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1 /*
2 * LatticeMico32 main translation routines.
3 *
4 * Copyright (c) 2010 Michael Walle <michael@walle.cc>
5 *
6 * This library is free software; you can redistribute it and/or
7 * modify it under the terms of the GNU Lesser General Public
8 * License as published by the Free Software Foundation; either
9 * version 2 of the License, or (at your option) any later version.
10 *
11 * This library is distributed in the hope that it will be useful,
12 * but WITHOUT ANY WARRANTY; without even the implied warranty of
13 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
14 * Lesser General Public License for more details.
15 *
16 * You should have received a copy of the GNU Lesser General Public
17 * License along with this library; if not, see <http://www.gnu.org/licenses/>.
18 */
19
20 #include <stdarg.h>
21 #include <stdlib.h>
22 #include <stdio.h>
23 #include <string.h>
24 #include <inttypes.h>
25 #include <assert.h>
26
27 #include "cpu.h"
28 #include "exec-all.h"
29 #include "disas.h"
30 #include "helper.h"
31 #include "tcg-op.h"
32 #include "qemu-common.h"
33
34 #include "hw/lm32_pic.h"
35
36 #define GEN_HELPER 1
37 #include "helper.h"
38
39 #define DISAS_LM32 1
40 #if DISAS_LM32
41 # define LOG_DIS(...) qemu_log_mask(CPU_LOG_TB_IN_ASM, ## __VA_ARGS__)
42 #else
43 # define LOG_DIS(...) do { } while (0)
44 #endif
45
46 #define EXTRACT_FIELD(src, start, end) \
47 (((src) >> start) & ((1 << (end - start + 1)) - 1))
48
49 #define MEM_INDEX 0
50
51 static TCGv_ptr cpu_env;
52 static TCGv cpu_R[32];
53 static TCGv cpu_pc;
54 static TCGv cpu_ie;
55 static TCGv cpu_icc;
56 static TCGv cpu_dcc;
57 static TCGv cpu_cc;
58 static TCGv cpu_cfg;
59 static TCGv cpu_eba;
60 static TCGv cpu_dc;
61 static TCGv cpu_deba;
62 static TCGv cpu_bp[4];
63 static TCGv cpu_wp[4];
64
65 #include "gen-icount.h"
66
67 enum {
68 OP_FMT_RI,
69 OP_FMT_RR,
70 OP_FMT_CR,
71 OP_FMT_I
72 };
73
74 /* This is the state at translation time. */
75 typedef struct DisasContext {
76 CPUState *env;
77 target_ulong pc;
78
79 /* Decoder. */
80 int format;
81 uint32_t ir;
82 uint8_t opcode;
83 uint8_t r0, r1, r2, csr;
84 uint16_t imm5;
85 uint16_t imm16;
86 uint32_t imm26;
87
88 unsigned int delayed_branch;
89 unsigned int tb_flags, synced_flags; /* tb dependent flags. */
90 int is_jmp;
91
92 int nr_nops;
93 struct TranslationBlock *tb;
94 int singlestep_enabled;
95 } DisasContext;
96
97 static const char *regnames[] = {
98 "r0", "r1", "r2", "r3", "r4", "r5", "r6", "r7",
99 "r8", "r9", "r10", "r11", "r12", "r13", "r14", "r15",
100 "r16", "r17", "r18", "r19", "r20", "r21", "r22", "r23",
101 "r24", "r25", "r26/gp", "r27/fp", "r28/sp", "r29/ra",
102 "r30/ea", "r31/ba", "bp0", "bp1", "bp2", "bp3", "wp0",
103 "wp1", "wp2", "wp3"
104 };
105
106 static inline int zero_extend(unsigned int val, int width)
107 {
108 return val & ((1 << width) - 1);
109 }
110
111 static inline int sign_extend(unsigned int val, int width)
112 {
113 int sval;
114
115 /* LSL. */
116 val <<= 32 - width;
117 sval = val;
118 /* ASR. */
119 sval >>= 32 - width;
120
121 return sval;
122 }
123
124 static inline void t_gen_raise_exception(DisasContext *dc, uint32_t index)
125 {
126 TCGv_i32 tmp = tcg_const_i32(index);
127
128 gen_helper_raise_exception(tmp);
129 tcg_temp_free_i32(tmp);
130 }
131
132 static void gen_goto_tb(DisasContext *dc, int n, target_ulong dest)
133 {
134 TranslationBlock *tb;
135
136 tb = dc->tb;
137 if ((tb->pc & TARGET_PAGE_MASK) == (dest & TARGET_PAGE_MASK) &&
138 likely(!dc->singlestep_enabled)) {
139 tcg_gen_goto_tb(n);
140 tcg_gen_movi_tl(cpu_pc, dest);
141 tcg_gen_exit_tb((tcg_target_long)tb + n);
142 } else {
143 tcg_gen_movi_tl(cpu_pc, dest);
144 if (dc->singlestep_enabled) {
145 t_gen_raise_exception(dc, EXCP_DEBUG);
146 }
147 tcg_gen_exit_tb(0);
148 }
149 }
150
151 static void dec_add(DisasContext *dc)
152 {
153 if (dc->format == OP_FMT_RI) {
154 if (dc->r0 == R_R0) {
155 if (dc->r1 == R_R0 && dc->imm16 == 0) {
156 LOG_DIS("nop\n");
157 } else {
158 LOG_DIS("mvi r%d, %d\n", dc->r1, sign_extend(dc->imm16, 16));
159 }
160 } else {
161 LOG_DIS("addi r%d, r%d, %d\n", dc->r1, dc->r0,
162 sign_extend(dc->imm16, 16));
163 }
164 } else {
165 LOG_DIS("add r%d, r%d, r%d\n", dc->r2, dc->r0, dc->r1);
166 }
167
168 if (dc->format == OP_FMT_RI) {
169 tcg_gen_addi_tl(cpu_R[dc->r1], cpu_R[dc->r0],
170 sign_extend(dc->imm16, 16));
171 } else {
172 tcg_gen_add_tl(cpu_R[dc->r2], cpu_R[dc->r0], cpu_R[dc->r1]);
173 }
174 }
175
176 static void dec_and(DisasContext *dc)
177 {
178 if (dc->format == OP_FMT_RI) {
179 LOG_DIS("andi r%d, r%d, %d\n", dc->r1, dc->r0,
180 zero_extend(dc->imm16, 16));
181 } else {
182 LOG_DIS("and r%d, r%d, r%d\n", dc->r2, dc->r0, dc->r1);
183 }
184
185 if (dc->format == OP_FMT_RI) {
186 tcg_gen_andi_tl(cpu_R[dc->r1], cpu_R[dc->r0],
187 zero_extend(dc->imm16, 16));
188 } else {
189 if (dc->r0 == 0 && dc->r1 == 0 && dc->r2 == 0) {
190 tcg_gen_movi_tl(cpu_pc, dc->pc + 4);
191 gen_helper_hlt();
192 } else {
193 tcg_gen_and_tl(cpu_R[dc->r2], cpu_R[dc->r0], cpu_R[dc->r1]);
194 }
195 }
196 }
197
198 static void dec_andhi(DisasContext *dc)
199 {
200 LOG_DIS("andhi r%d, r%d, %d\n", dc->r2, dc->r0, dc->imm16);
201
202 tcg_gen_andi_tl(cpu_R[dc->r1], cpu_R[dc->r0], (dc->imm16 << 16));
203 }
204
205 static void dec_b(DisasContext *dc)
206 {
207 if (dc->r0 == R_RA) {
208 LOG_DIS("ret\n");
209 } else if (dc->r0 == R_EA) {
210 LOG_DIS("eret\n");
211 } else if (dc->r0 == R_BA) {
212 LOG_DIS("bret\n");
213 } else {
214 LOG_DIS("b r%d\n", dc->r0);
215 }
216
217 /* restore IE.IE in case of an eret */
218 if (dc->r0 == R_EA) {
219 TCGv t0 = tcg_temp_new();
220 int l1 = gen_new_label();
221 tcg_gen_andi_tl(t0, cpu_ie, IE_EIE);
222 tcg_gen_ori_tl(cpu_ie, cpu_ie, IE_IE);
223 tcg_gen_brcondi_tl(TCG_COND_EQ, t0, IE_EIE, l1);
224 tcg_gen_andi_tl(cpu_ie, cpu_ie, ~IE_IE);
225 gen_set_label(l1);
226 tcg_temp_free(t0);
227 } else if (dc->r0 == R_BA) {
228 TCGv t0 = tcg_temp_new();
229 int l1 = gen_new_label();
230 tcg_gen_andi_tl(t0, cpu_ie, IE_BIE);
231 tcg_gen_ori_tl(cpu_ie, cpu_ie, IE_IE);
232 tcg_gen_brcondi_tl(TCG_COND_EQ, t0, IE_BIE, l1);
233 tcg_gen_andi_tl(cpu_ie, cpu_ie, ~IE_IE);
234 gen_set_label(l1);
235 tcg_temp_free(t0);
236 }
237 tcg_gen_mov_tl(cpu_pc, cpu_R[dc->r0]);
238
239 dc->is_jmp = DISAS_JUMP;
240 }
241
242 static void dec_bi(DisasContext *dc)
243 {
244 LOG_DIS("bi %d\n", sign_extend(dc->imm26 << 2, 26));
245
246 gen_goto_tb(dc, 0, dc->pc + (sign_extend(dc->imm26 << 2, 26)));
247
248 dc->is_jmp = DISAS_TB_JUMP;
249 }
250
251 static inline void gen_cond_branch(DisasContext *dc, int cond)
252 {
253 int l1;
254
255 l1 = gen_new_label();
256 tcg_gen_brcond_tl(cond, cpu_R[dc->r0], cpu_R[dc->r1], l1);
257 gen_goto_tb(dc, 0, dc->pc + 4);
258 gen_set_label(l1);
259 gen_goto_tb(dc, 1, dc->pc + (sign_extend(dc->imm16 << 2, 16)));
260 dc->is_jmp = DISAS_TB_JUMP;
261 }
262
263 static void dec_be(DisasContext *dc)
264 {
265 LOG_DIS("be r%d, r%d, %d\n", dc->r0, dc->r1,
266 sign_extend(dc->imm16, 16) * 4);
267
268 gen_cond_branch(dc, TCG_COND_EQ);
269 }
270
271 static void dec_bg(DisasContext *dc)
272 {
273 LOG_DIS("bg r%d, r%d, %d\n", dc->r0, dc->r1,
274 sign_extend(dc->imm16, 16 * 4));
275
276 gen_cond_branch(dc, TCG_COND_GT);
277 }
278
279 static void dec_bge(DisasContext *dc)
280 {
281 LOG_DIS("bge r%d, r%d, %d\n", dc->r0, dc->r1,
282 sign_extend(dc->imm16, 16) * 4);
283
284 gen_cond_branch(dc, TCG_COND_GE);
285 }
286
287 static void dec_bgeu(DisasContext *dc)
288 {
289 LOG_DIS("bgeu r%d, r%d, %d\n", dc->r0, dc->r1,
290 sign_extend(dc->imm16, 16) * 4);
291
292 gen_cond_branch(dc, TCG_COND_GEU);
293 }
294
295 static void dec_bgu(DisasContext *dc)
296 {
297 LOG_DIS("bgu r%d, r%d, %d\n", dc->r0, dc->r1,
298 sign_extend(dc->imm16, 16) * 4);
299
300 gen_cond_branch(dc, TCG_COND_GTU);
301 }
302
303 static void dec_bne(DisasContext *dc)
304 {
305 LOG_DIS("bne r%d, r%d, %d\n", dc->r0, dc->r1,
306 sign_extend(dc->imm16, 16) * 4);
307
308 gen_cond_branch(dc, TCG_COND_NE);
309 }
310
311 static void dec_call(DisasContext *dc)
312 {
313 LOG_DIS("call r%d\n", dc->r0);
314
315 tcg_gen_movi_tl(cpu_R[R_RA], dc->pc + 4);
316 tcg_gen_mov_tl(cpu_pc, cpu_R[dc->r0]);
317
318 dc->is_jmp = DISAS_JUMP;
319 }
320
321 static void dec_calli(DisasContext *dc)
322 {
323 LOG_DIS("calli %d\n", sign_extend(dc->imm26, 26) * 4);
324
325 tcg_gen_movi_tl(cpu_R[R_RA], dc->pc + 4);
326 gen_goto_tb(dc, 0, dc->pc + (sign_extend(dc->imm26 << 2, 26)));
327
328 dc->is_jmp = DISAS_TB_JUMP;
329 }
330
331 static inline void gen_compare(DisasContext *dc, int cond)
332 {
333 int rX = (dc->format == OP_FMT_RR) ? dc->r2 : dc->r1;
334 int rY = (dc->format == OP_FMT_RR) ? dc->r0 : dc->r0;
335 int rZ = (dc->format == OP_FMT_RR) ? dc->r1 : -1;
336
337 if (dc->format == OP_FMT_RI) {
338 tcg_gen_setcondi_tl(cond, cpu_R[rX], cpu_R[rY],
339 sign_extend(dc->imm16, 16));
340 } else {
341 tcg_gen_setcond_tl(cond, cpu_R[rX], cpu_R[rY], cpu_R[rZ]);
342 }
343 }
344
345 static void dec_cmpe(DisasContext *dc)
346 {
347 if (dc->format == OP_FMT_RI) {
348 LOG_DIS("cmpei r%d, r%d, %d\n", dc->r0, dc->r1,
349 sign_extend(dc->imm16, 16));
350 } else {
351 LOG_DIS("cmpe r%d, r%d, r%d\n", dc->r2, dc->r0, dc->r1);
352 }
353
354 gen_compare(dc, TCG_COND_EQ);
355 }
356
357 static void dec_cmpg(DisasContext *dc)
358 {
359 if (dc->format == OP_FMT_RI) {
360 LOG_DIS("cmpgi r%d, r%d, %d\n", dc->r0, dc->r1,
361 sign_extend(dc->imm16, 16));
362 } else {
363 LOG_DIS("cmpg r%d, r%d, r%d\n", dc->r2, dc->r0, dc->r1);
364 }
365
366 gen_compare(dc, TCG_COND_GT);
367 }
368
369 static void dec_cmpge(DisasContext *dc)
370 {
371 if (dc->format == OP_FMT_RI) {
372 LOG_DIS("cmpgei r%d, r%d, %d\n", dc->r0, dc->r1,
373 sign_extend(dc->imm16, 16));
374 } else {
375 LOG_DIS("cmpge r%d, r%d, r%d\n", dc->r2, dc->r0, dc->r1);
376 }
377
378 gen_compare(dc, TCG_COND_GE);
379 }
380
381 static void dec_cmpgeu(DisasContext *dc)
382 {
383 if (dc->format == OP_FMT_RI) {
384 LOG_DIS("cmpgeui r%d, r%d, %d\n", dc->r0, dc->r1,
385 sign_extend(dc->imm16, 16));
386 } else {
387 LOG_DIS("cmpgeu r%d, r%d, r%d\n", dc->r2, dc->r0, dc->r1);
388 }
389
390 gen_compare(dc, TCG_COND_GEU);
391 }
392
393 static void dec_cmpgu(DisasContext *dc)
394 {
395 if (dc->format == OP_FMT_RI) {
396 LOG_DIS("cmpgui r%d, r%d, %d\n", dc->r0, dc->r1,
397 sign_extend(dc->imm16, 16));
398 } else {
399 LOG_DIS("cmpgu r%d, r%d, r%d\n", dc->r2, dc->r0, dc->r1);
400 }
401
402 gen_compare(dc, TCG_COND_GTU);
403 }
404
405 static void dec_cmpne(DisasContext *dc)
406 {
407 if (dc->format == OP_FMT_RI) {
408 LOG_DIS("cmpnei r%d, r%d, %d\n", dc->r0, dc->r1,
409 sign_extend(dc->imm16, 16));
410 } else {
411 LOG_DIS("cmpne r%d, r%d, r%d\n", dc->r2, dc->r0, dc->r1);
412 }
413
414 gen_compare(dc, TCG_COND_NE);
415 }
416
417 static void dec_divu(DisasContext *dc)
418 {
419 int l1;
420
421 LOG_DIS("divu r%d, r%d, r%d\n", dc->r2, dc->r0, dc->r1);
422
423 if (!(dc->env->features & LM32_FEATURE_DIVIDE)) {
424 cpu_abort(dc->env, "hardware divider is not available\n");
425 }
426
427 l1 = gen_new_label();
428 tcg_gen_brcondi_tl(TCG_COND_NE, cpu_R[dc->r1], 0, l1);
429 tcg_gen_movi_tl(cpu_pc, dc->pc);
430 t_gen_raise_exception(dc, EXCP_DIVIDE_BY_ZERO);
431 gen_set_label(l1);
432 tcg_gen_divu_tl(cpu_R[dc->r2], cpu_R[dc->r0], cpu_R[dc->r1]);
433 }
434
435 static void dec_lb(DisasContext *dc)
436 {
437 TCGv t0;
438
439 LOG_DIS("lb r%d, (r%d+%d)\n", dc->r1, dc->r0, dc->imm16);
440
441 t0 = tcg_temp_new();
442 tcg_gen_addi_tl(t0, cpu_R[dc->r0], sign_extend(dc->imm16, 16));
443 tcg_gen_qemu_ld8s(cpu_R[dc->r1], t0, MEM_INDEX);
444 tcg_temp_free(t0);
445 }
446
447 static void dec_lbu(DisasContext *dc)
448 {
449 TCGv t0;
450
451 LOG_DIS("lbu r%d, (r%d+%d)\n", dc->r1, dc->r0, dc->imm16);
452
453 t0 = tcg_temp_new();
454 tcg_gen_addi_tl(t0, cpu_R[dc->r0], sign_extend(dc->imm16, 16));
455 tcg_gen_qemu_ld8u(cpu_R[dc->r1], t0, MEM_INDEX);
456 tcg_temp_free(t0);
457 }
458
459 static void dec_lh(DisasContext *dc)
460 {
461 TCGv t0;
462
463 LOG_DIS("lh r%d, (r%d+%d)\n", dc->r1, dc->r0, dc->imm16);
464
465 t0 = tcg_temp_new();
466 tcg_gen_addi_tl(t0, cpu_R[dc->r0], sign_extend(dc->imm16, 16));
467 tcg_gen_qemu_ld16s(cpu_R[dc->r1], t0, MEM_INDEX);
468 tcg_temp_free(t0);
469 }
470
471 static void dec_lhu(DisasContext *dc)
472 {
473 TCGv t0;
474
475 LOG_DIS("lhu r%d, (r%d+%d)\n", dc->r1, dc->r0, dc->imm16);
476
477 t0 = tcg_temp_new();
478 tcg_gen_addi_tl(t0, cpu_R[dc->r0], sign_extend(dc->imm16, 16));
479 tcg_gen_qemu_ld16u(cpu_R[dc->r1], t0, MEM_INDEX);
480 tcg_temp_free(t0);
481 }
482
483 static void dec_lw(DisasContext *dc)
484 {
485 TCGv t0;
486
487 LOG_DIS("lw r%d, (r%d+%d)\n", dc->r1, dc->r0, sign_extend(dc->imm16, 16));
488
489 t0 = tcg_temp_new();
490 tcg_gen_addi_tl(t0, cpu_R[dc->r0], sign_extend(dc->imm16, 16));
491 tcg_gen_qemu_ld32s(cpu_R[dc->r1], t0, MEM_INDEX);
492 tcg_temp_free(t0);
493 }
494
495 static void dec_modu(DisasContext *dc)
496 {
497 int l1;
498
499 LOG_DIS("modu r%d, r%d, %d\n", dc->r2, dc->r0, dc->r1);
500
501 if (!(dc->env->features & LM32_FEATURE_DIVIDE)) {
502 cpu_abort(dc->env, "hardware divider is not available\n");
503 }
504
505 l1 = gen_new_label();
506 tcg_gen_brcondi_tl(TCG_COND_NE, cpu_R[dc->r1], 0, l1);
507 tcg_gen_movi_tl(cpu_pc, dc->pc);
508 t_gen_raise_exception(dc, EXCP_DIVIDE_BY_ZERO);
509 gen_set_label(l1);
510 tcg_gen_remu_tl(cpu_R[dc->r2], cpu_R[dc->r0], cpu_R[dc->r1]);
511 }
512
513 static void dec_mul(DisasContext *dc)
514 {
515 if (dc->format == OP_FMT_RI) {
516 LOG_DIS("muli r%d, r%d, %d\n", dc->r0, dc->r1,
517 sign_extend(dc->imm16, 16));
518 } else {
519 LOG_DIS("mul r%d, r%d, r%d\n", dc->r2, dc->r0, dc->r1);
520 }
521
522 if (!(dc->env->features & LM32_FEATURE_MULTIPLY)) {
523 cpu_abort(dc->env, "hardware multiplier is not available\n");
524 }
525
526 if (dc->format == OP_FMT_RI) {
527 tcg_gen_muli_tl(cpu_R[dc->r1], cpu_R[dc->r0],
528 sign_extend(dc->imm16, 16));
529 } else {
530 tcg_gen_mul_tl(cpu_R[dc->r2], cpu_R[dc->r0], cpu_R[dc->r1]);
531 }
532 }
533
534 static void dec_nor(DisasContext *dc)
535 {
536 if (dc->format == OP_FMT_RI) {
537 LOG_DIS("nori r%d, r%d, %d\n", dc->r0, dc->r1,
538 zero_extend(dc->imm16, 16));
539 } else {
540 LOG_DIS("nor r%d, r%d, r%d\n", dc->r2, dc->r0, dc->r1);
541 }
542
543 if (dc->format == OP_FMT_RI) {
544 TCGv t0 = tcg_temp_new();
545 tcg_gen_movi_tl(t0, zero_extend(dc->imm16, 16));
546 tcg_gen_nor_tl(cpu_R[dc->r1], cpu_R[dc->r0], t0);
547 tcg_temp_free(t0);
548 } else {
549 tcg_gen_nor_tl(cpu_R[dc->r2], cpu_R[dc->r0], cpu_R[dc->r1]);
550 }
551 }
552
553 static void dec_or(DisasContext *dc)
554 {
555 if (dc->format == OP_FMT_RI) {
556 LOG_DIS("ori r%d, r%d, %d\n", dc->r1, dc->r0,
557 zero_extend(dc->imm16, 16));
558 } else {
559 if (dc->r1 == R_R0) {
560 LOG_DIS("mv r%d, r%d\n", dc->r2, dc->r0);
561 } else {
562 LOG_DIS("or r%d, r%d, r%d\n", dc->r2, dc->r0, dc->r1);
563 }
564 }
565
566 if (dc->format == OP_FMT_RI) {
567 tcg_gen_ori_tl(cpu_R[dc->r1], cpu_R[dc->r0],
568 zero_extend(dc->imm16, 16));
569 } else {
570 tcg_gen_or_tl(cpu_R[dc->r2], cpu_R[dc->r0], cpu_R[dc->r1]);
571 }
572 }
573
574 static void dec_orhi(DisasContext *dc)
575 {
576 if (dc->r0 == R_R0) {
577 LOG_DIS("mvhi r%d, %d\n", dc->r1, dc->imm16);
578 } else {
579 LOG_DIS("orhi r%d, r%d, %d\n", dc->r1, dc->r0, dc->imm16);
580 }
581
582 tcg_gen_ori_tl(cpu_R[dc->r1], cpu_R[dc->r0], (dc->imm16 << 16));
583 }
584
585 static void dec_scall(DisasContext *dc)
586 {
587 TCGv t0;
588 int l1;
589
590 if (dc->imm5 == 7) {
591 LOG_DIS("scall\n");
592 } else if (dc->imm5 == 2) {
593 LOG_DIS("break\n");
594 } else {
595 cpu_abort(dc->env, "invalid opcode\n");
596 }
597
598 t0 = tcg_temp_new();
599 l1 = gen_new_label();
600
601 if (dc->imm5 == 7) {
602 tcg_gen_movi_tl(cpu_pc, dc->pc);
603 t_gen_raise_exception(dc, EXCP_SYSTEMCALL);
604 } else {
605 tcg_gen_movi_tl(cpu_pc, dc->pc);
606 t_gen_raise_exception(dc, EXCP_BREAKPOINT);
607 }
608 }
609
610 static void dec_rcsr(DisasContext *dc)
611 {
612 LOG_DIS("rcsr r%d, %d\n", dc->r2, dc->csr);
613
614 switch (dc->csr) {
615 case CSR_IE:
616 tcg_gen_mov_tl(cpu_R[dc->r2], cpu_ie);
617 break;
618 case CSR_IM:
619 gen_helper_rcsr_im(cpu_R[dc->r2]);
620 break;
621 case CSR_IP:
622 gen_helper_rcsr_ip(cpu_R[dc->r2]);
623 break;
624 case CSR_CC:
625 tcg_gen_mov_tl(cpu_R[dc->r2], cpu_cc);
626 break;
627 case CSR_CFG:
628 tcg_gen_mov_tl(cpu_R[dc->r2], cpu_cfg);
629 break;
630 case CSR_EBA:
631 tcg_gen_mov_tl(cpu_R[dc->r2], cpu_eba);
632 break;
633 case CSR_DC:
634 tcg_gen_mov_tl(cpu_R[dc->r2], cpu_dc);
635 break;
636 case CSR_DEBA:
637 tcg_gen_mov_tl(cpu_R[dc->r2], cpu_deba);
638 break;
639 case CSR_JTX:
640 gen_helper_rcsr_jtx(cpu_R[dc->r2]);
641 break;
642 case CSR_JRX:
643 gen_helper_rcsr_jrx(cpu_R[dc->r2]);
644 break;
645 case CSR_ICC:
646 case CSR_DCC:
647 case CSR_BP0:
648 case CSR_BP1:
649 case CSR_BP2:
650 case CSR_BP3:
651 case CSR_WP0:
652 case CSR_WP1:
653 case CSR_WP2:
654 case CSR_WP3:
655 cpu_abort(dc->env, "invalid read access csr=%x\n", dc->csr);
656 break;
657 default:
658 cpu_abort(dc->env, "read_csr: unknown csr=%x\n", dc->csr);
659 break;
660 }
661 }
662
663 static void dec_sb(DisasContext *dc)
664 {
665 TCGv t0;
666
667 LOG_DIS("sb (r%d+%d), r%d\n", dc->r0, dc->imm16, dc->r1);
668
669 t0 = tcg_temp_new();
670 tcg_gen_addi_tl(t0, cpu_R[dc->r0], sign_extend(dc->imm16, 16));
671 tcg_gen_qemu_st8(cpu_R[dc->r1], t0, MEM_INDEX);
672 tcg_temp_free(t0);
673 }
674
675 static void dec_sextb(DisasContext *dc)
676 {
677 LOG_DIS("sextb r%d, r%d\n", dc->r2, dc->r0);
678
679 if (!(dc->env->features & LM32_FEATURE_SIGN_EXTEND)) {
680 cpu_abort(dc->env, "hardware sign extender is not available\n");
681 }
682
683 tcg_gen_ext8s_tl(cpu_R[dc->r2], cpu_R[dc->r0]);
684 }
685
686 static void dec_sexth(DisasContext *dc)
687 {
688 LOG_DIS("sexth r%d, r%d\n", dc->r2, dc->r0);
689
690 if (!(dc->env->features & LM32_FEATURE_SIGN_EXTEND)) {
691 cpu_abort(dc->env, "hardware sign extender is not available\n");
692 }
693
694 tcg_gen_ext16s_tl(cpu_R[dc->r2], cpu_R[dc->r0]);
695 }
696
697 static void dec_sh(DisasContext *dc)
698 {
699 TCGv t0;
700
701 LOG_DIS("sh (r%d+%d), r%d\n", dc->r0, dc->imm16, dc->r1);
702
703 t0 = tcg_temp_new();
704 tcg_gen_addi_tl(t0, cpu_R[dc->r0], sign_extend(dc->imm16, 16));
705 tcg_gen_qemu_st16(cpu_R[dc->r1], t0, MEM_INDEX);
706 tcg_temp_free(t0);
707 }
708
709 static void dec_sl(DisasContext *dc)
710 {
711 if (dc->format == OP_FMT_RI) {
712 LOG_DIS("sli r%d, r%d, %d\n", dc->r1, dc->r0, dc->imm5);
713 } else {
714 LOG_DIS("sl r%d, r%d, r%d\n", dc->r2, dc->r0, dc->r1);
715 }
716
717 if (!(dc->env->features & LM32_FEATURE_SHIFT)) {
718 cpu_abort(dc->env, "hardware shifter is not available\n");
719 }
720
721 if (dc->format == OP_FMT_RI) {
722 tcg_gen_shli_tl(cpu_R[dc->r1], cpu_R[dc->r0], dc->imm5);
723 } else {
724 TCGv t0 = tcg_temp_new();
725 tcg_gen_andi_tl(t0, cpu_R[dc->r1], 0x1f);
726 tcg_gen_shl_tl(cpu_R[dc->r2], cpu_R[dc->r0], t0);
727 tcg_temp_free(t0);
728 }
729 }
730
731 static void dec_sr(DisasContext *dc)
732 {
733 if (dc->format == OP_FMT_RI) {
734 LOG_DIS("sri r%d, r%d, %d\n", dc->r1, dc->r0, dc->imm5);
735 } else {
736 LOG_DIS("sr r%d, r%d, r%d\n", dc->r2, dc->r0, dc->r1);
737 }
738
739 if (!(dc->env->features & LM32_FEATURE_SHIFT)) {
740 if (dc->format == OP_FMT_RI) {
741 /* TODO: check r1 == 1 during runtime */
742 } else {
743 if (dc->imm5 != 1) {
744 cpu_abort(dc->env, "hardware shifter is not available\n");
745 }
746 }
747 }
748
749 if (dc->format == OP_FMT_RI) {
750 tcg_gen_sari_tl(cpu_R[dc->r1], cpu_R[dc->r0], dc->imm5);
751 } else {
752 TCGv t0 = tcg_temp_new();
753 tcg_gen_andi_tl(t0, cpu_R[dc->r1], 0x1f);
754 tcg_gen_sar_tl(cpu_R[dc->r2], cpu_R[dc->r0], t0);
755 tcg_temp_free(t0);
756 }
757 }
758
759 static void dec_sru(DisasContext *dc)
760 {
761 if (dc->format == OP_FMT_RI) {
762 LOG_DIS("srui r%d, r%d, %d\n", dc->r1, dc->r0, dc->imm5);
763 } else {
764 LOG_DIS("sru r%d, r%d, r%d\n", dc->r2, dc->r0, dc->r1);
765 }
766
767 if (!(dc->env->features & LM32_FEATURE_SHIFT)) {
768 if (dc->format == OP_FMT_RI) {
769 /* TODO: check r1 == 1 during runtime */
770 } else {
771 if (dc->imm5 != 1) {
772 cpu_abort(dc->env, "hardware shifter is not available\n");
773 }
774 }
775 }
776
777 if (dc->format == OP_FMT_RI) {
778 tcg_gen_shri_tl(cpu_R[dc->r1], cpu_R[dc->r0], dc->imm5);
779 } else {
780 TCGv t0 = tcg_temp_new();
781 tcg_gen_andi_tl(t0, cpu_R[dc->r1], 0x1f);
782 tcg_gen_shr_tl(cpu_R[dc->r2], cpu_R[dc->r0], t0);
783 tcg_temp_free(t0);
784 }
785 }
786
787 static void dec_sub(DisasContext *dc)
788 {
789 LOG_DIS("sub r%d, r%d, r%d\n", dc->r2, dc->r0, dc->r1);
790
791 tcg_gen_sub_tl(cpu_R[dc->r2], cpu_R[dc->r0], cpu_R[dc->r1]);
792 }
793
794 static void dec_sw(DisasContext *dc)
795 {
796 TCGv t0;
797
798 LOG_DIS("sw (r%d+%d), r%d\n", dc->r0, sign_extend(dc->imm16, 16), dc->r1);
799
800 t0 = tcg_temp_new();
801 tcg_gen_addi_tl(t0, cpu_R[dc->r0], sign_extend(dc->imm16, 16));
802 tcg_gen_qemu_st32(cpu_R[dc->r1], t0, MEM_INDEX);
803 tcg_temp_free(t0);
804 }
805
806 static void dec_user(DisasContext *dc)
807 {
808 LOG_DIS("user");
809
810 cpu_abort(dc->env, "user insn undefined\n");
811 }
812
813 static void dec_wcsr(DisasContext *dc)
814 {
815 int no;
816
817 LOG_DIS("wcsr r%d, %d\n", dc->r1, dc->csr);
818
819 switch (dc->csr) {
820 case CSR_IE:
821 tcg_gen_mov_tl(cpu_ie, cpu_R[dc->r1]);
822 tcg_gen_movi_tl(cpu_pc, dc->pc + 4);
823 dc->is_jmp = DISAS_UPDATE;
824 break;
825 case CSR_IM:
826 /* mark as an io operation because it could cause an interrupt */
827 if (use_icount) {
828 gen_io_start();
829 }
830 gen_helper_wcsr_im(cpu_R[dc->r1]);
831 tcg_gen_movi_tl(cpu_pc, dc->pc + 4);
832 if (use_icount) {
833 gen_io_end();
834 }
835 dc->is_jmp = DISAS_UPDATE;
836 break;
837 case CSR_IP:
838 /* mark as an io operation because it could cause an interrupt */
839 if (use_icount) {
840 gen_io_start();
841 }
842 gen_helper_wcsr_ip(cpu_R[dc->r1]);
843 tcg_gen_movi_tl(cpu_pc, dc->pc + 4);
844 if (use_icount) {
845 gen_io_end();
846 }
847 dc->is_jmp = DISAS_UPDATE;
848 break;
849 case CSR_ICC:
850 /* TODO */
851 break;
852 case CSR_DCC:
853 /* TODO */
854 break;
855 case CSR_EBA:
856 tcg_gen_mov_tl(cpu_eba, cpu_R[dc->r1]);
857 break;
858 case CSR_DEBA:
859 tcg_gen_mov_tl(cpu_deba, cpu_R[dc->r1]);
860 break;
861 case CSR_JTX:
862 gen_helper_wcsr_jtx(cpu_R[dc->r1]);
863 break;
864 case CSR_JRX:
865 gen_helper_wcsr_jrx(cpu_R[dc->r1]);
866 break;
867 case CSR_DC:
868 tcg_gen_mov_tl(cpu_dc, cpu_R[dc->r1]);
869 break;
870 case CSR_BP0:
871 case CSR_BP1:
872 case CSR_BP2:
873 case CSR_BP3:
874 no = dc->csr - CSR_BP0;
875 if (dc->env->num_bps <= no) {
876 cpu_abort(dc->env, "breakpoint #%i is not available\n", no);
877 }
878 tcg_gen_mov_tl(cpu_bp[no], cpu_R[dc->r1]);
879 break;
880 case CSR_WP0:
881 case CSR_WP1:
882 case CSR_WP2:
883 case CSR_WP3:
884 no = dc->csr - CSR_WP0;
885 if (dc->env->num_wps <= no) {
886 cpu_abort(dc->env, "watchpoint #%i is not available\n", no);
887 }
888 tcg_gen_mov_tl(cpu_wp[no], cpu_R[dc->r1]);
889 break;
890 case CSR_CC:
891 case CSR_CFG:
892 cpu_abort(dc->env, "invalid write access csr=%x\n", dc->csr);
893 break;
894 default:
895 cpu_abort(dc->env, "write_csr unknown csr=%x\n", dc->csr);
896 break;
897 }
898 }
899
900 static void dec_xnor(DisasContext *dc)
901 {
902 if (dc->format == OP_FMT_RI) {
903 LOG_DIS("xnori r%d, r%d, %d\n", dc->r0, dc->r1,
904 zero_extend(dc->imm16, 16));
905 } else {
906 if (dc->r1 == R_R0) {
907 LOG_DIS("not r%d, r%d\n", dc->r2, dc->r0);
908 } else {
909 LOG_DIS("xnor r%d, r%d, r%d\n", dc->r2, dc->r0, dc->r1);
910 }
911 }
912
913 if (dc->format == OP_FMT_RI) {
914 tcg_gen_xori_tl(cpu_R[dc->r1], cpu_R[dc->r0],
915 zero_extend(dc->imm16, 16));
916 tcg_gen_not_tl(cpu_R[dc->r1], cpu_R[dc->r1]);
917 } else {
918 tcg_gen_eqv_tl(cpu_R[dc->r2], cpu_R[dc->r0], cpu_R[dc->r1]);
919 }
920 }
921
922 static void dec_xor(DisasContext *dc)
923 {
924 if (dc->format == OP_FMT_RI) {
925 LOG_DIS("xori r%d, r%d, %d\n", dc->r0, dc->r1,
926 zero_extend(dc->imm16, 16));
927 } else {
928 LOG_DIS("xor r%d, r%d, r%d\n", dc->r2, dc->r0, dc->r1);
929 }
930
931 if (dc->format == OP_FMT_RI) {
932 tcg_gen_xori_tl(cpu_R[dc->r1], cpu_R[dc->r0],
933 zero_extend(dc->imm16, 16));
934 } else {
935 tcg_gen_xor_tl(cpu_R[dc->r2], cpu_R[dc->r0], cpu_R[dc->r1]);
936 }
937 }
938
939 static void dec_ill(DisasContext *dc)
940 {
941 cpu_abort(dc->env, "unknown opcode 0x%02x\n", dc->opcode);
942 }
943
944 typedef void (*DecoderInfo)(DisasContext *dc);
945 static const DecoderInfo decinfo[] = {
946 dec_sru, dec_nor, dec_mul, dec_sh, dec_lb, dec_sr, dec_xor, dec_lh,
947 dec_and, dec_xnor, dec_lw, dec_lhu, dec_sb, dec_add, dec_or, dec_sl,
948 dec_lbu, dec_be, dec_bg, dec_bge, dec_bgeu, dec_bgu, dec_sw, dec_bne,
949 dec_andhi, dec_cmpe, dec_cmpg, dec_cmpge, dec_cmpgeu, dec_cmpgu, dec_orhi,
950 dec_cmpne,
951 dec_sru, dec_nor, dec_mul, dec_divu, dec_rcsr, dec_sr, dec_xor, dec_ill,
952 dec_and, dec_xnor, dec_ill, dec_scall, dec_sextb, dec_add, dec_or, dec_sl,
953 dec_b, dec_modu, dec_sub, dec_user, dec_wcsr, dec_ill, dec_call, dec_sexth,
954 dec_bi, dec_cmpe, dec_cmpg, dec_cmpge, dec_cmpgeu, dec_cmpgu, dec_calli,
955 dec_cmpne
956 };
957
958 static inline void decode(DisasContext *dc)
959 {
960 uint32_t ir;
961
962 if (unlikely(qemu_loglevel_mask(CPU_LOG_TB_OP))) {
963 tcg_gen_debug_insn_start(dc->pc);
964 }
965
966 dc->ir = ir = ldl_code(dc->pc);
967 LOG_DIS("%8.8x\t", dc->ir);
968
969 /* try guessing 'empty' instruction memory, although it may be a valid
970 * instruction sequence (eg. srui r0, r0, 0) */
971 if (dc->ir) {
972 dc->nr_nops = 0;
973 } else {
974 LOG_DIS("nr_nops=%d\t", dc->nr_nops);
975 dc->nr_nops++;
976 if (dc->nr_nops > 4) {
977 cpu_abort(dc->env, "fetching nop sequence\n");
978 }
979 }
980
981 dc->opcode = EXTRACT_FIELD(ir, 26, 31);
982
983 dc->imm5 = EXTRACT_FIELD(ir, 0, 4);
984 dc->imm16 = EXTRACT_FIELD(ir, 0, 15);
985 dc->imm26 = EXTRACT_FIELD(ir, 0, 25);
986
987 dc->csr = EXTRACT_FIELD(ir, 21, 25);
988 dc->r0 = EXTRACT_FIELD(ir, 21, 25);
989 dc->r1 = EXTRACT_FIELD(ir, 16, 20);
990 dc->r2 = EXTRACT_FIELD(ir, 11, 15);
991
992 /* bit 31 seems to indicate insn type. */
993 if (ir & (1 << 31)) {
994 dc->format = OP_FMT_RR;
995 } else {
996 dc->format = OP_FMT_RI;
997 }
998
999 assert(ARRAY_SIZE(decinfo) == 64);
1000 assert(dc->opcode < 64);
1001
1002 decinfo[dc->opcode](dc);
1003 }
1004
1005 static void check_breakpoint(CPUState *env, DisasContext *dc)
1006 {
1007 CPUBreakpoint *bp;
1008
1009 if (unlikely(!QTAILQ_EMPTY(&env->breakpoints))) {
1010 QTAILQ_FOREACH(bp, &env->breakpoints, entry) {
1011 if (bp->pc == dc->pc) {
1012 tcg_gen_movi_tl(cpu_pc, dc->pc);
1013 t_gen_raise_exception(dc, EXCP_DEBUG);
1014 dc->is_jmp = DISAS_UPDATE;
1015 }
1016 }
1017 }
1018 }
1019
1020 /* generate intermediate code for basic block 'tb'. */
1021 static void gen_intermediate_code_internal(CPUState *env,
1022 TranslationBlock *tb, int search_pc)
1023 {
1024 struct DisasContext ctx, *dc = &ctx;
1025 uint16_t *gen_opc_end;
1026 uint32_t pc_start;
1027 int j, lj;
1028 uint32_t next_page_start;
1029 int num_insns;
1030 int max_insns;
1031
1032 qemu_log_try_set_file(stderr);
1033
1034 pc_start = tb->pc;
1035 dc->env = env;
1036 dc->tb = tb;
1037
1038 gen_opc_end = gen_opc_buf + OPC_MAX_SIZE;
1039
1040 dc->is_jmp = DISAS_NEXT;
1041 dc->pc = pc_start;
1042 dc->singlestep_enabled = env->singlestep_enabled;
1043 dc->nr_nops = 0;
1044
1045 if (pc_start & 3) {
1046 cpu_abort(env, "LM32: unaligned PC=%x\n", pc_start);
1047 }
1048
1049 if (qemu_loglevel_mask(CPU_LOG_TB_IN_ASM)) {
1050 qemu_log("-----------------------------------------\n");
1051 log_cpu_state(env, 0);
1052 }
1053
1054 next_page_start = (pc_start & TARGET_PAGE_MASK) + TARGET_PAGE_SIZE;
1055 lj = -1;
1056 num_insns = 0;
1057 max_insns = tb->cflags & CF_COUNT_MASK;
1058 if (max_insns == 0) {
1059 max_insns = CF_COUNT_MASK;
1060 }
1061
1062 gen_icount_start();
1063 do {
1064 check_breakpoint(env, dc);
1065
1066 if (search_pc) {
1067 j = gen_opc_ptr - gen_opc_buf;
1068 if (lj < j) {
1069 lj++;
1070 while (lj < j) {
1071 gen_opc_instr_start[lj++] = 0;
1072 }
1073 }
1074 gen_opc_pc[lj] = dc->pc;
1075 gen_opc_instr_start[lj] = 1;
1076 gen_opc_icount[lj] = num_insns;
1077 }
1078
1079 /* Pretty disas. */
1080 LOG_DIS("%8.8x:\t", dc->pc);
1081
1082 if (num_insns + 1 == max_insns && (tb->cflags & CF_LAST_IO)) {
1083 gen_io_start();
1084 }
1085
1086 decode(dc);
1087 dc->pc += 4;
1088 num_insns++;
1089
1090 } while (!dc->is_jmp
1091 && gen_opc_ptr < gen_opc_end
1092 && !env->singlestep_enabled
1093 && !singlestep
1094 && (dc->pc < next_page_start)
1095 && num_insns < max_insns);
1096
1097 if (tb->cflags & CF_LAST_IO) {
1098 gen_io_end();
1099 }
1100
1101 if (unlikely(env->singlestep_enabled)) {
1102 if (dc->is_jmp == DISAS_NEXT) {
1103 tcg_gen_movi_tl(cpu_pc, dc->pc);
1104 }
1105 t_gen_raise_exception(dc, EXCP_DEBUG);
1106 } else {
1107 switch (dc->is_jmp) {
1108 case DISAS_NEXT:
1109 gen_goto_tb(dc, 1, dc->pc);
1110 break;
1111 default:
1112 case DISAS_JUMP:
1113 case DISAS_UPDATE:
1114 /* indicate that the hash table must be used
1115 to find the next TB */
1116 tcg_gen_exit_tb(0);
1117 break;
1118 case DISAS_TB_JUMP:
1119 /* nothing more to generate */
1120 break;
1121 }
1122 }
1123
1124 gen_icount_end(tb, num_insns);
1125 *gen_opc_ptr = INDEX_op_end;
1126 if (search_pc) {
1127 j = gen_opc_ptr - gen_opc_buf;
1128 lj++;
1129 while (lj <= j) {
1130 gen_opc_instr_start[lj++] = 0;
1131 }
1132 } else {
1133 tb->size = dc->pc - pc_start;
1134 tb->icount = num_insns;
1135 }
1136
1137 #ifdef DEBUG_DISAS
1138 if (qemu_loglevel_mask(CPU_LOG_TB_IN_ASM)) {
1139 qemu_log("\n");
1140 log_target_disas(pc_start, dc->pc - pc_start, 0);
1141 qemu_log("\nisize=%d osize=%zd\n",
1142 dc->pc - pc_start, gen_opc_ptr - gen_opc_buf);
1143 }
1144 #endif
1145 }
1146
1147 void gen_intermediate_code(CPUState *env, struct TranslationBlock *tb)
1148 {
1149 gen_intermediate_code_internal(env, tb, 0);
1150 }
1151
1152 void gen_intermediate_code_pc(CPUState *env, struct TranslationBlock *tb)
1153 {
1154 gen_intermediate_code_internal(env, tb, 1);
1155 }
1156
1157 void cpu_dump_state(CPUState *env, FILE *f, fprintf_function cpu_fprintf,
1158 int flags)
1159 {
1160 int i;
1161
1162 if (!env || !f) {
1163 return;
1164 }
1165
1166 cpu_fprintf(f, "IN: PC=%x %s\n",
1167 env->pc, lookup_symbol(env->pc));
1168
1169 cpu_fprintf(f, "ie=%8.8x (IE=%x EIE=%x BIE=%x) im=%8.8x ip=%8.8x\n",
1170 env->ie,
1171 (env->ie & IE_IE) ? 1 : 0,
1172 (env->ie & IE_EIE) ? 1 : 0,
1173 (env->ie & IE_BIE) ? 1 : 0,
1174 lm32_pic_get_im(env->pic_state),
1175 lm32_pic_get_ip(env->pic_state));
1176 cpu_fprintf(f, "eba=%8.8x deba=%8.8x\n",
1177 env->eba,
1178 env->deba);
1179
1180 for (i = 0; i < 32; i++) {
1181 cpu_fprintf(f, "r%2.2d=%8.8x ", i, env->regs[i]);
1182 if ((i + 1) % 4 == 0) {
1183 cpu_fprintf(f, "\n");
1184 }
1185 }
1186 cpu_fprintf(f, "\n\n");
1187 }
1188
1189 void restore_state_to_opc(CPUState *env, TranslationBlock *tb, int pc_pos)
1190 {
1191 env->pc = gen_opc_pc[pc_pos];
1192 }
1193
1194 void lm32_translate_init(void)
1195 {
1196 int i;
1197
1198 cpu_env = tcg_global_reg_new_ptr(TCG_AREG0, "env");
1199
1200 for (i = 0; i < ARRAY_SIZE(cpu_R); i++) {
1201 cpu_R[i] = tcg_global_mem_new(TCG_AREG0,
1202 offsetof(CPUState, regs[i]),
1203 regnames[i]);
1204 }
1205
1206 for (i = 0; i < ARRAY_SIZE(cpu_bp); i++) {
1207 cpu_bp[i] = tcg_global_mem_new(TCG_AREG0,
1208 offsetof(CPUState, bp[i]),
1209 regnames[32+i]);
1210 }
1211
1212 for (i = 0; i < ARRAY_SIZE(cpu_wp); i++) {
1213 cpu_wp[i] = tcg_global_mem_new(TCG_AREG0,
1214 offsetof(CPUState, wp[i]),
1215 regnames[36+i]);
1216 }
1217
1218 cpu_pc = tcg_global_mem_new(TCG_AREG0,
1219 offsetof(CPUState, pc),
1220 "pc");
1221 cpu_ie = tcg_global_mem_new(TCG_AREG0,
1222 offsetof(CPUState, ie),
1223 "ie");
1224 cpu_icc = tcg_global_mem_new(TCG_AREG0,
1225 offsetof(CPUState, icc),
1226 "icc");
1227 cpu_dcc = tcg_global_mem_new(TCG_AREG0,
1228 offsetof(CPUState, dcc),
1229 "dcc");
1230 cpu_cc = tcg_global_mem_new(TCG_AREG0,
1231 offsetof(CPUState, cc),
1232 "cc");
1233 cpu_cfg = tcg_global_mem_new(TCG_AREG0,
1234 offsetof(CPUState, cfg),
1235 "cfg");
1236 cpu_eba = tcg_global_mem_new(TCG_AREG0,
1237 offsetof(CPUState, eba),
1238 "eba");
1239 cpu_dc = tcg_global_mem_new(TCG_AREG0,
1240 offsetof(CPUState, dc),
1241 "dc");
1242 cpu_deba = tcg_global_mem_new(TCG_AREG0,
1243 offsetof(CPUState, deba),
1244 "deba");
1245 }
1246