Remove support for the (deprecated) openrisc and or32 configurations and replace
[deliverable/binutils-gdb.git] / opcodes / or1k-opc.c
1 /* Instruction opcode table for or1k.
2
3 THIS FILE IS MACHINE GENERATED WITH CGEN.
4
5 Copyright 1996-2010 Free Software Foundation, Inc.
6
7 This file is part of the GNU Binutils and/or GDB, the GNU debugger.
8
9 This file is free software; you can redistribute it and/or modify
10 it under the terms of the GNU General Public License as published by
11 the Free Software Foundation; either version 3, or (at your option)
12 any later version.
13
14 It is distributed in the hope that it will be useful, but WITHOUT
15 ANY WARRANTY; without even the implied warranty of MERCHANTABILITY
16 or FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public
17 License for more details.
18
19 You should have received a copy of the GNU General Public License along
20 with this program; if not, write to the Free Software Foundation, Inc.,
21 51 Franklin Street - Fifth Floor, Boston, MA 02110-1301, USA.
22
23 */
24
25 #include "sysdep.h"
26 #include "ansidecl.h"
27 #include "bfd.h"
28 #include "symcat.h"
29 #include "or1k-desc.h"
30 #include "or1k-opc.h"
31 #include "libiberty.h"
32
33 /* -- opc.c */
34 /* -- */
35 /* The hash functions are recorded here to help keep assembler code out of
36 the disassembler and vice versa. */
37
38 static int asm_hash_insn_p (const CGEN_INSN *);
39 static unsigned int asm_hash_insn (const char *);
40 static int dis_hash_insn_p (const CGEN_INSN *);
41 static unsigned int dis_hash_insn (const char *, CGEN_INSN_INT);
42
43 /* Instruction formats. */
44
45 #define F(f) & or1k_cgen_ifld_table[OR1K_##f]
46 static const CGEN_IFMT ifmt_empty ATTRIBUTE_UNUSED = {
47 0, 0, 0x0, { { 0 } }
48 };
49
50 static const CGEN_IFMT ifmt_l_j ATTRIBUTE_UNUSED = {
51 32, 32, 0xfc000000, { { F (F_OPCODE) }, { F (F_DISP26) }, { 0 } }
52 };
53
54 static const CGEN_IFMT ifmt_l_jr ATTRIBUTE_UNUSED = {
55 32, 32, 0xffff07ff, { { F (F_OPCODE) }, { F (F_RESV_25_10) }, { F (F_R3) }, { F (F_RESV_10_11) }, { 0 } }
56 };
57
58 static const CGEN_IFMT ifmt_l_trap ATTRIBUTE_UNUSED = {
59 32, 32, 0xffff0000, { { F (F_OPCODE) }, { F (F_OP_25_5) }, { F (F_RESV_20_5) }, { F (F_UIMM16) }, { 0 } }
60 };
61
62 static const CGEN_IFMT ifmt_l_rfe ATTRIBUTE_UNUSED = {
63 32, 32, 0xffffffff, { { F (F_OPCODE) }, { F (F_RESV_25_26) }, { 0 } }
64 };
65
66 static const CGEN_IFMT ifmt_l_nop_imm ATTRIBUTE_UNUSED = {
67 32, 32, 0xffff0000, { { F (F_OPCODE) }, { F (F_OP_25_2) }, { F (F_RESV_23_8) }, { F (F_UIMM16) }, { 0 } }
68 };
69
70 static const CGEN_IFMT ifmt_l_movhi ATTRIBUTE_UNUSED = {
71 32, 32, 0xfc1f0000, { { F (F_OPCODE) }, { F (F_R1) }, { F (F_RESV_20_4) }, { F (F_OP_16_1) }, { F (F_UIMM16) }, { 0 } }
72 };
73
74 static const CGEN_IFMT ifmt_l_macrc ATTRIBUTE_UNUSED = {
75 32, 32, 0xfc1fffff, { { F (F_OPCODE) }, { F (F_R1) }, { F (F_RESV_20_4) }, { F (F_OP_16_1) }, { F (F_UIMM16) }, { 0 } }
76 };
77
78 static const CGEN_IFMT ifmt_l_mfspr ATTRIBUTE_UNUSED = {
79 32, 32, 0xfc000000, { { F (F_OPCODE) }, { F (F_R1) }, { F (F_R2) }, { F (F_UIMM16) }, { 0 } }
80 };
81
82 static const CGEN_IFMT ifmt_l_mtspr ATTRIBUTE_UNUSED = {
83 32, 32, 0xfc000000, { { F (F_OPCODE) }, { F (F_R2) }, { F (F_R3) }, { F (F_UIMM16_SPLIT) }, { 0 } }
84 };
85
86 static const CGEN_IFMT ifmt_l_lwz ATTRIBUTE_UNUSED = {
87 32, 32, 0xfc000000, { { F (F_OPCODE) }, { F (F_R1) }, { F (F_R2) }, { F (F_SIMM16) }, { 0 } }
88 };
89
90 static const CGEN_IFMT ifmt_l_sw ATTRIBUTE_UNUSED = {
91 32, 32, 0xfc000000, { { F (F_OPCODE) }, { F (F_R1) }, { F (F_R3) }, { F (F_SIMM16_SPLIT) }, { 0 } }
92 };
93
94 static const CGEN_IFMT ifmt_l_sll ATTRIBUTE_UNUSED = {
95 32, 32, 0xfc0007ff, { { F (F_OPCODE) }, { F (F_R1) }, { F (F_R2) }, { F (F_R3) }, { F (F_RESV_10_3) }, { F (F_OP_7_2) }, { F (F_RESV_5_2) }, { F (F_OP_3_4) }, { 0 } }
96 };
97
98 static const CGEN_IFMT ifmt_l_slli ATTRIBUTE_UNUSED = {
99 32, 32, 0xfc00ffc0, { { F (F_OPCODE) }, { F (F_R1) }, { F (F_R2) }, { F (F_RESV_15_8) }, { F (F_OP_7_2) }, { F (F_UIMM6) }, { 0 } }
100 };
101
102 static const CGEN_IFMT ifmt_l_and ATTRIBUTE_UNUSED = {
103 32, 32, 0xfc0007ff, { { F (F_OPCODE) }, { F (F_R1) }, { F (F_R2) }, { F (F_R3) }, { F (F_RESV_10_7) }, { F (F_OP_3_4) }, { 0 } }
104 };
105
106 static const CGEN_IFMT ifmt_l_exths ATTRIBUTE_UNUSED = {
107 32, 32, 0xfc00ffff, { { F (F_OPCODE) }, { F (F_R1) }, { F (F_R2) }, { F (F_RESV_15_6) }, { F (F_OP_9_4) }, { F (F_RESV_5_2) }, { F (F_OP_3_4) }, { 0 } }
108 };
109
110 static const CGEN_IFMT ifmt_l_cmov ATTRIBUTE_UNUSED = {
111 32, 32, 0xfc0007ff, { { F (F_OPCODE) }, { F (F_R1) }, { F (F_R2) }, { F (F_R3) }, { F (F_RESV_10_1) }, { F (F_OP_9_2) }, { F (F_RESV_7_4) }, { F (F_OP_3_4) }, { 0 } }
112 };
113
114 static const CGEN_IFMT ifmt_l_sfgts ATTRIBUTE_UNUSED = {
115 32, 32, 0xffe007ff, { { F (F_OPCODE) }, { F (F_OP_25_5) }, { F (F_R2) }, { F (F_R3) }, { F (F_RESV_10_11) }, { 0 } }
116 };
117
118 static const CGEN_IFMT ifmt_l_sfgtsi ATTRIBUTE_UNUSED = {
119 32, 32, 0xffe00000, { { F (F_OPCODE) }, { F (F_OP_25_5) }, { F (F_R2) }, { F (F_SIMM16) }, { 0 } }
120 };
121
122 static const CGEN_IFMT ifmt_l_mac ATTRIBUTE_UNUSED = {
123 32, 32, 0xffe007ff, { { F (F_OPCODE) }, { F (F_OP_25_5) }, { F (F_R2) }, { F (F_R3) }, { F (F_RESV_10_7) }, { F (F_OP_3_4) }, { 0 } }
124 };
125
126 static const CGEN_IFMT ifmt_l_maci ATTRIBUTE_UNUSED = {
127 32, 32, 0xffe00000, { { F (F_OPCODE) }, { F (F_RESV_25_5) }, { F (F_R2) }, { F (F_SIMM16) }, { 0 } }
128 };
129
130 static const CGEN_IFMT ifmt_lf_add_s ATTRIBUTE_UNUSED = {
131 32, 32, 0xfc0007ff, { { F (F_OPCODE) }, { F (F_R1) }, { F (F_R2) }, { F (F_R3) }, { F (F_RESV_10_3) }, { F (F_OP_7_8) }, { 0 } }
132 };
133
134 static const CGEN_IFMT ifmt_lf_add_d ATTRIBUTE_UNUSED = {
135 32, 32, 0xfc0007ff, { { F (F_OPCODE) }, { F (F_R1) }, { F (F_R1) }, { F (F_R1) }, { F (F_RESV_10_3) }, { F (F_OP_7_8) }, { 0 } }
136 };
137
138 static const CGEN_IFMT ifmt_lf_itof_s ATTRIBUTE_UNUSED = {
139 32, 32, 0xfc00ffff, { { F (F_OPCODE) }, { F (F_R1) }, { F (F_R2) }, { F (F_R3) }, { F (F_RESV_10_3) }, { F (F_OP_7_8) }, { 0 } }
140 };
141
142 static const CGEN_IFMT ifmt_lf_ftoi_s ATTRIBUTE_UNUSED = {
143 32, 32, 0xfc00ffff, { { F (F_OPCODE) }, { F (F_R1) }, { F (F_R2) }, { F (F_R3) }, { F (F_RESV_10_3) }, { F (F_OP_7_8) }, { 0 } }
144 };
145
146 static const CGEN_IFMT ifmt_lf_ftoi_d ATTRIBUTE_UNUSED = {
147 32, 32, 0xfc00ffff, { { F (F_OPCODE) }, { F (F_R1) }, { F (F_R1) }, { F (F_R3) }, { F (F_RESV_10_3) }, { F (F_OP_7_8) }, { 0 } }
148 };
149
150 static const CGEN_IFMT ifmt_lf_eq_s ATTRIBUTE_UNUSED = {
151 32, 32, 0xffe007ff, { { F (F_OPCODE) }, { F (F_R1) }, { F (F_R2) }, { F (F_R3) }, { F (F_RESV_10_3) }, { F (F_OP_7_8) }, { 0 } }
152 };
153
154 static const CGEN_IFMT ifmt_lf_cust1_s ATTRIBUTE_UNUSED = {
155 32, 32, 0xffe007ff, { { F (F_OPCODE) }, { F (F_RESV_25_5) }, { F (F_R2) }, { F (F_R3) }, { F (F_RESV_10_3) }, { F (F_OP_7_8) }, { 0 } }
156 };
157
158 static const CGEN_IFMT ifmt_lf_cust1_d ATTRIBUTE_UNUSED = {
159 32, 32, 0xffe007ff, { { F (F_OPCODE) }, { F (F_RESV_25_5) }, { F (F_R1) }, { F (F_R1) }, { F (F_RESV_10_3) }, { F (F_OP_7_8) }, { 0 } }
160 };
161
162 #undef F
163
164 #define A(a) (1 << CGEN_INSN_##a)
165 #define OPERAND(op) OR1K_OPERAND_##op
166 #define MNEM CGEN_SYNTAX_MNEMONIC /* syntax value for mnemonic */
167 #define OP(field) CGEN_SYNTAX_MAKE_FIELD (OPERAND (field))
168
169 /* The instruction table. */
170
171 static const CGEN_OPCODE or1k_cgen_insn_opcode_table[MAX_INSNS] =
172 {
173 /* Special null first entry.
174 A `num' value of zero is thus invalid.
175 Also, the special `invalid' insn resides here. */
176 { { 0, 0, 0, 0 }, {{0}}, 0, {0}},
177 /* l.j ${disp26} */
178 {
179 { 0, 0, 0, 0 },
180 { { MNEM, ' ', OP (DISP26), 0 } },
181 & ifmt_l_j, { 0x0 }
182 },
183 /* l.jal ${disp26} */
184 {
185 { 0, 0, 0, 0 },
186 { { MNEM, ' ', OP (DISP26), 0 } },
187 & ifmt_l_j, { 0x4000000 }
188 },
189 /* l.jr $rB */
190 {
191 { 0, 0, 0, 0 },
192 { { MNEM, ' ', OP (RB), 0 } },
193 & ifmt_l_jr, { 0x44000000 }
194 },
195 /* l.jalr $rB */
196 {
197 { 0, 0, 0, 0 },
198 { { MNEM, ' ', OP (RB), 0 } },
199 & ifmt_l_jr, { 0x48000000 }
200 },
201 /* l.bnf ${disp26} */
202 {
203 { 0, 0, 0, 0 },
204 { { MNEM, ' ', OP (DISP26), 0 } },
205 & ifmt_l_j, { 0xc000000 }
206 },
207 /* l.bf ${disp26} */
208 {
209 { 0, 0, 0, 0 },
210 { { MNEM, ' ', OP (DISP26), 0 } },
211 & ifmt_l_j, { 0x10000000 }
212 },
213 /* l.trap ${uimm16} */
214 {
215 { 0, 0, 0, 0 },
216 { { MNEM, ' ', OP (UIMM16), 0 } },
217 & ifmt_l_trap, { 0x21000000 }
218 },
219 /* l.sys ${uimm16} */
220 {
221 { 0, 0, 0, 0 },
222 { { MNEM, ' ', OP (UIMM16), 0 } },
223 & ifmt_l_trap, { 0x20000000 }
224 },
225 /* l.rfe */
226 {
227 { 0, 0, 0, 0 },
228 { { MNEM, 0 } },
229 & ifmt_l_rfe, { 0x24000000 }
230 },
231 /* l.nop ${uimm16} */
232 {
233 { 0, 0, 0, 0 },
234 { { MNEM, ' ', OP (UIMM16), 0 } },
235 & ifmt_l_nop_imm, { 0x15000000 }
236 },
237 /* l.nop */
238 {
239 { 0, 0, 0, 0 },
240 { { MNEM, 0 } },
241 & ifmt_l_nop_imm, { 0x15000000 }
242 },
243 /* l.movhi $rD,$uimm16 */
244 {
245 { 0, 0, 0, 0 },
246 { { MNEM, ' ', OP (RD), ',', OP (UIMM16), 0 } },
247 & ifmt_l_movhi, { 0x18000000 }
248 },
249 /* l.macrc $rD */
250 {
251 { 0, 0, 0, 0 },
252 { { MNEM, ' ', OP (RD), 0 } },
253 & ifmt_l_macrc, { 0x18010000 }
254 },
255 /* l.mfspr $rD,$rA,${uimm16} */
256 {
257 { 0, 0, 0, 0 },
258 { { MNEM, ' ', OP (RD), ',', OP (RA), ',', OP (UIMM16), 0 } },
259 & ifmt_l_mfspr, { 0xb4000000 }
260 },
261 /* l.mtspr $rA,$rB,${uimm16-split} */
262 {
263 { 0, 0, 0, 0 },
264 { { MNEM, ' ', OP (RA), ',', OP (RB), ',', OP (UIMM16_SPLIT), 0 } },
265 & ifmt_l_mtspr, { 0xc0000000 }
266 },
267 /* l.lwz $rD,${simm16}($rA) */
268 {
269 { 0, 0, 0, 0 },
270 { { MNEM, ' ', OP (RD), ',', OP (SIMM16), '(', OP (RA), ')', 0 } },
271 & ifmt_l_lwz, { 0x84000000 }
272 },
273 /* l.lws $rD,${simm16}($rA) */
274 {
275 { 0, 0, 0, 0 },
276 { { MNEM, ' ', OP (RD), ',', OP (SIMM16), '(', OP (RA), ')', 0 } },
277 & ifmt_l_lwz, { 0x88000000 }
278 },
279 /* l.lbz $rD,${simm16}($rA) */
280 {
281 { 0, 0, 0, 0 },
282 { { MNEM, ' ', OP (RD), ',', OP (SIMM16), '(', OP (RA), ')', 0 } },
283 & ifmt_l_lwz, { 0x8c000000 }
284 },
285 /* l.lbs $rD,${simm16}($rA) */
286 {
287 { 0, 0, 0, 0 },
288 { { MNEM, ' ', OP (RD), ',', OP (SIMM16), '(', OP (RA), ')', 0 } },
289 & ifmt_l_lwz, { 0x90000000 }
290 },
291 /* l.lhz $rD,${simm16}($rA) */
292 {
293 { 0, 0, 0, 0 },
294 { { MNEM, ' ', OP (RD), ',', OP (SIMM16), '(', OP (RA), ')', 0 } },
295 & ifmt_l_lwz, { 0x94000000 }
296 },
297 /* l.lhs $rD,${simm16}($rA) */
298 {
299 { 0, 0, 0, 0 },
300 { { MNEM, ' ', OP (RD), ',', OP (SIMM16), '(', OP (RA), ')', 0 } },
301 & ifmt_l_lwz, { 0x98000000 }
302 },
303 /* l.sw ${simm16-split}($rA),$rB */
304 {
305 { 0, 0, 0, 0 },
306 { { MNEM, ' ', OP (SIMM16_SPLIT), '(', OP (RA), ')', ',', OP (RB), 0 } },
307 & ifmt_l_sw, { 0xd4000000 }
308 },
309 /* l.sb ${simm16-split}($rA),$rB */
310 {
311 { 0, 0, 0, 0 },
312 { { MNEM, ' ', OP (SIMM16_SPLIT), '(', OP (RA), ')', ',', OP (RB), 0 } },
313 & ifmt_l_sw, { 0xd8000000 }
314 },
315 /* l.sh ${simm16-split}($rA),$rB */
316 {
317 { 0, 0, 0, 0 },
318 { { MNEM, ' ', OP (SIMM16_SPLIT), '(', OP (RA), ')', ',', OP (RB), 0 } },
319 & ifmt_l_sw, { 0xdc000000 }
320 },
321 /* l.sll $rD,$rA,$rB */
322 {
323 { 0, 0, 0, 0 },
324 { { MNEM, ' ', OP (RD), ',', OP (RA), ',', OP (RB), 0 } },
325 & ifmt_l_sll, { 0xe0000008 }
326 },
327 /* l.slli $rD,$rA,${uimm6} */
328 {
329 { 0, 0, 0, 0 },
330 { { MNEM, ' ', OP (RD), ',', OP (RA), ',', OP (UIMM6), 0 } },
331 & ifmt_l_slli, { 0xb8000000 }
332 },
333 /* l.srl $rD,$rA,$rB */
334 {
335 { 0, 0, 0, 0 },
336 { { MNEM, ' ', OP (RD), ',', OP (RA), ',', OP (RB), 0 } },
337 & ifmt_l_sll, { 0xe0000048 }
338 },
339 /* l.srli $rD,$rA,${uimm6} */
340 {
341 { 0, 0, 0, 0 },
342 { { MNEM, ' ', OP (RD), ',', OP (RA), ',', OP (UIMM6), 0 } },
343 & ifmt_l_slli, { 0xb8000040 }
344 },
345 /* l.sra $rD,$rA,$rB */
346 {
347 { 0, 0, 0, 0 },
348 { { MNEM, ' ', OP (RD), ',', OP (RA), ',', OP (RB), 0 } },
349 & ifmt_l_sll, { 0xe0000088 }
350 },
351 /* l.srai $rD,$rA,${uimm6} */
352 {
353 { 0, 0, 0, 0 },
354 { { MNEM, ' ', OP (RD), ',', OP (RA), ',', OP (UIMM6), 0 } },
355 & ifmt_l_slli, { 0xb8000080 }
356 },
357 /* l.ror $rD,$rA,$rB */
358 {
359 { 0, 0, 0, 0 },
360 { { MNEM, ' ', OP (RD), ',', OP (RA), ',', OP (RB), 0 } },
361 & ifmt_l_sll, { 0xe00000c8 }
362 },
363 /* l.rori $rD,$rA,${uimm6} */
364 {
365 { 0, 0, 0, 0 },
366 { { MNEM, ' ', OP (RD), ',', OP (RA), ',', OP (UIMM6), 0 } },
367 & ifmt_l_slli, { 0xb80000c0 }
368 },
369 /* l.and $rD,$rA,$rB */
370 {
371 { 0, 0, 0, 0 },
372 { { MNEM, ' ', OP (RD), ',', OP (RA), ',', OP (RB), 0 } },
373 & ifmt_l_and, { 0xe0000003 }
374 },
375 /* l.or $rD,$rA,$rB */
376 {
377 { 0, 0, 0, 0 },
378 { { MNEM, ' ', OP (RD), ',', OP (RA), ',', OP (RB), 0 } },
379 & ifmt_l_and, { 0xe0000004 }
380 },
381 /* l.xor $rD,$rA,$rB */
382 {
383 { 0, 0, 0, 0 },
384 { { MNEM, ' ', OP (RD), ',', OP (RA), ',', OP (RB), 0 } },
385 & ifmt_l_and, { 0xe0000005 }
386 },
387 /* l.add $rD,$rA,$rB */
388 {
389 { 0, 0, 0, 0 },
390 { { MNEM, ' ', OP (RD), ',', OP (RA), ',', OP (RB), 0 } },
391 & ifmt_l_and, { 0xe0000000 }
392 },
393 /* l.sub $rD,$rA,$rB */
394 {
395 { 0, 0, 0, 0 },
396 { { MNEM, ' ', OP (RD), ',', OP (RA), ',', OP (RB), 0 } },
397 & ifmt_l_and, { 0xe0000002 }
398 },
399 /* l.addc $rD,$rA,$rB */
400 {
401 { 0, 0, 0, 0 },
402 { { MNEM, ' ', OP (RD), ',', OP (RA), ',', OP (RB), 0 } },
403 & ifmt_l_and, { 0xe0000001 }
404 },
405 /* l.mul $rD,$rA,$rB */
406 {
407 { 0, 0, 0, 0 },
408 { { MNEM, ' ', OP (RD), ',', OP (RA), ',', OP (RB), 0 } },
409 & ifmt_l_and, { 0xe0000306 }
410 },
411 /* l.mulu $rD,$rA,$rB */
412 {
413 { 0, 0, 0, 0 },
414 { { MNEM, ' ', OP (RD), ',', OP (RA), ',', OP (RB), 0 } },
415 & ifmt_l_and, { 0xe000030b }
416 },
417 /* l.div $rD,$rA,$rB */
418 {
419 { 0, 0, 0, 0 },
420 { { MNEM, ' ', OP (RD), ',', OP (RA), ',', OP (RB), 0 } },
421 & ifmt_l_and, { 0xe0000309 }
422 },
423 /* l.divu $rD,$rA,$rB */
424 {
425 { 0, 0, 0, 0 },
426 { { MNEM, ' ', OP (RD), ',', OP (RA), ',', OP (RB), 0 } },
427 & ifmt_l_and, { 0xe000030a }
428 },
429 /* l.ff1 $rD,$rA */
430 {
431 { 0, 0, 0, 0 },
432 { { MNEM, ' ', OP (RD), ',', OP (RA), 0 } },
433 & ifmt_l_and, { 0xe000000f }
434 },
435 /* l.fl1 $rD,$rA */
436 {
437 { 0, 0, 0, 0 },
438 { { MNEM, ' ', OP (RD), ',', OP (RA), 0 } },
439 & ifmt_l_and, { 0xe000010f }
440 },
441 /* l.andi $rD,$rA,$uimm16 */
442 {
443 { 0, 0, 0, 0 },
444 { { MNEM, ' ', OP (RD), ',', OP (RA), ',', OP (UIMM16), 0 } },
445 & ifmt_l_mfspr, { 0xa4000000 }
446 },
447 /* l.ori $rD,$rA,$uimm16 */
448 {
449 { 0, 0, 0, 0 },
450 { { MNEM, ' ', OP (RD), ',', OP (RA), ',', OP (UIMM16), 0 } },
451 & ifmt_l_mfspr, { 0xa8000000 }
452 },
453 /* l.xori $rD,$rA,$simm16 */
454 {
455 { 0, 0, 0, 0 },
456 { { MNEM, ' ', OP (RD), ',', OP (RA), ',', OP (SIMM16), 0 } },
457 & ifmt_l_lwz, { 0xac000000 }
458 },
459 /* l.addi $rD,$rA,$simm16 */
460 {
461 { 0, 0, 0, 0 },
462 { { MNEM, ' ', OP (RD), ',', OP (RA), ',', OP (SIMM16), 0 } },
463 & ifmt_l_lwz, { 0x9c000000 }
464 },
465 /* l.addic $rD,$rA,$simm16 */
466 {
467 { 0, 0, 0, 0 },
468 { { MNEM, ' ', OP (RD), ',', OP (RA), ',', OP (SIMM16), 0 } },
469 & ifmt_l_lwz, { 0xa0000000 }
470 },
471 /* l.muli $rD,$rA,$simm16 */
472 {
473 { 0, 0, 0, 0 },
474 { { MNEM, ' ', OP (RD), ',', OP (RA), ',', OP (SIMM16), 0 } },
475 & ifmt_l_lwz, { 0xb0000000 }
476 },
477 /* l.exths $rD,$rA */
478 {
479 { 0, 0, 0, 0 },
480 { { MNEM, ' ', OP (RD), ',', OP (RA), 0 } },
481 & ifmt_l_exths, { 0xe000000c }
482 },
483 /* l.extbs $rD,$rA */
484 {
485 { 0, 0, 0, 0 },
486 { { MNEM, ' ', OP (RD), ',', OP (RA), 0 } },
487 & ifmt_l_exths, { 0xe000004c }
488 },
489 /* l.exthz $rD,$rA */
490 {
491 { 0, 0, 0, 0 },
492 { { MNEM, ' ', OP (RD), ',', OP (RA), 0 } },
493 & ifmt_l_exths, { 0xe000008c }
494 },
495 /* l.extbz $rD,$rA */
496 {
497 { 0, 0, 0, 0 },
498 { { MNEM, ' ', OP (RD), ',', OP (RA), 0 } },
499 & ifmt_l_exths, { 0xe00000cc }
500 },
501 /* l.extws $rD,$rA */
502 {
503 { 0, 0, 0, 0 },
504 { { MNEM, ' ', OP (RD), ',', OP (RA), 0 } },
505 & ifmt_l_exths, { 0xe000000d }
506 },
507 /* l.extwz $rD,$rA */
508 {
509 { 0, 0, 0, 0 },
510 { { MNEM, ' ', OP (RD), ',', OP (RA), 0 } },
511 & ifmt_l_exths, { 0xe000004d }
512 },
513 /* l.cmov $rD,$rA,$rB */
514 {
515 { 0, 0, 0, 0 },
516 { { MNEM, ' ', OP (RD), ',', OP (RA), ',', OP (RB), 0 } },
517 & ifmt_l_cmov, { 0xe000000e }
518 },
519 /* l.sfgts $rA,$rB */
520 {
521 { 0, 0, 0, 0 },
522 { { MNEM, ' ', OP (RA), ',', OP (RB), 0 } },
523 & ifmt_l_sfgts, { 0xe5400000 }
524 },
525 /* l.sfgtsi $rA,$simm16 */
526 {
527 { 0, 0, 0, 0 },
528 { { MNEM, ' ', OP (RA), ',', OP (SIMM16), 0 } },
529 & ifmt_l_sfgtsi, { 0xbd400000 }
530 },
531 /* l.sfgtu $rA,$rB */
532 {
533 { 0, 0, 0, 0 },
534 { { MNEM, ' ', OP (RA), ',', OP (RB), 0 } },
535 & ifmt_l_sfgts, { 0xe4400000 }
536 },
537 /* l.sfgtui $rA,$simm16 */
538 {
539 { 0, 0, 0, 0 },
540 { { MNEM, ' ', OP (RA), ',', OP (SIMM16), 0 } },
541 & ifmt_l_sfgtsi, { 0xbc400000 }
542 },
543 /* l.sfges $rA,$rB */
544 {
545 { 0, 0, 0, 0 },
546 { { MNEM, ' ', OP (RA), ',', OP (RB), 0 } },
547 & ifmt_l_sfgts, { 0xe5600000 }
548 },
549 /* l.sfgesi $rA,$simm16 */
550 {
551 { 0, 0, 0, 0 },
552 { { MNEM, ' ', OP (RA), ',', OP (SIMM16), 0 } },
553 & ifmt_l_sfgtsi, { 0xbd600000 }
554 },
555 /* l.sfgeu $rA,$rB */
556 {
557 { 0, 0, 0, 0 },
558 { { MNEM, ' ', OP (RA), ',', OP (RB), 0 } },
559 & ifmt_l_sfgts, { 0xe4600000 }
560 },
561 /* l.sfgeui $rA,$simm16 */
562 {
563 { 0, 0, 0, 0 },
564 { { MNEM, ' ', OP (RA), ',', OP (SIMM16), 0 } },
565 & ifmt_l_sfgtsi, { 0xbc600000 }
566 },
567 /* l.sflts $rA,$rB */
568 {
569 { 0, 0, 0, 0 },
570 { { MNEM, ' ', OP (RA), ',', OP (RB), 0 } },
571 & ifmt_l_sfgts, { 0xe5800000 }
572 },
573 /* l.sfltsi $rA,$simm16 */
574 {
575 { 0, 0, 0, 0 },
576 { { MNEM, ' ', OP (RA), ',', OP (SIMM16), 0 } },
577 & ifmt_l_sfgtsi, { 0xbd800000 }
578 },
579 /* l.sfltu $rA,$rB */
580 {
581 { 0, 0, 0, 0 },
582 { { MNEM, ' ', OP (RA), ',', OP (RB), 0 } },
583 & ifmt_l_sfgts, { 0xe4800000 }
584 },
585 /* l.sfltui $rA,$simm16 */
586 {
587 { 0, 0, 0, 0 },
588 { { MNEM, ' ', OP (RA), ',', OP (SIMM16), 0 } },
589 & ifmt_l_sfgtsi, { 0xbc800000 }
590 },
591 /* l.sfles $rA,$rB */
592 {
593 { 0, 0, 0, 0 },
594 { { MNEM, ' ', OP (RA), ',', OP (RB), 0 } },
595 & ifmt_l_sfgts, { 0xe5a00000 }
596 },
597 /* l.sflesi $rA,$simm16 */
598 {
599 { 0, 0, 0, 0 },
600 { { MNEM, ' ', OP (RA), ',', OP (SIMM16), 0 } },
601 & ifmt_l_sfgtsi, { 0xbda00000 }
602 },
603 /* l.sfleu $rA,$rB */
604 {
605 { 0, 0, 0, 0 },
606 { { MNEM, ' ', OP (RA), ',', OP (RB), 0 } },
607 & ifmt_l_sfgts, { 0xe4a00000 }
608 },
609 /* l.sfleui $rA,$simm16 */
610 {
611 { 0, 0, 0, 0 },
612 { { MNEM, ' ', OP (RA), ',', OP (SIMM16), 0 } },
613 & ifmt_l_sfgtsi, { 0xbca00000 }
614 },
615 /* l.sfeq $rA,$rB */
616 {
617 { 0, 0, 0, 0 },
618 { { MNEM, ' ', OP (RA), ',', OP (RB), 0 } },
619 & ifmt_l_sfgts, { 0xe4000000 }
620 },
621 /* l.sfeqi $rA,$simm16 */
622 {
623 { 0, 0, 0, 0 },
624 { { MNEM, ' ', OP (RA), ',', OP (SIMM16), 0 } },
625 & ifmt_l_sfgtsi, { 0xbc000000 }
626 },
627 /* l.sfne $rA,$rB */
628 {
629 { 0, 0, 0, 0 },
630 { { MNEM, ' ', OP (RA), ',', OP (RB), 0 } },
631 & ifmt_l_sfgts, { 0xe4200000 }
632 },
633 /* l.sfnei $rA,$simm16 */
634 {
635 { 0, 0, 0, 0 },
636 { { MNEM, ' ', OP (RA), ',', OP (SIMM16), 0 } },
637 & ifmt_l_sfgtsi, { 0xbc200000 }
638 },
639 /* l.mac $rA,$rB */
640 {
641 { 0, 0, 0, 0 },
642 { { MNEM, ' ', OP (RA), ',', OP (RB), 0 } },
643 & ifmt_l_mac, { 0xc4000001 }
644 },
645 /* l.msb $rA,$rB */
646 {
647 { 0, 0, 0, 0 },
648 { { MNEM, ' ', OP (RA), ',', OP (RB), 0 } },
649 & ifmt_l_mac, { 0xc4000002 }
650 },
651 /* l.maci $rA,${simm16} */
652 {
653 { 0, 0, 0, 0 },
654 { { MNEM, ' ', OP (RA), ',', OP (SIMM16), 0 } },
655 & ifmt_l_maci, { 0x4c000000 }
656 },
657 /* l.cust1 */
658 {
659 { 0, 0, 0, 0 },
660 { { MNEM, 0 } },
661 & ifmt_l_rfe, { 0x70000000 }
662 },
663 /* l.cust2 */
664 {
665 { 0, 0, 0, 0 },
666 { { MNEM, 0 } },
667 & ifmt_l_rfe, { 0x74000000 }
668 },
669 /* l.cust3 */
670 {
671 { 0, 0, 0, 0 },
672 { { MNEM, 0 } },
673 & ifmt_l_rfe, { 0x78000000 }
674 },
675 /* l.cust4 */
676 {
677 { 0, 0, 0, 0 },
678 { { MNEM, 0 } },
679 & ifmt_l_rfe, { 0x7c000000 }
680 },
681 /* l.cust5 */
682 {
683 { 0, 0, 0, 0 },
684 { { MNEM, 0 } },
685 & ifmt_l_rfe, { 0xf0000000 }
686 },
687 /* l.cust6 */
688 {
689 { 0, 0, 0, 0 },
690 { { MNEM, 0 } },
691 & ifmt_l_rfe, { 0xf4000000 }
692 },
693 /* l.cust7 */
694 {
695 { 0, 0, 0, 0 },
696 { { MNEM, 0 } },
697 & ifmt_l_rfe, { 0xf8000000 }
698 },
699 /* l.cust8 */
700 {
701 { 0, 0, 0, 0 },
702 { { MNEM, 0 } },
703 & ifmt_l_rfe, { 0xfc000000 }
704 },
705 /* lf.add.s $rDSF,$rASF,$rBSF */
706 {
707 { 0, 0, 0, 0 },
708 { { MNEM, ' ', OP (RDSF), ',', OP (RASF), ',', OP (RBSF), 0 } },
709 & ifmt_lf_add_s, { 0xc8000000 }
710 },
711 /* lf.add.d $rDDF,$rADF,$rBDF */
712 {
713 { 0, 0, 0, 0 },
714 { { MNEM, ' ', OP (RDDF), ',', OP (RADF), ',', OP (RBDF), 0 } },
715 & ifmt_lf_add_d, { 0xc8000010 }
716 },
717 /* lf.sub.s $rDSF,$rASF,$rBSF */
718 {
719 { 0, 0, 0, 0 },
720 { { MNEM, ' ', OP (RDSF), ',', OP (RASF), ',', OP (RBSF), 0 } },
721 & ifmt_lf_add_s, { 0xc8000001 }
722 },
723 /* lf.sub.d $rDDF,$rADF,$rBDF */
724 {
725 { 0, 0, 0, 0 },
726 { { MNEM, ' ', OP (RDDF), ',', OP (RADF), ',', OP (RBDF), 0 } },
727 & ifmt_lf_add_d, { 0xc8000011 }
728 },
729 /* lf.mul.s $rDSF,$rASF,$rBSF */
730 {
731 { 0, 0, 0, 0 },
732 { { MNEM, ' ', OP (RDSF), ',', OP (RASF), ',', OP (RBSF), 0 } },
733 & ifmt_lf_add_s, { 0xc8000002 }
734 },
735 /* lf.mul.d $rDDF,$rADF,$rBDF */
736 {
737 { 0, 0, 0, 0 },
738 { { MNEM, ' ', OP (RDDF), ',', OP (RADF), ',', OP (RBDF), 0 } },
739 & ifmt_lf_add_d, { 0xc8000012 }
740 },
741 /* lf.div.s $rDSF,$rASF,$rBSF */
742 {
743 { 0, 0, 0, 0 },
744 { { MNEM, ' ', OP (RDSF), ',', OP (RASF), ',', OP (RBSF), 0 } },
745 & ifmt_lf_add_s, { 0xc8000003 }
746 },
747 /* lf.div.d $rDDF,$rADF,$rBDF */
748 {
749 { 0, 0, 0, 0 },
750 { { MNEM, ' ', OP (RDDF), ',', OP (RADF), ',', OP (RBDF), 0 } },
751 & ifmt_lf_add_d, { 0xc8000013 }
752 },
753 /* lf.rem.s $rDSF,$rASF,$rBSF */
754 {
755 { 0, 0, 0, 0 },
756 { { MNEM, ' ', OP (RDSF), ',', OP (RASF), ',', OP (RBSF), 0 } },
757 & ifmt_lf_add_s, { 0xc8000006 }
758 },
759 /* lf.rem.d $rDDF,$rADF,$rBDF */
760 {
761 { 0, 0, 0, 0 },
762 { { MNEM, ' ', OP (RDDF), ',', OP (RADF), ',', OP (RBDF), 0 } },
763 & ifmt_lf_add_d, { 0xc8000016 }
764 },
765 /* lf.itof.s $rDSF,$rA */
766 {
767 { 0, 0, 0, 0 },
768 { { MNEM, ' ', OP (RDSF), ',', OP (RA), 0 } },
769 & ifmt_lf_itof_s, { 0xc8000004 }
770 },
771 /* lf.itof.d $rDSF,$rA */
772 {
773 { 0, 0, 0, 0 },
774 { { MNEM, ' ', OP (RDSF), ',', OP (RA), 0 } },
775 & ifmt_lf_itof_s, { 0xc8000014 }
776 },
777 /* lf.ftoi.s $rD,$rASF */
778 {
779 { 0, 0, 0, 0 },
780 { { MNEM, ' ', OP (RD), ',', OP (RASF), 0 } },
781 & ifmt_lf_ftoi_s, { 0xc8000005 }
782 },
783 /* lf.ftoi.d $rD,$rADF */
784 {
785 { 0, 0, 0, 0 },
786 { { MNEM, ' ', OP (RD), ',', OP (RADF), 0 } },
787 & ifmt_lf_ftoi_d, { 0xc8000015 }
788 },
789 /* lf.sfeq.s $rASF,$rBSF */
790 {
791 { 0, 0, 0, 0 },
792 { { MNEM, ' ', OP (RASF), ',', OP (RBSF), 0 } },
793 & ifmt_lf_eq_s, { 0xc8000008 }
794 },
795 /* lf.sfeq.d $rASF,$rBSF */
796 {
797 { 0, 0, 0, 0 },
798 { { MNEM, ' ', OP (RASF), ',', OP (RBSF), 0 } },
799 & ifmt_lf_eq_s, { 0xc8000018 }
800 },
801 /* lf.sfne.s $rASF,$rBSF */
802 {
803 { 0, 0, 0, 0 },
804 { { MNEM, ' ', OP (RASF), ',', OP (RBSF), 0 } },
805 & ifmt_lf_eq_s, { 0xc8000009 }
806 },
807 /* lf.sfne.d $rASF,$rBSF */
808 {
809 { 0, 0, 0, 0 },
810 { { MNEM, ' ', OP (RASF), ',', OP (RBSF), 0 } },
811 & ifmt_lf_eq_s, { 0xc8000019 }
812 },
813 /* lf.sfge.s $rASF,$rBSF */
814 {
815 { 0, 0, 0, 0 },
816 { { MNEM, ' ', OP (RASF), ',', OP (RBSF), 0 } },
817 & ifmt_lf_eq_s, { 0xc800000b }
818 },
819 /* lf.sfge.d $rASF,$rBSF */
820 {
821 { 0, 0, 0, 0 },
822 { { MNEM, ' ', OP (RASF), ',', OP (RBSF), 0 } },
823 & ifmt_lf_eq_s, { 0xc800001b }
824 },
825 /* lf.sfgt.s $rASF,$rBSF */
826 {
827 { 0, 0, 0, 0 },
828 { { MNEM, ' ', OP (RASF), ',', OP (RBSF), 0 } },
829 & ifmt_lf_eq_s, { 0xc800000a }
830 },
831 /* lf.sfgt.d $rASF,$rBSF */
832 {
833 { 0, 0, 0, 0 },
834 { { MNEM, ' ', OP (RASF), ',', OP (RBSF), 0 } },
835 & ifmt_lf_eq_s, { 0xc800001a }
836 },
837 /* lf.sflt.s $rASF,$rBSF */
838 {
839 { 0, 0, 0, 0 },
840 { { MNEM, ' ', OP (RASF), ',', OP (RBSF), 0 } },
841 & ifmt_lf_eq_s, { 0xc800000c }
842 },
843 /* lf.sflt.d $rASF,$rBSF */
844 {
845 { 0, 0, 0, 0 },
846 { { MNEM, ' ', OP (RASF), ',', OP (RBSF), 0 } },
847 & ifmt_lf_eq_s, { 0xc800001c }
848 },
849 /* lf.sfle.s $rASF,$rBSF */
850 {
851 { 0, 0, 0, 0 },
852 { { MNEM, ' ', OP (RASF), ',', OP (RBSF), 0 } },
853 & ifmt_lf_eq_s, { 0xc800000d }
854 },
855 /* lf.sfle.d $rASF,$rBSF */
856 {
857 { 0, 0, 0, 0 },
858 { { MNEM, ' ', OP (RASF), ',', OP (RBSF), 0 } },
859 & ifmt_lf_eq_s, { 0xc800001d }
860 },
861 /* lf.madd.s $rDSF,$rASF,$rBSF */
862 {
863 { 0, 0, 0, 0 },
864 { { MNEM, ' ', OP (RDSF), ',', OP (RASF), ',', OP (RBSF), 0 } },
865 & ifmt_lf_add_s, { 0xc8000007 }
866 },
867 /* lf.madd.d $rDDF,$rADF,$rBDF */
868 {
869 { 0, 0, 0, 0 },
870 { { MNEM, ' ', OP (RDDF), ',', OP (RADF), ',', OP (RBDF), 0 } },
871 & ifmt_lf_add_d, { 0xc8000017 }
872 },
873 /* lf.cust1.s $rASF,$rBSF */
874 {
875 { 0, 0, 0, 0 },
876 { { MNEM, ' ', OP (RASF), ',', OP (RBSF), 0 } },
877 & ifmt_lf_cust1_s, { 0xc80000d0 }
878 },
879 /* lf.cust1.d */
880 {
881 { 0, 0, 0, 0 },
882 { { MNEM, 0 } },
883 & ifmt_lf_cust1_d, { 0xc80000e0 }
884 },
885 };
886
887 #undef A
888 #undef OPERAND
889 #undef MNEM
890 #undef OP
891
892 /* Formats for ALIAS macro-insns. */
893
894 #define F(f) & or1k_cgen_ifld_table[OR1K_##f]
895 #undef F
896
897 /* Each non-simple macro entry points to an array of expansion possibilities. */
898
899 #define A(a) (1 << CGEN_INSN_##a)
900 #define OPERAND(op) OR1K_OPERAND_##op
901 #define MNEM CGEN_SYNTAX_MNEMONIC /* syntax value for mnemonic */
902 #define OP(field) CGEN_SYNTAX_MAKE_FIELD (OPERAND (field))
903
904 /* The macro instruction table. */
905
906 static const CGEN_IBASE or1k_cgen_macro_insn_table[] =
907 {
908 };
909
910 /* The macro instruction opcode table. */
911
912 static const CGEN_OPCODE or1k_cgen_macro_insn_opcode_table[] =
913 {
914 };
915
916 #undef A
917 #undef OPERAND
918 #undef MNEM
919 #undef OP
920
921 #ifndef CGEN_ASM_HASH_P
922 #define CGEN_ASM_HASH_P(insn) 1
923 #endif
924
925 #ifndef CGEN_DIS_HASH_P
926 #define CGEN_DIS_HASH_P(insn) 1
927 #endif
928
929 /* Return non-zero if INSN is to be added to the hash table.
930 Targets are free to override CGEN_{ASM,DIS}_HASH_P in the .opc file. */
931
932 static int
933 asm_hash_insn_p (insn)
934 const CGEN_INSN *insn ATTRIBUTE_UNUSED;
935 {
936 return CGEN_ASM_HASH_P (insn);
937 }
938
939 static int
940 dis_hash_insn_p (insn)
941 const CGEN_INSN *insn;
942 {
943 /* If building the hash table and the NO-DIS attribute is present,
944 ignore. */
945 if (CGEN_INSN_ATTR_VALUE (insn, CGEN_INSN_NO_DIS))
946 return 0;
947 return CGEN_DIS_HASH_P (insn);
948 }
949
950 #ifndef CGEN_ASM_HASH
951 #define CGEN_ASM_HASH_SIZE 127
952 #ifdef CGEN_MNEMONIC_OPERANDS
953 #define CGEN_ASM_HASH(mnem) (*(unsigned char *) (mnem) % CGEN_ASM_HASH_SIZE)
954 #else
955 #define CGEN_ASM_HASH(mnem) (*(unsigned char *) (mnem) % CGEN_ASM_HASH_SIZE) /*FIXME*/
956 #endif
957 #endif
958
959 /* It doesn't make much sense to provide a default here,
960 but while this is under development we do.
961 BUFFER is a pointer to the bytes of the insn, target order.
962 VALUE is the first base_insn_bitsize bits as an int in host order. */
963
964 #ifndef CGEN_DIS_HASH
965 #define CGEN_DIS_HASH_SIZE 256
966 #define CGEN_DIS_HASH(buf, value) (*(unsigned char *) (buf))
967 #endif
968
969 /* The result is the hash value of the insn.
970 Targets are free to override CGEN_{ASM,DIS}_HASH in the .opc file. */
971
972 static unsigned int
973 asm_hash_insn (mnem)
974 const char * mnem;
975 {
976 return CGEN_ASM_HASH (mnem);
977 }
978
979 /* BUF is a pointer to the bytes of the insn, target order.
980 VALUE is the first base_insn_bitsize bits as an int in host order. */
981
982 static unsigned int
983 dis_hash_insn (buf, value)
984 const char * buf ATTRIBUTE_UNUSED;
985 CGEN_INSN_INT value ATTRIBUTE_UNUSED;
986 {
987 return CGEN_DIS_HASH (buf, value);
988 }
989
990 /* Set the recorded length of the insn in the CGEN_FIELDS struct. */
991
992 static void
993 set_fields_bitsize (CGEN_FIELDS *fields, int size)
994 {
995 CGEN_FIELDS_BITSIZE (fields) = size;
996 }
997
998 /* Function to call before using the operand instance table.
999 This plugs the opcode entries and macro instructions into the cpu table. */
1000
1001 void
1002 or1k_cgen_init_opcode_table (CGEN_CPU_DESC cd)
1003 {
1004 int i;
1005 int num_macros = (sizeof (or1k_cgen_macro_insn_table) /
1006 sizeof (or1k_cgen_macro_insn_table[0]));
1007 const CGEN_IBASE *ib = & or1k_cgen_macro_insn_table[0];
1008 const CGEN_OPCODE *oc = & or1k_cgen_macro_insn_opcode_table[0];
1009 CGEN_INSN *insns = xmalloc (num_macros * sizeof (CGEN_INSN));
1010
1011 /* This test has been added to avoid a warning generated
1012 if memset is called with a third argument of value zero. */
1013 if (num_macros >= 1)
1014 memset (insns, 0, num_macros * sizeof (CGEN_INSN));
1015 for (i = 0; i < num_macros; ++i)
1016 {
1017 insns[i].base = &ib[i];
1018 insns[i].opcode = &oc[i];
1019 or1k_cgen_build_insn_regex (& insns[i]);
1020 }
1021 cd->macro_insn_table.init_entries = insns;
1022 cd->macro_insn_table.entry_size = sizeof (CGEN_IBASE);
1023 cd->macro_insn_table.num_init_entries = num_macros;
1024
1025 oc = & or1k_cgen_insn_opcode_table[0];
1026 insns = (CGEN_INSN *) cd->insn_table.init_entries;
1027 for (i = 0; i < MAX_INSNS; ++i)
1028 {
1029 insns[i].opcode = &oc[i];
1030 or1k_cgen_build_insn_regex (& insns[i]);
1031 }
1032
1033 cd->sizeof_fields = sizeof (CGEN_FIELDS);
1034 cd->set_fields_bitsize = set_fields_bitsize;
1035
1036 cd->asm_hash_p = asm_hash_insn_p;
1037 cd->asm_hash = asm_hash_insn;
1038 cd->asm_hash_size = CGEN_ASM_HASH_SIZE;
1039
1040 cd->dis_hash_p = dis_hash_insn_p;
1041 cd->dis_hash = dis_hash_insn;
1042 cd->dis_hash_size = CGEN_DIS_HASH_SIZE;
1043 }
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