2, 7, 1 },
1447#define F_H17 (F_H7 + 1)
1448 { "h", 2, 2, 17, 1 },
1449#define F_SIZED (F_H17 + 1)
1450 { "dd", 8, 0, 0, 0 }, /* Fake. */
1451
1452 /* Fake Flags. */
1453#define F_NE (F_SIZED + 1)
1454 { "ne", 0, 0, 0, 1 },
1455
1456 /* ARC NPS400 Support: See comment near head of file. */
1457#define F_NPS_CL (F_NE + 1)
1458 { "cl", 0, 0, 0, 1 },
1459
1460#define F_NPS_NA (F_NPS_CL + 1)
1461 { "na", 1, 1, 9, 1 },
1462
1463#define F_NPS_SR (F_NPS_NA + 1)
1464 { "s", 1, 1, 13, 1 },
1465
1466#define F_NPS_M (F_NPS_SR + 1)
1467 { "m", 1, 1, 7, 1 },
1468
1469#define F_NPS_FLAG (F_NPS_M + 1)
1470 { "f", 1, 1, 20, 1 },
1471
1472#define F_NPS_R (F_NPS_FLAG + 1)
1473 { "r", 1, 1, 15, 1 },
1474
1475#define F_NPS_RW (F_NPS_R + 1)
1476 { "rw", 0, 1, 7, 1 },
1477
1478#define F_NPS_RD (F_NPS_RW + 1)
1479 { "rd", 1, 1, 7, 1 },
1480
1481#define F_NPS_WFT (F_NPS_RD + 1)
1482 { "wft", 0, 0, 0, 1 },
1483
1484#define F_NPS_IE1 (F_NPS_WFT + 1)
1485 { "ie1", 1, 2, 8, 1 },
1486
1487#define F_NPS_IE2 (F_NPS_IE1 + 1)
1488 { "ie2", 2, 2, 8, 1 },
1489
1490#define F_NPS_IE12 (F_NPS_IE2 + 1)
1491 { "ie12", 3, 2, 8, 1 },
1492
1493#define F_NPS_SYNC_RD (F_NPS_IE12 + 1)
1494 { "rd", 0, 1, 6, 1 },
1495
1496#define F_NPS_SYNC_WR (F_NPS_SYNC_RD + 1)
1497 { "wr", 1, 1, 6, 1 },
1498
1499#define F_NPS_HWS_OFF (F_NPS_SYNC_WR + 1)
1500 { "off", 0, 0, 0, 1 },
1501
1502#define F_NPS_HWS_RESTORE (F_NPS_HWS_OFF + 1)
1503 { "restore", 0, 0, 0, 1 },
1504
1505#define F_NPS_SX (F_NPS_HWS_RESTORE + 1)
1506 { "sx", 1, 1, 14, 1 },
1507
1508#define F_NPS_AR (F_NPS_SX + 1)
1509 { "ar", 0, 1, 0, 1 },
1510
1511#define F_NPS_AL (F_NPS_AR + 1)
1512 { "al", 1, 1, 0, 1 },
1513
1514#define F_NPS_S (F_NPS_AL + 1)
1515 { "s", 0, 0, 0, 1 },
1516
1517#define F_NPS_ZNCV_RD (F_NPS_S + 1)
1518 { "rd", 0, 1, 15, 1 },
1519
1520#define F_NPS_ZNCV_WR (F_NPS_ZNCV_RD + 1)
1521 { "wr", 1, 1, 15, 1 },
1522
1523#define F_NPS_P0 (F_NPS_ZNCV_WR + 1)
1524 { "p0", 0, 0, 0, 1 },
1525
1526#define F_NPS_P1 (F_NPS_P0 + 1)
1527 { "p1", 0, 0, 0, 1 },
1528
1529#define F_NPS_P2 (F_NPS_P1 + 1)
1530 { "p2", 0, 0, 0, 1 },
1531
1532#define F_NPS_P3 (F_NPS_P2 + 1)
1533 { "p3", 0, 0, 0, 1 },
1534
1535#define F_NPS_LDBIT_DI (F_NPS_P3 + 1)
1536 { "di", 0, 0, 0, 1 },
1537
1538#define F_NPS_LDBIT_CL1 (F_NPS_LDBIT_DI + 1)
1539 { "cl", 1, 1, 6, 1 },
1540
1541#define F_NPS_LDBIT_CL2 (F_NPS_LDBIT_CL1 + 1)
1542 { "cl", 1, 1, 16, 1 },
1543
1544#define F_NPS_LDBIT_X2_1 (F_NPS_LDBIT_CL2 + 1)
1545 { "x2", 1, 2, 9, 1 },
1546
1547#define F_NPS_LDBIT_X2_2 (F_NPS_LDBIT_X2_1 + 1)
1548 { "x2", 1, 2, 22, 1 },
1549
1550#define F_NPS_LDBIT_X4_1 (F_NPS_LDBIT_X2_2 + 1)
1551 { "x4", 2, 2, 9, 1 },
1552
1553#define F_NPS_LDBIT_X4_2 (F_NPS_LDBIT_X4_1 + 1)
1554 { "x4", 2, 2, 22, 1 },
1555
1556#define F_NPS_CORE (F_NPS_LDBIT_X4_2 + 1)
1557 { "core", 1, 3, 6, 1 },
1558
1559#define F_NPS_CLSR (F_NPS_CORE + 1)
1560 { "clsr", 2, 3, 6, 1 },
1561
1562#define F_NPS_ALL (F_NPS_CLSR + 1)
1563 { "all", 3, 3, 6, 1 },
1564
1565#define F_NPS_GIC (F_NPS_ALL + 1)
1566 { "gic", 4, 3, 6, 1 },
1567
1568#define F_NPS_RSPI_GIC (F_NPS_GIC + 1)
1569 { "gic", 5, 3, 6, 1 },
1570};
1571
1572const unsigned arc_num_flag_operands = ARRAY_SIZE (arc_flag_operands);
1573
1574/* Table of the flag classes.
1575
1576 The format of the table is
1577 CLASS {FLAG_CODE}. */
1578const struct arc_flag_class arc_flag_classes[] =
1579{
1580#define C_EMPTY 0
1581 { F_CLASS_NONE, { F_NULL } },
1582
1583#define C_CC_EQ (C_EMPTY + 1)
1584 {F_CLASS_IMPLICIT | F_CLASS_COND, {F_EQUAL, F_NULL} },
1585
1586#define C_CC_GE (C_CC_EQ + 1)
1587 {F_CLASS_IMPLICIT | F_CLASS_COND, {F_GE, F_NULL} },
1588
1589#define C_CC_GT (C_CC_GE + 1)
1590 {F_CLASS_IMPLICIT | F_CLASS_COND, {F_GT, F_NULL} },
1591
1592#define C_CC_HI (C_CC_GT + 1)
1593 {F_CLASS_IMPLICIT | F_CLASS_COND, {F_HI, F_NULL} },
1594
1595#define C_CC_HS (C_CC_HI + 1)
1596 {F_CLASS_IMPLICIT | F_CLASS_COND, {F_NOTCARRY, F_NULL} },
1597
1598#define C_CC_LE (C_CC_HS + 1)
1599 {F_CLASS_IMPLICIT | F_CLASS_COND, {F_LE, F_NULL} },
1600
1601#define C_CC_LO (C_CC_LE + 1)
1602 {F_CLASS_IMPLICIT | F_CLASS_COND, {F_CARRY, F_NULL} },
1603
1604#define C_CC_LS (C_CC_LO + 1)
1605 {F_CLASS_IMPLICIT | F_CLASS_COND, {F_LS, F_NULL} },
1606
1607#define C_CC_LT (C_CC_LS + 1)
1608 {F_CLASS_IMPLICIT | F_CLASS_COND, {F_LT, F_NULL} },
1609
1610#define C_CC_NE (C_CC_LT + 1)
1611 {F_CLASS_IMPLICIT | F_CLASS_COND, {F_NOTEQUAL, F_NULL} },
1612
1613#define C_AA_AB (C_CC_NE + 1)
1614 {F_CLASS_IMPLICIT | F_CLASS_WB, {F_AB3, F_NULL} },
1615
1616#define C_AA_AW (C_AA_AB + 1)
1617 {F_CLASS_IMPLICIT | F_CLASS_WB, {F_AW3, F_NULL} },
1618
1619#define C_ZZ_D (C_AA_AW + 1)
1620 {F_CLASS_IMPLICIT | F_CLASS_ZZ, {F_SIZED, F_NULL} },
1621
1622#define C_ZZ_H (C_ZZ_D + 1)
1623 {F_CLASS_IMPLICIT | F_CLASS_ZZ, {F_H1, F_NULL} },
1624
1625#define C_ZZ_B (C_ZZ_H + 1)
1626 {F_CLASS_IMPLICIT | F_CLASS_ZZ, {F_SIZEB1, F_NULL} },
1627
1628#define C_CC (C_ZZ_B + 1)
1629 { F_CLASS_OPTIONAL | F_CLASS_EXTEND | F_CLASS_COND,
1630 { F_ALWAYS, F_RA, F_EQUAL, F_ZERO, F_NOTEQUAL,
1631 F_NOTZERO, F_POZITIVE, F_PL, F_NEGATIVE, F_MINUS,
1632 F_CARRY, F_CARRYSET, F_LOWER, F_CARRYCLR,
1633 F_NOTCARRY, F_HIGHER, F_OVERFLOWSET, F_OVERFLOW,
1634 F_NOTOVERFLOW, F_OVERFLOWCLR, F_GT, F_GE, F_LT,
1635 F_LE, F_HI, F_LS, F_PNZ, F_NJ, F_NM, F_NO_T, F_NULL } },
1636
1637#define C_AA_ADDR3 (C_CC + 1)
1638#define C_AA27 (C_CC + 1)
1639 { F_CLASS_OPTIONAL | F_CLASS_WB, { F_A3, F_AW3, F_AB3, F_AS3, F_NULL } },
1640#define C_AA_ADDR9 (C_AA_ADDR3 + 1)
1641#define C_AA21 (C_AA_ADDR3 + 1)
1642 { F_CLASS_OPTIONAL | F_CLASS_WB, { F_A9, F_AW9, F_AB9, F_AS9, F_NULL } },
1643#define C_AA_ADDR22 (C_AA_ADDR9 + 1)
1644#define C_AA8 (C_AA_ADDR9 + 1)
1645 { F_CLASS_OPTIONAL | F_CLASS_WB, { F_A22, F_AW22, F_AB22, F_AS22, F_NULL } },
1646
1647#define C_F (C_AA_ADDR22 + 1)
1648 { F_CLASS_OPTIONAL, { F_FLAG, F_NULL } },
1649#define C_FHARD (C_F + 1)
1650 { F_CLASS_OPTIONAL, { F_FFAKE, F_NULL } },
1651
1652#define C_T (C_FHARD + 1)
1653 { F_CLASS_OPTIONAL, { F_NT, F_T, F_NULL } },
1654#define C_D (C_T + 1)
1655 { F_CLASS_OPTIONAL, { F_ND, F_D, F_NULL } },
1656#define C_DNZ_D (C_D + 1)
1657 { F_CLASS_OPTIONAL, { F_DNZ_ND, F_DNZ_D, F_NULL } },
1658
1659#define C_DHARD (C_DNZ_D + 1)
1660 { F_CLASS_OPTIONAL, { F_DFAKE, F_NULL } },
1661
1662#define C_DI20 (C_DHARD + 1)
1663 { F_CLASS_OPTIONAL, { F_DI11, F_NULL }},
1664#define C_DI14 (C_DI20 + 1)
1665 { F_CLASS_OPTIONAL, { F_DI14, F_NULL }},
1666#define C_DI16 (C_DI14 + 1)
1667 { F_CLASS_OPTIONAL, { F_DI15, F_NULL }},
1668#define C_DI26 (C_DI16 + 1)
1669 { F_CLASS_OPTIONAL, { F_DI5, F_NULL }},
1670
1671#define C_X25 (C_DI26 + 1)
1672 { F_CLASS_OPTIONAL, { F_SIGN6, F_NULL }},
1673#define C_X15 (C_X25 + 1)
1674 { F_CLASS_OPTIONAL, { F_SIGN16, F_NULL }},
1675#define C_XHARD (C_X15 + 1)
1676#define C_X (C_X15 + 1)
1677 { F_CLASS_OPTIONAL, { F_SIGNX, F_NULL }},
1678
1679#define C_ZZ13 (C_X + 1)
1680 { F_CLASS_OPTIONAL, { F_SIZEB17, F_SIZEW17, F_H17, F_NULL}},
1681#define C_ZZ23 (C_ZZ13 + 1)
1682 { F_CLASS_OPTIONAL, { F_SIZEB7, F_SIZEW7, F_H7, F_NULL}},
1683#define C_ZZ29 (C_ZZ23 + 1)
1684 { F_CLASS_OPTIONAL, { F_SIZEB1, F_SIZEW1, F_H1, F_NULL}},
1685
1686#define C_AS (C_ZZ29 + 1)
1687 { F_CLASS_OPTIONAL, { F_ASFAKE, F_NULL}},
1688
1689#define C_NE (C_AS + 1)
1690 { F_CLASS_OPTIONAL, { F_NE, F_NULL}},
1691
1692 /* ARC NPS400 Support: See comment near head of file. */
1693#define C_NPS_CL (C_NE + 1)
1694 { F_CLASS_REQUIRED, { F_NPS_CL, F_NULL}},
1695
1696#define C_NPS_NA (C_NPS_CL + 1)
1697 { F_CLASS_OPTIONAL, { F_NPS_NA, F_NULL}},
1698
1699#define C_NPS_SR (C_NPS_NA + 1)
1700 { F_CLASS_OPTIONAL, { F_NPS_SR, F_NULL}},
1701
1702#define C_NPS_M (C_NPS_SR + 1)
1703 { F_CLASS_OPTIONAL, { F_NPS_M, F_NULL}},
1704
1705#define C_NPS_F (C_NPS_M + 1)
1706 { F_CLASS_OPTIONAL, { F_NPS_FLAG, F_NULL}},
1707
1708#define C_NPS_R (C_NPS_F + 1)
1709 { F_CLASS_OPTIONAL, { F_NPS_R, F_NULL}},
1710
1711#define C_NPS_SCHD_RW (C_NPS_R + 1)
1712 { F_CLASS_REQUIRED, { F_NPS_RW, F_NPS_RD, F_NULL}},
1713
1714#define C_NPS_SCHD_TRIG (C_NPS_SCHD_RW + 1)
1715 { F_CLASS_REQUIRED, { F_NPS_WFT, F_NULL}},
1716
1717#define C_NPS_SCHD_IE (C_NPS_SCHD_TRIG + 1)
1718 { F_CLASS_OPTIONAL, { F_NPS_IE1, F_NPS_IE2, F_NPS_IE12, F_NULL}},
1719
1720#define C_NPS_SYNC (C_NPS_SCHD_IE + 1)
1721 { F_CLASS_REQUIRED, { F_NPS_SYNC_RD, F_NPS_SYNC_WR, F_NULL}},
1722
1723#define C_NPS_HWS_OFF (C_NPS_SYNC + 1)
1724 { F_CLASS_REQUIRED, { F_NPS_HWS_OFF, F_NULL}},
1725
1726#define C_NPS_HWS_RESTORE (C_NPS_HWS_OFF + 1)
1727 { F_CLASS_REQUIRED, { F_NPS_HWS_RESTORE, F_NULL}},
1728
1729#define C_NPS_SX (C_NPS_HWS_RESTORE + 1)
1730 { F_CLASS_OPTIONAL, { F_NPS_SX, F_NULL}},
1731
1732#define C_NPS_AR_AL (C_NPS_SX + 1)
1733 { F_CLASS_REQUIRED, { F_NPS_AR, F_NPS_AL, F_NULL}},
1734
1735#define C_NPS_S (C_NPS_AR_AL + 1)
1736 { F_CLASS_REQUIRED, { F_NPS_S, F_NULL}},
1737
1738#define C_NPS_ZNCV (C_NPS_S + 1)
1739 { F_CLASS_REQUIRED, { F_NPS_ZNCV_RD, F_NPS_ZNCV_WR, F_NULL}},
1740
1741#define C_NPS_P0 (C_NPS_ZNCV + 1)
1742 { F_CLASS_REQUIRED, { F_NPS_P0, F_NULL }},
1743
1744#define C_NPS_P1 (C_NPS_P0 + 1)
1745 { F_CLASS_REQUIRED, { F_NPS_P1, F_NULL }},
1746
1747#define C_NPS_P2 (C_NPS_P1 + 1)
1748 { F_CLASS_REQUIRED, { F_NPS_P2, F_NULL }},
1749
1750#define C_NPS_P3 (C_NPS_P2 + 1)
1751 { F_CLASS_REQUIRED, { F_NPS_P3, F_NULL }},
1752
1753#define C_NPS_LDBIT_DI (C_NPS_P3 + 1)
1754 { F_CLASS_REQUIRED, { F_NPS_LDBIT_DI, F_NULL }},
1755
1756#define C_NPS_LDBIT_CL1 (C_NPS_LDBIT_DI + 1)
1757 { F_CLASS_OPTIONAL, { F_NPS_LDBIT_CL1, F_NULL }},
1758
1759#define C_NPS_LDBIT_CL2 (C_NPS_LDBIT_CL1 + 1)
1760 { F_CLASS_OPTIONAL, { F_NPS_LDBIT_CL2, F_NULL }},
1761
1762#define C_NPS_LDBIT_X_1 (C_NPS_LDBIT_CL2 + 1)
1763 { F_CLASS_OPTIONAL, { F_NPS_LDBIT_X2_1, F_NPS_LDBIT_X4_1, F_NULL }},
1764
1765#define C_NPS_LDBIT_X_2 (C_NPS_LDBIT_X_1 + 1)
1766 { F_CLASS_OPTIONAL, { F_NPS_LDBIT_X2_2, F_NPS_LDBIT_X4_2, F_NULL }},
1767
1768#define C_NPS_CORE (C_NPS_LDBIT_X_2 + 1)
1769 { F_CLASS_REQUIRED, { F_NPS_CORE, F_NULL}},
1770
1771#define C_NPS_CLSR (C_NPS_CORE + 1)
1772 { F_CLASS_REQUIRED, { F_NPS_CLSR, F_NULL}},
1773
1774#define C_NPS_ALL (C_NPS_CLSR + 1)
1775 { F_CLASS_REQUIRED, { F_NPS_ALL, F_NULL}},
1776
1777#define C_NPS_GIC (C_NPS_ALL + 1)
1778 { F_CLASS_REQUIRED, { F_NPS_GIC, F_NULL}},
1779
1780#define C_NPS_RSPI_GIC (C_NPS_GIC + 1)
1781 { F_CLASS_REQUIRED, { F_NPS_RSPI_GIC, F_NULL}},
1782};
1783
1784const unsigned char flags_none[] = { 0 };
1785const unsigned char flags_f[] = { C_F };
1786const unsigned char flags_cc[] = { C_CC };
1787const unsigned char flags_ccf[] = { C_CC, C_F };
1788
1789/* The operands table.
1790
1791 The format of the operands table is:
1792
1793 BITS SHIFT DEFAULT_RELOC FLAGS INSERT_FUN EXTRACT_FUN. */
1794const struct arc_operand arc_operands[] =
1795{
1796 /* The fields are bits, shift, insert, extract, flags. The zero
1797 index is used to indicate end-of-list. */
1798#define UNUSED 0
1799 { 0, 0, 0, 0, 0, 0 },
1800
1801#define IGNORED (UNUSED + 1)
1802 { 0, 0, 0, ARC_OPERAND_IGNORE | ARC_OPERAND_UNSIGNED | ARC_OPERAND_NCHK, 0, 0 },
1803
1804 /* The plain integer register fields. Used by 32 bit
1805 instructions. */
1806#define RA (IGNORED + 1)
1807 { 6, 0, 0, ARC_OPERAND_IR, 0, 0 },
1808#define RA_CHK (RA + 1)
1809 { 6, 0, 0, ARC_OPERAND_IR, insert_ra_chk, 0 },
1810#define RB (RA_CHK + 1)
1811 { 6, 12, 0, ARC_OPERAND_IR, insert_rb, extract_rb },
1812#define RB_CHK (RB + 1)
1813 { 6, 12, 0, ARC_OPERAND_IR, insert_rb_chk, extract_rb },
1814#define RC (RB_CHK + 1)
1815 { 6, 6, 0, ARC_OPERAND_IR, 0, 0 },
1816#define RBdup (RC + 1)
1817 { 6, 12, 0, ARC_OPERAND_IR | ARC_OPERAND_DUPLICATE, insert_rb, extract_rb },
1818
1819#define RAD (RBdup + 1)
1820 { 6, 0, 0, ARC_OPERAND_IR | ARC_OPERAND_TRUNCATE, insert_rad, 0 },
1821#define RCD (RAD + 1)
1822 { 6, 6, 0, ARC_OPERAND_IR | ARC_OPERAND_TRUNCATE, insert_rcd, 0 },
1823
1824 /* The plain integer register fields. Used by short
1825 instructions. */
1826#define RA16 (RCD + 1)
1827#define RA_S (RCD + 1)
1828 { 4, 0, 0, ARC_OPERAND_IR, insert_ras, extract_ras },
1829#define RB16 (RA16 + 1)
1830#define RB_S (RA16 + 1)
1831 { 4, 8, 0, ARC_OPERAND_IR, insert_rbs, extract_rbs },
1832#define RB16dup (RB16 + 1)
1833#define RB_Sdup (RB16 + 1)
1834 { 4, 8, 0, ARC_OPERAND_IR | ARC_OPERAND_DUPLICATE, insert_rbs, extract_rbs },
1835#define RC16 (RB16dup + 1)
1836#define RC_S (RB16dup + 1)
1837 { 4, 5, 0, ARC_OPERAND_IR, insert_rcs, extract_rcs },
1838#define R6H (RC16 + 1) /* 6bit register field 'h' used
1839 by V1 cpus. */
1840 { 6, 5, 0, ARC_OPERAND_IR, insert_rhv1, extract_rhv1 },
1841#define R5H (R6H + 1) /* 5bit register field 'h' used
1842 by V2 cpus. */
1843#define RH_S (R6H + 1) /* 5bit register field 'h' used
1844 by V2 cpus. */
1845 { 5, 5, 0, ARC_OPERAND_IR, insert_rhv2, extract_rhv2 },
1846#define R5Hdup (R5H + 1)
1847#define RH_Sdup (R5H + 1)
1848 { 5, 5, 0, ARC_OPERAND_IR | ARC_OPERAND_DUPLICATE,
1849 insert_rhv2, extract_rhv2 },
1850
1851#define RG (R5Hdup + 1)
1852#define G_S (R5Hdup + 1)
1853 { 5, 5, 0, ARC_OPERAND_IR, insert_g_s, extract_g_s },
1854
1855 /* Fix registers. */
1856#define R0 (RG + 1)
1857#define R0_S (RG + 1)
1858 { 0, 0, 0, ARC_OPERAND_IR, insert_r0, extract_r0 },
1859#define R1 (R0 + 1)
1860#define R1_S (R0 + 1)
1861 { 1, 0, 0, ARC_OPERAND_IR, insert_r1, extract_r1 },
1862#define R2 (R1 + 1)
1863#define R2_S (R1 + 1)
1864 { 2, 0, 0, ARC_OPERAND_IR, insert_r2, extract_r2 },
1865#define R3 (R2 + 1)
1866#define R3_S (R2 + 1)
1867 { 2, 0, 0, ARC_OPERAND_IR, insert_r3, extract_r3 },
1868#define RSP (R3 + 1)
1869#define SP_S (R3 + 1)
1870 { 5, 0, 0, ARC_OPERAND_IR, insert_sp, extract_sp },
1871#define SPdup (RSP + 1)
1872#define SP_Sdup (RSP + 1)
1873 { 5, 0, 0, ARC_OPERAND_IR | ARC_OPERAND_DUPLICATE, insert_sp, extract_sp },
1874#define GP (SPdup + 1)
1875#define GP_S (SPdup + 1)
1876 { 5, 0, 0, ARC_OPERAND_IR, insert_gp, extract_gp },
1877
1878#define PCL_S (GP + 1)
1879 { 1, 0, 0, ARC_OPERAND_IR | ARC_OPERAND_NCHK, insert_pcl, extract_pcl },
1880
1881#define BLINK (PCL_S + 1)
1882#define BLINK_S (PCL_S + 1)
1883 { 5, 0, 0, ARC_OPERAND_IR, insert_blink, extract_blink },
1884
1885#define ILINK1 (BLINK + 1)
1886 { 5, 0, 0, ARC_OPERAND_IR, insert_ilink1, extract_ilink1 },
1887#define ILINK2 (ILINK1 + 1)
1888 { 5, 0, 0, ARC_OPERAND_IR, insert_ilink2, extract_ilink2 },
1889
1890 /* Long immediate. */
1891#define LIMM (ILINK2 + 1)
1892#define LIMM_S (ILINK2 + 1)
1893 { 32, 0, BFD_RELOC_ARC_32_ME, ARC_OPERAND_LIMM, insert_limm, 0 },
1894#define LIMMdup (LIMM + 1)
1895 { 32, 0, 0, ARC_OPERAND_LIMM | ARC_OPERAND_DUPLICATE, insert_limm, 0 },
1896
1897 /* Special operands. */
1898#define ZA (LIMMdup + 1)
1899#define ZB (LIMMdup + 1)
1900#define ZA_S (LIMMdup + 1)
1901#define ZB_S (LIMMdup + 1)
1902#define ZC_S (LIMMdup + 1)
1903 { 0, 0, 0, ARC_OPERAND_UNSIGNED, insert_za, 0 },
1904
1905#define RRANGE_EL (ZA + 1)
1906 { 4, 0, 0, ARC_OPERAND_UNSIGNED | ARC_OPERAND_NCHK | ARC_OPERAND_TRUNCATE,
1907 insert_rrange, extract_rrange},
1908#define R13_EL (RRANGE_EL + 1)
1909 { 1, 0, 0, ARC_OPERAND_IR | ARC_OPERAND_IGNORE | ARC_OPERAND_NCHK,
1910 insert_r13el, extract_rrange },
1911#define FP_EL (R13_EL + 1)
1912 { 1, 0, 0, ARC_OPERAND_IR | ARC_OPERAND_IGNORE | ARC_OPERAND_NCHK,
1913 insert_fpel, extract_fpel },
1914#define BLINK_EL (FP_EL + 1)
1915 { 1, 0, 0, ARC_OPERAND_IR | ARC_OPERAND_IGNORE | ARC_OPERAND_NCHK,
1916 insert_blinkel, extract_blinkel },
1917#define PCL_EL (BLINK_EL + 1)
1918 { 1, 0, 0, ARC_OPERAND_IR | ARC_OPERAND_IGNORE | ARC_OPERAND_NCHK,
1919 insert_pclel, extract_pclel },
1920
1921 /* Fake operand to handle the T flag. */
1922#define BRAKET (PCL_EL + 1)
1923#define BRAKETdup (PCL_EL + 1)
1924 { 0, 0, 0, ARC_OPERAND_FAKE | ARC_OPERAND_BRAKET, 0, 0 },
1925
1926 /* Fake operand to handle the T flag. */
1927#define FKT_T (BRAKET + 1)
1928 { 1, 3, 0, ARC_OPERAND_FAKE, insert_Ybit, 0 },
1929 /* Fake operand to handle the T flag. */
1930#define FKT_NT (FKT_T + 1)
1931 { 1, 3, 0, ARC_OPERAND_FAKE, insert_NYbit, 0 },
1932
1933 /* UIMM6_20 mask = 00000000000000000000111111000000. */
1934#define UIMM6_20 (FKT_NT + 1)
1935 {6, 0, 0, ARC_OPERAND_UNSIGNED, insert_uimm6_20, extract_uimm6_20},
1936
1937 /* Exactly like the above but used by relaxation. */
1938#define UIMM6_20R (UIMM6_20 + 1)
1939 {6, 0, -UIMM6_20R, ARC_OPERAND_UNSIGNED | ARC_OPERAND_PCREL,
1940 insert_uimm6_20, extract_uimm6_20},
1941
1942 /* SIMM12_20 mask = 00000000000000000000111111222222. */
1943#define SIMM12_20 (UIMM6_20R + 1)
1944 {12, 0, 0, ARC_OPERAND_SIGNED, insert_simm12_20, extract_simm12_20},
1945
1946 /* Exactly like the above but used by relaxation. */
1947#define SIMM12_20R (SIMM12_20 + 1)
1948 {12, 0, -SIMM12_20R, ARC_OPERAND_SIGNED | ARC_OPERAND_PCREL,
1949 insert_simm12_20, extract_simm12_20},
1950
1951 /* UIMM12_20 mask = 00000000000000000000111111222222. */
1952#define UIMM12_20 (SIMM12_20R + 1)
1953 {12, 0, 0, ARC_OPERAND_UNSIGNED, insert_simm12_20, extract_uimm12_20},
1954
1955 /* SIMM3_5_S mask = 0000011100000000. */
1956#define SIMM3_5_S (UIMM12_20 + 1)
1957 {3, 0, 0, ARC_OPERAND_SIGNED | ARC_OPERAND_NCHK,
1958 insert_simm3s, extract_simm3s},
1959
1960 /* UIMM7_A32_11_S mask = 0000000000011111. */
1961#define UIMM7_A32_11_S (SIMM3_5_S + 1)
1962 {7, 0, 0, ARC_OPERAND_UNSIGNED | ARC_OPERAND_ALIGNED32
1963 | ARC_OPERAND_TRUNCATE | ARC_OPERAND_IGNORE, insert_uimm7_a32_11_s,
1964 extract_uimm7_a32_11_s},
1965
1966 /* The same as above but used by relaxation. */
1967#define UIMM7_A32_11R_S (UIMM7_A32_11_S + 1)
1968 {7, 0, -UIMM7_A32_11R_S, ARC_OPERAND_UNSIGNED | ARC_OPERAND_ALIGNED32
1969 | ARC_OPERAND_TRUNCATE | ARC_OPERAND_IGNORE | ARC_OPERAND_PCREL,
1970 insert_uimm7_a32_11_s, extract_uimm7_a32_11_s},
1971
1972 /* UIMM7_9_S mask = 0000000001111111. */
1973#define UIMM7_9_S (UIMM7_A32_11R_S + 1)
1974 {7, 0, 0, ARC_OPERAND_UNSIGNED, insert_uimm7_9_s, extract_uimm7_9_s},
1975
1976 /* UIMM3_13_S mask = 0000000000000111. */
1977#define UIMM3_13_S (UIMM7_9_S + 1)
1978 {3, 0, 0, ARC_OPERAND_UNSIGNED, insert_uimm3_13_s, extract_uimm3_13_s},
1979
1980 /* Exactly like the above but used for relaxation. */
1981#define UIMM3_13R_S (UIMM3_13_S + 1)
1982 {3, 0, -UIMM3_13R_S, ARC_OPERAND_UNSIGNED | ARC_OPERAND_PCREL,
1983 insert_uimm3_13_s, extract_uimm3_13_s},
1984
1985 /* SIMM11_A32_7_S mask = 0000000111111111. */
1986#define SIMM11_A32_7_S (UIMM3_13R_S + 1)
1987 {11, 0, BFD_RELOC_ARC_SDA16_LD2, ARC_OPERAND_SIGNED | ARC_OPERAND_ALIGNED32
1988 | ARC_OPERAND_TRUNCATE, insert_simm11_a32_7_s, extract_simm11_a32_7_s},
1989
1990 /* UIMM6_13_S mask = 0000000002220111. */
1991#define UIMM6_13_S (SIMM11_A32_7_S + 1)
1992 {6, 0, 0, ARC_OPERAND_UNSIGNED, insert_uimm6_13_s, extract_uimm6_13_s},
1993 /* UIMM5_11_S mask = 0000000000011111. */
1994#define UIMM5_11_S (UIMM6_13_S + 1)
1995 {5, 0, 0, ARC_OPERAND_UNSIGNED | ARC_OPERAND_IGNORE, insert_uimm5_11_s,
1996 extract_uimm5_11_s},
1997
1998 /* SIMM9_A16_8 mask = 00000000111111102000000000000000. */
1999#define SIMM9_A16_8 (UIMM5_11_S + 1)
2000 {9, 0, -SIMM9_A16_8, ARC_OPERAND_SIGNED | ARC_OPERAND_ALIGNED16
2001 | ARC_OPERAND_PCREL | ARC_OPERAND_TRUNCATE, insert_simm9_a16_8,
2002 extract_simm9_a16_8},
2003
2004 /* UIMM6_8 mask = 00000000000000000000111111000000. */
2005#define UIMM6_8 (SIMM9_A16_8 + 1)
2006 {6, 0, 0, ARC_OPERAND_UNSIGNED, insert_uimm6_8, extract_uimm6_8},
2007
2008 /* SIMM21_A16_5 mask = 00000111111111102222222222000000. */
2009#define SIMM21_A16_5 (UIMM6_8 + 1)
2010 {21, 0, BFD_RELOC_ARC_S21H_PCREL, ARC_OPERAND_SIGNED
2011 | ARC_OPERAND_ALIGNED16 | ARC_OPERAND_TRUNCATE | ARC_OPERAND_PCREL,
2012 insert_simm21_a16_5, extract_simm21_a16_5},
2013
2014 /* SIMM25_A16_5 mask = 00000111111111102222222222003333. */
2015#define SIMM25_A16_5 (SIMM21_A16_5 + 1)
2016 {25, 0, BFD_RELOC_ARC_S25H_PCREL, ARC_OPERAND_SIGNED
2017 | ARC_OPERAND_ALIGNED16 | ARC_OPERAND_TRUNCATE | ARC_OPERAND_PCREL,
2018 insert_simm25_a16_5, extract_simm25_a16_5},
2019
2020 /* SIMM10_A16_7_S mask = 0000000111111111. */
2021#define SIMM10_A16_7_S (SIMM25_A16_5 + 1)
2022 {10, 0, -SIMM10_A16_7_S, ARC_OPERAND_SIGNED | ARC_OPERAND_ALIGNED16
2023 | ARC_OPERAND_TRUNCATE | ARC_OPERAND_PCREL, insert_simm10_a16_7_s,
2024 extract_simm10_a16_7_s},
2025
2026#define SIMM10_A16_7_Sbis (SIMM10_A16_7_S + 1)
2027 {10, 0, -SIMM10_A16_7_Sbis, ARC_OPERAND_SIGNED | ARC_OPERAND_ALIGNED16
2028 | ARC_OPERAND_TRUNCATE, insert_simm10_a16_7_s, extract_simm10_a16_7_s},
2029
2030 /* SIMM7_A16_10_S mask = 0000000000111111. */
2031#define SIMM7_A16_10_S (SIMM10_A16_7_Sbis + 1)
2032 {7, 0, -SIMM7_A16_10_S, ARC_OPERAND_SIGNED | ARC_OPERAND_ALIGNED16
2033 | ARC_OPERAND_TRUNCATE | ARC_OPERAND_PCREL, insert_simm7_a16_10_s,
2034 extract_simm7_a16_10_s},
2035
2036 /* SIMM21_A32_5 mask = 00000111111111002222222222000000. */
2037#define SIMM21_A32_5 (SIMM7_A16_10_S + 1)
2038 {21, 0, BFD_RELOC_ARC_S21W_PCREL, ARC_OPERAND_SIGNED | ARC_OPERAND_ALIGNED32
2039 | ARC_OPERAND_TRUNCATE | ARC_OPERAND_PCREL, insert_simm21_a32_5,
2040 extract_simm21_a32_5},
2041
2042 /* SIMM25_A32_5 mask = 00000111111111002222222222003333. */
2043#define SIMM25_A32_5 (SIMM21_A32_5 + 1)
2044 {25, 0, BFD_RELOC_ARC_S25W_PCREL, ARC_OPERAND_SIGNED | ARC_OPERAND_ALIGNED32
2045 | ARC_OPERAND_TRUNCATE | ARC_OPERAND_PCREL, insert_simm25_a32_5,
2046 extract_simm25_a32_5},
2047
2048 /* SIMM13_A32_5_S mask = 0000011111111111. */
2049#define SIMM13_A32_5_S (SIMM25_A32_5 + 1)
2050 {13, 0, BFD_RELOC_ARC_S13_PCREL, ARC_OPERAND_SIGNED | ARC_OPERAND_ALIGNED32
2051 | ARC_OPERAND_TRUNCATE | ARC_OPERAND_PCREL, insert_simm13_a32_5_s,
2052 extract_simm13_a32_5_s},
2053
2054 /* SIMM8_A16_9_S mask = 0000000001111111. */
2055#define SIMM8_A16_9_S (SIMM13_A32_5_S + 1)
2056 {8, 0, -SIMM8_A16_9_S, ARC_OPERAND_SIGNED | ARC_OPERAND_ALIGNED16
2057 | ARC_OPERAND_TRUNCATE | ARC_OPERAND_PCREL, insert_simm8_a16_9_s,
2058 extract_simm8_a16_9_s},
2059
2060/* UIMM10_6_S_JLIOFF mask = 0000001111111111. */
2061#define UIMM10_6_S_JLIOFF (SIMM8_A16_9_S + 1)
2062 {12, 0, BFD_RELOC_ARC_JLI_SECTOFF, ARC_OPERAND_UNSIGNED
2063 | ARC_OPERAND_ALIGNED32 | ARC_OPERAND_TRUNCATE, insert_uimm10_6_s,
2064 extract_uimm10_6_s},
2065
2066 /* UIMM3_23 mask = 00000000000000000000000111000000. */
2067#define UIMM3_23 (UIMM10_6_S_JLIOFF + 1)
2068 {3, 0, 0, ARC_OPERAND_UNSIGNED, insert_uimm3_23, extract_uimm3_23},
2069
2070 /* UIMM10_6_S mask = 0000001111111111. */
2071#define UIMM10_6_S (UIMM3_23 + 1)
2072 {10, 0, 0, ARC_OPERAND_UNSIGNED, insert_uimm10_6_s, extract_uimm10_6_s},
2073
2074 /* UIMM6_11_S mask = 0000002200011110. */
2075#define UIMM6_11_S (UIMM10_6_S + 1)
2076 {6, 0, 0, ARC_OPERAND_UNSIGNED, insert_uimm6_11_s, extract_uimm6_11_s},
2077
2078 /* SIMM9_8 mask = 00000000111111112000000000000000. */
2079#define SIMM9_8 (UIMM6_11_S + 1)
2080 {9, 0, BFD_RELOC_ARC_SDA_LDST, ARC_OPERAND_SIGNED | ARC_OPERAND_IGNORE,
2081 insert_simm9_8, extract_simm9_8},
2082
2083 /* The same as above but used by relaxation. */
2084#define SIMM9_8R (SIMM9_8 + 1)
2085 {9, 0, -SIMM9_8R, ARC_OPERAND_SIGNED | ARC_OPERAND_IGNORE
2086 | ARC_OPERAND_PCREL, insert_simm9_8, extract_simm9_8},
2087
2088 /* UIMM10_A32_8_S mask = 0000000011111111. */
2089#define UIMM10_A32_8_S (SIMM9_8R + 1)
2090 {10, 0, -UIMM10_A32_8_S, ARC_OPERAND_UNSIGNED | ARC_OPERAND_ALIGNED32
2091 | ARC_OPERAND_TRUNCATE | ARC_OPERAND_PCREL, insert_uimm10_a32_8_s,
2092 extract_uimm10_a32_8_s},
2093
2094 /* SIMM9_7_S mask = 0000000111111111. */
2095#define SIMM9_7_S (UIMM10_A32_8_S + 1)
2096 {9, 0, BFD_RELOC_ARC_SDA16_LD, ARC_OPERAND_SIGNED, insert_simm9_7_s,
2097 extract_simm9_7_s},
2098
2099 /* UIMM6_A16_11_S mask = 0000000000011111. */
2100#define UIMM6_A16_11_S (SIMM9_7_S + 1)
2101 {6, 0, 0, ARC_OPERAND_UNSIGNED | ARC_OPERAND_ALIGNED16
2102 | ARC_OPERAND_TRUNCATE | ARC_OPERAND_IGNORE, insert_uimm6_a16_11_s,
2103 extract_uimm6_a16_11_s},
2104
2105 /* UIMM5_A32_11_S mask = 0000020000011000. */
2106#define UIMM5_A32_11_S (UIMM6_A16_11_S + 1)
2107 {5, 0, 0, ARC_OPERAND_UNSIGNED | ARC_OPERAND_ALIGNED32
2108 | ARC_OPERAND_TRUNCATE | ARC_OPERAND_IGNORE, insert_uimm5_a32_11_s,
2109 extract_uimm5_a32_11_s},
2110
2111 /* SIMM11_A32_13_S mask = 0000022222200111. */
2112#define SIMM11_A32_13_S (UIMM5_A32_11_S + 1)
2113 {11, 0, BFD_RELOC_ARC_SDA16_ST2, ARC_OPERAND_SIGNED | ARC_OPERAND_ALIGNED32
2114 | ARC_OPERAND_TRUNCATE, insert_simm11_a32_13_s, extract_simm11_a32_13_s},
2115
2116 /* UIMM7_13_S mask = 0000000022220111. */
2117#define UIMM7_13_S (SIMM11_A32_13_S + 1)
2118 {7, 0, 0, ARC_OPERAND_UNSIGNED, insert_uimm7_13_s, extract_uimm7_13_s},
2119
2120 /* UIMM6_A16_21 mask = 00000000000000000000011111000000. */
2121#define UIMM6_A16_21 (UIMM7_13_S + 1)
2122 {6, 0, 0, ARC_OPERAND_UNSIGNED | ARC_OPERAND_ALIGNED16
2123 | ARC_OPERAND_TRUNCATE, insert_uimm6_a16_21, extract_uimm6_a16_21},
2124
2125 /* UIMM7_11_S mask = 0000022200011110. */
2126#define UIMM7_11_S (UIMM6_A16_21 + 1)
2127 {7, 0, 0, ARC_OPERAND_UNSIGNED, insert_uimm7_11_s, extract_uimm7_11_s},
2128
2129 /* UIMM7_A16_20 mask = 00000000000000000000111111000000. */
2130#define UIMM7_A16_20 (UIMM7_11_S + 1)
2131 {7, 0, -UIMM7_A16_20, ARC_OPERAND_UNSIGNED | ARC_OPERAND_ALIGNED16
2132 | ARC_OPERAND_TRUNCATE | ARC_OPERAND_PCREL, insert_uimm7_a16_20,
2133 extract_uimm7_a16_20},
2134
2135 /* SIMM13_A16_20 mask = 00000000000000000000111111222222. */
2136#define SIMM13_A16_20 (UIMM7_A16_20 + 1)
2137 {13, 0, -SIMM13_A16_20, ARC_OPERAND_SIGNED | ARC_OPERAND_ALIGNED16
2138 | ARC_OPERAND_TRUNCATE | ARC_OPERAND_PCREL, insert_simm13_a16_20,
2139 extract_simm13_a16_20},
2140
2141 /* UIMM8_8_S mask = 0000000011111111. */
2142#define UIMM8_8_S (SIMM13_A16_20 + 1)
2143 {8, 0, 0, ARC_OPERAND_UNSIGNED, insert_uimm8_8_s, extract_uimm8_8_s},
2144
2145 /* The same as above but used for relaxation. */
2146#define UIMM8_8R_S (UIMM8_8_S + 1)
2147 {8, 0, -UIMM8_8R_S, ARC_OPERAND_UNSIGNED | ARC_OPERAND_PCREL,
2148 insert_uimm8_8_s, extract_uimm8_8_s},
2149
2150 /* W6 mask = 00000000000000000000111111000000. */
2151#define W6 (UIMM8_8R_S + 1)
2152 {6, 0, 0, ARC_OPERAND_SIGNED, insert_w6, extract_w6},
2153
2154 /* UIMM6_5_S mask = 0000011111100000. */
2155#define UIMM6_5_S (W6 + 1)
2156 {6, 0, 0, ARC_OPERAND_UNSIGNED, insert_uimm6_5_s, extract_uimm6_5_s},
2157
2158 /* ARC NPS400 Support: See comment near head of file. */
2159#define NPS_R_DST_3B (UIMM6_5_S + 1)
2160 { 3, 24, 0, ARC_OPERAND_IR | ARC_OPERAND_NCHK,
2161 insert_nps_3bit_reg_at_24_dst, extract_nps_3bit_reg_at_24_dst },
2162
2163#define NPS_R_SRC1_3B (NPS_R_DST_3B + 1)
2164 { 3, 24, 0, ARC_OPERAND_IR | ARC_OPERAND_DUPLICATE | ARC_OPERAND_NCHK,
2165 insert_nps_3bit_reg_at_24_dst, extract_nps_3bit_reg_at_24_dst },
2166
2167#define NPS_R_SRC2_3B (NPS_R_SRC1_3B + 1)
2168 { 3, 21, 0, ARC_OPERAND_IR | ARC_OPERAND_NCHK,
2169 insert_nps_3bit_reg_at_21_src2, extract_nps_3bit_reg_at_21_src2 },
2170
2171#define NPS_R_DST (NPS_R_SRC2_3B + 1)
2172 { 6, 21, 0, ARC_OPERAND_IR, NULL, NULL },
2173
2174#define NPS_R_SRC1 (NPS_R_DST + 1)
2175 { 6, 21, 0, ARC_OPERAND_IR | ARC_OPERAND_DUPLICATE, NULL, NULL },
2176
2177#define NPS_BITOP_DST_POS (NPS_R_SRC1 + 1)
2178 { 5, 5, 0, ARC_OPERAND_UNSIGNED, 0, 0 },
2179
2180#define NPS_BITOP_SRC_POS (NPS_BITOP_DST_POS + 1)
2181 { 5, 0, 0, ARC_OPERAND_UNSIGNED, 0, 0 },
2182
2183#define NPS_BITOP_SIZE (NPS_BITOP_SRC_POS + 1)
2184 { 5, 10, 0, ARC_OPERAND_UNSIGNED | ARC_OPERAND_NCHK,
2185 insert_nps_bitop_size, extract_nps_bitop_size },
2186
2187#define NPS_BITOP_DST_POS_SZ (NPS_BITOP_SIZE + 1)
2188 { 5, 0, 0, ARC_OPERAND_UNSIGNED,
2189 insert_nps_dst_pos_and_size, extract_nps_dst_pos_and_size },
2190
2191#define NPS_BITOP_SIZE_2B (NPS_BITOP_DST_POS_SZ + 1)
2192 { 0, 0, 0, ARC_OPERAND_UNSIGNED | ARC_OPERAND_NCHK,
2193 insert_nps_bitop_size_2b, extract_nps_bitop_size_2b },
2194
2195#define NPS_BITOP_UIMM8 (NPS_BITOP_SIZE_2B + 1)
2196 { 8, 0, 0, ARC_OPERAND_UNSIGNED,
2197 insert_nps_bitop_uimm8, extract_nps_bitop_uimm8 },
2198
2199#define NPS_UIMM16 (NPS_BITOP_UIMM8 + 1)
2200 { 16, 0, 0, ARC_OPERAND_UNSIGNED, NULL, NULL },
2201
2202#define NPS_SIMM16 (NPS_UIMM16 + 1)
2203 { 16, 0, 0, ARC_OPERAND_SIGNED, NULL, NULL },
2204
2205#define NPS_RFLT_UIMM6 (NPS_SIMM16 + 1)
2206 { 6, 6, 0, ARC_OPERAND_UNSIGNED | ARC_OPERAND_NCHK,
2207 insert_nps_rflt_uimm6, extract_nps_rflt_uimm6 },
2208
2209#define NPS_XLDST_UIMM16 (NPS_RFLT_UIMM6 + 1)
2210 { 16, 0, BFD_RELOC_ARC_NPS_CMEM16, ARC_OPERAND_UNSIGNED | ARC_OPERAND_NCHK,
2211 insert_nps_cmem_uimm16, extract_nps_cmem_uimm16 },
2212
2213#define NPS_SRC2_POS (NPS_XLDST_UIMM16 + 1)
2214 { 0, 0, 0, ARC_OPERAND_UNSIGNED | ARC_OPERAND_NCHK,
2215 insert_nps_src2_pos, extract_nps_src2_pos },
2216
2217#define NPS_SRC1_POS (NPS_SRC2_POS + 1)
2218 { 0, 0, 0, ARC_OPERAND_UNSIGNED | ARC_OPERAND_NCHK,
2219 insert_nps_src1_pos, extract_nps_src1_pos },
2220
2221#define NPS_ADDB_SIZE (NPS_SRC1_POS + 1)
2222 { 0, 0, 0, ARC_OPERAND_UNSIGNED | ARC_OPERAND_NCHK,
2223 insert_nps_addb_size, extract_nps_addb_size },
2224
2225#define NPS_ANDB_SIZE (NPS_ADDB_SIZE + 1)
2226 { 0, 0, 0, ARC_OPERAND_UNSIGNED | ARC_OPERAND_NCHK,
2227 insert_nps_andb_size, extract_nps_andb_size },
2228
2229#define NPS_FXORB_SIZE (NPS_ANDB_SIZE + 1)
2230 { 0, 0, 0, ARC_OPERAND_UNSIGNED | ARC_OPERAND_NCHK,
2231 insert_nps_fxorb_size, extract_nps_fxorb_size },
2232
2233#define NPS_WXORB_SIZE (NPS_FXORB_SIZE + 1)
2234 { 0, 0, 0, ARC_OPERAND_UNSIGNED | ARC_OPERAND_NCHK,
2235 insert_nps_wxorb_size, extract_nps_wxorb_size },
2236
2237#define NPS_R_XLDST (NPS_WXORB_SIZE + 1)
2238 { 6, 5, 0, ARC_OPERAND_IR, NULL, NULL },
2239
2240#define NPS_DIV_UIMM4 (NPS_R_XLDST + 1)
2241 { 4, 5, 0, ARC_OPERAND_UNSIGNED, NULL, NULL },
2242
2243#define NPS_QCMP_SIZE (NPS_DIV_UIMM4 + 1)
2244 { 0, 0, 0, ARC_OPERAND_UNSIGNED | ARC_OPERAND_NCHK,
2245 insert_nps_qcmp_size, extract_nps_qcmp_size },
2246
2247#define NPS_QCMP_M1 (NPS_QCMP_SIZE + 1)
2248 { 1, 14, 0, ARC_OPERAND_UNSIGNED, NULL, extract_nps_qcmp_m1 },
2249
2250#define NPS_QCMP_M2 (NPS_QCMP_M1 + 1)
2251 { 1, 15, 0, ARC_OPERAND_UNSIGNED, NULL, extract_nps_qcmp_m2 },
2252
2253#define NPS_QCMP_M3 (NPS_QCMP_M2 + 1)
2254 { 4, 5, 0, ARC_OPERAND_UNSIGNED, NULL, extract_nps_qcmp_m3 },
2255
2256#define NPS_CALC_ENTRY_SIZE (NPS_QCMP_M3 + 1)
2257 { 0, 0, 0, ARC_OPERAND_UNSIGNED | ARC_OPERAND_NCHK,
2258 insert_nps_calc_entry_size, extract_nps_calc_entry_size },
2259
2260#define NPS_R_DST_3B_SHORT (NPS_CALC_ENTRY_SIZE + 1)
2261 { 3, 8, 0, ARC_OPERAND_IR | ARC_OPERAND_NCHK,
2262 insert_nps_3bit_reg_at_8_dst, extract_nps_3bit_reg_at_8_dst },
2263
2264#define NPS_R_SRC1_3B_SHORT (NPS_R_DST_3B_SHORT + 1)
2265 { 3, 8, 0, ARC_OPERAND_IR | ARC_OPERAND_DUPLICATE | ARC_OPERAND_NCHK,
2266 insert_nps_3bit_reg_at_8_dst, extract_nps_3bit_reg_at_8_dst },
2267
2268#define NPS_R_SRC2_3B_SHORT (NPS_R_SRC1_3B_SHORT + 1)
2269 { 3, 5, 0, ARC_OPERAND_IR | ARC_OPERAND_NCHK,
2270 insert_nps_3bit_reg_at_5_src2, extract_nps_3bit_reg_at_5_src2 },
2271
2272#define NPS_BITOP_SIZE2 (NPS_R_SRC2_3B_SHORT + 1)
2273 { 5, 25, 0, ARC_OPERAND_UNSIGNED | ARC_OPERAND_NCHK,
2274 insert_nps_bitop2_size, extract_nps_bitop2_size },
2275
2276#define NPS_BITOP_SIZE1 (NPS_BITOP_SIZE2 + 1)
2277 { 5, 20, 0, ARC_OPERAND_UNSIGNED | ARC_OPERAND_NCHK,
2278 insert_nps_bitop1_size, extract_nps_bitop1_size },
2279
2280#define NPS_BITOP_DST_POS3_POS4 (NPS_BITOP_SIZE1 + 1)
2281 { 5, 0, 0, ARC_OPERAND_UNSIGNED,
2282 insert_nps_bitop_dst_pos3_pos4, extract_nps_bitop_dst_pos3_pos4 },
2283
2284#define NPS_BITOP_DST_POS4 (NPS_BITOP_DST_POS3_POS4 + 1)
2285 { 5, 42, 0, ARC_OPERAND_UNSIGNED, NULL, NULL },
2286
2287#define NPS_BITOP_DST_POS3 (NPS_BITOP_DST_POS4 + 1)
2288 { 5, 37, 0, ARC_OPERAND_UNSIGNED, NULL, NULL },
2289
2290#define NPS_BITOP_DST_POS2 (NPS_BITOP_DST_POS3 + 1)
2291 { 5, 15, 0, ARC_OPERAND_UNSIGNED, NULL, NULL },
2292
2293#define NPS_BITOP_DST_POS1 (NPS_BITOP_DST_POS2 + 1)
2294 { 5, 10, 0, ARC_OPERAND_UNSIGNED, NULL, NULL },
2295
2296#define NPS_BITOP_SRC_POS4 (NPS_BITOP_DST_POS1 + 1)
2297 { 5, 32, 0, ARC_OPERAND_UNSIGNED, NULL, NULL },
2298
2299#define NPS_BITOP_SRC_POS3 (NPS_BITOP_SRC_POS4 + 1)
2300 { 5, 20, 0, ARC_OPERAND_UNSIGNED, NULL, NULL },
2301
2302#define NPS_BITOP_SRC_POS2 (NPS_BITOP_SRC_POS3 + 1)
2303 { 5, 5, 0, ARC_OPERAND_UNSIGNED, NULL, NULL },
2304
2305#define NPS_BITOP_SRC_POS1 (NPS_BITOP_SRC_POS2 + 1)
2306 { 5, 0, 0, ARC_OPERAND_UNSIGNED, NULL, NULL },
2307
2308#define NPS_BITOP_MOD4 (NPS_BITOP_SRC_POS1 + 1)
2309 { 2, 0, 0, ARC_OPERAND_UNSIGNED,
2310 insert_nps_bitop_mod4, extract_nps_bitop_mod4 },
2311
2312#define NPS_BITOP_MOD3 (NPS_BITOP_MOD4 + 1)
2313 { 2, 29, 0, ARC_OPERAND_UNSIGNED, NULL, NULL },
2314
2315#define NPS_BITOP_MOD2 (NPS_BITOP_MOD3 + 1)
2316 { 2, 27, 0, ARC_OPERAND_UNSIGNED, NULL, NULL },
2317
2318#define NPS_BITOP_MOD1 (NPS_BITOP_MOD2 + 1)
2319 { 2, 25, 0, ARC_OPERAND_UNSIGNED, NULL, NULL },
2320
2321#define NPS_BITOP_INS_EXT (NPS_BITOP_MOD1 + 1)
2322 { 5, 20, 0, ARC_OPERAND_UNSIGNED,
2323 insert_nps_bitop_ins_ext, extract_nps_bitop_ins_ext },
2324
2325#define NPS_FIELD_START_POS (NPS_BITOP_INS_EXT + 1)
2326 { 3, 3, 0, ARC_OPERAND_UNSIGNED, NULL, NULL },
2327
2328#define NPS_FIELD_SIZE (NPS_FIELD_START_POS + 1)
2329 { 3, 6, 0, ARC_OPERAND_UNSIGNED | ARC_OPERAND_NCHK,
2330 insert_nps_field_size, extract_nps_field_size },
2331
2332#define NPS_SHIFT_FACTOR (NPS_FIELD_SIZE + 1)
2333 { 3, 9, 0, ARC_OPERAND_UNSIGNED | ARC_OPERAND_NCHK,
2334 insert_nps_shift_factor, extract_nps_shift_factor },
2335
2336#define NPS_BITS_TO_SCRAMBLE (NPS_SHIFT_FACTOR + 1)
2337 { 3, 12, 0, ARC_OPERAND_UNSIGNED | ARC_OPERAND_NCHK,
2338 insert_nps_bits_to_scramble, extract_nps_bits_to_scramble },
2339
2340#define NPS_SRC2_POS_5B (NPS_BITS_TO_SCRAMBLE + 1)
2341 { 5, 5, 0, ARC_OPERAND_UNSIGNED, NULL, NULL },
2342
2343#define NPS_BDLEN_MAX_LEN (NPS_SRC2_POS_5B + 1)
2344 { 8, 5, 0, ARC_OPERAND_UNSIGNED | ARC_OPERAND_NCHK,
2345 insert_nps_bdlen_max_len, extract_nps_bdlen_max_len },
2346
2347#define NPS_MIN_HOFS (NPS_BDLEN_MAX_LEN + 1)
2348 { 4, 6, 0, ARC_OPERAND_UNSIGNED | ARC_OPERAND_NCHK,
2349 insert_nps_min_hofs, extract_nps_min_hofs },
2350
2351#define NPS_PSBC (NPS_MIN_HOFS + 1)
2352 { 1, 11, 0, ARC_OPERAND_UNSIGNED, NULL, NULL },
2353
2354#define NPS_DPI_DST (NPS_PSBC + 1)
2355 { 5, 11, 0, ARC_OPERAND_IR, NULL, NULL },
2356
2357 /* NPS_DPI_SRC1_3B is similar to NPS_R_SRC1_3B
2358 but doesn't duplicate an operand. */
2359#define NPS_DPI_SRC1_3B (NPS_DPI_DST + 1)
2360 { 3, 24, 0, ARC_OPERAND_IR | ARC_OPERAND_NCHK,
2361 insert_nps_3bit_reg_at_24_dst, extract_nps_3bit_reg_at_24_dst },
2362
2363#define NPS_HASH_WIDTH (NPS_DPI_SRC1_3B + 1)
2364 { 5, 6, 0, ARC_OPERAND_UNSIGNED | ARC_OPERAND_NCHK,
2365 insert_nps_hash_width, extract_nps_hash_width },
2366
2367#define NPS_HASH_PERM (NPS_HASH_WIDTH + 1)
2368 { 3, 2, 0, ARC_OPERAND_UNSIGNED, NULL, NULL },
2369
2370#define NPS_HASH_NONLINEAR (NPS_HASH_PERM + 1)
2371 { 1, 5, 0, ARC_OPERAND_UNSIGNED, NULL, NULL },
2372
2373#define NPS_HASH_BASEMAT (NPS_HASH_NONLINEAR + 1)
2374 { 2, 0, 0, ARC_OPERAND_UNSIGNED, NULL, NULL },
2375
2376#define NPS_HASH_LEN (NPS_HASH_BASEMAT + 1)
2377 { 3, 2, 0, ARC_OPERAND_UNSIGNED | ARC_OPERAND_NCHK,
2378 insert_nps_hash_len, extract_nps_hash_len },
2379
2380#define NPS_HASH_OFS (NPS_HASH_LEN + 1)
2381 { 2, 0, 0, ARC_OPERAND_UNSIGNED, NULL, NULL },
2382
2383#define NPS_HASH_BASEMAT2 (NPS_HASH_OFS + 1)
2384 { 1, 5, 0, ARC_OPERAND_UNSIGNED, NULL, NULL },
2385
2386#define NPS_E4BY_INDEX0 (NPS_HASH_BASEMAT2 + 1)
2387 { 3, 8, 0, ARC_OPERAND_UNSIGNED, NULL, NULL },
2388
2389#define NPS_E4BY_INDEX1 (NPS_E4BY_INDEX0 + 1)
2390 { 3, 5, 0, ARC_OPERAND_UNSIGNED, NULL, NULL },
2391
2392#define NPS_E4BY_INDEX2 (NPS_E4BY_INDEX1 + 1)
2393 { 3, 2, 0, ARC_OPERAND_UNSIGNED, NULL, NULL },
2394
2395#define NPS_E4BY_INDEX3 (NPS_E4BY_INDEX2 + 1)
2396 { 2, 0, 0, ARC_OPERAND_UNSIGNED | ARC_OPERAND_NCHK,
2397 insert_nps_index3, extract_nps_index3 },
2398
2399#define COLON (NPS_E4BY_INDEX3 + 1)
2400 { 0, 0, 0, ARC_OPERAND_COLON | ARC_OPERAND_FAKE, NULL, NULL },
2401
2402#define NPS_BD (COLON + 1)
2403 { 0, 0, 0, ARC_OPERAND_ADDRTYPE | ARC_OPERAND_NCHK,
2404 insert_nps_bd, extract_nps_bd },
2405
2406#define NPS_JID (NPS_BD + 1)
2407 { 0, 0, 0, ARC_OPERAND_ADDRTYPE | ARC_OPERAND_NCHK,
2408 insert_nps_jid, extract_nps_jid },
2409
2410#define NPS_LBD (NPS_JID + 1)
2411 { 0, 0, 0, ARC_OPERAND_ADDRTYPE | ARC_OPERAND_NCHK,
2412 insert_nps_lbd, extract_nps_lbd },
2413
2414#define NPS_MBD (NPS_LBD + 1)
2415 { 0, 0, 0, ARC_OPERAND_ADDRTYPE | ARC_OPERAND_NCHK,
2416 insert_nps_mbd, extract_nps_mbd },
2417
2418#define NPS_SD (NPS_MBD + 1)
2419 { 0, 0, 0, ARC_OPERAND_ADDRTYPE | ARC_OPERAND_NCHK,
2420 insert_nps_sd, extract_nps_sd },
2421
2422#define NPS_SM (NPS_SD + 1)
2423 { 0, 0, 0, ARC_OPERAND_ADDRTYPE | ARC_OPERAND_NCHK,
2424 insert_nps_sm, extract_nps_sm },
2425
2426#define NPS_XA (NPS_SM + 1)
2427 { 0, 0, 0, ARC_OPERAND_ADDRTYPE | ARC_OPERAND_NCHK,
2428 insert_nps_xa, extract_nps_xa },
2429
2430#define NPS_XD (NPS_XA + 1)
2431 { 0, 0, 0, ARC_OPERAND_ADDRTYPE | ARC_OPERAND_NCHK,
2432 insert_nps_xd, extract_nps_xd },
2433
2434#define NPS_CD (NPS_XD + 1)
2435 { 0, 0, 0, ARC_OPERAND_ADDRTYPE | ARC_OPERAND_NCHK,
2436 insert_nps_cd, extract_nps_cd },
2437
2438#define NPS_CBD (NPS_CD + 1)
2439 { 0, 0, 0, ARC_OPERAND_ADDRTYPE | ARC_OPERAND_NCHK,
2440 insert_nps_cbd, extract_nps_cbd },
2441
2442#define NPS_CJID (NPS_CBD + 1)
2443 { 0, 0, 0, ARC_OPERAND_ADDRTYPE | ARC_OPERAND_NCHK,
2444 insert_nps_cjid, extract_nps_cjid },
2445
2446#define NPS_CLBD (NPS_CJID + 1)
2447 { 0, 0, 0, ARC_OPERAND_ADDRTYPE | ARC_OPERAND_NCHK,
2448 insert_nps_clbd, extract_nps_clbd },
2449
2450#define NPS_CM (NPS_CLBD + 1)
2451 { 0, 0, 0, ARC_OPERAND_ADDRTYPE | ARC_OPERAND_NCHK,
2452 insert_nps_cm, extract_nps_cm },
2453
2454#define NPS_CSD (NPS_CM + 1)
2455 { 0, 0, 0, ARC_OPERAND_ADDRTYPE | ARC_OPERAND_NCHK,
2456 insert_nps_csd, extract_nps_csd },
2457
2458#define NPS_CXA (NPS_CSD + 1)
2459 { 0, 0, 0, ARC_OPERAND_ADDRTYPE | ARC_OPERAND_NCHK,
2460 insert_nps_cxa, extract_nps_cxa },
2461
2462#define NPS_CXD (NPS_CXA + 1)
2463 { 0, 0, 0, ARC_OPERAND_ADDRTYPE | ARC_OPERAND_NCHK,
2464 insert_nps_cxd, extract_nps_cxd },
2465
2466#define NPS_BD_TYPE (NPS_CXD + 1)
2467 { 1, 10, 0, ARC_OPERAND_UNSIGNED, NULL, NULL },
2468
2469#define NPS_BMU_NUM (NPS_BD_TYPE + 1)
2470 { 3, 0, 0, ARC_OPERAND_UNSIGNED | ARC_OPERAND_NCHK,
2471 insert_nps_bd_num_buff, extract_nps_bd_num_buff },
2472
2473#define NPS_PMU_NXT_DST (NPS_BMU_NUM + 1)
2474 { 4, 6, 0, ARC_OPERAND_UNSIGNED, NULL, NULL },
2475
2476#define NPS_WHASH_SIZE (NPS_PMU_NXT_DST + 1)
2477 { 6, 6, 0, ARC_OPERAND_UNSIGNED | ARC_OPERAND_NCHK,
2478 insert_nps_size_16bit, extract_nps_size_16bit },
2479
2480#define NPS_PMU_NUM_JOB (NPS_WHASH_SIZE + 1)
2481 { 2, 6, 0, ARC_OPERAND_UNSIGNED | ARC_OPERAND_NCHK,
2482 insert_nps_pmu_num_job, extract_nps_pmu_num_job },
2483
2484#define NPS_DMA_IMM_ENTRY (NPS_PMU_NUM_JOB + 1)
2485 { 3, 2, 0, ARC_OPERAND_UNSIGNED | ARC_OPERAND_NCHK,
2486 insert_nps_imm_entry, extract_nps_imm_entry },
2487
2488#define NPS_DMA_IMM_OFFSET (NPS_DMA_IMM_ENTRY + 1)
2489 { 4, 10, 0, ARC_OPERAND_UNSIGNED | ARC_OPERAND_NCHK,
2490 insert_nps_imm_offset, extract_nps_imm_offset },
2491
2492#define NPS_MISC_IMM_SIZE (NPS_DMA_IMM_OFFSET + 1)
2493 { 7, 0, 0, ARC_OPERAND_UNSIGNED , NULL, NULL },
2494
2495#define NPS_MISC_IMM_OFFSET (NPS_MISC_IMM_SIZE + 1)
2496 { 5, 8, 0, ARC_OPERAND_UNSIGNED | ARC_OPERAND_NCHK,
2497 insert_nps_misc_imm_offset, extract_nps_misc_imm_offset },
2498
2499#define NPS_R_DST_3B_48 (NPS_MISC_IMM_OFFSET + 1)
2500 { 3, 40, 0, ARC_OPERAND_IR | ARC_OPERAND_NCHK,
2501 insert_nps_3bit_reg_at_40_dst, extract_nps_3bit_reg_at_40_dst },
2502
2503#define NPS_R_SRC1_3B_48 (NPS_R_DST_3B_48 + 1)
2504 { 3, 40, 0, ARC_OPERAND_IR | ARC_OPERAND_DUPLICATE | ARC_OPERAND_NCHK,
2505 insert_nps_3bit_reg_at_40_dst, extract_nps_3bit_reg_at_40_dst },
2506
2507#define NPS_R_SRC2_3B_48 (NPS_R_SRC1_3B_48 + 1)
2508 { 3, 37, 0, ARC_OPERAND_IR | ARC_OPERAND_NCHK,
2509 insert_nps_3bit_reg_at_37_src2, extract_nps_3bit_reg_at_37_src2 },
2510
2511#define NPS_R_DST_3B_64 (NPS_R_SRC2_3B_48 + 1)
2512 { 3, 56, 0, ARC_OPERAND_IR | ARC_OPERAND_NCHK,
2513 insert_nps_3bit_reg_at_56_dst, extract_nps_3bit_reg_at_56_dst },
2514
2515#define NPS_R_SRC1_3B_64 (NPS_R_DST_3B_64 + 1)
2516 { 3, 56, 0, ARC_OPERAND_IR | ARC_OPERAND_DUPLICATE | ARC_OPERAND_NCHK,
2517 insert_nps_3bit_reg_at_56_dst, extract_nps_3bit_reg_at_56_dst },
2518
2519#define NPS_R_SRC2_3B_64 (NPS_R_SRC1_3B_64 + 1)
2520 { 3, 53, 0, ARC_OPERAND_IR | ARC_OPERAND_NCHK,
2521 insert_nps_3bit_reg_at_53_src2, extract_nps_3bit_reg_at_53_src2 },
2522
2523#define NPS_RA_64 (NPS_R_SRC2_3B_64 + 1)
2524 { 6, 53, 0, ARC_OPERAND_IR, NULL, NULL },
2525
2526#define NPS_RB_64 (NPS_RA_64 + 1)
2527 { 5, 48, 0, ARC_OPERAND_IR, NULL, NULL },
2528
2529#define NPS_RBdup_64 (NPS_RB_64 + 1)
2530 { 5, 43, 0, ARC_OPERAND_IR | ARC_OPERAND_DUPLICATE, NULL, NULL },
2531
2532#define NPS_RBdouble_64 (NPS_RBdup_64 + 1)
2533 { 10, 43, 0, ARC_OPERAND_IR | ARC_OPERAND_NCHK,
2534 insert_nps_rbdouble_64, extract_nps_rbdouble_64 },
2535
2536#define NPS_RC_64 (NPS_RBdouble_64 + 1)
2537 { 5, 43, 0, ARC_OPERAND_IR, NULL, NULL },
2538
2539#define NPS_UIMM16_0_64 (NPS_RC_64 + 1)
2540 { 16, 0, 0, ARC_OPERAND_UNSIGNED, NULL, NULL },
2541
2542#define NPS_PROTO_SIZE (NPS_UIMM16_0_64 + 1)
2543 { 6, 16, 0, ARC_OPERAND_UNSIGNED | ARC_OPERAND_NCHK,
2544 insert_nps_proto_size, extract_nps_proto_size }
2545};
2546const unsigned arc_num_operands = ARRAY_SIZE (arc_operands);
2547
2548const unsigned arc_Toperand = FKT_T;
2549const unsigned arc_NToperand = FKT_NT;
2550
2551const unsigned char arg_none[] = { 0 };
2552const unsigned char arg_32bit_rarbrc[] = { RA, RB, RC };
2553const unsigned char arg_32bit_zarbrc[] = { ZA, RB, RC };
2554const unsigned char arg_32bit_rbrbrc[] = { RB, RBdup, RC };
2555const unsigned char arg_32bit_rarbu6[] = { RA, RB, UIMM6_20 };
2556const unsigned char arg_32bit_zarbu6[] = { ZA, RB, UIMM6_20 };
2557const unsigned char arg_32bit_rbrbu6[] = { RB, RBdup, UIMM6_20 };
2558const unsigned char arg_32bit_rbrbs12[] = { RB, RBdup, SIMM12_20 };
2559const unsigned char arg_32bit_ralimmrc[] = { RA, LIMM, RC };
2560const unsigned char arg_32bit_rarblimm[] = { RA, RB, LIMM };
2561const unsigned char arg_32bit_zalimmrc[] = { ZA, LIMM, RC };
2562const unsigned char arg_32bit_zarblimm[] = { ZA, RB, LIMM };
2563
2564const unsigned char arg_32bit_rbrblimm[] = { RB, RBdup, LIMM };
2565const unsigned char arg_32bit_ralimmu6[] = { RA, LIMM, UIMM6_20 };
2566const unsigned char arg_32bit_zalimmu6[] = { ZA, LIMM, UIMM6_20 };
2567
2568const unsigned char arg_32bit_zalimms12[] = { ZA, LIMM, SIMM12_20 };
2569const unsigned char arg_32bit_ralimmlimm[] = { RA, LIMM, LIMMdup };
2570const unsigned char arg_32bit_zalimmlimm[] = { ZA, LIMM, LIMMdup };
2571
2572const unsigned char arg_32bit_rbrc[] = { RB, RC };
2573const unsigned char arg_32bit_zarc[] = { ZA, RC };
2574const unsigned char arg_32bit_rbu6[] = { RB, UIMM6_20 };
2575const unsigned char arg_32bit_zau6[] = { ZA, UIMM6_20 };
2576const unsigned char arg_32bit_rblimm[] = { RB, LIMM };
2577const unsigned char arg_32bit_zalimm[] = { ZA, LIMM };
2578
2579const unsigned char arg_32bit_limmrc[] = { LIMM, RC };
2580const unsigned char arg_32bit_limmu6[] = { LIMM, UIMM6_20 };
2581const unsigned char arg_32bit_limms12[] = { LIMM, SIMM12_20 };
2582const unsigned char arg_32bit_limmlimm[] = { LIMM, LIMMdup };
2583
2584const unsigned char arg_32bit_rc[] = { RC };
2585const unsigned char arg_32bit_u6[] = { UIMM6_20 };
2586const unsigned char arg_32bit_limm[] = { LIMM };
2587
2588/* The opcode table.
2589
2590 The format of the opcode table is:
2591
2592 NAME OPCODE MASK CPU CLASS SUBCLASS { OPERANDS } { FLAGS }.
2593
2594 The table is organised such that, where possible, all instructions with
2595 the same mnemonic are together in a block. When the assembler searches
2596 for a suitable instruction the entries are checked in table order, so
2597 more specific, or specialised cases should appear earlier in the table.
2598
2599 As an example, consider two instructions 'add a,b,u6' and 'add
2600 a,b,limm'. The first takes a 6-bit immediate that is encoded within the
2601 32-bit instruction, while the second takes a 32-bit immediate that is
2602 encoded in a follow-on 32-bit, making the total instruction length
2603 64-bits. In this case the u6 variant must appear first in the table, as
2604 all u6 immediates could also be encoded using the 'limm' extension,
2605 however, we want to use the shorter instruction wherever possible.
2606
2607 It is possible though to split instructions with the same mnemonic into
2608 multiple groups. However, the instructions are still checked in table
2609 order, even across groups. The only time that instructions with the
2610 same mnemonic should be split into different groups is when different
2611 variants of the instruction appear in different architectures, in which
2612 case, grouping all instructions from a particular architecture together
2613 might be preferable to merging the instruction into the main instruction
2614 table.
2615
2616 An example of this split instruction groups can be found with the 'sync'
2617 instruction. The core arc architecture provides a 'sync' instruction,
2618 while the nps instruction set extension provides 'sync.rd' and
2619 'sync.wr'. The rd/wr flags are instruction flags, not part of the
2620 mnemonic, so we end up with two groups for the sync instruction, the
2621 first within the core arc instruction table, and the second within the
2622 nps extension instructions. */
2623const struct arc_opcode arc_opcodes[] =
2624{
2625#include "arc-tbl.h"
2626#include "arc-nps400-tbl.h"
2627#include "arc-ext-tbl.h"
2628
2629 { NULL, 0, 0, 0, 0, 0, { 0 }, { 0 } }
2630};
2631
2632/* List with special cases instructions and the applicable flags. */
2633const struct arc_flag_special arc_flag_special_cases[] =
2634{
2635 { "b", { F_ALWAYS, F_RA, F_EQUAL, F_ZERO, F_NOTEQUAL, F_NOTZERO, F_POZITIVE,
2636 F_PL, F_NEGATIVE, F_MINUS, F_CARRY, F_CARRYSET, F_LOWER, F_CARRYCLR,
2637 F_NOTCARRY, F_HIGHER, F_OVERFLOWSET, F_OVERFLOW, F_NOTOVERFLOW,
2638 F_OVERFLOWCLR, F_GT, F_GE, F_LT, F_LE, F_HI, F_LS, F_PNZ, F_NJ, F_NM,
2639 F_NO_T, F_NULL } },
2640 { "bl", { F_ALWAYS, F_RA, F_EQUAL, F_ZERO, F_NOTEQUAL, F_NOTZERO, F_POZITIVE,
2641 F_PL, F_NEGATIVE, F_MINUS, F_CARRY, F_CARRYSET, F_LOWER, F_CARRYCLR,
2642 F_NOTCARRY, F_HIGHER, F_OVERFLOWSET, F_OVERFLOW, F_NOTOVERFLOW,
2643 F_OVERFLOWCLR, F_GT, F_GE, F_LT, F_LE, F_HI, F_LS, F_PNZ, F_NULL } },
2644 { "br", { F_ALWAYS, F_RA, F_EQUAL, F_ZERO, F_NOTEQUAL, F_NOTZERO, F_POZITIVE,
2645 F_PL, F_NEGATIVE, F_MINUS, F_CARRY, F_CARRYSET, F_LOWER, F_CARRYCLR,
2646 F_NOTCARRY, F_HIGHER, F_OVERFLOWSET, F_OVERFLOW, F_NOTOVERFLOW,
2647 F_OVERFLOWCLR, F_GT, F_GE, F_LT, F_LE, F_HI, F_LS, F_PNZ, F_NULL } },
2648 { "j", { F_ALWAYS, F_RA, F_EQUAL, F_ZERO, F_NOTEQUAL, F_NOTZERO, F_POZITIVE,
2649 F_PL, F_NEGATIVE, F_MINUS, F_CARRY, F_CARRYSET, F_LOWER, F_CARRYCLR,
2650 F_NOTCARRY, F_HIGHER, F_OVERFLOWSET, F_OVERFLOW, F_NOTOVERFLOW,
2651 F_OVERFLOWCLR, F_GT, F_GE, F_LT, F_LE, F_HI, F_LS, F_PNZ, F_NULL } },
2652 { "jl", { F_ALWAYS, F_RA, F_EQUAL, F_ZERO, F_NOTEQUAL, F_NOTZERO, F_POZITIVE,
2653 F_PL, F_NEGATIVE, F_MINUS, F_CARRY, F_CARRYSET, F_LOWER, F_CARRYCLR,
2654 F_NOTCARRY, F_HIGHER, F_OVERFLOWSET, F_OVERFLOW, F_NOTOVERFLOW,
2655 F_OVERFLOWCLR, F_GT, F_GE, F_LT, F_LE, F_HI, F_LS, F_PNZ, F_NULL } },
2656 { "lp", { F_ALWAYS, F_RA, F_EQUAL, F_ZERO, F_NOTEQUAL, F_NOTZERO, F_POZITIVE,
2657 F_PL, F_NEGATIVE, F_MINUS, F_CARRY, F_CARRYSET, F_LOWER, F_CARRYCLR,
2658 F_NOTCARRY, F_HIGHER, F_OVERFLOWSET, F_OVERFLOW, F_NOTOVERFLOW,
2659 F_OVERFLOWCLR, F_GT, F_GE, F_LT, F_LE, F_HI, F_LS, F_PNZ, F_NULL } },
2660 { "set", { F_ALWAYS, F_RA, F_EQUAL, F_ZERO, F_NOTEQUAL, F_NOTZERO, F_POZITIVE,
2661 F_PL, F_NEGATIVE, F_MINUS, F_CARRY, F_CARRYSET, F_LOWER, F_CARRYCLR,
2662 F_NOTCARRY, F_HIGHER, F_OVERFLOWSET, F_OVERFLOW, F_NOTOVERFLOW,
2663 F_OVERFLOWCLR, F_GT, F_GE, F_LT, F_LE, F_HI, F_LS, F_PNZ, F_NULL } },
2664 { "ld", { F_SIZEB17, F_SIZEW17, F_H17, F_NULL } },
2665 { "st", { F_SIZEB1, F_SIZEW1, F_H1, F_NULL } }
2666};
2667
2668const unsigned arc_num_flag_special = ARRAY_SIZE (arc_flag_special_cases);
2669
2670/* Relocations. */
2671const struct arc_reloc_equiv_tab arc_reloc_equiv[] =
2672{
2673 { "sda", "ld", { F_ASFAKE, F_H1, F_NULL },
2674 BFD_RELOC_ARC_SDA_LDST, BFD_RELOC_ARC_SDA_LDST1 },
2675 { "sda", "st", { F_ASFAKE, F_H1, F_NULL },
2676 BFD_RELOC_ARC_SDA_LDST, BFD_RELOC_ARC_SDA_LDST1 },
2677 { "sda", "ld", { F_ASFAKE, F_SIZEW7, F_NULL },
2678 BFD_RELOC_ARC_SDA_LDST, BFD_RELOC_ARC_SDA_LDST1 },
2679 { "sda", "st", { F_ASFAKE, F_SIZEW7, F_NULL },
2680 BFD_RELOC_ARC_SDA_LDST, BFD_RELOC_ARC_SDA_LDST1 },
2681
2682 /* Next two entries will cover the undefined behavior ldb/stb with
2683 address scaling. */
2684 { "sda", "ld", { F_ASFAKE, F_SIZEB7, F_NULL },
2685 BFD_RELOC_ARC_SDA_LDST, BFD_RELOC_ARC_SDA_LDST },
2686 { "sda", "st", { F_ASFAKE, F_SIZEB7, F_NULL },
2687 BFD_RELOC_ARC_SDA_LDST, BFD_RELOC_ARC_SDA_LDST},
2688
2689 { "sda", "ld", { F_ASFAKE, F_NULL },
2690 BFD_RELOC_ARC_SDA_LDST, BFD_RELOC_ARC_SDA_LDST2 },
2691 { "sda", "st", { F_ASFAKE, F_NULL },
2692 BFD_RELOC_ARC_SDA_LDST, BFD_RELOC_ARC_SDA_LDST2},
2693 { "sda", "ldd", { F_ASFAKE, F_NULL },
2694 BFD_RELOC_ARC_SDA_LDST, BFD_RELOC_ARC_SDA_LDST2 },
2695 { "sda", "std", { F_ASFAKE, F_NULL },
2696 BFD_RELOC_ARC_SDA_LDST, BFD_RELOC_ARC_SDA_LDST2},
2697
2698 /* Short instructions. */
2699 { "sda", 0, { F_NULL }, BFD_RELOC_ARC_SDA16_LD, BFD_RELOC_ARC_SDA16_LD },
2700 { "sda", 0, { F_NULL }, -SIMM10_A16_7_Sbis, BFD_RELOC_ARC_SDA16_LD1 },
2701 { "sda", 0, { F_NULL }, BFD_RELOC_ARC_SDA16_LD2, BFD_RELOC_ARC_SDA16_LD2 },
2702 { "sda", 0, { F_NULL }, BFD_RELOC_ARC_SDA16_ST2, BFD_RELOC_ARC_SDA16_ST2 },
2703
2704 { "sda", 0, { F_NULL }, BFD_RELOC_ARC_32_ME, BFD_RELOC_ARC_SDA32_ME },
2705 { "sda", 0, { F_NULL }, BFD_RELOC_ARC_SDA_LDST, BFD_RELOC_ARC_SDA_LDST },
2706
2707 { "plt", 0, { F_NULL }, BFD_RELOC_ARC_S25H_PCREL,
2708 BFD_RELOC_ARC_S25H_PCREL_PLT },
2709 { "plt", 0, { F_NULL }, BFD_RELOC_ARC_S21H_PCREL,
2710 BFD_RELOC_ARC_S21H_PCREL_PLT },
2711 { "plt", 0, { F_NULL }, BFD_RELOC_ARC_S25W_PCREL,
2712 BFD_RELOC_ARC_S25W_PCREL_PLT },
2713 { "plt", 0, { F_NULL }, BFD_RELOC_ARC_S21W_PCREL,
2714 BFD_RELOC_ARC_S21W_PCREL_PLT },
2715
2716 { "plt", 0, { F_NULL }, BFD_RELOC_ARC_32_ME, BFD_RELOC_ARC_PLT32 }
2717};
2718
2719const unsigned arc_num_equiv_tab = ARRAY_SIZE (arc_reloc_equiv);
2720
2721const struct arc_pseudo_insn arc_pseudo_insns[] =
2722{
2723 { "push", "st", ".aw", 5, { { RC, 0, 0, 0 }, { BRAKET, 1, 0, 1 },
2724 { RB, 1, 28, 2 }, { SIMM9_8, 1, -4, 3 },
2725 { BRAKETdup, 1, 0, 4} } },
2726 { "pop", "ld", ".ab", 5, { { RA, 0, 0, 0 }, { BRAKET, 1, 0, 1 },
2727 { RB, 1, 28, 2 }, { SIMM9_8, 1, 4, 3 },
2728 { BRAKETdup, 1, 0, 4} } },
2729
2730 { "brgt", "brlt", NULL, 3, { { RB, 0, 0, 1 }, { RC, 0, 0, 0 },
2731 { SIMM9_A16_8, 0, 0, 2 } } },
2732 { "brgt", "brge", NULL, 3, { { RB, 0, 0, 0 }, { UIMM6_8, 0, 1, 1 },
2733 { SIMM9_A16_8, 0, 0, 2 } } },
2734 { "brgt", "brlt", NULL, 3, { { RB, 0, 0, 1 }, { LIMM, 0, 0, 0 },
2735 { SIMM9_A16_8, 0, 0, 2 } } },
2736 { "brgt", "brlt", NULL, 3, { { LIMM, 0, 0, 1 }, { RC, 0, 0, 0 },
2737 { SIMM9_A16_8, 0, 0, 2 } } },
2738 { "brgt", "brge", NULL, 3, { { LIMM, 0, 0, 0 }, { UIMM6_8, 0, 1, 1 },
2739 { SIMM9_A16_8, 0, 0, 2 } } },
2740
2741 { "brhi", "brlo", NULL, 3, { { RB, 0, 0, 1 }, { RC, 0, 0, 0 },
2742 { SIMM9_A16_8, 0, 0, 2 } } },
2743 { "brhi", "brhs", NULL, 3, { { RB, 0, 0, 0 }, { UIMM6_8, 0, 1, 1 },
2744 { SIMM9_A16_8, 0, 0, 2 } } },
2745 { "brhi", "brlo", NULL, 3, { { RB, 0, 0, 1 }, { LIMM, 0, 0, 0 },
2746 { SIMM9_A16_8, 0, 0, 2 } } },
2747 { "brhi", "brlo", NULL, 3, { { LIMM, 0, 0, 1 }, { RC, 0, 0, 0 },
2748 { SIMM9_A16_8, 0, 0, 2 } } },
2749 { "brhi", "brhs", NULL, 3, { { LIMM, 0, 0, 0 }, { UIMM6_8, 0, 1, 1 },
2750 { SIMM9_A16_8, 0, 0, 2 } } },
2751
2752 { "brle", "brge", NULL, 3, { { RB, 0, 0, 1 }, { RC, 0, 0, 0 },
2753 { SIMM9_A16_8, 0, 0, 2 } } },
2754 { "brle", "brlt", NULL, 3, { { RB, 0, 0, 0 }, { UIMM6_8, 0, 1, 1 },
2755 { SIMM9_A16_8, 0, 0, 2 } } },
2756 { "brle", "brge", NULL, 3, { { RB, 0, 0, 1 }, { LIMM, 0, 0, 0 },
2757 { SIMM9_A16_8, 0, 0, 2 } } },
2758 { "brle", "brge", NULL, 3, { { LIMM, 0, 0, 1 }, { RC, 0, 0, 0 },
2759 { SIMM9_A16_8, 0, 0, 2 } } },
2760 { "brle", "brlt", NULL, 3, { { LIMM, 0, 0, 0 }, { UIMM6_8, 0, 1, 1 },
2761 { SIMM9_A16_8, 0, 0, 2 } } },
2762
2763 { "brls", "brhs", NULL, 3, { { RB, 0, 0, 1 }, { RC, 0, 0, 0 },
2764 { SIMM9_A16_8, 0, 0, 2 } } },
2765 { "brls", "brlo", NULL, 3, { { RB, 0, 0, 0 }, { UIMM6_8, 0, 1, 1 },
2766 { SIMM9_A16_8, 0, 0, 2 } } },
2767 { "brls", "brhs", NULL, 3, { { RB, 0, 0, 1 }, { LIMM, 0, 0, 0 },
2768 { SIMM9_A16_8, 0, 0, 2 } } },
2769 { "brls", "brhs", NULL, 3, { { LIMM, 0, 0, 1 }, { RC, 0, 0, 0 },
2770 { SIMM9_A16_8, 0, 0, 2 } } },
2771 { "brls", "brlo", NULL, 3, { { LIMM, 0, 0, 0 }, { UIMM6_8, 0, 1, 1 },
2772 { SIMM9_A16_8, 0, 0, 2 } } },
2773};
2774
2775const unsigned arc_num_pseudo_insn =
2776 sizeof (arc_pseudo_insns) / sizeof (*arc_pseudo_insns);
2777
2778const struct arc_aux_reg arc_aux_regs[] =
2779{
2780#undef DEF
2781#define DEF(ADDR, CPU, SUBCLASS, NAME) \
2782 { ADDR, CPU, SUBCLASS, #NAME, sizeof (#NAME)-1 },
2783
2784#include "arc-regs.h"
2785
2786#undef DEF
2787};
2788
2789const unsigned arc_num_aux_regs = ARRAY_SIZE (arc_aux_regs);
2790
2791/* NOTE: The order of this array MUST be consistent with 'enum
2792 arc_rlx_types' located in tc-arc.h! */
2793const struct arc_opcode arc_relax_opcodes[] =
2794{
2795 { NULL, 0x0, 0x0, 0x0, ARITH, NONE, { UNUSED }, { 0 } },
2796
2797 /* bl_s s13 11111sssssssssss. */
2798 { "bl_s", 0x0000F800, 0x0000F800, ARC_OPCODE_ARC600 | ARC_OPCODE_ARC700
2799 | ARC_OPCODE_ARCv2EM | ARC_OPCODE_ARCv2HS, BRANCH, NONE,
2800 { SIMM13_A32_5_S }, { 0 }},
2801
2802 /* bl<.d> s25 00001sssssssss10SSSSSSSSSSNRtttt. */
2803 { "bl", 0x08020000, 0xF8030000, ARC_OPCODE_ARC600 | ARC_OPCODE_ARC700
2804 | ARC_OPCODE_ARCv2EM | ARC_OPCODE_ARCv2HS, BRANCH, NONE,
2805 { SIMM25_A32_5 }, { C_D }},
2806
2807 /* b_s s10 1111000sssssssss. */
2808 { "b_s", 0x0000F000, 0x0000FE00, ARC_OPCODE_ARC600 | ARC_OPCODE_ARC700
2809 | ARC_OPCODE_ARCv2EM | ARC_OPCODE_ARCv2HS, BRANCH, NONE,
2810 { SIMM10_A16_7_S }, { 0 }},
2811
2812 /* b<.d> s25 00000ssssssssss1SSSSSSSSSSNRtttt. */
2813 { "b", 0x00010000, 0xF8010000, ARC_OPCODE_ARC600 | ARC_OPCODE_ARC700
2814 | ARC_OPCODE_ARCv2EM | ARC_OPCODE_ARCv2HS, BRANCH, NONE,
2815 { SIMM25_A16_5 }, { C_D }},
2816
2817 /* add_s c,b,u3 01101bbbccc00uuu. */
2818 { "add_s", 0x00006800, 0x0000F818, ARC_OPCODE_ARC600 | ARC_OPCODE_ARC700
2819 | ARC_OPCODE_ARCv2EM | ARC_OPCODE_ARCv2HS, ARITH, NONE,
2820 { RC_S, RB_S, UIMM3_13R_S }, { 0 }},
2821
2822 /* add<.f> a,b,u6 00100bbb01000000FBBBuuuuuuAAAAAA. */
2823 { "add", 0x20400000, 0xF8FF0000, ARC_OPCODE_ARC600 | ARC_OPCODE_ARC700
2824 | ARC_OPCODE_ARCv2EM | ARC_OPCODE_ARCv2HS, ARITH, NONE,
2825 { RA, RB, UIMM6_20R }, { C_F }},
2826
2827 /* add<.f> a,b,limm 00100bbb00000000FBBB111110AAAAAA. */
2828 { "add", 0x20000F80, 0xF8FF0FC0, ARC_OPCODE_ARC600 | ARC_OPCODE_ARC700
2829 | ARC_OPCODE_ARCv2EM | ARC_OPCODE_ARCv2HS, ARITH, NONE,
2830 { RA, RB, LIMM }, { C_F }},
2831
2832 /* ld_s c,b,u7 10000bbbcccuuuuu. */
2833 { "ld_s", 0x00008000, 0x0000F800, ARC_OPCODE_ARC600 | ARC_OPCODE_ARC700
2834 | ARC_OPCODE_ARCv2EM | ARC_OPCODE_ARCv2HS, MEMORY, NONE,
2835 { RC_S, BRAKET, RB_S, UIMM7_A32_11R_S, BRAKETdup }, { 0 }},
2836
2837 /* ld<.di><.aa><.x><zz> a,b,s9
2838 00010bbbssssssssSBBBDaaZZXAAAAAA. */
2839 { "ld", 0x10000000, 0xF8000000, ARC_OPCODE_ARC600 | ARC_OPCODE_ARC700
2840 | ARC_OPCODE_ARCv2EM | ARC_OPCODE_ARCv2HS, MEMORY, NONE,
2841 { RA, BRAKET, RB, SIMM9_8R, BRAKETdup },
2842 { C_ZZ23, C_DI20, C_AA21, C_X25 }},
2843
2844 /* ld<.di><.aa><.x><zz> a,b,limm 00100bbbaa110ZZXDBBB111110AAAAAA. */
2845 { "ld", 0x20300F80, 0xF8380FC0, ARC_OPCODE_ARC600 | ARC_OPCODE_ARC700
2846 | ARC_OPCODE_ARCv2EM | ARC_OPCODE_ARCv2HS, MEMORY, NONE,
2847 { RA, BRAKET, RB, LIMM, BRAKETdup },
2848 { C_ZZ13, C_DI16, C_AA8, C_X15 }},
2849
2850 /* mov_s b,u8 11011bbbuuuuuuuu. */
2851 { "mov_s", 0x0000D800, 0x0000F800, ARC_OPCODE_ARC600 | ARC_OPCODE_ARC700
2852 | ARC_OPCODE_ARCv2EM | ARC_OPCODE_ARCv2HS, MEMORY, NONE,
2853 { RB_S, UIMM8_8R_S }, { 0 }},
2854
2855 /* mov<.f> b,s12 00100bbb10001010FBBBssssssSSSSSS. */
2856 { "mov", 0x208A0000, 0xF8FF0000, ARC_OPCODE_ARC600 | ARC_OPCODE_ARC700
2857 | ARC_OPCODE_ARCv2EM | ARC_OPCODE_ARCv2HS, MEMORY, NONE,
2858 { RB, SIMM12_20R }, { C_F }},
2859
2860 /* mov<.f> b,limm 00100bbb00001010FBBB111110RRRRRR. */
2861 { "mov", 0x200A0F80, 0xF8FF0FC0, ARC_OPCODE_ARC600 | ARC_OPCODE_ARC700
2862 | ARC_OPCODE_ARCv2EM | ARC_OPCODE_ARCv2HS, MEMORY, NONE,
2863 { RB, LIMM }, { C_F }},
2864
2865 /* sub_s c,b,u3 01101bbbccc01uuu. */
2866 { "sub_s", 0x00006808, 0x0000F818, ARC_OPCODE_ARC600 | ARC_OPCODE_ARC700
2867 | ARC_OPCODE_ARCv2EM | ARC_OPCODE_ARCv2HS, ARITH, NONE,
2868 { RC_S, RB_S, UIMM3_13R_S }, { 0 }},
2869
2870 /* sub<.f> a,b,u6 00100bbb01000010FBBBuuuuuuAAAAAA. */
2871 { "sub", 0x20420000, 0xF8FF0000, ARC_OPCODE_ARC600 | ARC_OPCODE_ARC700
2872 | ARC_OPCODE_ARCv2EM | ARC_OPCODE_ARCv2HS, ARITH, NONE,
2873 { RA, RB, UIMM6_20R }, { C_F }},
2874
2875 /* sub<.f> a,b,limm 00100bbb00000010FBBB111110AAAAAA. */
2876 { "sub", 0x20020F80, 0xF8FF0FC0, ARC_OPCODE_ARC600 | ARC_OPCODE_ARC700
2877 | ARC_OPCODE_ARCv2EM | ARC_OPCODE_ARCv2HS, ARITH, NONE,
2878 { RA, RB, LIMM }, { C_F }},
2879
2880 /* mpy<.f> a,b,u6 00100bbb01011010FBBBuuuuuuAAAAAA. */
2881 { "mpy", 0x205A0000, 0xF8FF0000, ARC_OPCODE_ARC700 | ARC_OPCODE_ARCv2EM
2882 | ARC_OPCODE_ARCv2HS, ARITH, MPY6E, { RA, RB, UIMM6_20R }, { C_F }},
2883
2884 /* mpy<.f> a,b,limm 00100bbb00011010FBBB111110AAAAAA. */
2885 { "mpy", 0x201A0F80, 0xF8FF0FC0, ARC_OPCODE_ARC700 | ARC_OPCODE_ARCv2EM
2886 | ARC_OPCODE_ARCv2HS, ARITH, MPY6E, { RA, RB, LIMM }, { C_F }},
2887
2888 /* mov<.f><.cc> b,u6 00100bbb11001010FBBBuuuuuu1QQQQQ. */
2889 { "mov", 0x20CA0020, 0xF8FF0020, ARC_OPCODE_ARC600 | ARC_OPCODE_ARC700
2890 | ARC_OPCODE_ARCv2EM | ARC_OPCODE_ARCv2HS, MEMORY, NONE,
2891 { RB, UIMM6_20R }, { C_F, C_CC }},
2892
2893 /* mov<.f><.cc> b,limm 00100bbb11001010FBBB1111100QQQQQ. */
2894 { "mov", 0x20CA0F80, 0xF8FF0FE0, ARC_OPCODE_ARC600 | ARC_OPCODE_ARC700
2895 | ARC_OPCODE_ARCv2EM | ARC_OPCODE_ARCv2HS, MEMORY, NONE,
2896 { RB, LIMM }, { C_F, C_CC }},
2897
2898 /* add<.f><.cc> b,b,u6 00100bbb11000000FBBBuuuuuu1QQQQQ. */
2899 { "add", 0x20C00020, 0xF8FF0020, ARC_OPCODE_ARC600 | ARC_OPCODE_ARC700
2900 | ARC_OPCODE_ARCv2EM | ARC_OPCODE_ARCv2HS, ARITH, NONE,
2901 { RB, RBdup, UIMM6_20R }, { C_F, C_CC }},
2902
2903 /* add<.f><.cc> b,b,limm 00100bbb11000000FBBB1111100QQQQQ. */
2904 { "add", 0x20C00F80, 0xF8FF0FE0, ARC_OPCODE_ARC600 | ARC_OPCODE_ARC700
2905 | ARC_OPCODE_ARCv2EM | ARC_OPCODE_ARCv2HS, ARITH, NONE,
2906 { RB, RBdup, LIMM }, { C_F, C_CC }}
2907};
2908
2909const unsigned arc_num_relax_opcodes = ARRAY_SIZE (arc_relax_opcodes);
2910
2911/* Return length of an opcode in bytes. */
2912
2913int
2914arc_opcode_len (const struct arc_opcode *opcode)
2915{
2916 if (opcode->mask < 0x10000ull)
2917 return 2;
2918
2919 if (opcode->mask < 0x100000000ull)
2920 return 4;
2921
2922 if (opcode->mask < 0x1000000000000ull)
2923 return 6;
2924
2925 return 8;
2926}
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