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create qemu_openpty_raw() helper function and move it to a separate file
[qemu.git] / target-mips / dsp_helper.c
CommitLineData
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1/*
2 * MIPS ASE DSP Instruction emulation helpers for QEMU.
3 *
4 * Copyright (c) 2012 Jia Liu <proljc@gmail.com>
fe65a1fa 5 * Dongxue Zhang <elta.era@gmail.com>
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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 "cpu.h"
21#include "helper.h"
0ba365f4 22#include "qemu/bitops.h"
235eb015 23
652613ab
AJ
24/* As the byte ordering doesn't matter, i.e. all columns are treated
25 identically, these unions can be used directly. */
26typedef union {
27 uint8_t ub[4];
28 int8_t sb[4];
29 uint16_t uh[2];
30 int16_t sh[2];
31 uint32_t uw[1];
32 int32_t sw[1];
33} DSP32Value;
34
35typedef union {
36 uint8_t ub[8];
37 int8_t sb[8];
38 uint16_t uh[4];
39 int16_t sh[4];
40 uint32_t uw[2];
41 int32_t sw[2];
42 uint64_t ul[1];
43 int64_t sl[1];
44} DSP64Value;
45
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46/*** MIPS DSP internal functions begin ***/
47#define MIPSDSP_ABS(x) (((x) >= 0) ? x : -x)
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48#define MIPSDSP_OVERFLOW_ADD(a, b, c, d) (~(a ^ b) & (a ^ c) & d)
49#define MIPSDSP_OVERFLOW_SUB(a, b, c, d) ((a ^ b) & (a ^ c) & d)
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50
51static inline void set_DSPControl_overflow_flag(uint32_t flag, int position,
52 CPUMIPSState *env)
53{
54 env->active_tc.DSPControl |= (target_ulong)flag << position;
55}
56
118d1e4f 57static inline void set_DSPControl_carryflag(bool flag, CPUMIPSState *env)
235eb015 58{
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59 env->active_tc.DSPControl &= ~(1 << 13);
60 env->active_tc.DSPControl |= flag << 13;
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61}
62
63static inline uint32_t get_DSPControl_carryflag(CPUMIPSState *env)
64{
65 return (env->active_tc.DSPControl >> 13) & 0x01;
66}
67
68static inline void set_DSPControl_24(uint32_t flag, int len, CPUMIPSState *env)
69{
70 uint32_t filter;
71
72 filter = ((0x01 << len) - 1) << 24;
73 filter = ~filter;
74
75 env->active_tc.DSPControl &= filter;
76 env->active_tc.DSPControl |= (target_ulong)flag << 24;
77}
78
79static inline uint32_t get_DSPControl_24(int len, CPUMIPSState *env)
80{
81 uint32_t filter;
82
83 filter = (0x01 << len) - 1;
84
85 return (env->active_tc.DSPControl >> 24) & filter;
86}
87
88static inline void set_DSPControl_pos(uint32_t pos, CPUMIPSState *env)
89{
90 target_ulong dspc;
91
92 dspc = env->active_tc.DSPControl;
93#ifndef TARGET_MIPS64
94 dspc = dspc & 0xFFFFFFC0;
0ba365f4 95 dspc |= (pos & 0x3F);
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96#else
97 dspc = dspc & 0xFFFFFF80;
0ba365f4 98 dspc |= (pos & 0x7F);
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99#endif
100 env->active_tc.DSPControl = dspc;
101}
102
103static inline uint32_t get_DSPControl_pos(CPUMIPSState *env)
104{
105 target_ulong dspc;
106 uint32_t pos;
107
108 dspc = env->active_tc.DSPControl;
109
110#ifndef TARGET_MIPS64
111 pos = dspc & 0x3F;
112#else
113 pos = dspc & 0x7F;
114#endif
115
116 return pos;
117}
118
119static inline void set_DSPControl_efi(uint32_t flag, CPUMIPSState *env)
120{
121 env->active_tc.DSPControl &= 0xFFFFBFFF;
122 env->active_tc.DSPControl |= (target_ulong)flag << 14;
123}
124
125#define DO_MIPS_SAT_ABS(size) \
126static inline int##size##_t mipsdsp_sat_abs##size(int##size##_t a, \
127 CPUMIPSState *env) \
128{ \
129 if (a == INT##size##_MIN) { \
130 set_DSPControl_overflow_flag(1, 20, env); \
131 return INT##size##_MAX; \
132 } else { \
133 return MIPSDSP_ABS(a); \
134 } \
135}
136DO_MIPS_SAT_ABS(8)
137DO_MIPS_SAT_ABS(16)
138DO_MIPS_SAT_ABS(32)
139#undef DO_MIPS_SAT_ABS
140
141/* get sum value */
142static inline int16_t mipsdsp_add_i16(int16_t a, int16_t b, CPUMIPSState *env)
143{
144 int16_t tempI;
145
146 tempI = a + b;
147
20c334a7 148 if (MIPSDSP_OVERFLOW_ADD(a, b, tempI, 0x8000)) {
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149 set_DSPControl_overflow_flag(1, 20, env);
150 }
151
152 return tempI;
153}
154
155static inline int16_t mipsdsp_sat_add_i16(int16_t a, int16_t b,
156 CPUMIPSState *env)
157{
158 int16_t tempS;
159
160 tempS = a + b;
161
20c334a7 162 if (MIPSDSP_OVERFLOW_ADD(a, b, tempS, 0x8000)) {
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163 if (a > 0) {
164 tempS = 0x7FFF;
165 } else {
166 tempS = 0x8000;
167 }
168 set_DSPControl_overflow_flag(1, 20, env);
169 }
170
171 return tempS;
172}
173
174static inline int32_t mipsdsp_sat_add_i32(int32_t a, int32_t b,
175 CPUMIPSState *env)
176{
177 int32_t tempI;
178
179 tempI = a + b;
180
20c334a7 181 if (MIPSDSP_OVERFLOW_ADD(a, b, tempI, 0x80000000)) {
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182 if (a > 0) {
183 tempI = 0x7FFFFFFF;
184 } else {
185 tempI = 0x80000000;
186 }
187 set_DSPControl_overflow_flag(1, 20, env);
188 }
189
190 return tempI;
191}
192
193static inline uint8_t mipsdsp_add_u8(uint8_t a, uint8_t b, CPUMIPSState *env)
194{
195 uint16_t temp;
196
197 temp = (uint16_t)a + (uint16_t)b;
198
199 if (temp & 0x0100) {
200 set_DSPControl_overflow_flag(1, 20, env);
201 }
202
203 return temp & 0xFF;
204}
205
206static inline uint16_t mipsdsp_add_u16(uint16_t a, uint16_t b,
207 CPUMIPSState *env)
208{
209 uint32_t temp;
210
211 temp = (uint32_t)a + (uint32_t)b;
212
213 if (temp & 0x00010000) {
214 set_DSPControl_overflow_flag(1, 20, env);
215 }
216
217 return temp & 0xFFFF;
218}
219
220static inline uint8_t mipsdsp_sat_add_u8(uint8_t a, uint8_t b,
221 CPUMIPSState *env)
222{
223 uint8_t result;
224 uint16_t temp;
225
226 temp = (uint16_t)a + (uint16_t)b;
227 result = temp & 0xFF;
228
229 if (0x0100 & temp) {
230 result = 0xFF;
231 set_DSPControl_overflow_flag(1, 20, env);
232 }
233
234 return result;
235}
236
237static inline uint16_t mipsdsp_sat_add_u16(uint16_t a, uint16_t b,
238 CPUMIPSState *env)
239{
240 uint16_t result;
241 uint32_t temp;
242
243 temp = (uint32_t)a + (uint32_t)b;
244 result = temp & 0xFFFF;
245
246 if (0x00010000 & temp) {
247 result = 0xFFFF;
248 set_DSPControl_overflow_flag(1, 20, env);
249 }
250
251 return result;
252}
253
254static inline int32_t mipsdsp_sat32_acc_q31(int32_t acc, int32_t a,
255 CPUMIPSState *env)
256{
257 int64_t temp;
258 int32_t temp32, temp31, result;
259 int64_t temp_sum;
260
261#ifndef TARGET_MIPS64
262 temp = ((uint64_t)env->active_tc.HI[acc] << 32) |
263 (uint64_t)env->active_tc.LO[acc];
264#else
265 temp = (uint64_t)env->active_tc.LO[acc];
266#endif
267
268 temp_sum = (int64_t)a + temp;
269
270 temp32 = (temp_sum >> 32) & 0x01;
271 temp31 = (temp_sum >> 31) & 0x01;
272 result = temp_sum & 0xFFFFFFFF;
273
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274 if (temp32 != temp31) {
275 if (temp32 == 0) {
276 result = 0x7FFFFFFF;
277 } else {
278 result = 0x80000000;
279 }
280 set_DSPControl_overflow_flag(1, 16 + acc, env);
281 }
282
283 return result;
284}
285
286/* a[0] is LO, a[1] is HI. */
287static inline void mipsdsp_sat64_acc_add_q63(int64_t *ret,
288 int32_t ac,
289 int64_t *a,
290 CPUMIPSState *env)
291{
292 bool temp64;
293
294 ret[0] = env->active_tc.LO[ac] + a[0];
295 ret[1] = env->active_tc.HI[ac] + a[1];
296
297 if (((uint64_t)ret[0] < (uint64_t)env->active_tc.LO[ac]) &&
298 ((uint64_t)ret[0] < (uint64_t)a[0])) {
299 ret[1] += 1;
300 }
301 temp64 = ret[1] & 1;
302 if (temp64 != ((ret[0] >> 63) & 0x01)) {
303 if (temp64) {
304 ret[0] = (0x01ull << 63);
305 ret[1] = ~0ull;
306 } else {
307 ret[0] = (0x01ull << 63) - 1;
308 ret[1] = 0x00;
309 }
310 set_DSPControl_overflow_flag(1, 16 + ac, env);
311 }
312}
313
314static inline void mipsdsp_sat64_acc_sub_q63(int64_t *ret,
315 int32_t ac,
316 int64_t *a,
317 CPUMIPSState *env)
318{
319 bool temp64;
320
321 ret[0] = env->active_tc.LO[ac] - a[0];
322 ret[1] = env->active_tc.HI[ac] - a[1];
323
324 if ((uint64_t)ret[0] > (uint64_t)env->active_tc.LO[ac]) {
325 ret[1] -= 1;
326 }
327 temp64 = ret[1] & 1;
328 if (temp64 != ((ret[0] >> 63) & 0x01)) {
329 if (temp64) {
330 ret[0] = (0x01ull << 63);
331 ret[1] = ~0ull;
332 } else {
333 ret[0] = (0x01ull << 63) - 1;
334 ret[1] = 0x00;
335 }
336 set_DSPControl_overflow_flag(1, 16 + ac, env);
337 }
338}
339
340static inline int32_t mipsdsp_mul_i16_i16(int16_t a, int16_t b,
341 CPUMIPSState *env)
342{
343 int32_t temp;
344
345 temp = (int32_t)a * (int32_t)b;
346
347 if ((temp > (int)0x7FFF) || (temp < (int)0xFFFF8000)) {
348 set_DSPControl_overflow_flag(1, 21, env);
349 }
350 temp &= 0x0000FFFF;
351
352 return temp;
353}
354
355static inline int32_t mipsdsp_mul_u16_u16(int32_t a, int32_t b)
356{
357 return a * b;
358}
359
360static inline int32_t mipsdsp_mul_i32_i32(int32_t a, int32_t b)
361{
362 return a * b;
363}
364
365static inline int32_t mipsdsp_sat16_mul_i16_i16(int16_t a, int16_t b,
366 CPUMIPSState *env)
367{
368 int32_t temp;
369
370 temp = (int32_t)a * (int32_t)b;
371
372 if (temp > (int)0x7FFF) {
373 temp = 0x00007FFF;
374 set_DSPControl_overflow_flag(1, 21, env);
375 } else if (temp < (int)0xffff8000) {
376 temp = 0xFFFF8000;
377 set_DSPControl_overflow_flag(1, 21, env);
378 }
379 temp &= 0x0000FFFF;
380
381 return temp;
382}
383
384static inline int32_t mipsdsp_mul_q15_q15_overflowflag21(uint16_t a, uint16_t b,
385 CPUMIPSState *env)
386{
387 int32_t temp;
388
389 if ((a == 0x8000) && (b == 0x8000)) {
390 temp = 0x7FFFFFFF;
391 set_DSPControl_overflow_flag(1, 21, env);
392 } else {
393 temp = ((int32_t)(int16_t)a * (int32_t)(int16_t)b) << 1;
394 }
395
396 return temp;
397}
398
399/* right shift */
400static inline uint8_t mipsdsp_rshift_u8(uint8_t a, target_ulong mov)
401{
402 return a >> mov;
403}
404
405static inline uint16_t mipsdsp_rshift_u16(uint16_t a, target_ulong mov)
406{
407 return a >> mov;
408}
409
410static inline int8_t mipsdsp_rashift8(int8_t a, target_ulong mov)
411{
412 return a >> mov;
413}
414
415static inline int16_t mipsdsp_rashift16(int16_t a, target_ulong mov)
416{
417 return a >> mov;
418}
419
420static inline int32_t mipsdsp_rashift32(int32_t a, target_ulong mov)
421{
422 return a >> mov;
423}
424
425static inline int16_t mipsdsp_rshift1_add_q16(int16_t a, int16_t b)
426{
427 int32_t temp;
428
429 temp = (int32_t)a + (int32_t)b;
430
431 return (temp >> 1) & 0xFFFF;
432}
433
434/* round right shift */
435static inline int16_t mipsdsp_rrshift1_add_q16(int16_t a, int16_t b)
436{
437 int32_t temp;
438
439 temp = (int32_t)a + (int32_t)b;
440 temp += 1;
441
442 return (temp >> 1) & 0xFFFF;
443}
444
445static inline int32_t mipsdsp_rshift1_add_q32(int32_t a, int32_t b)
446{
447 int64_t temp;
448
449 temp = (int64_t)a + (int64_t)b;
450
451 return (temp >> 1) & 0xFFFFFFFF;
452}
453
454static inline int32_t mipsdsp_rrshift1_add_q32(int32_t a, int32_t b)
455{
456 int64_t temp;
457
458 temp = (int64_t)a + (int64_t)b;
459 temp += 1;
460
461 return (temp >> 1) & 0xFFFFFFFF;
462}
463
464static inline uint8_t mipsdsp_rshift1_add_u8(uint8_t a, uint8_t b)
465{
466 uint16_t temp;
467
468 temp = (uint16_t)a + (uint16_t)b;
469
470 return (temp >> 1) & 0x00FF;
471}
472
473static inline uint8_t mipsdsp_rrshift1_add_u8(uint8_t a, uint8_t b)
474{
475 uint16_t temp;
476
477 temp = (uint16_t)a + (uint16_t)b + 1;
478
479 return (temp >> 1) & 0x00FF;
480}
481
482static inline uint8_t mipsdsp_rshift1_sub_u8(uint8_t a, uint8_t b)
483{
484 uint16_t temp;
485
486 temp = (uint16_t)a - (uint16_t)b;
487
488 return (temp >> 1) & 0x00FF;
489}
490
491static inline uint8_t mipsdsp_rrshift1_sub_u8(uint8_t a, uint8_t b)
492{
493 uint16_t temp;
494
495 temp = (uint16_t)a - (uint16_t)b + 1;
496
497 return (temp >> 1) & 0x00FF;
498}
499
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500/* 128 bits long. p[0] is LO, p[1] is HI. */
501static inline void mipsdsp_rndrashift_short_acc(int64_t *p,
502 int32_t ac,
503 int32_t shift,
504 CPUMIPSState *env)
505{
506 int64_t acc;
507
508 acc = ((int64_t)env->active_tc.HI[ac] << 32) |
509 ((int64_t)env->active_tc.LO[ac] & 0xFFFFFFFF);
8b758d05
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510 p[0] = (shift == 0) ? (acc << 1) : (acc >> (shift - 1));
511 p[1] = (acc >> 63) & 0x01;
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512}
513
514/* 128 bits long. p[0] is LO, p[1] is HI */
515static inline void mipsdsp_rashift_acc(uint64_t *p,
516 uint32_t ac,
517 uint32_t shift,
518 CPUMIPSState *env)
519{
520 uint64_t tempB, tempA;
521
522 tempB = env->active_tc.HI[ac];
523 tempA = env->active_tc.LO[ac];
524 shift = shift & 0x1F;
525
526 if (shift == 0) {
527 p[1] = tempB;
528 p[0] = tempA;
529 } else {
530 p[0] = (tempB << (64 - shift)) | (tempA >> shift);
531 p[1] = (int64_t)tempB >> shift;
532 }
533}
534
535/* 128 bits long. p[0] is LO, p[1] is HI , p[2] is sign of HI.*/
536static inline void mipsdsp_rndrashift_acc(uint64_t *p,
537 uint32_t ac,
538 uint32_t shift,
539 CPUMIPSState *env)
540{
541 int64_t tempB, tempA;
542
543 tempB = env->active_tc.HI[ac];
544 tempA = env->active_tc.LO[ac];
545 shift = shift & 0x3F;
546
547 if (shift == 0) {
548 p[2] = tempB >> 63;
549 p[1] = (tempB << 1) | (tempA >> 63);
550 p[0] = tempA << 1;
551 } else {
552 p[0] = (tempB << (65 - shift)) | (tempA >> (shift - 1));
553 p[1] = (int64_t)tempB >> (shift - 1);
554 if (tempB >= 0) {
555 p[2] = 0x0;
556 } else {
557 p[2] = ~0ull;
558 }
559 }
560}
561
562static inline int32_t mipsdsp_mul_q15_q15(int32_t ac, uint16_t a, uint16_t b,
563 CPUMIPSState *env)
564{
565 int32_t temp;
566
567 if ((a == 0x8000) && (b == 0x8000)) {
568 temp = 0x7FFFFFFF;
569 set_DSPControl_overflow_flag(1, 16 + ac, env);
570 } else {
b1ca31d7 571 temp = ((int16_t)a * (int16_t)b) << 1;
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572 }
573
574 return temp;
575}
576
577static inline int64_t mipsdsp_mul_q31_q31(int32_t ac, uint32_t a, uint32_t b,
578 CPUMIPSState *env)
579{
580 uint64_t temp;
581
582 if ((a == 0x80000000) && (b == 0x80000000)) {
583 temp = (0x01ull << 63) - 1;
584 set_DSPControl_overflow_flag(1, 16 + ac, env);
585 } else {
586 temp = ((uint64_t)a * (uint64_t)b) << 1;
587 }
588
589 return temp;
590}
591
592static inline uint16_t mipsdsp_mul_u8_u8(uint8_t a, uint8_t b)
593{
594 return (uint16_t)a * (uint16_t)b;
595}
596
597static inline uint16_t mipsdsp_mul_u8_u16(uint8_t a, uint16_t b,
598 CPUMIPSState *env)
599{
600 uint32_t tempI;
601
602 tempI = (uint32_t)a * (uint32_t)b;
603 if (tempI > 0x0000FFFF) {
604 tempI = 0x0000FFFF;
605 set_DSPControl_overflow_flag(1, 21, env);
606 }
607
608 return tempI & 0x0000FFFF;
609}
610
611static inline uint64_t mipsdsp_mul_u32_u32(uint32_t a, uint32_t b)
612{
613 return (uint64_t)a * (uint64_t)b;
614}
615
616static inline int16_t mipsdsp_rndq15_mul_q15_q15(uint16_t a, uint16_t b,
617 CPUMIPSState *env)
618{
619 uint32_t temp;
620
621 if ((a == 0x8000) && (b == 0x8000)) {
622 temp = 0x7FFF0000;
623 set_DSPControl_overflow_flag(1, 21, env);
624 } else {
625 temp = (a * b) << 1;
626 temp = temp + 0x00008000;
627 }
628
629 return (temp & 0xFFFF0000) >> 16;
630}
631
632static inline int32_t mipsdsp_sat16_mul_q15_q15(uint16_t a, uint16_t b,
633 CPUMIPSState *env)
634{
635 int32_t temp;
636
637 if ((a == 0x8000) && (b == 0x8000)) {
638 temp = 0x7FFF0000;
639 set_DSPControl_overflow_flag(1, 21, env);
640 } else {
9c19eb1e 641 temp = (int16_t)a * (int16_t)b;
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642 temp = temp << 1;
643 }
644
645 return (temp >> 16) & 0x0000FFFF;
646}
647
648static inline uint16_t mipsdsp_trunc16_sat16_round(int32_t a,
649 CPUMIPSState *env)
650{
651 int64_t temp;
652
653 temp = (int32_t)a + 0x00008000;
654
655 if (a > (int)0x7fff8000) {
656 temp = 0x7FFFFFFF;
657 set_DSPControl_overflow_flag(1, 22, env);
658 }
659
660 return (temp >> 16) & 0xFFFF;
661}
662
663static inline uint8_t mipsdsp_sat8_reduce_precision(uint16_t a,
664 CPUMIPSState *env)
665{
666 uint16_t mag;
667 uint32_t sign;
668
669 sign = (a >> 15) & 0x01;
670 mag = a & 0x7FFF;
671
672 if (sign == 0) {
673 if (mag > 0x7F80) {
674 set_DSPControl_overflow_flag(1, 22, env);
675 return 0xFF;
676 } else {
677 return (mag >> 7) & 0xFFFF;
678 }
679 } else {
680 set_DSPControl_overflow_flag(1, 22, env);
681 return 0x00;
682 }
683}
684
685static inline uint8_t mipsdsp_lshift8(uint8_t a, uint8_t s, CPUMIPSState *env)
686{
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687 uint8_t discard;
688
29851ee7
PJ
689 if (s != 0) {
690 discard = a >> (8 - s);
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691
692 if (discard != 0x00) {
693 set_DSPControl_overflow_flag(1, 22, env);
694 }
235eb015 695 }
29851ee7 696 return a << s;
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697}
698
699static inline uint16_t mipsdsp_lshift16(uint16_t a, uint8_t s,
700 CPUMIPSState *env)
701{
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702 uint16_t discard;
703
29851ee7
PJ
704 if (s != 0) {
705 discard = (int16_t)a >> (15 - s);
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JL
706
707 if ((discard != 0x0000) && (discard != 0xFFFF)) {
708 set_DSPControl_overflow_flag(1, 22, env);
709 }
235eb015 710 }
29851ee7 711 return a << s;
235eb015
JL
712}
713
714
715static inline uint32_t mipsdsp_lshift32(uint32_t a, uint8_t s,
716 CPUMIPSState *env)
717{
718 uint32_t discard;
719
720 if (s == 0) {
721 return a;
722 } else {
723 discard = (int32_t)a >> (31 - (s - 1));
724
725 if ((discard != 0x00000000) && (discard != 0xFFFFFFFF)) {
726 set_DSPControl_overflow_flag(1, 22, env);
727 }
728 return a << s;
729 }
730}
731
732static inline uint16_t mipsdsp_sat16_lshift(uint16_t a, uint8_t s,
733 CPUMIPSState *env)
734{
735 uint8_t sign;
736 uint16_t discard;
737
738 if (s == 0) {
739 return a;
740 } else {
741 sign = (a >> 15) & 0x01;
742 if (sign != 0) {
743 discard = (((0x01 << (16 - s)) - 1) << s) |
744 ((a >> (14 - (s - 1))) & ((0x01 << s) - 1));
745 } else {
746 discard = a >> (14 - (s - 1));
747 }
748
749 if ((discard != 0x0000) && (discard != 0xFFFF)) {
750 set_DSPControl_overflow_flag(1, 22, env);
751 return (sign == 0) ? 0x7FFF : 0x8000;
752 } else {
753 return a << s;
754 }
755 }
756}
757
758static inline uint32_t mipsdsp_sat32_lshift(uint32_t a, uint8_t s,
759 CPUMIPSState *env)
760{
761 uint8_t sign;
762 uint32_t discard;
763
764 if (s == 0) {
765 return a;
766 } else {
767 sign = (a >> 31) & 0x01;
768 if (sign != 0) {
769 discard = (((0x01 << (32 - s)) - 1) << s) |
770 ((a >> (30 - (s - 1))) & ((0x01 << s) - 1));
771 } else {
772 discard = a >> (30 - (s - 1));
773 }
774
775 if ((discard != 0x00000000) && (discard != 0xFFFFFFFF)) {
776 set_DSPControl_overflow_flag(1, 22, env);
777 return (sign == 0) ? 0x7FFFFFFF : 0x80000000;
778 } else {
779 return a << s;
780 }
781 }
782}
783
784static inline uint8_t mipsdsp_rnd8_rashift(uint8_t a, uint8_t s)
785{
786 uint32_t temp;
787
788 if (s == 0) {
789 temp = (uint32_t)a << 1;
790 } else {
791 temp = (int32_t)(int8_t)a >> (s - 1);
792 }
793
794 return (temp + 1) >> 1;
795}
796
797static inline uint16_t mipsdsp_rnd16_rashift(uint16_t a, uint8_t s)
798{
799 uint32_t temp;
800
801 if (s == 0) {
802 temp = (uint32_t)a << 1;
803 } else {
804 temp = (int32_t)(int16_t)a >> (s - 1);
805 }
806
807 return (temp + 1) >> 1;
808}
809
810static inline uint32_t mipsdsp_rnd32_rashift(uint32_t a, uint8_t s)
811{
812 int64_t temp;
813
814 if (s == 0) {
815 temp = (uint64_t)a << 1;
816 } else {
817 temp = (int64_t)(int32_t)a >> (s - 1);
818 }
819 temp += 1;
820
821 return (temp >> 1) & 0xFFFFFFFFull;
822}
823
824static inline uint16_t mipsdsp_sub_i16(int16_t a, int16_t b, CPUMIPSState *env)
825{
826 int16_t temp;
827
828 temp = a - b;
20c334a7 829 if (MIPSDSP_OVERFLOW_SUB(a, b, temp, 0x8000)) {
235eb015
JL
830 set_DSPControl_overflow_flag(1, 20, env);
831 }
832
833 return temp;
834}
835
836static inline uint16_t mipsdsp_sat16_sub(int16_t a, int16_t b,
837 CPUMIPSState *env)
838{
839 int16_t temp;
840
841 temp = a - b;
20c334a7
PJ
842 if (MIPSDSP_OVERFLOW_SUB(a, b, temp, 0x8000)) {
843 if (a >= 0) {
235eb015
JL
844 temp = 0x7FFF;
845 } else {
846 temp = 0x8000;
847 }
848 set_DSPControl_overflow_flag(1, 20, env);
849 }
850
851 return temp;
852}
853
854static inline uint32_t mipsdsp_sat32_sub(int32_t a, int32_t b,
855 CPUMIPSState *env)
856{
857 int32_t temp;
858
859 temp = a - b;
20c334a7
PJ
860 if (MIPSDSP_OVERFLOW_SUB(a, b, temp, 0x80000000)) {
861 if (a >= 0) {
235eb015
JL
862 temp = 0x7FFFFFFF;
863 } else {
864 temp = 0x80000000;
865 }
866 set_DSPControl_overflow_flag(1, 20, env);
867 }
868
869 return temp & 0xFFFFFFFFull;
870}
871
872static inline uint16_t mipsdsp_rshift1_sub_q16(int16_t a, int16_t b)
873{
874 int32_t temp;
875
876 temp = (int32_t)a - (int32_t)b;
877
878 return (temp >> 1) & 0x0000FFFF;
879}
880
881static inline uint16_t mipsdsp_rrshift1_sub_q16(int16_t a, int16_t b)
882{
883 int32_t temp;
884
885 temp = (int32_t)a - (int32_t)b;
886 temp += 1;
887
888 return (temp >> 1) & 0x0000FFFF;
889}
890
891static inline uint32_t mipsdsp_rshift1_sub_q32(int32_t a, int32_t b)
892{
893 int64_t temp;
894
895 temp = (int64_t)a - (int64_t)b;
896
897 return (temp >> 1) & 0xFFFFFFFFull;
898}
899
900static inline uint32_t mipsdsp_rrshift1_sub_q32(int32_t a, int32_t b)
901{
902 int64_t temp;
903
904 temp = (int64_t)a - (int64_t)b;
905 temp += 1;
906
907 return (temp >> 1) & 0xFFFFFFFFull;
908}
909
910static inline uint16_t mipsdsp_sub_u16_u16(uint16_t a, uint16_t b,
911 CPUMIPSState *env)
912{
913 uint8_t temp16;
914 uint32_t temp;
915
916 temp = (uint32_t)a - (uint32_t)b;
917 temp16 = (temp >> 16) & 0x01;
918 if (temp16 == 1) {
919 set_DSPControl_overflow_flag(1, 20, env);
920 }
921 return temp & 0x0000FFFF;
922}
923
924static inline uint16_t mipsdsp_satu16_sub_u16_u16(uint16_t a, uint16_t b,
925 CPUMIPSState *env)
926{
927 uint8_t temp16;
928 uint32_t temp;
929
930 temp = (uint32_t)a - (uint32_t)b;
931 temp16 = (temp >> 16) & 0x01;
932
933 if (temp16 == 1) {
934 temp = 0x0000;
935 set_DSPControl_overflow_flag(1, 20, env);
936 }
937
938 return temp & 0x0000FFFF;
939}
940
941static inline uint8_t mipsdsp_sub_u8(uint8_t a, uint8_t b, CPUMIPSState *env)
942{
943 uint8_t temp8;
944 uint16_t temp;
945
946 temp = (uint16_t)a - (uint16_t)b;
947 temp8 = (temp >> 8) & 0x01;
948 if (temp8 == 1) {
949 set_DSPControl_overflow_flag(1, 20, env);
950 }
951
952 return temp & 0x00FF;
953}
954
955static inline uint8_t mipsdsp_satu8_sub(uint8_t a, uint8_t b, CPUMIPSState *env)
956{
957 uint8_t temp8;
958 uint16_t temp;
959
960 temp = (uint16_t)a - (uint16_t)b;
961 temp8 = (temp >> 8) & 0x01;
962 if (temp8 == 1) {
963 temp = 0x00;
964 set_DSPControl_overflow_flag(1, 20, env);
965 }
966
967 return temp & 0x00FF;
968}
969
970static inline uint32_t mipsdsp_sub32(int32_t a, int32_t b, CPUMIPSState *env)
971{
972 int32_t temp;
973
974 temp = a - b;
20c334a7 975 if (MIPSDSP_OVERFLOW_SUB(a, b, temp, 0x80000000)) {
235eb015
JL
976 set_DSPControl_overflow_flag(1, 20, env);
977 }
978
979 return temp;
980}
981
982static inline int32_t mipsdsp_add_i32(int32_t a, int32_t b, CPUMIPSState *env)
983{
984 int32_t temp;
985
986 temp = a + b;
987
20c334a7 988 if (MIPSDSP_OVERFLOW_ADD(a, b, temp, 0x80000000)) {
235eb015
JL
989 set_DSPControl_overflow_flag(1, 20, env);
990 }
991
992 return temp;
993}
994
995static inline int32_t mipsdsp_cmp_eq(int32_t a, int32_t b)
996{
997 return a == b;
998}
999
1000static inline int32_t mipsdsp_cmp_le(int32_t a, int32_t b)
1001{
1002 return a <= b;
1003}
1004
1005static inline int32_t mipsdsp_cmp_lt(int32_t a, int32_t b)
1006{
1007 return a < b;
1008}
1009
1010static inline int32_t mipsdsp_cmpu_eq(uint32_t a, uint32_t b)
1011{
1012 return a == b;
1013}
1014
1015static inline int32_t mipsdsp_cmpu_le(uint32_t a, uint32_t b)
1016{
1017 return a <= b;
1018}
1019
1020static inline int32_t mipsdsp_cmpu_lt(uint32_t a, uint32_t b)
1021{
1022 return a < b;
1023}
1024/*** MIPS DSP internal functions end ***/
461c08df
JL
1025
1026#define MIPSDSP_LHI 0xFFFFFFFF00000000ull
1027#define MIPSDSP_LLO 0x00000000FFFFFFFFull
1028#define MIPSDSP_HI 0xFFFF0000
1029#define MIPSDSP_LO 0x0000FFFF
1030#define MIPSDSP_Q3 0xFF000000
1031#define MIPSDSP_Q2 0x00FF0000
1032#define MIPSDSP_Q1 0x0000FF00
1033#define MIPSDSP_Q0 0x000000FF
1034
1035#define MIPSDSP_SPLIT32_8(num, a, b, c, d) \
1036 do { \
1037 a = (num >> 24) & MIPSDSP_Q0; \
1038 b = (num >> 16) & MIPSDSP_Q0; \
1039 c = (num >> 8) & MIPSDSP_Q0; \
1040 d = num & MIPSDSP_Q0; \
1041 } while (0)
1042
1043#define MIPSDSP_SPLIT32_16(num, a, b) \
1044 do { \
1045 a = (num >> 16) & MIPSDSP_LO; \
1046 b = num & MIPSDSP_LO; \
1047 } while (0)
1048
461c08df
JL
1049#define MIPSDSP_RETURN32_8(a, b, c, d) ((target_long)(int32_t) \
1050 (((uint32_t)a << 24) | \
1051 (((uint32_t)b << 16) | \
1052 (((uint32_t)c << 8) | \
1053 ((uint32_t)d & 0xFF)))))
1054#define MIPSDSP_RETURN32_16(a, b) ((target_long)(int32_t) \
1055 (((uint32_t)a << 16) | \
1056 ((uint32_t)b & 0xFFFF)))
1057
1058#ifdef TARGET_MIPS64
1059#define MIPSDSP_SPLIT64_16(num, a, b, c, d) \
1060 do { \
1061 a = (num >> 48) & MIPSDSP_LO; \
1062 b = (num >> 32) & MIPSDSP_LO; \
1063 c = (num >> 16) & MIPSDSP_LO; \
1064 d = num & MIPSDSP_LO; \
1065 } while (0)
1066
1067#define MIPSDSP_SPLIT64_32(num, a, b) \
1068 do { \
1069 a = (num >> 32) & MIPSDSP_LLO; \
1070 b = num & MIPSDSP_LLO; \
1071 } while (0)
1072
1073#define MIPSDSP_RETURN64_16(a, b, c, d) (((uint64_t)a << 48) | \
1074 ((uint64_t)b << 32) | \
1075 ((uint64_t)c << 16) | \
1076 (uint64_t)d)
1077#define MIPSDSP_RETURN64_32(a, b) (((uint64_t)a << 32) | (uint64_t)b)
1078#endif
1079
1080/** DSP Arithmetic Sub-class insns **/
75d012ac
AJ
1081#define MIPSDSP32_UNOP_ENV(name, func, element) \
1082target_ulong helper_##name(target_ulong rt, CPUMIPSState *env) \
1083{ \
1084 DSP32Value dt; \
1085 unsigned int i, n; \
1086 \
1087 n = sizeof(DSP32Value) / sizeof(dt.element[0]); \
1088 dt.sw[0] = rt; \
1089 \
1090 for (i = 0; i < n; i++) { \
1091 dt.element[i] = mipsdsp_##func(dt.element[i], env); \
1092 } \
1093 \
1094 return (target_long)dt.sw[0]; \
1095}
1096MIPSDSP32_UNOP_ENV(absq_s_ph, sat_abs16, sh)
1097MIPSDSP32_UNOP_ENV(absq_s_qb, sat_abs8, sb)
1098MIPSDSP32_UNOP_ENV(absq_s_w, sat_abs32, sw)
1099#undef MIPSDSP32_UNOP_ENV
1100
1101#if defined(TARGET_MIPS64)
1102#define MIPSDSP64_UNOP_ENV(name, func, element) \
1103target_ulong helper_##name(target_ulong rt, CPUMIPSState *env) \
1104{ \
1105 DSP64Value dt; \
1106 unsigned int i, n; \
1107 \
1108 n = sizeof(DSP64Value) / sizeof(dt.element[0]); \
1109 dt.sl[0] = rt; \
1110 \
1111 for (i = 0; i < n; i++) { \
1112 dt.element[i] = mipsdsp_##func(dt.element[i], env); \
1113 } \
1114 \
1115 return dt.sl[0]; \
1116}
1117MIPSDSP64_UNOP_ENV(absq_s_ob, sat_abs8, sb)
1118MIPSDSP64_UNOP_ENV(absq_s_qh, sat_abs16, sh)
1119MIPSDSP64_UNOP_ENV(absq_s_pw, sat_abs32, sw)
1120#undef MIPSDSP64_UNOP_ENV
1121#endif
1122
6de0e6c1
AJ
1123#define MIPSDSP32_BINOP(name, func, element) \
1124target_ulong helper_##name(target_ulong rs, target_ulong rt) \
1125{ \
1126 DSP32Value ds, dt; \
1127 unsigned int i, n; \
1128 \
1129 n = sizeof(DSP32Value) / sizeof(ds.element[0]); \
1130 ds.sw[0] = rs; \
1131 dt.sw[0] = rt; \
1132 \
1133 for (i = 0; i < n; i++) { \
1134 ds.element[i] = mipsdsp_##func(ds.element[i], dt.element[i]); \
1135 } \
1136 \
1137 return (target_long)ds.sw[0]; \
1138}
1139MIPSDSP32_BINOP(addqh_ph, rshift1_add_q16, sh);
1140MIPSDSP32_BINOP(addqh_r_ph, rrshift1_add_q16, sh);
1141MIPSDSP32_BINOP(addqh_r_w, rrshift1_add_q32, sw);
1142MIPSDSP32_BINOP(addqh_w, rshift1_add_q32, sw);
1143MIPSDSP32_BINOP(adduh_qb, rshift1_add_u8, ub);
1144MIPSDSP32_BINOP(adduh_r_qb, rrshift1_add_u8, ub);
1145MIPSDSP32_BINOP(subqh_ph, rshift1_sub_q16, sh);
1146MIPSDSP32_BINOP(subqh_r_ph, rrshift1_sub_q16, sh);
1147MIPSDSP32_BINOP(subqh_r_w, rrshift1_sub_q32, sw);
1148MIPSDSP32_BINOP(subqh_w, rshift1_sub_q32, sw);
1149#undef MIPSDSP32_BINOP
1150
1151#define MIPSDSP32_BINOP_ENV(name, func, element) \
1152target_ulong helper_##name(target_ulong rs, target_ulong rt, \
1153 CPUMIPSState *env) \
1154{ \
1155 DSP32Value ds, dt; \
1156 unsigned int i, n; \
1157 \
1158 n = sizeof(DSP32Value) / sizeof(ds.element[0]); \
1159 ds.sw[0] = rs; \
1160 dt.sw[0] = rt; \
1161 \
1162 for (i = 0 ; i < n ; i++) { \
1163 ds.element[i] = mipsdsp_##func(ds.element[i], dt.element[i], env); \
1164 } \
1165 \
1166 return (target_long)ds.sw[0]; \
1167}
1168MIPSDSP32_BINOP_ENV(addq_ph, add_i16, sh)
1169MIPSDSP32_BINOP_ENV(addq_s_ph, sat_add_i16, sh)
1170MIPSDSP32_BINOP_ENV(addq_s_w, sat_add_i32, sw);
1171MIPSDSP32_BINOP_ENV(addu_ph, add_u16, sh)
1172MIPSDSP32_BINOP_ENV(addu_qb, add_u8, ub);
1173MIPSDSP32_BINOP_ENV(addu_s_ph, sat_add_u16, sh)
1174MIPSDSP32_BINOP_ENV(addu_s_qb, sat_add_u8, ub);
1175MIPSDSP32_BINOP_ENV(subq_ph, sub_i16, sh);
1176MIPSDSP32_BINOP_ENV(subq_s_ph, sat16_sub, sh);
1177MIPSDSP32_BINOP_ENV(subq_s_w, sat32_sub, sw);
1178MIPSDSP32_BINOP_ENV(subu_ph, sub_u16_u16, sh);
1179MIPSDSP32_BINOP_ENV(subu_qb, sub_u8, ub);
1180MIPSDSP32_BINOP_ENV(subu_s_ph, satu16_sub_u16_u16, sh);
1181MIPSDSP32_BINOP_ENV(subu_s_qb, satu8_sub, ub);
1182#undef MIPSDSP32_BINOP_ENV
461c08df
JL
1183
1184#ifdef TARGET_MIPS64
6de0e6c1
AJ
1185#define MIPSDSP64_BINOP(name, func, element) \
1186target_ulong helper_##name(target_ulong rs, target_ulong rt) \
1187{ \
1188 DSP64Value ds, dt; \
1189 unsigned int i, n; \
1190 \
1191 n = sizeof(DSP64Value) / sizeof(ds.element[0]); \
1192 ds.sl[0] = rs; \
1193 dt.sl[0] = rt; \
1194 \
1195 for (i = 0 ; i < n ; i++) { \
1196 ds.element[i] = mipsdsp_##func(ds.element[i], dt.element[i]); \
1197 } \
1198 \
1199 return ds.sl[0]; \
1200}
1201MIPSDSP64_BINOP(adduh_ob, rshift1_add_u8, ub);
1202MIPSDSP64_BINOP(adduh_r_ob, rrshift1_add_u8, ub);
1203MIPSDSP64_BINOP(subuh_ob, rshift1_sub_u8, ub);
1204MIPSDSP64_BINOP(subuh_r_ob, rrshift1_sub_u8, ub);
1205#undef MIPSDSP64_BINOP
1206
1207#define MIPSDSP64_BINOP_ENV(name, func, element) \
1208target_ulong helper_##name(target_ulong rs, target_ulong rt, \
1209 CPUMIPSState *env) \
1210{ \
1211 DSP64Value ds, dt; \
1212 unsigned int i, n; \
1213 \
1214 n = sizeof(DSP64Value) / sizeof(ds.element[0]); \
1215 ds.sl[0] = rs; \
1216 dt.sl[0] = rt; \
1217 \
1218 for (i = 0 ; i < n ; i++) { \
1219 ds.element[i] = mipsdsp_##func(ds.element[i], dt.element[i], env); \
1220 } \
1221 \
1222 return ds.sl[0]; \
1223}
1224MIPSDSP64_BINOP_ENV(addq_pw, add_i32, sw);
1225MIPSDSP64_BINOP_ENV(addq_qh, add_i16, sh);
1226MIPSDSP64_BINOP_ENV(addq_s_pw, sat_add_i32, sw);
1227MIPSDSP64_BINOP_ENV(addq_s_qh, sat_add_i16, sh);
1228MIPSDSP64_BINOP_ENV(addu_ob, add_u8, uh);
1229MIPSDSP64_BINOP_ENV(addu_qh, add_u16, uh);
1230MIPSDSP64_BINOP_ENV(addu_s_ob, sat_add_u8, uh);
1231MIPSDSP64_BINOP_ENV(addu_s_qh, sat_add_u16, uh);
1232MIPSDSP64_BINOP_ENV(subq_pw, sub32, sw);
1233MIPSDSP64_BINOP_ENV(subq_qh, sub_i16, sh);
1234MIPSDSP64_BINOP_ENV(subq_s_pw, sat32_sub, sw);
1235MIPSDSP64_BINOP_ENV(subq_s_qh, sat16_sub, sh);
1236MIPSDSP64_BINOP_ENV(subu_ob, sub_u8, uh);
1237MIPSDSP64_BINOP_ENV(subu_qh, sub_u16_u16, uh);
1238MIPSDSP64_BINOP_ENV(subu_s_ob, satu8_sub, uh);
1239MIPSDSP64_BINOP_ENV(subu_s_qh, satu16_sub_u16_u16, uh);
1240#undef MIPSDSP64_BINOP_ENV
461c08df
JL
1241
1242#endif
1243
461c08df
JL
1244#define SUBUH_QB(name, var) \
1245target_ulong helper_##name##_qb(target_ulong rs, target_ulong rt) \
1246{ \
1247 uint8_t rs3, rs2, rs1, rs0; \
1248 uint8_t rt3, rt2, rt1, rt0; \
1249 uint8_t tempD, tempC, tempB, tempA; \
1250 \
1251 MIPSDSP_SPLIT32_8(rs, rs3, rs2, rs1, rs0); \
1252 MIPSDSP_SPLIT32_8(rt, rt3, rt2, rt1, rt0); \
1253 \
1254 tempD = ((uint16_t)rs3 - (uint16_t)rt3 + var) >> 1; \
1255 tempC = ((uint16_t)rs2 - (uint16_t)rt2 + var) >> 1; \
1256 tempB = ((uint16_t)rs1 - (uint16_t)rt1 + var) >> 1; \
1257 tempA = ((uint16_t)rs0 - (uint16_t)rt0 + var) >> 1; \
1258 \
1259 return ((uint32_t)tempD << 24) | ((uint32_t)tempC << 16) | \
1260 ((uint32_t)tempB << 8) | ((uint32_t)tempA); \
1261}
1262
1263SUBUH_QB(subuh, 0);
1264SUBUH_QB(subuh_r, 1);
1265
1266#undef SUBUH_QB
1267
1268target_ulong helper_addsc(target_ulong rs, target_ulong rt, CPUMIPSState *env)
1269{
1270 uint64_t temp, tempRs, tempRt;
118d1e4f 1271 bool flag;
461c08df
JL
1272
1273 tempRs = (uint64_t)rs & MIPSDSP_LLO;
1274 tempRt = (uint64_t)rt & MIPSDSP_LLO;
1275
1276 temp = tempRs + tempRt;
1277 flag = (temp & 0x0100000000ull) >> 32;
1278 set_DSPControl_carryflag(flag, env);
1279
1280 return (target_long)(int32_t)(temp & MIPSDSP_LLO);
1281}
1282
1283target_ulong helper_addwc(target_ulong rs, target_ulong rt, CPUMIPSState *env)
1284{
1285 uint32_t rd;
1286 int32_t temp32, temp31;
1287 int64_t tempL;
1288
1289 tempL = (int64_t)(int32_t)rs + (int64_t)(int32_t)rt +
1290 get_DSPControl_carryflag(env);
1291 temp31 = (tempL >> 31) & 0x01;
1292 temp32 = (tempL >> 32) & 0x01;
1293
1294 if (temp31 != temp32) {
1295 set_DSPControl_overflow_flag(1, 20, env);
1296 }
1297
1298 rd = tempL & MIPSDSP_LLO;
1299
1300 return (target_long)(int32_t)rd;
1301}
1302
1303target_ulong helper_modsub(target_ulong rs, target_ulong rt)
1304{
1305 int32_t decr;
1306 uint16_t lastindex;
1307 target_ulong rd;
1308
1309 decr = rt & MIPSDSP_Q0;
1310 lastindex = (rt >> 8) & MIPSDSP_LO;
1311
1312 if ((rs & MIPSDSP_LLO) == 0x00000000) {
1313 rd = (target_ulong)lastindex;
1314 } else {
1315 rd = rs - decr;
1316 }
1317
1318 return rd;
1319}
1320
1321target_ulong helper_raddu_w_qb(target_ulong rs)
1322{
0a16c79c
AJ
1323 target_ulong ret = 0;
1324 DSP32Value ds;
1325 unsigned int i;
461c08df 1326
0a16c79c
AJ
1327 ds.uw[0] = rs;
1328 for (i = 0; i < 4; i++) {
1329 ret += ds.ub[i];
1330 }
1331 return ret;
461c08df
JL
1332}
1333
1334#if defined(TARGET_MIPS64)
1335target_ulong helper_raddu_l_ob(target_ulong rs)
1336{
0a16c79c
AJ
1337 target_ulong ret = 0;
1338 DSP64Value ds;
1339 unsigned int i;
461c08df 1340
0a16c79c 1341 ds.ul[0] = rs;
461c08df 1342 for (i = 0; i < 8; i++) {
0a16c79c 1343 ret += ds.ub[i];
461c08df 1344 }
0a16c79c 1345 return ret;
461c08df
JL
1346}
1347#endif
1348
461c08df
JL
1349#define PRECR_QB_PH(name, a, b)\
1350target_ulong helper_##name##_qb_ph(target_ulong rs, target_ulong rt) \
1351{ \
1352 uint8_t tempD, tempC, tempB, tempA; \
1353 \
1354 tempD = (rs >> a) & MIPSDSP_Q0; \
1355 tempC = (rs >> b) & MIPSDSP_Q0; \
1356 tempB = (rt >> a) & MIPSDSP_Q0; \
1357 tempA = (rt >> b) & MIPSDSP_Q0; \
1358 \
1359 return MIPSDSP_RETURN32_8(tempD, tempC, tempB, tempA); \
1360}
1361
1362PRECR_QB_PH(precr, 16, 0);
1363PRECR_QB_PH(precrq, 24, 8);
1364
1365#undef PRECR_QB_OH
1366
1367target_ulong helper_precr_sra_ph_w(uint32_t sa, target_ulong rs,
1368 target_ulong rt)
1369{
1370 uint16_t tempB, tempA;
1371
1372 tempB = ((int32_t)rt >> sa) & MIPSDSP_LO;
1373 tempA = ((int32_t)rs >> sa) & MIPSDSP_LO;
1374
1375 return MIPSDSP_RETURN32_16(tempB, tempA);
1376}
1377
1378target_ulong helper_precr_sra_r_ph_w(uint32_t sa,
1379 target_ulong rs, target_ulong rt)
1380{
1381 uint64_t tempB, tempA;
1382
1383 /* If sa = 0, then (sa - 1) = -1 will case shift error, so we need else. */
1384 if (sa == 0) {
1385 tempB = (rt & MIPSDSP_LO) << 1;
1386 tempA = (rs & MIPSDSP_LO) << 1;
1387 } else {
1388 tempB = ((int32_t)rt >> (sa - 1)) + 1;
1389 tempA = ((int32_t)rs >> (sa - 1)) + 1;
1390 }
1391 rt = (((tempB >> 1) & MIPSDSP_LO) << 16) | ((tempA >> 1) & MIPSDSP_LO);
1392
1393 return (target_long)(int32_t)rt;
1394}
1395
1396target_ulong helper_precrq_ph_w(target_ulong rs, target_ulong rt)
1397{
1398 uint16_t tempB, tempA;
1399
1400 tempB = (rs & MIPSDSP_HI) >> 16;
1401 tempA = (rt & MIPSDSP_HI) >> 16;
1402
1403 return MIPSDSP_RETURN32_16(tempB, tempA);
1404}
1405
1406target_ulong helper_precrq_rs_ph_w(target_ulong rs, target_ulong rt,
1407 CPUMIPSState *env)
1408{
1409 uint16_t tempB, tempA;
1410
1411 tempB = mipsdsp_trunc16_sat16_round(rs, env);
1412 tempA = mipsdsp_trunc16_sat16_round(rt, env);
1413
1414 return MIPSDSP_RETURN32_16(tempB, tempA);
1415}
1416
1417#if defined(TARGET_MIPS64)
1418target_ulong helper_precr_ob_qh(target_ulong rs, target_ulong rt)
1419{
1420 uint8_t rs6, rs4, rs2, rs0;
1421 uint8_t rt6, rt4, rt2, rt0;
1422 uint64_t temp;
1423
1424 rs6 = (rs >> 48) & MIPSDSP_Q0;
1425 rs4 = (rs >> 32) & MIPSDSP_Q0;
1426 rs2 = (rs >> 16) & MIPSDSP_Q0;
1427 rs0 = rs & MIPSDSP_Q0;
1428 rt6 = (rt >> 48) & MIPSDSP_Q0;
1429 rt4 = (rt >> 32) & MIPSDSP_Q0;
1430 rt2 = (rt >> 16) & MIPSDSP_Q0;
1431 rt0 = rt & MIPSDSP_Q0;
1432
1433 temp = ((uint64_t)rs6 << 56) | ((uint64_t)rs4 << 48) |
1434 ((uint64_t)rs2 << 40) | ((uint64_t)rs0 << 32) |
1435 ((uint64_t)rt6 << 24) | ((uint64_t)rt4 << 16) |
1436 ((uint64_t)rt2 << 8) | (uint64_t)rt0;
1437
1438 return temp;
1439}
1440
1441#define PRECR_QH_PW(name, var) \
1442target_ulong helper_precr_##name##_qh_pw(target_ulong rs, target_ulong rt, \
1443 uint32_t sa) \
1444{ \
1445 uint16_t rs3, rs2, rs1, rs0; \
1446 uint16_t rt3, rt2, rt1, rt0; \
1447 uint16_t tempD, tempC, tempB, tempA; \
1448 \
1449 MIPSDSP_SPLIT64_16(rs, rs3, rs2, rs1, rs0); \
1450 MIPSDSP_SPLIT64_16(rt, rt3, rt2, rt1, rt0); \
1451 \
1452 /* When sa = 0, we use rt2, rt0, rs2, rs0; \
1453 * when sa != 0, we use rt3, rt1, rs3, rs1. */ \
1454 if (sa == 0) { \
1455 tempD = rt2 << var; \
1456 tempC = rt0 << var; \
1457 tempB = rs2 << var; \
1458 tempA = rs0 << var; \
1459 } else { \
1460 tempD = (((int16_t)rt3 >> sa) + var) >> var; \
1461 tempC = (((int16_t)rt1 >> sa) + var) >> var; \
1462 tempB = (((int16_t)rs3 >> sa) + var) >> var; \
1463 tempA = (((int16_t)rs1 >> sa) + var) >> var; \
1464 } \
1465 \
1466 return MIPSDSP_RETURN64_16(tempD, tempC, tempB, tempA); \
1467}
1468
1469PRECR_QH_PW(sra, 0);
1470PRECR_QH_PW(sra_r, 1);
1471
1472#undef PRECR_QH_PW
1473
1474target_ulong helper_precrq_ob_qh(target_ulong rs, target_ulong rt)
1475{
1476 uint8_t rs6, rs4, rs2, rs0;
1477 uint8_t rt6, rt4, rt2, rt0;
1478 uint64_t temp;
1479
1480 rs6 = (rs >> 56) & MIPSDSP_Q0;
1481 rs4 = (rs >> 40) & MIPSDSP_Q0;
1482 rs2 = (rs >> 24) & MIPSDSP_Q0;
1483 rs0 = (rs >> 8) & MIPSDSP_Q0;
1484 rt6 = (rt >> 56) & MIPSDSP_Q0;
1485 rt4 = (rt >> 40) & MIPSDSP_Q0;
1486 rt2 = (rt >> 24) & MIPSDSP_Q0;
1487 rt0 = (rt >> 8) & MIPSDSP_Q0;
1488
1489 temp = ((uint64_t)rs6 << 56) | ((uint64_t)rs4 << 48) |
1490 ((uint64_t)rs2 << 40) | ((uint64_t)rs0 << 32) |
1491 ((uint64_t)rt6 << 24) | ((uint64_t)rt4 << 16) |
1492 ((uint64_t)rt2 << 8) | (uint64_t)rt0;
1493
1494 return temp;
1495}
1496
1497target_ulong helper_precrq_qh_pw(target_ulong rs, target_ulong rt)
1498{
1499 uint16_t tempD, tempC, tempB, tempA;
1500
1501 tempD = (rs >> 48) & MIPSDSP_LO;
1502 tempC = (rs >> 16) & MIPSDSP_LO;
1503 tempB = (rt >> 48) & MIPSDSP_LO;
1504 tempA = (rt >> 16) & MIPSDSP_LO;
1505
1506 return MIPSDSP_RETURN64_16(tempD, tempC, tempB, tempA);
1507}
1508
1509target_ulong helper_precrq_rs_qh_pw(target_ulong rs, target_ulong rt,
1510 CPUMIPSState *env)
1511{
1512 uint32_t rs2, rs0;
1513 uint32_t rt2, rt0;
1514 uint16_t tempD, tempC, tempB, tempA;
1515
1516 rs2 = (rs >> 32) & MIPSDSP_LLO;
1517 rs0 = rs & MIPSDSP_LLO;
1518 rt2 = (rt >> 32) & MIPSDSP_LLO;
1519 rt0 = rt & MIPSDSP_LLO;
1520
1521 tempD = mipsdsp_trunc16_sat16_round(rs2, env);
1522 tempC = mipsdsp_trunc16_sat16_round(rs0, env);
1523 tempB = mipsdsp_trunc16_sat16_round(rt2, env);
1524 tempA = mipsdsp_trunc16_sat16_round(rt0, env);
1525
1526 return MIPSDSP_RETURN64_16(tempD, tempC, tempB, tempA);
1527}
1528
1529target_ulong helper_precrq_pw_l(target_ulong rs, target_ulong rt)
1530{
1531 uint32_t tempB, tempA;
1532
1533 tempB = (rs >> 32) & MIPSDSP_LLO;
1534 tempA = (rt >> 32) & MIPSDSP_LLO;
1535
1536 return MIPSDSP_RETURN64_32(tempB, tempA);
1537}
1538#endif
1539
1540target_ulong helper_precrqu_s_qb_ph(target_ulong rs, target_ulong rt,
1541 CPUMIPSState *env)
1542{
1543 uint8_t tempD, tempC, tempB, tempA;
1544 uint16_t rsh, rsl, rth, rtl;
1545
1546 rsh = (rs & MIPSDSP_HI) >> 16;
1547 rsl = rs & MIPSDSP_LO;
1548 rth = (rt & MIPSDSP_HI) >> 16;
1549 rtl = rt & MIPSDSP_LO;
1550
1551 tempD = mipsdsp_sat8_reduce_precision(rsh, env);
1552 tempC = mipsdsp_sat8_reduce_precision(rsl, env);
1553 tempB = mipsdsp_sat8_reduce_precision(rth, env);
1554 tempA = mipsdsp_sat8_reduce_precision(rtl, env);
1555
1556 return MIPSDSP_RETURN32_8(tempD, tempC, tempB, tempA);
1557}
1558
1559#if defined(TARGET_MIPS64)
1560target_ulong helper_precrqu_s_ob_qh(target_ulong rs, target_ulong rt,
1561 CPUMIPSState *env)
1562{
1563 int i;
1564 uint16_t rs3, rs2, rs1, rs0;
1565 uint16_t rt3, rt2, rt1, rt0;
1566 uint8_t temp[8];
1567 uint64_t result;
1568
1569 result = 0;
1570
1571 MIPSDSP_SPLIT64_16(rs, rs3, rs2, rs1, rs0);
1572 MIPSDSP_SPLIT64_16(rt, rt3, rt2, rt1, rt0);
1573
1574 temp[7] = mipsdsp_sat8_reduce_precision(rs3, env);
1575 temp[6] = mipsdsp_sat8_reduce_precision(rs2, env);
1576 temp[5] = mipsdsp_sat8_reduce_precision(rs1, env);
1577 temp[4] = mipsdsp_sat8_reduce_precision(rs0, env);
1578 temp[3] = mipsdsp_sat8_reduce_precision(rt3, env);
1579 temp[2] = mipsdsp_sat8_reduce_precision(rt2, env);
1580 temp[1] = mipsdsp_sat8_reduce_precision(rt1, env);
1581 temp[0] = mipsdsp_sat8_reduce_precision(rt0, env);
1582
1583 for (i = 0; i < 8; i++) {
1584 result |= (uint64_t)temp[i] << (8 * i);
1585 }
1586
1587 return result;
1588}
1589
1590#define PRECEQ_PW(name, a, b) \
1591target_ulong helper_preceq_pw_##name(target_ulong rt) \
1592{ \
1593 uint16_t tempB, tempA; \
1594 uint32_t tempBI, tempAI; \
1595 \
1596 tempB = (rt >> a) & MIPSDSP_LO; \
1597 tempA = (rt >> b) & MIPSDSP_LO; \
1598 \
1599 tempBI = (uint32_t)tempB << 16; \
1600 tempAI = (uint32_t)tempA << 16; \
1601 \
1602 return MIPSDSP_RETURN64_32(tempBI, tempAI); \
1603}
1604
1605PRECEQ_PW(qhl, 48, 32);
1606PRECEQ_PW(qhr, 16, 0);
1607PRECEQ_PW(qhla, 48, 16);
1608PRECEQ_PW(qhra, 32, 0);
1609
1610#undef PRECEQ_PW
1611
1612#endif
1613
1614#define PRECEQU_PH(name, a, b) \
1615target_ulong helper_precequ_ph_##name(target_ulong rt) \
1616{ \
1617 uint16_t tempB, tempA; \
1618 \
1619 tempB = (rt >> a) & MIPSDSP_Q0; \
1620 tempA = (rt >> b) & MIPSDSP_Q0; \
1621 \
1622 tempB = tempB << 7; \
1623 tempA = tempA << 7; \
1624 \
1625 return MIPSDSP_RETURN32_16(tempB, tempA); \
1626}
1627
1628PRECEQU_PH(qbl, 24, 16);
1629PRECEQU_PH(qbr, 8, 0);
1630PRECEQU_PH(qbla, 24, 8);
1631PRECEQU_PH(qbra, 16, 0);
1632
1633#undef PRECEQU_PH
1634
1635#if defined(TARGET_MIPS64)
1636#define PRECEQU_QH(name, a, b, c, d) \
1637target_ulong helper_precequ_qh_##name(target_ulong rt) \
1638{ \
1639 uint16_t tempD, tempC, tempB, tempA; \
1640 \
1641 tempD = (rt >> a) & MIPSDSP_Q0; \
1642 tempC = (rt >> b) & MIPSDSP_Q0; \
1643 tempB = (rt >> c) & MIPSDSP_Q0; \
1644 tempA = (rt >> d) & MIPSDSP_Q0; \
1645 \
1646 tempD = tempD << 7; \
1647 tempC = tempC << 7; \
1648 tempB = tempB << 7; \
1649 tempA = tempA << 7; \
1650 \
1651 return MIPSDSP_RETURN64_16(tempD, tempC, tempB, tempA); \
1652}
1653
1654PRECEQU_QH(obl, 56, 48, 40, 32);
1655PRECEQU_QH(obr, 24, 16, 8, 0);
1656PRECEQU_QH(obla, 56, 40, 24, 8);
1657PRECEQU_QH(obra, 48, 32, 16, 0);
1658
1659#undef PRECEQU_QH
1660
1661#endif
1662
1663#define PRECEU_PH(name, a, b) \
1664target_ulong helper_preceu_ph_##name(target_ulong rt) \
1665{ \
1666 uint16_t tempB, tempA; \
1667 \
1668 tempB = (rt >> a) & MIPSDSP_Q0; \
1669 tempA = (rt >> b) & MIPSDSP_Q0; \
1670 \
1671 return MIPSDSP_RETURN32_16(tempB, tempA); \
1672}
1673
1674PRECEU_PH(qbl, 24, 16);
1675PRECEU_PH(qbr, 8, 0);
1676PRECEU_PH(qbla, 24, 8);
1677PRECEU_PH(qbra, 16, 0);
1678
1679#undef PRECEU_PH
1680
1681#if defined(TARGET_MIPS64)
1682#define PRECEU_QH(name, a, b, c, d) \
1683target_ulong helper_preceu_qh_##name(target_ulong rt) \
1684{ \
1685 uint16_t tempD, tempC, tempB, tempA; \
1686 \
1687 tempD = (rt >> a) & MIPSDSP_Q0; \
1688 tempC = (rt >> b) & MIPSDSP_Q0; \
1689 tempB = (rt >> c) & MIPSDSP_Q0; \
1690 tempA = (rt >> d) & MIPSDSP_Q0; \
1691 \
1692 return MIPSDSP_RETURN64_16(tempD, tempC, tempB, tempA); \
1693}
1694
1695PRECEU_QH(obl, 56, 48, 40, 32);
1696PRECEU_QH(obr, 24, 16, 8, 0);
1697PRECEU_QH(obla, 56, 40, 24, 8);
1698PRECEU_QH(obra, 48, 32, 16, 0);
1699
1700#undef PRECEU_QH
1701
1702#endif
1703
77c5fa8b
JL
1704/** DSP GPR-Based Shift Sub-class insns **/
1705#define SHIFT_QB(name, func) \
1706target_ulong helper_##name##_qb(target_ulong sa, target_ulong rt) \
1707{ \
1708 uint8_t rt3, rt2, rt1, rt0; \
1709 \
1710 sa = sa & 0x07; \
1711 \
1712 MIPSDSP_SPLIT32_8(rt, rt3, rt2, rt1, rt0); \
1713 \
1714 rt3 = mipsdsp_##func(rt3, sa); \
1715 rt2 = mipsdsp_##func(rt2, sa); \
1716 rt1 = mipsdsp_##func(rt1, sa); \
1717 rt0 = mipsdsp_##func(rt0, sa); \
1718 \
1719 return MIPSDSP_RETURN32_8(rt3, rt2, rt1, rt0); \
1720}
1721
1722#define SHIFT_QB_ENV(name, func) \
1723target_ulong helper_##name##_qb(target_ulong sa, target_ulong rt,\
1724 CPUMIPSState *env) \
1725{ \
1726 uint8_t rt3, rt2, rt1, rt0; \
1727 \
1728 sa = sa & 0x07; \
1729 \
1730 MIPSDSP_SPLIT32_8(rt, rt3, rt2, rt1, rt0); \
1731 \
1732 rt3 = mipsdsp_##func(rt3, sa, env); \
1733 rt2 = mipsdsp_##func(rt2, sa, env); \
1734 rt1 = mipsdsp_##func(rt1, sa, env); \
1735 rt0 = mipsdsp_##func(rt0, sa, env); \
1736 \
1737 return MIPSDSP_RETURN32_8(rt3, rt2, rt1, rt0); \
1738}
1739
1740SHIFT_QB_ENV(shll, lshift8);
1741SHIFT_QB(shrl, rshift_u8);
1742
1743SHIFT_QB(shra, rashift8);
1744SHIFT_QB(shra_r, rnd8_rashift);
1745
1746#undef SHIFT_QB
1747#undef SHIFT_QB_ENV
1748
1749#if defined(TARGET_MIPS64)
1750#define SHIFT_OB(name, func) \
1751target_ulong helper_##name##_ob(target_ulong rt, target_ulong sa) \
1752{ \
1753 int i; \
1754 uint8_t rt_t[8]; \
1755 uint64_t temp; \
1756 \
1757 sa = sa & 0x07; \
1758 temp = 0; \
1759 \
1760 for (i = 0; i < 8; i++) { \
1761 rt_t[i] = (rt >> (8 * i)) & MIPSDSP_Q0; \
1762 rt_t[i] = mipsdsp_##func(rt_t[i], sa); \
1763 temp |= (uint64_t)rt_t[i] << (8 * i); \
1764 } \
1765 \
1766 return temp; \
1767}
1768
1769#define SHIFT_OB_ENV(name, func) \
1770target_ulong helper_##name##_ob(target_ulong rt, target_ulong sa, \
1771 CPUMIPSState *env) \
1772{ \
1773 int i; \
1774 uint8_t rt_t[8]; \
1775 uint64_t temp; \
1776 \
1777 sa = sa & 0x07; \
1778 temp = 0; \
1779 \
1780 for (i = 0; i < 8; i++) { \
1781 rt_t[i] = (rt >> (8 * i)) & MIPSDSP_Q0; \
1782 rt_t[i] = mipsdsp_##func(rt_t[i], sa, env); \
1783 temp |= (uint64_t)rt_t[i] << (8 * i); \
1784 } \
1785 \
1786 return temp; \
1787}
1788
1789SHIFT_OB_ENV(shll, lshift8);
1790SHIFT_OB(shrl, rshift_u8);
1791
1792SHIFT_OB(shra, rashift8);
1793SHIFT_OB(shra_r, rnd8_rashift);
1794
1795#undef SHIFT_OB
1796#undef SHIFT_OB_ENV
1797
1798#endif
1799
1800#define SHIFT_PH(name, func) \
1801target_ulong helper_##name##_ph(target_ulong sa, target_ulong rt, \
1802 CPUMIPSState *env) \
1803{ \
1804 uint16_t rth, rtl; \
1805 \
1806 sa = sa & 0x0F; \
1807 \
1808 MIPSDSP_SPLIT32_16(rt, rth, rtl); \
1809 \
1810 rth = mipsdsp_##func(rth, sa, env); \
1811 rtl = mipsdsp_##func(rtl, sa, env); \
1812 \
1813 return MIPSDSP_RETURN32_16(rth, rtl); \
1814}
1815
1816SHIFT_PH(shll, lshift16);
1817SHIFT_PH(shll_s, sat16_lshift);
1818
1819#undef SHIFT_PH
1820
1821#if defined(TARGET_MIPS64)
1822#define SHIFT_QH(name, func) \
1823target_ulong helper_##name##_qh(target_ulong rt, target_ulong sa) \
1824{ \
1825 uint16_t rt3, rt2, rt1, rt0; \
1826 \
1827 sa = sa & 0x0F; \
1828 \
1829 MIPSDSP_SPLIT64_16(rt, rt3, rt2, rt1, rt0); \
1830 \
1831 rt3 = mipsdsp_##func(rt3, sa); \
1832 rt2 = mipsdsp_##func(rt2, sa); \
1833 rt1 = mipsdsp_##func(rt1, sa); \
1834 rt0 = mipsdsp_##func(rt0, sa); \
1835 \
1836 return MIPSDSP_RETURN64_16(rt3, rt2, rt1, rt0); \
1837}
1838
1839#define SHIFT_QH_ENV(name, func) \
1840target_ulong helper_##name##_qh(target_ulong rt, target_ulong sa, \
1841 CPUMIPSState *env) \
1842{ \
1843 uint16_t rt3, rt2, rt1, rt0; \
1844 \
1845 sa = sa & 0x0F; \
1846 \
1847 MIPSDSP_SPLIT64_16(rt, rt3, rt2, rt1, rt0); \
1848 \
1849 rt3 = mipsdsp_##func(rt3, sa, env); \
1850 rt2 = mipsdsp_##func(rt2, sa, env); \
1851 rt1 = mipsdsp_##func(rt1, sa, env); \
1852 rt0 = mipsdsp_##func(rt0, sa, env); \
1853 \
1854 return MIPSDSP_RETURN64_16(rt3, rt2, rt1, rt0); \
1855}
1856
1857SHIFT_QH_ENV(shll, lshift16);
1858SHIFT_QH_ENV(shll_s, sat16_lshift);
1859
1860SHIFT_QH(shrl, rshift_u16);
1861SHIFT_QH(shra, rashift16);
1862SHIFT_QH(shra_r, rnd16_rashift);
1863
1864#undef SHIFT_QH
1865#undef SHIFT_QH_ENV
1866
1867#endif
1868
1869#define SHIFT_W(name, func) \
1870target_ulong helper_##name##_w(target_ulong sa, target_ulong rt) \
1871{ \
1872 uint32_t temp; \
1873 \
1874 sa = sa & 0x1F; \
1875 temp = mipsdsp_##func(rt, sa); \
1876 \
1877 return (target_long)(int32_t)temp; \
1878}
1879
1880#define SHIFT_W_ENV(name, func) \
1881target_ulong helper_##name##_w(target_ulong sa, target_ulong rt, \
1882 CPUMIPSState *env) \
1883{ \
1884 uint32_t temp; \
1885 \
1886 sa = sa & 0x1F; \
1887 temp = mipsdsp_##func(rt, sa, env); \
1888 \
1889 return (target_long)(int32_t)temp; \
1890}
1891
1892SHIFT_W_ENV(shll_s, sat32_lshift);
1893SHIFT_W(shra_r, rnd32_rashift);
1894
1895#undef SHIFT_W
1896#undef SHIFT_W_ENV
1897
1898#if defined(TARGET_MIPS64)
1899#define SHIFT_PW(name, func) \
1900target_ulong helper_##name##_pw(target_ulong rt, target_ulong sa) \
1901{ \
1902 uint32_t rt1, rt0; \
1903 \
1904 sa = sa & 0x1F; \
1905 MIPSDSP_SPLIT64_32(rt, rt1, rt0); \
1906 \
1907 rt1 = mipsdsp_##func(rt1, sa); \
1908 rt0 = mipsdsp_##func(rt0, sa); \
1909 \
1910 return MIPSDSP_RETURN64_32(rt1, rt0); \
1911}
1912
1913#define SHIFT_PW_ENV(name, func) \
1914target_ulong helper_##name##_pw(target_ulong rt, target_ulong sa, \
1915 CPUMIPSState *env) \
1916{ \
1917 uint32_t rt1, rt0; \
1918 \
1919 sa = sa & 0x1F; \
1920 MIPSDSP_SPLIT64_32(rt, rt1, rt0); \
1921 \
1922 rt1 = mipsdsp_##func(rt1, sa, env); \
1923 rt0 = mipsdsp_##func(rt0, sa, env); \
1924 \
1925 return MIPSDSP_RETURN64_32(rt1, rt0); \
1926}
1927
1928SHIFT_PW_ENV(shll, lshift32);
1929SHIFT_PW_ENV(shll_s, sat32_lshift);
1930
1931SHIFT_PW(shra, rashift32);
1932SHIFT_PW(shra_r, rnd32_rashift);
1933
1934#undef SHIFT_PW
1935#undef SHIFT_PW_ENV
1936
1937#endif
1938
1939#define SHIFT_PH(name, func) \
1940target_ulong helper_##name##_ph(target_ulong sa, target_ulong rt) \
1941{ \
1942 uint16_t rth, rtl; \
1943 \
1944 sa = sa & 0x0F; \
1945 \
1946 MIPSDSP_SPLIT32_16(rt, rth, rtl); \
1947 \
1948 rth = mipsdsp_##func(rth, sa); \
1949 rtl = mipsdsp_##func(rtl, sa); \
1950 \
1951 return MIPSDSP_RETURN32_16(rth, rtl); \
1952}
1953
1954SHIFT_PH(shrl, rshift_u16);
1955SHIFT_PH(shra, rashift16);
1956SHIFT_PH(shra_r, rnd16_rashift);
1957
1958#undef SHIFT_PH
1959
a22260ae
JL
1960/** DSP Multiply Sub-class insns **/
1961/* Return value made up by two 16bits value.
1962 * FIXME give the macro a better name.
1963 */
1964#define MUL_RETURN32_16_PH(name, func, \
1965 rsmov1, rsmov2, rsfilter, \
1966 rtmov1, rtmov2, rtfilter) \
1967target_ulong helper_##name(target_ulong rs, target_ulong rt, \
1968 CPUMIPSState *env) \
1969{ \
1970 uint16_t rsB, rsA, rtB, rtA; \
1971 \
1972 rsB = (rs >> rsmov1) & rsfilter; \
1973 rsA = (rs >> rsmov2) & rsfilter; \
1974 rtB = (rt >> rtmov1) & rtfilter; \
1975 rtA = (rt >> rtmov2) & rtfilter; \
1976 \
1977 rsB = mipsdsp_##func(rsB, rtB, env); \
1978 rsA = mipsdsp_##func(rsA, rtA, env); \
1979 \
1980 return MIPSDSP_RETURN32_16(rsB, rsA); \
1981}
1982
1983MUL_RETURN32_16_PH(muleu_s_ph_qbl, mul_u8_u16, \
1984 24, 16, MIPSDSP_Q0, \
1985 16, 0, MIPSDSP_LO);
1986MUL_RETURN32_16_PH(muleu_s_ph_qbr, mul_u8_u16, \
1987 8, 0, MIPSDSP_Q0, \
1988 16, 0, MIPSDSP_LO);
1989MUL_RETURN32_16_PH(mulq_rs_ph, rndq15_mul_q15_q15, \
1990 16, 0, MIPSDSP_LO, \
1991 16, 0, MIPSDSP_LO);
1992MUL_RETURN32_16_PH(mul_ph, mul_i16_i16, \
1993 16, 0, MIPSDSP_LO, \
1994 16, 0, MIPSDSP_LO);
1995MUL_RETURN32_16_PH(mul_s_ph, sat16_mul_i16_i16, \
1996 16, 0, MIPSDSP_LO, \
1997 16, 0, MIPSDSP_LO);
1998MUL_RETURN32_16_PH(mulq_s_ph, sat16_mul_q15_q15, \
1999 16, 0, MIPSDSP_LO, \
2000 16, 0, MIPSDSP_LO);
2001
2002#undef MUL_RETURN32_16_PH
2003
2004#define MUL_RETURN32_32_ph(name, func, movbits) \
2005target_ulong helper_##name(target_ulong rs, target_ulong rt, \
2006 CPUMIPSState *env) \
2007{ \
2008 int16_t rsh, rth; \
2009 int32_t temp; \
2010 \
2011 rsh = (rs >> movbits) & MIPSDSP_LO; \
2012 rth = (rt >> movbits) & MIPSDSP_LO; \
2013 temp = mipsdsp_##func(rsh, rth, env); \
2014 \
2015 return (target_long)(int32_t)temp; \
2016}
2017
2018MUL_RETURN32_32_ph(muleq_s_w_phl, mul_q15_q15_overflowflag21, 16);
2019MUL_RETURN32_32_ph(muleq_s_w_phr, mul_q15_q15_overflowflag21, 0);
2020
2021#undef MUL_RETURN32_32_ph
2022
2023#define MUL_VOID_PH(name, use_ac_env) \
2024void helper_##name(uint32_t ac, target_ulong rs, target_ulong rt, \
2025 CPUMIPSState *env) \
2026{ \
2027 int16_t rsh, rsl, rth, rtl; \
2028 int32_t tempB, tempA; \
2029 int64_t acc, dotp; \
2030 \
2031 MIPSDSP_SPLIT32_16(rs, rsh, rsl); \
2032 MIPSDSP_SPLIT32_16(rt, rth, rtl); \
2033 \
2034 if (use_ac_env == 1) { \
2035 tempB = mipsdsp_mul_q15_q15(ac, rsh, rth, env); \
2036 tempA = mipsdsp_mul_q15_q15(ac, rsl, rtl, env); \
2037 } else { \
2038 tempB = mipsdsp_mul_u16_u16(rsh, rth); \
2039 tempA = mipsdsp_mul_u16_u16(rsl, rtl); \
2040 } \
2041 \
2042 dotp = (int64_t)tempB - (int64_t)tempA; \
2043 acc = ((uint64_t)env->active_tc.HI[ac] << 32) | \
2044 ((uint64_t)env->active_tc.LO[ac] & MIPSDSP_LLO); \
2045 dotp = dotp + acc; \
2046 env->active_tc.HI[ac] = (target_long)(int32_t) \
2047 ((dotp & MIPSDSP_LHI) >> 32); \
2048 env->active_tc.LO[ac] = (target_long)(int32_t)(dotp & MIPSDSP_LLO); \
2049}
2050
2051MUL_VOID_PH(mulsaq_s_w_ph, 1);
2052MUL_VOID_PH(mulsa_w_ph, 0);
2053
2054#undef MUL_VOID_PH
2055
2056#if defined(TARGET_MIPS64)
2057#define MUL_RETURN64_16_QH(name, func, \
2058 rsmov1, rsmov2, rsmov3, rsmov4, rsfilter, \
2059 rtmov1, rtmov2, rtmov3, rtmov4, rtfilter) \
2060target_ulong helper_##name(target_ulong rs, target_ulong rt, \
2061 CPUMIPSState *env) \
2062{ \
2063 uint16_t rs3, rs2, rs1, rs0; \
2064 uint16_t rt3, rt2, rt1, rt0; \
2065 uint16_t tempD, tempC, tempB, tempA; \
2066 \
2067 rs3 = (rs >> rsmov1) & rsfilter; \
2068 rs2 = (rs >> rsmov2) & rsfilter; \
2069 rs1 = (rs >> rsmov3) & rsfilter; \
2070 rs0 = (rs >> rsmov4) & rsfilter; \
2071 rt3 = (rt >> rtmov1) & rtfilter; \
2072 rt2 = (rt >> rtmov2) & rtfilter; \
2073 rt1 = (rt >> rtmov3) & rtfilter; \
2074 rt0 = (rt >> rtmov4) & rtfilter; \
2075 \
2076 tempD = mipsdsp_##func(rs3, rt3, env); \
2077 tempC = mipsdsp_##func(rs2, rt2, env); \
2078 tempB = mipsdsp_##func(rs1, rt1, env); \
2079 tempA = mipsdsp_##func(rs0, rt0, env); \
2080 \
2081 return MIPSDSP_RETURN64_16(tempD, tempC, tempB, tempA); \
2082}
2083
2084MUL_RETURN64_16_QH(muleu_s_qh_obl, mul_u8_u16, \
2085 56, 48, 40, 32, MIPSDSP_Q0, \
2086 48, 32, 16, 0, MIPSDSP_LO);
2087MUL_RETURN64_16_QH(muleu_s_qh_obr, mul_u8_u16, \
2088 24, 16, 8, 0, MIPSDSP_Q0, \
2089 48, 32, 16, 0, MIPSDSP_LO);
2090MUL_RETURN64_16_QH(mulq_rs_qh, rndq15_mul_q15_q15, \
2091 48, 32, 16, 0, MIPSDSP_LO, \
2092 48, 32, 16, 0, MIPSDSP_LO);
2093
2094#undef MUL_RETURN64_16_QH
2095
2096#define MUL_RETURN64_32_QH(name, \
2097 rsmov1, rsmov2, \
2098 rtmov1, rtmov2) \
2099target_ulong helper_##name(target_ulong rs, target_ulong rt, \
2100 CPUMIPSState *env) \
2101{ \
2102 uint16_t rsB, rsA; \
2103 uint16_t rtB, rtA; \
2104 uint32_t tempB, tempA; \
2105 \
2106 rsB = (rs >> rsmov1) & MIPSDSP_LO; \
2107 rsA = (rs >> rsmov2) & MIPSDSP_LO; \
2108 rtB = (rt >> rtmov1) & MIPSDSP_LO; \
2109 rtA = (rt >> rtmov2) & MIPSDSP_LO; \
2110 \
2111 tempB = mipsdsp_mul_q15_q15(5, rsB, rtB, env); \
2112 tempA = mipsdsp_mul_q15_q15(5, rsA, rtA, env); \
2113 \
2114 return ((uint64_t)tempB << 32) | (uint64_t)tempA; \
2115}
2116
2117MUL_RETURN64_32_QH(muleq_s_pw_qhl, 48, 32, 48, 32);
2118MUL_RETURN64_32_QH(muleq_s_pw_qhr, 16, 0, 16, 0);
2119
2120#undef MUL_RETURN64_32_QH
2121
2122void helper_mulsaq_s_w_qh(target_ulong rs, target_ulong rt, uint32_t ac,
2123 CPUMIPSState *env)
2124{
2125 int16_t rs3, rs2, rs1, rs0;
2126 int16_t rt3, rt2, rt1, rt0;
2127 int32_t tempD, tempC, tempB, tempA;
2128 int64_t acc[2];
2129 int64_t temp[2];
2130 int64_t temp_sum;
2131
2132 MIPSDSP_SPLIT64_16(rs, rs3, rs2, rs1, rs0);
2133 MIPSDSP_SPLIT64_16(rt, rt3, rt2, rt1, rt0);
2134
2135 tempD = mipsdsp_mul_q15_q15(ac, rs3, rt3, env);
2136 tempC = mipsdsp_mul_q15_q15(ac, rs2, rt2, env);
2137 tempB = mipsdsp_mul_q15_q15(ac, rs1, rt1, env);
2138 tempA = mipsdsp_mul_q15_q15(ac, rs0, rt0, env);
2139
2140 temp[0] = ((int32_t)tempD - (int32_t)tempC) +
2141 ((int32_t)tempB - (int32_t)tempA);
2142 temp[0] = (int64_t)(temp[0] << 30) >> 30;
2143 if (((temp[0] >> 33) & 0x01) == 0) {
2144 temp[1] = 0x00;
2145 } else {
2146 temp[1] = ~0ull;
2147 }
2148
2149 acc[0] = env->active_tc.LO[ac];
2150 acc[1] = env->active_tc.HI[ac];
2151
2152 temp_sum = acc[0] + temp[0];
2153 if (((uint64_t)temp_sum < (uint64_t)acc[0]) &&
2154 ((uint64_t)temp_sum < (uint64_t)temp[0])) {
2155 acc[1] += 1;
2156 }
2157 acc[0] = temp_sum;
2158 acc[1] += temp[1];
2159
2160 env->active_tc.HI[ac] = acc[1];
2161 env->active_tc.LO[ac] = acc[0];
2162}
2163#endif
2164
2165#define DP_QB(name, func, is_add, rsmov1, rsmov2, rtmov1, rtmov2) \
2166void helper_##name(uint32_t ac, target_ulong rs, target_ulong rt, \
2167 CPUMIPSState *env) \
2168{ \
2169 uint8_t rs3, rs2; \
2170 uint8_t rt3, rt2; \
2171 uint16_t tempB, tempA; \
2172 uint64_t tempC, dotp; \
2173 \
2174 rs3 = (rs >> rsmov1) & MIPSDSP_Q0; \
2175 rs2 = (rs >> rsmov2) & MIPSDSP_Q0; \
2176 rt3 = (rt >> rtmov1) & MIPSDSP_Q0; \
2177 rt2 = (rt >> rtmov2) & MIPSDSP_Q0; \
2178 tempB = mipsdsp_##func(rs3, rt3); \
2179 tempA = mipsdsp_##func(rs2, rt2); \
2180 dotp = (int64_t)tempB + (int64_t)tempA; \
2181 if (is_add) { \
2182 tempC = (((uint64_t)env->active_tc.HI[ac] << 32) | \
2183 ((uint64_t)env->active_tc.LO[ac] & MIPSDSP_LLO)) \
2184 + dotp; \
2185 } else { \
2186 tempC = (((uint64_t)env->active_tc.HI[ac] << 32) | \
2187 ((uint64_t)env->active_tc.LO[ac] & MIPSDSP_LLO)) \
2188 - dotp; \
2189 } \
2190 \
2191 env->active_tc.HI[ac] = (target_long)(int32_t) \
2192 ((tempC & MIPSDSP_LHI) >> 32); \
2193 env->active_tc.LO[ac] = (target_long)(int32_t)(tempC & MIPSDSP_LLO); \
2194}
2195
2196DP_QB(dpau_h_qbl, mul_u8_u8, 1, 24, 16, 24, 16);
2197DP_QB(dpau_h_qbr, mul_u8_u8, 1, 8, 0, 8, 0);
2198DP_QB(dpsu_h_qbl, mul_u8_u8, 0, 24, 16, 24, 16);
2199DP_QB(dpsu_h_qbr, mul_u8_u8, 0, 8, 0, 8, 0);
2200
2201#undef DP_QB
2202
2203#if defined(TARGET_MIPS64)
2204#define DP_OB(name, add_sub, \
2205 rsmov1, rsmov2, rsmov3, rsmov4, \
2206 rtmov1, rtmov2, rtmov3, rtmov4) \
2207void helper_##name(target_ulong rs, target_ulong rt, uint32_t ac, \
2208 CPUMIPSState *env) \
2209{ \
2210 uint8_t rsD, rsC, rsB, rsA; \
2211 uint8_t rtD, rtC, rtB, rtA; \
2212 uint16_t tempD, tempC, tempB, tempA; \
2213 uint64_t temp[2]; \
2214 uint64_t acc[2]; \
2215 uint64_t temp_sum; \
2216 \
2217 temp[0] = 0; \
2218 temp[1] = 0; \
2219 \
2220 rsD = (rs >> rsmov1) & MIPSDSP_Q0; \
2221 rsC = (rs >> rsmov2) & MIPSDSP_Q0; \
2222 rsB = (rs >> rsmov3) & MIPSDSP_Q0; \
2223 rsA = (rs >> rsmov4) & MIPSDSP_Q0; \
2224 rtD = (rt >> rtmov1) & MIPSDSP_Q0; \
2225 rtC = (rt >> rtmov2) & MIPSDSP_Q0; \
2226 rtB = (rt >> rtmov3) & MIPSDSP_Q0; \
2227 rtA = (rt >> rtmov4) & MIPSDSP_Q0; \
2228 \
2229 tempD = mipsdsp_mul_u8_u8(rsD, rtD); \
2230 tempC = mipsdsp_mul_u8_u8(rsC, rtC); \
2231 tempB = mipsdsp_mul_u8_u8(rsB, rtB); \
2232 tempA = mipsdsp_mul_u8_u8(rsA, rtA); \
2233 \
2234 temp[0] = (uint64_t)tempD + (uint64_t)tempC + \
2235 (uint64_t)tempB + (uint64_t)tempA; \
2236 \
2237 acc[0] = env->active_tc.LO[ac]; \
2238 acc[1] = env->active_tc.HI[ac]; \
2239 \
2240 if (add_sub) { \
2241 temp_sum = acc[0] + temp[0]; \
2242 if (((uint64_t)temp_sum < (uint64_t)acc[0]) && \
2243 ((uint64_t)temp_sum < (uint64_t)temp[0])) { \
2244 acc[1] += 1; \
2245 } \
2246 temp[0] = temp_sum; \
2247 temp[1] = acc[1] + temp[1]; \
2248 } else { \
2249 temp_sum = acc[0] - temp[0]; \
2250 if ((uint64_t)temp_sum > (uint64_t)acc[0]) { \
2251 acc[1] -= 1; \
2252 } \
2253 temp[0] = temp_sum; \
2254 temp[1] = acc[1] - temp[1]; \
2255 } \
2256 \
2257 env->active_tc.HI[ac] = temp[1]; \
2258 env->active_tc.LO[ac] = temp[0]; \
2259}
2260
2261DP_OB(dpau_h_obl, 1, 56, 48, 40, 32, 56, 48, 40, 32);
2262DP_OB(dpau_h_obr, 1, 24, 16, 8, 0, 24, 16, 8, 0);
2263DP_OB(dpsu_h_obl, 0, 56, 48, 40, 32, 56, 48, 40, 32);
2264DP_OB(dpsu_h_obr, 0, 24, 16, 8, 0, 24, 16, 8, 0);
2265
2266#undef DP_OB
2267#endif
2268
2269#define DP_NOFUNC_PH(name, is_add, rsmov1, rsmov2, rtmov1, rtmov2) \
2270void helper_##name(uint32_t ac, target_ulong rs, target_ulong rt, \
2271 CPUMIPSState *env) \
2272{ \
da1a4cef 2273 int16_t rsB, rsA, rtB, rtA; \
a22260ae
JL
2274 int32_t tempA, tempB; \
2275 int64_t acc; \
2276 \
2277 rsB = (rs >> rsmov1) & MIPSDSP_LO; \
2278 rsA = (rs >> rsmov2) & MIPSDSP_LO; \
2279 rtB = (rt >> rtmov1) & MIPSDSP_LO; \
2280 rtA = (rt >> rtmov2) & MIPSDSP_LO; \
2281 \
2282 tempB = (int32_t)rsB * (int32_t)rtB; \
2283 tempA = (int32_t)rsA * (int32_t)rtA; \
2284 \
2285 acc = ((uint64_t)env->active_tc.HI[ac] << 32) | \
2286 ((uint64_t)env->active_tc.LO[ac] & MIPSDSP_LLO); \
2287 \
2288 if (is_add) { \
2289 acc = acc + ((int64_t)tempB + (int64_t)tempA); \
2290 } else { \
2291 acc = acc - ((int64_t)tempB + (int64_t)tempA); \
2292 } \
2293 \
2294 env->active_tc.HI[ac] = (target_long)(int32_t)((acc & MIPSDSP_LHI) >> 32); \
2295 env->active_tc.LO[ac] = (target_long)(int32_t)(acc & MIPSDSP_LLO); \
2296}
2297
2298DP_NOFUNC_PH(dpa_w_ph, 1, 16, 0, 16, 0);
2299DP_NOFUNC_PH(dpax_w_ph, 1, 16, 0, 0, 16);
2300DP_NOFUNC_PH(dps_w_ph, 0, 16, 0, 16, 0);
2301DP_NOFUNC_PH(dpsx_w_ph, 0, 16, 0, 0, 16);
2302#undef DP_NOFUNC_PH
2303
2304#define DP_HASFUNC_PH(name, is_add, rsmov1, rsmov2, rtmov1, rtmov2) \
2305void helper_##name(uint32_t ac, target_ulong rs, target_ulong rt, \
2306 CPUMIPSState *env) \
2307{ \
2308 int16_t rsB, rsA, rtB, rtA; \
2309 int32_t tempB, tempA; \
2310 int64_t acc, dotp; \
2311 \
2312 rsB = (rs >> rsmov1) & MIPSDSP_LO; \
2313 rsA = (rs >> rsmov2) & MIPSDSP_LO; \
2314 rtB = (rt >> rtmov1) & MIPSDSP_LO; \
2315 rtA = (rt >> rtmov2) & MIPSDSP_LO; \
2316 \
2317 tempB = mipsdsp_mul_q15_q15(ac, rsB, rtB, env); \
2318 tempA = mipsdsp_mul_q15_q15(ac, rsA, rtA, env); \
2319 \
2320 dotp = (int64_t)tempB + (int64_t)tempA; \
2321 acc = ((uint64_t)env->active_tc.HI[ac] << 32) | \
2322 ((uint64_t)env->active_tc.LO[ac] & MIPSDSP_LLO); \
2323 \
2324 if (is_add) { \
2325 acc = acc + dotp; \
2326 } else { \
2327 acc = acc - dotp; \
2328 } \
2329 \
2330 env->active_tc.HI[ac] = (target_long)(int32_t) \
2331 ((acc & MIPSDSP_LHI) >> 32); \
2332 env->active_tc.LO[ac] = (target_long)(int32_t) \
2333 (acc & MIPSDSP_LLO); \
2334}
2335
2336DP_HASFUNC_PH(dpaq_s_w_ph, 1, 16, 0, 16, 0);
2337DP_HASFUNC_PH(dpaqx_s_w_ph, 1, 16, 0, 0, 16);
2338DP_HASFUNC_PH(dpsq_s_w_ph, 0, 16, 0, 16, 0);
2339DP_HASFUNC_PH(dpsqx_s_w_ph, 0, 16, 0, 0, 16);
2340
2341#undef DP_HASFUNC_PH
2342
2343#define DP_128OPERATION_PH(name, is_add) \
2344void helper_##name(uint32_t ac, target_ulong rs, target_ulong rt, \
2345 CPUMIPSState *env) \
2346{ \
2347 int16_t rsh, rsl, rth, rtl; \
2348 int32_t tempB, tempA, tempC62_31, tempC63; \
2349 int64_t acc, dotp, tempC; \
2350 \
2351 MIPSDSP_SPLIT32_16(rs, rsh, rsl); \
2352 MIPSDSP_SPLIT32_16(rt, rth, rtl); \
2353 \
2354 tempB = mipsdsp_mul_q15_q15(ac, rsh, rtl, env); \
2355 tempA = mipsdsp_mul_q15_q15(ac, rsl, rth, env); \
2356 \
2357 dotp = (int64_t)tempB + (int64_t)tempA; \
2358 acc = ((uint64_t)env->active_tc.HI[ac] << 32) | \
2359 ((uint64_t)env->active_tc.LO[ac] & MIPSDSP_LLO); \
2360 if (is_add) { \
2361 tempC = acc + dotp; \
2362 } else { \
2363 tempC = acc - dotp; \
2364 } \
2365 tempC63 = (tempC >> 63) & 0x01; \
2366 tempC62_31 = (tempC >> 31) & 0xFFFFFFFF; \
2367 \
2368 if ((tempC63 == 0) && (tempC62_31 != 0x00000000)) { \
2369 tempC = 0x7FFFFFFF; \
2370 set_DSPControl_overflow_flag(1, 16 + ac, env); \
2371 } \
2372 \
2373 if ((tempC63 == 1) && (tempC62_31 != 0xFFFFFFFF)) { \
2374 tempC = (int64_t)(int32_t)0x80000000; \
2375 set_DSPControl_overflow_flag(1, 16 + ac, env); \
2376 } \
2377 \
2378 env->active_tc.HI[ac] = (target_long)(int32_t) \
2379 ((tempC & MIPSDSP_LHI) >> 32); \
2380 env->active_tc.LO[ac] = (target_long)(int32_t) \
2381 (tempC & MIPSDSP_LLO); \
2382}
2383
2384DP_128OPERATION_PH(dpaqx_sa_w_ph, 1);
2385DP_128OPERATION_PH(dpsqx_sa_w_ph, 0);
2386
2387#undef DP_128OPERATION_HP
2388
2389#if defined(TARGET_MIPS64)
2390#define DP_QH(name, is_add, use_ac_env) \
2391void helper_##name(target_ulong rs, target_ulong rt, uint32_t ac, \
2392 CPUMIPSState *env) \
2393{ \
2394 int32_t rs3, rs2, rs1, rs0; \
2395 int32_t rt3, rt2, rt1, rt0; \
2396 int32_t tempD, tempC, tempB, tempA; \
2397 int64_t acc[2]; \
2398 int64_t temp[2]; \
2399 int64_t temp_sum; \
2400 \
2401 MIPSDSP_SPLIT64_16(rs, rs3, rs2, rs1, rs0); \
2402 MIPSDSP_SPLIT64_16(rt, rt3, rt2, rt1, rt0); \
2403 \
2404 if (use_ac_env) { \
2405 tempD = mipsdsp_mul_q15_q15(ac, rs3, rt3, env); \
2406 tempC = mipsdsp_mul_q15_q15(ac, rs2, rt2, env); \
2407 tempB = mipsdsp_mul_q15_q15(ac, rs1, rt1, env); \
2408 tempA = mipsdsp_mul_q15_q15(ac, rs0, rt0, env); \
2409 } else { \
2410 tempD = mipsdsp_mul_u16_u16(rs3, rt3); \
2411 tempC = mipsdsp_mul_u16_u16(rs2, rt2); \
2412 tempB = mipsdsp_mul_u16_u16(rs1, rt1); \
2413 tempA = mipsdsp_mul_u16_u16(rs0, rt0); \
2414 } \
2415 \
2416 temp[0] = (int64_t)tempD + (int64_t)tempC + \
2417 (int64_t)tempB + (int64_t)tempA; \
2418 \
2419 if (temp[0] >= 0) { \
2420 temp[1] = 0; \
2421 } else { \
2422 temp[1] = ~0ull; \
2423 } \
2424 \
2425 acc[1] = env->active_tc.HI[ac]; \
2426 acc[0] = env->active_tc.LO[ac]; \
2427 \
2428 if (is_add) { \
2429 temp_sum = acc[0] + temp[0]; \
2430 if (((uint64_t)temp_sum < (uint64_t)acc[0]) && \
2431 ((uint64_t)temp_sum < (uint64_t)temp[0])) { \
2432 acc[1] = acc[1] + 1; \
2433 } \
2434 temp[0] = temp_sum; \
2435 temp[1] = acc[1] + temp[1]; \
2436 } else { \
2437 temp_sum = acc[0] - temp[0]; \
2438 if ((uint64_t)temp_sum > (uint64_t)acc[0]) { \
2439 acc[1] = acc[1] - 1; \
2440 } \
2441 temp[0] = temp_sum; \
2442 temp[1] = acc[1] - temp[1]; \
2443 } \
2444 \
2445 env->active_tc.HI[ac] = temp[1]; \
2446 env->active_tc.LO[ac] = temp[0]; \
2447}
2448
2449DP_QH(dpa_w_qh, 1, 0);
2450DP_QH(dpaq_s_w_qh, 1, 1);
2451DP_QH(dps_w_qh, 0, 0);
2452DP_QH(dpsq_s_w_qh, 0, 1);
2453
2454#undef DP_QH
2455
2456#endif
2457
2458#define DP_L_W(name, is_add) \
20c334a7
PJ
2459void helper_##name(uint32_t ac, target_ulong rs, target_ulong rt, \
2460 CPUMIPSState *env) \
2461{ \
2462 int32_t temp63; \
2463 int64_t dotp, acc; \
2464 uint64_t temp; \
2465 bool overflow; \
2466 \
2467 dotp = mipsdsp_mul_q31_q31(ac, rs, rt, env); \
2468 acc = ((uint64_t)env->active_tc.HI[ac] << 32) | \
2469 ((uint64_t)env->active_tc.LO[ac] & MIPSDSP_LLO); \
2470 if (is_add) { \
2471 temp = acc + dotp; \
2472 overflow = MIPSDSP_OVERFLOW_ADD((uint64_t)acc, (uint64_t)dotp, \
2473 temp, (0x01ull << 63)); \
2474 } else { \
2475 temp = acc - dotp; \
2476 overflow = MIPSDSP_OVERFLOW_SUB((uint64_t)acc, (uint64_t)dotp, \
2477 temp, (0x01ull << 63)); \
2478 } \
2479 \
2480 if (overflow) { \
2481 temp63 = (temp >> 63) & 0x01; \
2482 if (temp63 == 1) { \
2483 temp = (0x01ull << 63) - 1; \
2484 } else { \
2485 temp = 0x01ull << 63; \
2486 } \
2487 \
2488 set_DSPControl_overflow_flag(1, 16 + ac, env); \
2489 } \
2490 \
2491 env->active_tc.HI[ac] = (target_long)(int32_t) \
2492 ((temp & MIPSDSP_LHI) >> 32); \
2493 env->active_tc.LO[ac] = (target_long)(int32_t) \
2494 (temp & MIPSDSP_LLO); \
a22260ae
JL
2495}
2496
2497DP_L_W(dpaq_sa_l_w, 1);
2498DP_L_W(dpsq_sa_l_w, 0);
2499
2500#undef DP_L_W
2501
2502#if defined(TARGET_MIPS64)
2503#define DP_L_PW(name, func) \
2504void helper_##name(target_ulong rs, target_ulong rt, uint32_t ac, \
2505 CPUMIPSState *env) \
2506{ \
2507 int32_t rs1, rs0; \
2508 int32_t rt1, rt0; \
2509 int64_t tempB[2], tempA[2]; \
2510 int64_t temp[2]; \
2511 int64_t acc[2]; \
2512 int64_t temp_sum; \
2513 \
2514 temp[0] = 0; \
2515 temp[1] = 0; \
2516 \
2517 MIPSDSP_SPLIT64_32(rs, rs1, rs0); \
2518 MIPSDSP_SPLIT64_32(rt, rt1, rt0); \
2519 \
2520 tempB[0] = mipsdsp_mul_q31_q31(ac, rs1, rt1, env); \
2521 tempA[0] = mipsdsp_mul_q31_q31(ac, rs0, rt0, env); \
2522 \
2523 if (tempB[0] >= 0) { \
2524 tempB[1] = 0x00; \
2525 } else { \
2526 tempB[1] = ~0ull; \
2527 } \
2528 \
2529 if (tempA[0] >= 0) { \
2530 tempA[1] = 0x00; \
2531 } else { \
2532 tempA[1] = ~0ull; \
2533 } \
2534 \
2535 temp_sum = tempB[0] + tempA[0]; \
2536 if (((uint64_t)temp_sum < (uint64_t)tempB[0]) && \
2537 ((uint64_t)temp_sum < (uint64_t)tempA[0])) { \
2538 temp[1] += 1; \
2539 } \
2540 temp[0] = temp_sum; \
2541 temp[1] += tempB[1] + tempA[1]; \
2542 \
2543 mipsdsp_##func(acc, ac, temp, env); \
2544 \
2545 env->active_tc.HI[ac] = acc[1]; \
2546 env->active_tc.LO[ac] = acc[0]; \
2547}
2548
2549DP_L_PW(dpaq_sa_l_pw, sat64_acc_add_q63);
2550DP_L_PW(dpsq_sa_l_pw, sat64_acc_sub_q63);
2551
2552#undef DP_L_PW
2553
2554void helper_mulsaq_s_l_pw(target_ulong rs, target_ulong rt, uint32_t ac,
2555 CPUMIPSState *env)
2556{
2557 int32_t rs1, rs0;
2558 int32_t rt1, rt0;
2559 int64_t tempB[2], tempA[2];
2560 int64_t temp[2];
2561 int64_t acc[2];
2562 int64_t temp_sum;
2563
2564 rs1 = (rs >> 32) & MIPSDSP_LLO;
2565 rs0 = rs & MIPSDSP_LLO;
2566 rt1 = (rt >> 32) & MIPSDSP_LLO;
2567 rt0 = rt & MIPSDSP_LLO;
2568
2569 tempB[0] = mipsdsp_mul_q31_q31(ac, rs1, rt1, env);
2570 tempA[0] = mipsdsp_mul_q31_q31(ac, rs0, rt0, env);
2571
2572 if (tempB[0] >= 0) {
2573 tempB[1] = 0x00;
2574 } else {
2575 tempB[1] = ~0ull;
2576 }
2577
2578 if (tempA[0] >= 0) {
2579 tempA[1] = 0x00;
2580 } else {
2581 tempA[1] = ~0ull;
2582 }
2583
2584 acc[0] = env->active_tc.LO[ac];
2585 acc[1] = env->active_tc.HI[ac];
2586
2587 temp_sum = tempB[0] - tempA[0];
2588 if ((uint64_t)temp_sum > (uint64_t)tempB[0]) {
2589 tempB[1] -= 1;
2590 }
2591 temp[0] = temp_sum;
2592 temp[1] = tempB[1] - tempA[1];
2593
2594 if ((temp[1] & 0x01) == 0) {
2595 temp[1] = 0x00;
2596 } else {
2597 temp[1] = ~0ull;
2598 }
2599
2600 temp_sum = acc[0] + temp[0];
2601 if (((uint64_t)temp_sum < (uint64_t)acc[0]) &&
2602 ((uint64_t)temp_sum < (uint64_t)temp[0])) {
2603 acc[1] += 1;
2604 }
2605 acc[0] = temp_sum;
2606 acc[1] += temp[1];
2607
2608 env->active_tc.HI[ac] = acc[1];
2609 env->active_tc.LO[ac] = acc[0];
2610}
2611#endif
2612
2613#define MAQ_S_W(name, mov) \
2614void helper_##name(uint32_t ac, target_ulong rs, target_ulong rt, \
2615 CPUMIPSState *env) \
2616{ \
2617 int16_t rsh, rth; \
2618 int32_t tempA; \
2619 int64_t tempL, acc; \
2620 \
2621 rsh = (rs >> mov) & MIPSDSP_LO; \
2622 rth = (rt >> mov) & MIPSDSP_LO; \
2623 tempA = mipsdsp_mul_q15_q15(ac, rsh, rth, env); \
2624 acc = ((uint64_t)env->active_tc.HI[ac] << 32) | \
2625 ((uint64_t)env->active_tc.LO[ac] & MIPSDSP_LLO); \
2626 tempL = (int64_t)tempA + acc; \
2627 env->active_tc.HI[ac] = (target_long)(int32_t) \
2628 ((tempL & MIPSDSP_LHI) >> 32); \
2629 env->active_tc.LO[ac] = (target_long)(int32_t) \
2630 (tempL & MIPSDSP_LLO); \
2631}
2632
2633MAQ_S_W(maq_s_w_phl, 16);
2634MAQ_S_W(maq_s_w_phr, 0);
2635
2636#undef MAQ_S_W
2637
2638#define MAQ_SA_W(name, mov) \
2639void helper_##name(uint32_t ac, target_ulong rs, target_ulong rt, \
2640 CPUMIPSState *env) \
2641{ \
2642 int16_t rsh, rth; \
2643 int32_t tempA; \
2644 \
2645 rsh = (rs >> mov) & MIPSDSP_LO; \
2646 rth = (rt >> mov) & MIPSDSP_LO; \
2647 tempA = mipsdsp_mul_q15_q15(ac, rsh, rth, env); \
2648 tempA = mipsdsp_sat32_acc_q31(ac, tempA, env); \
2649 \
2650 env->active_tc.HI[ac] = (target_long)(int32_t)(((int64_t)tempA & \
2651 MIPSDSP_LHI) >> 32); \
2652 env->active_tc.LO[ac] = (target_long)(int32_t)((int64_t)tempA & \
2653 MIPSDSP_LLO); \
2654}
2655
2656MAQ_SA_W(maq_sa_w_phl, 16);
2657MAQ_SA_W(maq_sa_w_phr, 0);
2658
2659#undef MAQ_SA_W
2660
2661#define MULQ_W(name, addvar) \
2662target_ulong helper_##name(target_ulong rs, target_ulong rt, \
2663 CPUMIPSState *env) \
2664{ \
a345481b 2665 int32_t rs_t, rt_t; \
a22260ae
JL
2666 int32_t tempI; \
2667 int64_t tempL; \
2668 \
2669 rs_t = rs & MIPSDSP_LLO; \
2670 rt_t = rt & MIPSDSP_LLO; \
2671 \
2672 if ((rs_t == 0x80000000) && (rt_t == 0x80000000)) { \
2673 tempL = 0x7FFFFFFF00000000ull; \
2674 set_DSPControl_overflow_flag(1, 21, env); \
2675 } else { \
2676 tempL = ((int64_t)rs_t * (int64_t)rt_t) << 1; \
2677 tempL += addvar; \
2678 } \
2679 tempI = (tempL & MIPSDSP_LHI) >> 32; \
2680 \
2681 return (target_long)(int32_t)tempI; \
2682}
2683
2684MULQ_W(mulq_s_w, 0);
2685MULQ_W(mulq_rs_w, 0x80000000ull);
2686
2687#undef MULQ_W
2688
2689#if defined(TARGET_MIPS64)
2690
2691#define MAQ_S_W_QH(name, mov) \
2692void helper_##name(target_ulong rs, target_ulong rt, uint32_t ac, \
2693 CPUMIPSState *env) \
2694{ \
2695 int16_t rs_t, rt_t; \
2696 int32_t temp_mul; \
2697 int64_t temp[2]; \
2698 int64_t acc[2]; \
2699 int64_t temp_sum; \
2700 \
2701 temp[0] = 0; \
2702 temp[1] = 0; \
2703 \
2704 rs_t = (rs >> mov) & MIPSDSP_LO; \
2705 rt_t = (rt >> mov) & MIPSDSP_LO; \
2706 temp_mul = mipsdsp_mul_q15_q15(ac, rs_t, rt_t, env); \
2707 \
2708 temp[0] = (int64_t)temp_mul; \
2709 if (temp[0] >= 0) { \
2710 temp[1] = 0x00; \
2711 } else { \
2712 temp[1] = ~0ull; \
2713 } \
2714 \
2715 acc[0] = env->active_tc.LO[ac]; \
2716 acc[1] = env->active_tc.HI[ac]; \
2717 \
2718 temp_sum = acc[0] + temp[0]; \
2719 if (((uint64_t)temp_sum < (uint64_t)acc[0]) && \
2720 ((uint64_t)temp_sum < (uint64_t)temp[0])) { \
2721 acc[1] += 1; \
2722 } \
2723 acc[0] = temp_sum; \
2724 acc[1] += temp[1]; \
2725 \
2726 env->active_tc.HI[ac] = acc[1]; \
2727 env->active_tc.LO[ac] = acc[0]; \
2728}
2729
2730MAQ_S_W_QH(maq_s_w_qhll, 48);
2731MAQ_S_W_QH(maq_s_w_qhlr, 32);
2732MAQ_S_W_QH(maq_s_w_qhrl, 16);
2733MAQ_S_W_QH(maq_s_w_qhrr, 0);
2734
2735#undef MAQ_S_W_QH
2736
2737#define MAQ_SA_W(name, mov) \
2738void helper_##name(target_ulong rs, target_ulong rt, uint32_t ac, \
2739 CPUMIPSState *env) \
2740{ \
2741 int16_t rs_t, rt_t; \
2742 int32_t temp; \
2743 int64_t acc[2]; \
2744 \
2745 rs_t = (rs >> mov) & MIPSDSP_LO; \
2746 rt_t = (rt >> mov) & MIPSDSP_LO; \
2747 temp = mipsdsp_mul_q15_q15(ac, rs_t, rt_t, env); \
2748 temp = mipsdsp_sat32_acc_q31(ac, temp, env); \
2749 \
2750 acc[0] = (int64_t)(int32_t)temp; \
2751 if (acc[0] >= 0) { \
2752 acc[1] = 0x00; \
2753 } else { \
2754 acc[1] = ~0ull; \
2755 } \
2756 \
2757 env->active_tc.HI[ac] = acc[1]; \
2758 env->active_tc.LO[ac] = acc[0]; \
2759}
2760
2761MAQ_SA_W(maq_sa_w_qhll, 48);
2762MAQ_SA_W(maq_sa_w_qhlr, 32);
2763MAQ_SA_W(maq_sa_w_qhrl, 16);
2764MAQ_SA_W(maq_sa_w_qhrr, 0);
2765
2766#undef MAQ_SA_W
2767
2768#define MAQ_S_L_PW(name, mov) \
2769void helper_##name(target_ulong rs, target_ulong rt, uint32_t ac, \
2770 CPUMIPSState *env) \
2771{ \
2772 int32_t rs_t, rt_t; \
2773 int64_t temp[2]; \
2774 int64_t acc[2]; \
2775 int64_t temp_sum; \
2776 \
2777 temp[0] = 0; \
2778 temp[1] = 0; \
2779 \
2780 rs_t = (rs >> mov) & MIPSDSP_LLO; \
2781 rt_t = (rt >> mov) & MIPSDSP_LLO; \
2782 \
2783 temp[0] = mipsdsp_mul_q31_q31(ac, rs_t, rt_t, env); \
2784 if (temp[0] >= 0) { \
2785 temp[1] = 0x00; \
2786 } else { \
2787 temp[1] = ~0ull; \
2788 } \
2789 \
2790 acc[0] = env->active_tc.LO[ac]; \
2791 acc[1] = env->active_tc.HI[ac]; \
2792 \
2793 temp_sum = acc[0] + temp[0]; \
2794 if (((uint64_t)temp_sum < (uint64_t)acc[0]) && \
2795 ((uint64_t)temp_sum < (uint64_t)temp[0])) { \
2796 acc[1] += 1; \
2797 } \
2798 acc[0] = temp_sum; \
2799 acc[1] += temp[1]; \
2800 \
2801 env->active_tc.HI[ac] = acc[1]; \
2802 env->active_tc.LO[ac] = acc[0]; \
2803}
2804
2805MAQ_S_L_PW(maq_s_l_pwl, 32);
2806MAQ_S_L_PW(maq_s_l_pwr, 0);
2807
2808#undef MAQ_S_L_PW
2809
2810#define DM_OPERATE(name, func, is_add, sigext) \
2811void helper_##name(target_ulong rs, target_ulong rt, uint32_t ac, \
2812 CPUMIPSState *env) \
2813{ \
2814 int32_t rs1, rs0; \
2815 int32_t rt1, rt0; \
2816 int64_t tempBL[2], tempAL[2]; \
2817 int64_t acc[2]; \
2818 int64_t temp[2]; \
2819 int64_t temp_sum; \
2820 \
2821 temp[0] = 0x00; \
2822 temp[1] = 0x00; \
2823 \
2824 MIPSDSP_SPLIT64_32(rs, rs1, rs0); \
2825 MIPSDSP_SPLIT64_32(rt, rt1, rt0); \
2826 \
2827 if (sigext) { \
2828 tempBL[0] = (int64_t)mipsdsp_##func(rs1, rt1); \
2829 tempAL[0] = (int64_t)mipsdsp_##func(rs0, rt0); \
2830 \
2831 if (tempBL[0] >= 0) { \
2832 tempBL[1] = 0x0; \
2833 } else { \
2834 tempBL[1] = ~0ull; \
2835 } \
2836 \
2837 if (tempAL[0] >= 0) { \
2838 tempAL[1] = 0x0; \
2839 } else { \
2840 tempAL[1] = ~0ull; \
2841 } \
2842 } else { \
2843 tempBL[0] = mipsdsp_##func(rs1, rt1); \
2844 tempAL[0] = mipsdsp_##func(rs0, rt0); \
2845 tempBL[1] = 0; \
2846 tempAL[1] = 0; \
2847 } \
2848 \
2849 acc[1] = env->active_tc.HI[ac]; \
2850 acc[0] = env->active_tc.LO[ac]; \
2851 \
2852 temp_sum = tempBL[0] + tempAL[0]; \
2853 if (((uint64_t)temp_sum < (uint64_t)tempBL[0]) && \
2854 ((uint64_t)temp_sum < (uint64_t)tempAL[0])) { \
2855 temp[1] += 1; \
2856 } \
2857 temp[0] = temp_sum; \
2858 temp[1] += tempBL[1] + tempAL[1]; \
2859 \
2860 if (is_add) { \
2861 temp_sum = acc[0] + temp[0]; \
2862 if (((uint64_t)temp_sum < (uint64_t)acc[0]) && \
2863 ((uint64_t)temp_sum < (uint64_t)temp[0])) { \
2864 acc[1] += 1; \
2865 } \
2866 temp[0] = temp_sum; \
2867 temp[1] = acc[1] + temp[1]; \
2868 } else { \
2869 temp_sum = acc[0] - temp[0]; \
2870 if ((uint64_t)temp_sum > (uint64_t)acc[0]) { \
2871 acc[1] -= 1; \
2872 } \
2873 temp[0] = temp_sum; \
2874 temp[1] = acc[1] - temp[1]; \
2875 } \
2876 \
2877 env->active_tc.HI[ac] = temp[1]; \
2878 env->active_tc.LO[ac] = temp[0]; \
2879}
2880
2881DM_OPERATE(dmadd, mul_i32_i32, 1, 1);
2882DM_OPERATE(dmaddu, mul_u32_u32, 1, 0);
2883DM_OPERATE(dmsub, mul_i32_i32, 0, 1);
2884DM_OPERATE(dmsubu, mul_u32_u32, 0, 0);
2885#undef DM_OPERATE
2886#endif
2887
1cb6686c
JL
2888/** DSP Bit/Manipulation Sub-class insns **/
2889target_ulong helper_bitrev(target_ulong rt)
2890{
2891 int32_t temp;
2892 uint32_t rd;
2893 int i;
2894
2895 temp = rt & MIPSDSP_LO;
2896 rd = 0;
2897 for (i = 0; i < 16; i++) {
2898 rd = (rd << 1) | (temp & 1);
2899 temp = temp >> 1;
2900 }
2901
2902 return (target_ulong)rd;
2903}
2904
2905#define BIT_INSV(name, posfilter, sizefilter, ret_type) \
2906target_ulong helper_##name(CPUMIPSState *env, target_ulong rs, \
2907 target_ulong rt) \
2908{ \
2909 uint32_t pos, size, msb, lsb; \
2910 target_ulong filter; \
2911 target_ulong temp, temprs, temprt; \
2912 target_ulong dspc; \
2913 \
2914 dspc = env->active_tc.DSPControl; \
2915 \
2916 pos = dspc & posfilter; \
2917 size = (dspc >> 7) & sizefilter; \
2918 \
2919 msb = pos + size - 1; \
2920 lsb = pos; \
2921 \
2922 if (lsb > msb || (msb > TARGET_LONG_BITS)) { \
2923 return rt; \
2924 } \
2925 \
c0f5f9ce 2926 filter = ((int64_t)0x01 << size) - 1; \
1cb6686c 2927 filter = filter << pos; \
34f5606e 2928 temprs = (rs << pos) & filter; \
1cb6686c
JL
2929 temprt = rt & ~filter; \
2930 temp = temprs | temprt; \
2931 \
2932 return (target_long)(ret_type)temp; \
2933}
2934
c0f5f9ce 2935BIT_INSV(insv, 0x1F, 0x3F, int32_t);
1cb6686c
JL
2936#ifdef TARGET_MIPS64
2937BIT_INSV(dinsv, 0x7F, 0x3F, target_long);
2938#endif
2939
2940#undef BIT_INSV
2941
2942
26690560
JL
2943/** DSP Compare-Pick Sub-class insns **/
2944#define CMP_HAS_RET(name, func, split_num, filter, bit_size) \
2945target_ulong helper_##name(target_ulong rs, target_ulong rt) \
2946{ \
2947 uint32_t rs_t, rt_t; \
2948 uint8_t cc; \
2949 uint32_t temp = 0; \
2950 int i; \
2951 \
2952 for (i = 0; i < split_num; i++) { \
2953 rs_t = (rs >> (bit_size * i)) & filter; \
2954 rt_t = (rt >> (bit_size * i)) & filter; \
2955 cc = mipsdsp_##func(rs_t, rt_t); \
2956 temp |= cc << i; \
2957 } \
2958 \
2959 return (target_ulong)temp; \
2960}
2961
2962CMP_HAS_RET(cmpgu_eq_qb, cmpu_eq, 4, MIPSDSP_Q0, 8);
2963CMP_HAS_RET(cmpgu_lt_qb, cmpu_lt, 4, MIPSDSP_Q0, 8);
2964CMP_HAS_RET(cmpgu_le_qb, cmpu_le, 4, MIPSDSP_Q0, 8);
2965
2966#ifdef TARGET_MIPS64
2967CMP_HAS_RET(cmpgu_eq_ob, cmpu_eq, 8, MIPSDSP_Q0, 8);
2968CMP_HAS_RET(cmpgu_lt_ob, cmpu_lt, 8, MIPSDSP_Q0, 8);
2969CMP_HAS_RET(cmpgu_le_ob, cmpu_le, 8, MIPSDSP_Q0, 8);
2970#endif
2971
2972#undef CMP_HAS_RET
2973
2974
2975#define CMP_NO_RET(name, func, split_num, filter, bit_size) \
2976void helper_##name(target_ulong rs, target_ulong rt, \
2977 CPUMIPSState *env) \
2978{ \
2979 int##bit_size##_t rs_t, rt_t; \
2980 int##bit_size##_t flag = 0; \
2981 int##bit_size##_t cc; \
2982 int i; \
2983 \
2984 for (i = 0; i < split_num; i++) { \
2985 rs_t = (rs >> (bit_size * i)) & filter; \
2986 rt_t = (rt >> (bit_size * i)) & filter; \
2987 \
2988 cc = mipsdsp_##func((int32_t)rs_t, (int32_t)rt_t); \
2989 flag |= cc << i; \
2990 } \
2991 \
2992 set_DSPControl_24(flag, split_num, env); \
2993}
2994
2995CMP_NO_RET(cmpu_eq_qb, cmpu_eq, 4, MIPSDSP_Q0, 8);
2996CMP_NO_RET(cmpu_lt_qb, cmpu_lt, 4, MIPSDSP_Q0, 8);
2997CMP_NO_RET(cmpu_le_qb, cmpu_le, 4, MIPSDSP_Q0, 8);
2998
2999CMP_NO_RET(cmp_eq_ph, cmp_eq, 2, MIPSDSP_LO, 16);
3000CMP_NO_RET(cmp_lt_ph, cmp_lt, 2, MIPSDSP_LO, 16);
3001CMP_NO_RET(cmp_le_ph, cmp_le, 2, MIPSDSP_LO, 16);
3002
3003#ifdef TARGET_MIPS64
3004CMP_NO_RET(cmpu_eq_ob, cmpu_eq, 8, MIPSDSP_Q0, 8);
3005CMP_NO_RET(cmpu_lt_ob, cmpu_lt, 8, MIPSDSP_Q0, 8);
3006CMP_NO_RET(cmpu_le_ob, cmpu_le, 8, MIPSDSP_Q0, 8);
3007
3008CMP_NO_RET(cmp_eq_qh, cmp_eq, 4, MIPSDSP_LO, 16);
3009CMP_NO_RET(cmp_lt_qh, cmp_lt, 4, MIPSDSP_LO, 16);
3010CMP_NO_RET(cmp_le_qh, cmp_le, 4, MIPSDSP_LO, 16);
3011
3012CMP_NO_RET(cmp_eq_pw, cmp_eq, 2, MIPSDSP_LLO, 32);
3013CMP_NO_RET(cmp_lt_pw, cmp_lt, 2, MIPSDSP_LLO, 32);
3014CMP_NO_RET(cmp_le_pw, cmp_le, 2, MIPSDSP_LLO, 32);
3015#endif
3016#undef CMP_NO_RET
3017
3018#if defined(TARGET_MIPS64)
3019
3020#define CMPGDU_OB(name) \
3021target_ulong helper_cmpgdu_##name##_ob(target_ulong rs, target_ulong rt, \
3022 CPUMIPSState *env) \
3023{ \
3024 int i; \
3025 uint8_t rs_t, rt_t; \
3026 uint32_t cond; \
3027 \
3028 cond = 0; \
3029 \
3030 for (i = 0; i < 8; i++) { \
3031 rs_t = (rs >> (8 * i)) & MIPSDSP_Q0; \
3032 rt_t = (rt >> (8 * i)) & MIPSDSP_Q0; \
3033 \
3034 if (mipsdsp_cmpu_##name(rs_t, rt_t)) { \
3035 cond |= 0x01 << i; \
3036 } \
3037 } \
3038 \
3039 set_DSPControl_24(cond, 8, env); \
3040 \
3041 return (uint64_t)cond; \
3042}
3043
3044CMPGDU_OB(eq)
3045CMPGDU_OB(lt)
3046CMPGDU_OB(le)
3047#undef CMPGDU_OB
3048#endif
3049
3050#define PICK_INSN(name, split_num, filter, bit_size, ret32bit) \
3051target_ulong helper_##name(target_ulong rs, target_ulong rt, \
3052 CPUMIPSState *env) \
3053{ \
3054 uint32_t rs_t, rt_t; \
3055 uint32_t cc; \
3056 target_ulong dsp; \
3057 int i; \
3058 target_ulong result = 0; \
3059 \
3060 dsp = env->active_tc.DSPControl; \
3061 for (i = 0; i < split_num; i++) { \
3062 rs_t = (rs >> (bit_size * i)) & filter; \
3063 rt_t = (rt >> (bit_size * i)) & filter; \
3064 cc = (dsp >> (24 + i)) & 0x01; \
3065 cc = cc == 1 ? rs_t : rt_t; \
3066 \
3067 result |= (target_ulong)cc << (bit_size * i); \
3068 } \
3069 \
3070 if (ret32bit) { \
3071 result = (target_long)(int32_t)(result & MIPSDSP_LLO); \
3072 } \
3073 \
3074 return result; \
3075}
3076
3077PICK_INSN(pick_qb, 4, MIPSDSP_Q0, 8, 1);
3078PICK_INSN(pick_ph, 2, MIPSDSP_LO, 16, 1);
3079
3080#ifdef TARGET_MIPS64
3081PICK_INSN(pick_ob, 8, MIPSDSP_Q0, 8, 0);
3082PICK_INSN(pick_qh, 4, MIPSDSP_LO, 16, 0);
3083PICK_INSN(pick_pw, 2, MIPSDSP_LLO, 32, 0);
3084#endif
3085#undef PICK_INSN
3086
26690560
JL
3087target_ulong helper_packrl_ph(target_ulong rs, target_ulong rt)
3088{
3089 uint32_t rsl, rth;
3090
3091 rsl = rs & MIPSDSP_LO;
3092 rth = (rt & MIPSDSP_HI) >> 16;
3093
3094 return (target_long)(int32_t)((rsl << 16) | rth);
3095}
3096
3097#if defined(TARGET_MIPS64)
3098target_ulong helper_packrl_pw(target_ulong rs, target_ulong rt)
3099{
3100 uint32_t rs0, rt1;
3101
3102 rs0 = rs & MIPSDSP_LLO;
3103 rt1 = (rt >> 32) & MIPSDSP_LLO;
3104
3105 return ((uint64_t)rs0 << 32) | (uint64_t)rt1;
3106}
3107#endif
3108
b53371ed
JL
3109/** DSP Accumulator and DSPControl Access Sub-class insns **/
3110target_ulong helper_extr_w(target_ulong ac, target_ulong shift,
3111 CPUMIPSState *env)
3112{
3113 int32_t tempI;
3114 int64_t tempDL[2];
3115
b8abbbe8 3116 shift = shift & 0x1F;
b53371ed
JL
3117
3118 mipsdsp_rndrashift_short_acc(tempDL, ac, shift, env);
3119 if ((tempDL[1] != 0 || (tempDL[0] & MIPSDSP_LHI) != 0) &&
3120 (tempDL[1] != 1 || (tempDL[0] & MIPSDSP_LHI) != MIPSDSP_LHI)) {
3121 set_DSPControl_overflow_flag(1, 23, env);
3122 }
3123
3124 tempI = (tempDL[0] >> 1) & MIPSDSP_LLO;
3125
3126 tempDL[0] += 1;
3127 if (tempDL[0] == 0) {
3128 tempDL[1] += 1;
3129 }
3130
8b758d05
PJ
3131 if (((tempDL[1] & 0x01) != 0 || (tempDL[0] & MIPSDSP_LHI) != 0) &&
3132 ((tempDL[1] & 0x01) != 1 || (tempDL[0] & MIPSDSP_LHI) != MIPSDSP_LHI)) {
b53371ed
JL
3133 set_DSPControl_overflow_flag(1, 23, env);
3134 }
3135
3136 return (target_long)tempI;
3137}
3138
3139target_ulong helper_extr_r_w(target_ulong ac, target_ulong shift,
3140 CPUMIPSState *env)
3141{
3142 int64_t tempDL[2];
3143
b8abbbe8 3144 shift = shift & 0x1F;
b53371ed
JL
3145
3146 mipsdsp_rndrashift_short_acc(tempDL, ac, shift, env);
3147 if ((tempDL[1] != 0 || (tempDL[0] & MIPSDSP_LHI) != 0) &&
3148 (tempDL[1] != 1 || (tempDL[0] & MIPSDSP_LHI) != MIPSDSP_LHI)) {
3149 set_DSPControl_overflow_flag(1, 23, env);
3150 }
3151
3152 tempDL[0] += 1;
3153 if (tempDL[0] == 0) {
3154 tempDL[1] += 1;
3155 }
3156
8b758d05
PJ
3157 if (((tempDL[1] & 0x01) != 0 || (tempDL[0] & MIPSDSP_LHI) != 0) &&
3158 ((tempDL[1] & 0x01) != 1 || (tempDL[0] & MIPSDSP_LHI) != MIPSDSP_LHI)) {
b53371ed
JL
3159 set_DSPControl_overflow_flag(1, 23, env);
3160 }
3161
3162 return (target_long)(int32_t)(tempDL[0] >> 1);
3163}
3164
3165target_ulong helper_extr_rs_w(target_ulong ac, target_ulong shift,
3166 CPUMIPSState *env)
3167{
3168 int32_t tempI, temp64;
3169 int64_t tempDL[2];
3170
b8abbbe8 3171 shift = shift & 0x1F;
b53371ed
JL
3172
3173 mipsdsp_rndrashift_short_acc(tempDL, ac, shift, env);
3174 if ((tempDL[1] != 0 || (tempDL[0] & MIPSDSP_LHI) != 0) &&
3175 (tempDL[1] != 1 || (tempDL[0] & MIPSDSP_LHI) != MIPSDSP_LHI)) {
3176 set_DSPControl_overflow_flag(1, 23, env);
3177 }
3178 tempDL[0] += 1;
3179 if (tempDL[0] == 0) {
3180 tempDL[1] += 1;
3181 }
3182 tempI = tempDL[0] >> 1;
3183
8b758d05
PJ
3184 if (((tempDL[1] & 0x01) != 0 || (tempDL[0] & MIPSDSP_LHI) != 0) &&
3185 ((tempDL[1] & 0x01) != 1 || (tempDL[0] & MIPSDSP_LHI) != MIPSDSP_LHI)) {
3186 temp64 = tempDL[1] & 0x01;
b53371ed
JL
3187 if (temp64 == 0) {
3188 tempI = 0x7FFFFFFF;
3189 } else {
3190 tempI = 0x80000000;
3191 }
3192 set_DSPControl_overflow_flag(1, 23, env);
3193 }
3194
3195 return (target_long)tempI;
3196}
3197
3198#if defined(TARGET_MIPS64)
3199target_ulong helper_dextr_w(target_ulong ac, target_ulong shift,
3200 CPUMIPSState *env)
3201{
3202 uint64_t temp[3];
3203
3204 shift = shift & 0x3F;
3205
3206 mipsdsp_rndrashift_acc(temp, ac, shift, env);
3207
3208 return (int64_t)(int32_t)(temp[0] >> 1);
3209}
3210
3211target_ulong helper_dextr_r_w(target_ulong ac, target_ulong shift,
3212 CPUMIPSState *env)
3213{
3214 uint64_t temp[3];
3215 uint32_t temp128;
3216
3217 shift = shift & 0x3F;
3218 mipsdsp_rndrashift_acc(temp, ac, shift, env);
3219
3220 temp[0] += 1;
3221 if (temp[0] == 0) {
3222 temp[1] += 1;
3223 if (temp[1] == 0) {
3224 temp[2] += 1;
3225 }
3226 }
3227
3228 temp128 = temp[2] & 0x01;
3229
3230 if ((temp128 != 0 || temp[1] != 0) &&
3231 (temp128 != 1 || temp[1] != ~0ull)) {
3232 set_DSPControl_overflow_flag(1, 23, env);
3233 }
3234
3235 return (int64_t)(int32_t)(temp[0] >> 1);
3236}
3237
3238target_ulong helper_dextr_rs_w(target_ulong ac, target_ulong shift,
3239 CPUMIPSState *env)
3240{
3241 uint64_t temp[3];
3242 uint32_t temp128;
3243
3244 shift = shift & 0x3F;
3245 mipsdsp_rndrashift_acc(temp, ac, shift, env);
3246
3247 temp[0] += 1;
3248 if (temp[0] == 0) {
3249 temp[1] += 1;
3250 if (temp[1] == 0) {
3251 temp[2] += 1;
3252 }
3253 }
3254
3255 temp128 = temp[2] & 0x01;
3256
3257 if ((temp128 != 0 || temp[1] != 0) &&
3258 (temp128 != 1 || temp[1] != ~0ull)) {
3259 if (temp128 == 0) {
3260 temp[0] = 0x0FFFFFFFF;
3261 } else {
1cfd981f 3262 temp[0] = 0x0100000000ULL;
b53371ed
JL
3263 }
3264 set_DSPControl_overflow_flag(1, 23, env);
3265 }
3266
3267 return (int64_t)(int32_t)(temp[0] >> 1);
3268}
3269
3270target_ulong helper_dextr_l(target_ulong ac, target_ulong shift,
3271 CPUMIPSState *env)
3272{
3273 uint64_t temp[3];
3274 target_ulong result;
3275
3276 shift = shift & 0x3F;
3277
3278 mipsdsp_rndrashift_acc(temp, ac, shift, env);
3279 result = (temp[1] << 63) | (temp[0] >> 1);
3280
3281 return result;
3282}
3283
3284target_ulong helper_dextr_r_l(target_ulong ac, target_ulong shift,
3285 CPUMIPSState *env)
3286{
3287 uint64_t temp[3];
3288 uint32_t temp128;
3289 target_ulong result;
3290
3291 shift = shift & 0x3F;
3292 mipsdsp_rndrashift_acc(temp, ac, shift, env);
3293
3294 temp[0] += 1;
3295 if (temp[0] == 0) {
3296 temp[1] += 1;
3297 if (temp[1] == 0) {
3298 temp[2] += 1;
3299 }
3300 }
3301
3302 temp128 = temp[2] & 0x01;
3303
3304 if ((temp128 != 0 || temp[1] != 0) &&
3305 (temp128 != 1 || temp[1] != ~0ull)) {
3306 set_DSPControl_overflow_flag(1, 23, env);
3307 }
3308
3309 result = (temp[1] << 63) | (temp[0] >> 1);
3310
3311 return result;
3312}
3313
3314target_ulong helper_dextr_rs_l(target_ulong ac, target_ulong shift,
3315 CPUMIPSState *env)
3316{
3317 uint64_t temp[3];
3318 uint32_t temp128;
3319 target_ulong result;
3320
3321 shift = shift & 0x3F;
3322 mipsdsp_rndrashift_acc(temp, ac, shift, env);
3323
3324 temp[0] += 1;
3325 if (temp[0] == 0) {
3326 temp[1] += 1;
3327 if (temp[1] == 0) {
3328 temp[2] += 1;
3329 }
3330 }
3331
3332 temp128 = temp[2] & 0x01;
3333
3334 if ((temp128 != 0 || temp[1] != 0) &&
3335 (temp128 != 1 || temp[1] != ~0ull)) {
3336 if (temp128 == 0) {
3337 temp[1] &= ~0x00ull - 1;
3338 temp[0] |= ~0x00ull - 1;
3339 } else {
3340 temp[1] |= 0x01;
3341 temp[0] &= 0x01;
3342 }
3343 set_DSPControl_overflow_flag(1, 23, env);
3344 }
3345 result = (temp[1] << 63) | (temp[0] >> 1);
3346
3347 return result;
3348}
3349#endif
3350
3351target_ulong helper_extr_s_h(target_ulong ac, target_ulong shift,
3352 CPUMIPSState *env)
3353{
b8abbbe8
PJ
3354 int64_t temp, acc;
3355
3356 shift = shift & 0x1F;
3357
3358 acc = ((int64_t)env->active_tc.HI[ac] << 32) |
3359 ((int64_t)env->active_tc.LO[ac] & 0xFFFFFFFF);
b53371ed 3360
b8abbbe8 3361 temp = acc >> shift;
b53371ed 3362
b53371ed
JL
3363 if (temp > (int64_t)0x7FFF) {
3364 temp = 0x00007FFF;
3365 set_DSPControl_overflow_flag(1, 23, env);
1cfd981f 3366 } else if (temp < (int64_t)0xFFFFFFFFFFFF8000ULL) {
b53371ed
JL
3367 temp = 0xFFFF8000;
3368 set_DSPControl_overflow_flag(1, 23, env);
3369 }
3370
3371 return (target_long)(int32_t)(temp & 0xFFFFFFFF);
3372}
3373
3374
3375#if defined(TARGET_MIPS64)
3376target_ulong helper_dextr_s_h(target_ulong ac, target_ulong shift,
3377 CPUMIPSState *env)
3378{
3379 int64_t temp[2];
3380 uint32_t temp127;
3381
3382 shift = shift & 0x1F;
3383
3384 mipsdsp_rashift_acc((uint64_t *)temp, ac, shift, env);
3385
3386 temp127 = (temp[1] >> 63) & 0x01;
3387
3388 if ((temp127 == 0) && (temp[1] > 0 || temp[0] > 32767)) {
3389 temp[0] &= 0xFFFF0000;
3390 temp[0] |= 0x00007FFF;
3391 set_DSPControl_overflow_flag(1, 23, env);
3392 } else if ((temp127 == 1) &&
3393 (temp[1] < 0xFFFFFFFFFFFFFFFFll
3394 || temp[0] < 0xFFFFFFFFFFFF1000ll)) {
3395 temp[0] &= 0xFFFF0000;
3396 temp[0] |= 0x00008000;
3397 set_DSPControl_overflow_flag(1, 23, env);
3398 }
3399
3400 return (int64_t)(int16_t)(temp[0] & MIPSDSP_LO);
3401}
3402
3403#endif
3404
3405target_ulong helper_extp(target_ulong ac, target_ulong size, CPUMIPSState *env)
3406{
3407 int32_t start_pos;
3408 int sub;
3409 uint32_t temp;
3410 uint64_t acc;
3411
3412 size = size & 0x1F;
3413
3414 temp = 0;
3415 start_pos = get_DSPControl_pos(env);
3416 sub = start_pos - (size + 1);
3417 if (sub >= -1) {
3418 acc = ((uint64_t)env->active_tc.HI[ac] << 32) |
3419 ((uint64_t)env->active_tc.LO[ac] & MIPSDSP_LLO);
489ed4bb 3420 temp = (acc >> (start_pos - size)) & (~0U >> (31 - size));
b53371ed
JL
3421 set_DSPControl_efi(0, env);
3422 } else {
3423 set_DSPControl_efi(1, env);
3424 }
3425
3426 return (target_ulong)temp;
3427}
3428
3429target_ulong helper_extpdp(target_ulong ac, target_ulong size,
3430 CPUMIPSState *env)
3431{
3432 int32_t start_pos;
3433 int sub;
3434 uint32_t temp;
3435 uint64_t acc;
3436
3437 size = size & 0x1F;
3438 temp = 0;
3439 start_pos = get_DSPControl_pos(env);
3440 sub = start_pos - (size + 1);
3441 if (sub >= -1) {
3442 acc = ((uint64_t)env->active_tc.HI[ac] << 32) |
3443 ((uint64_t)env->active_tc.LO[ac] & MIPSDSP_LLO);
0ba365f4 3444 temp = extract64(acc, start_pos - size, size + 1);
b53371ed 3445
0ba365f4 3446 set_DSPControl_pos(sub, env);
b53371ed
JL
3447 set_DSPControl_efi(0, env);
3448 } else {
3449 set_DSPControl_efi(1, env);
3450 }
3451
3452 return (target_ulong)temp;
3453}
3454
3455
3456#if defined(TARGET_MIPS64)
3457target_ulong helper_dextp(target_ulong ac, target_ulong size, CPUMIPSState *env)
3458{
3459 int start_pos;
3460 int len;
3461 int sub;
3462 uint64_t tempB, tempA;
3463 uint64_t temp;
3464
3465 temp = 0;
3466
3467 size = size & 0x3F;
3468 start_pos = get_DSPControl_pos(env);
3469 len = start_pos - size;
3470 tempB = env->active_tc.HI[ac];
3471 tempA = env->active_tc.LO[ac];
3472
3473 sub = start_pos - (size + 1);
3474
3475 if (sub >= -1) {
3476 temp = (tempB << (64 - len)) | (tempA >> len);
3477 temp = temp & ((0x01 << (size + 1)) - 1);
3478 set_DSPControl_efi(0, env);
3479 } else {
3480 set_DSPControl_efi(1, env);
3481 }
3482
3483 return temp;
3484}
3485
3486target_ulong helper_dextpdp(target_ulong ac, target_ulong size,
3487 CPUMIPSState *env)
3488{
3489 int start_pos;
3490 int len;
3491 int sub;
3492 uint64_t tempB, tempA;
3493 uint64_t temp;
3494
3495 temp = 0;
3496 size = size & 0x3F;
3497 start_pos = get_DSPControl_pos(env);
3498 len = start_pos - size;
3499 tempB = env->active_tc.HI[ac];
3500 tempA = env->active_tc.LO[ac];
3501
3502 sub = start_pos - (size + 1);
3503
3504 if (sub >= -1) {
3505 temp = (tempB << (64 - len)) | (tempA >> len);
3506 temp = temp & ((0x01 << (size + 1)) - 1);
3507 set_DSPControl_pos(sub, env);
3508 set_DSPControl_efi(0, env);
3509 } else {
3510 set_DSPControl_efi(1, env);
3511 }
3512
3513 return temp;
3514}
3515
3516#endif
3517
3518void helper_shilo(target_ulong ac, target_ulong rs, CPUMIPSState *env)
3519{
3520 int8_t rs5_0;
3521 uint64_t temp, acc;
3522
3523 rs5_0 = rs & 0x3F;
3524 rs5_0 = (int8_t)(rs5_0 << 2) >> 2;
19e6c50d
PJ
3525
3526 if (unlikely(rs5_0 == 0)) {
3527 return;
3528 }
3529
b53371ed
JL
3530 acc = (((uint64_t)env->active_tc.HI[ac] << 32) & MIPSDSP_LHI) |
3531 ((uint64_t)env->active_tc.LO[ac] & MIPSDSP_LLO);
19e6c50d
PJ
3532
3533 if (rs5_0 > 0) {
3534 temp = acc >> rs5_0;
b53371ed 3535 } else {
19e6c50d 3536 temp = acc << -rs5_0;
b53371ed
JL
3537 }
3538
3539 env->active_tc.HI[ac] = (target_ulong)(int32_t)((temp & MIPSDSP_LHI) >> 32);
3540 env->active_tc.LO[ac] = (target_ulong)(int32_t)(temp & MIPSDSP_LLO);
3541}
3542
3543#if defined(TARGET_MIPS64)
3544void helper_dshilo(target_ulong shift, target_ulong ac, CPUMIPSState *env)
3545{
3546 int8_t shift_t;
3547 uint64_t tempB, tempA;
3548
3549 shift_t = (int8_t)(shift << 1) >> 1;
3550
3551 tempB = env->active_tc.HI[ac];
3552 tempA = env->active_tc.LO[ac];
3553
3554 if (shift_t != 0) {
3555 if (shift_t >= 0) {
3556 tempA = (tempB << (64 - shift_t)) | (tempA >> shift_t);
3557 tempB = tempB >> shift_t;
3558 } else {
3559 shift_t = -shift_t;
3560 tempB = (tempB << shift_t) | (tempA >> (64 - shift_t));
3561 tempA = tempA << shift_t;
3562 }
3563 }
3564
3565 env->active_tc.HI[ac] = tempB;
3566 env->active_tc.LO[ac] = tempA;
3567}
3568
3569#endif
3570void helper_mthlip(target_ulong ac, target_ulong rs, CPUMIPSState *env)
3571{
3572 int32_t tempA, tempB, pos;
3573
3574 tempA = rs;
3575 tempB = env->active_tc.LO[ac];
3576 env->active_tc.HI[ac] = (target_long)tempB;
3577 env->active_tc.LO[ac] = (target_long)tempA;
3578 pos = get_DSPControl_pos(env);
3579
3580 if (pos > 32) {
3581 return;
3582 } else {
3583 set_DSPControl_pos(pos + 32, env);
3584 }
3585}
3586
3587#if defined(TARGET_MIPS64)
3588void helper_dmthlip(target_ulong rs, target_ulong ac, CPUMIPSState *env)
3589{
3590 uint8_t ac_t;
3591 uint8_t pos;
3592 uint64_t tempB, tempA;
3593
3594 ac_t = ac & 0x3;
3595
3596 tempA = rs;
3597 tempB = env->active_tc.LO[ac_t];
3598
3599 env->active_tc.HI[ac_t] = tempB;
3600 env->active_tc.LO[ac_t] = tempA;
3601
3602 pos = get_DSPControl_pos(env);
3603
3604 if (pos <= 64) {
3605 pos = pos + 64;
3606 set_DSPControl_pos(pos, env);
3607 }
3608}
3609#endif
3610
084d0497 3611void cpu_wrdsp(uint32_t rs, uint32_t mask_num, CPUMIPSState *env)
b53371ed
JL
3612{
3613 uint8_t mask[6];
3614 uint8_t i;
3615 uint32_t newbits, overwrite;
3616 target_ulong dsp;
3617
3618 newbits = 0x00;
3619 overwrite = 0xFFFFFFFF;
3620 dsp = env->active_tc.DSPControl;
3621
3622 for (i = 0; i < 6; i++) {
3623 mask[i] = (mask_num >> i) & 0x01;
3624 }
3625
3626 if (mask[0] == 1) {
3627#if defined(TARGET_MIPS64)
3628 overwrite &= 0xFFFFFF80;
3629 newbits &= 0xFFFFFF80;
3630 newbits |= 0x0000007F & rs;
3631#else
3632 overwrite &= 0xFFFFFFC0;
3633 newbits &= 0xFFFFFFC0;
3634 newbits |= 0x0000003F & rs;
3635#endif
3636 }
3637
3638 if (mask[1] == 1) {
3639 overwrite &= 0xFFFFE07F;
3640 newbits &= 0xFFFFE07F;
3641 newbits |= 0x00001F80 & rs;
3642 }
3643
3644 if (mask[2] == 1) {
3645 overwrite &= 0xFFFFDFFF;
3646 newbits &= 0xFFFFDFFF;
3647 newbits |= 0x00002000 & rs;
3648 }
3649
3650 if (mask[3] == 1) {
3651 overwrite &= 0xFF00FFFF;
3652 newbits &= 0xFF00FFFF;
3653 newbits |= 0x00FF0000 & rs;
3654 }
3655
3656 if (mask[4] == 1) {
3657 overwrite &= 0x00FFFFFF;
3658 newbits &= 0x00FFFFFF;
eec8972a 3659#if defined(TARGET_MIPS64)
b53371ed 3660 newbits |= 0xFF000000 & rs;
eec8972a
PJ
3661#else
3662 newbits |= 0x0F000000 & rs;
3663#endif
b53371ed
JL
3664 }
3665
3666 if (mask[5] == 1) {
3667 overwrite &= 0xFFFFBFFF;
3668 newbits &= 0xFFFFBFFF;
3669 newbits |= 0x00004000 & rs;
3670 }
3671
3672 dsp = dsp & overwrite;
3673 dsp = dsp | newbits;
3674 env->active_tc.DSPControl = dsp;
3675}
3676
084d0497
RH
3677void helper_wrdsp(target_ulong rs, target_ulong mask_num, CPUMIPSState *env)
3678{
3679 return cpu_wrdsp(rs, mask_num, env);
3680}
3681
3682uint32_t cpu_rddsp(uint32_t mask_num, CPUMIPSState *env)
b53371ed
JL
3683{
3684 uint8_t mask[6];
3685 uint32_t ruler, i;
3686 target_ulong temp;
3687 target_ulong dsp;
3688
3689 ruler = 0x01;
3690 for (i = 0; i < 6; i++) {
084d0497 3691 mask[i] = (mask_num & ruler) >> i ;
b53371ed
JL
3692 ruler = ruler << 1;
3693 }
3694
3695 temp = 0x00;
3696 dsp = env->active_tc.DSPControl;
3697
3698 if (mask[0] == 1) {
3699#if defined(TARGET_MIPS64)
3700 temp |= dsp & 0x7F;
3701#else
3702 temp |= dsp & 0x3F;
3703#endif
3704 }
3705
3706 if (mask[1] == 1) {
3707 temp |= dsp & 0x1F80;
3708 }
3709
3710 if (mask[2] == 1) {
3711 temp |= dsp & 0x2000;
3712 }
3713
3714 if (mask[3] == 1) {
3715 temp |= dsp & 0x00FF0000;
3716 }
3717
3718 if (mask[4] == 1) {
eec8972a 3719#if defined(TARGET_MIPS64)
b53371ed 3720 temp |= dsp & 0xFF000000;
eec8972a
PJ
3721#else
3722 temp |= dsp & 0x0F000000;
3723#endif
b53371ed
JL
3724 }
3725
3726 if (mask[5] == 1) {
3727 temp |= dsp & 0x4000;
3728 }
3729
3730 return temp;
3731}
3732
084d0497
RH
3733target_ulong helper_rddsp(target_ulong mask_num, CPUMIPSState *env)
3734{
3735 return cpu_rddsp(mask_num, env);
3736}
3737
b53371ed 3738
461c08df
JL
3739#undef MIPSDSP_LHI
3740#undef MIPSDSP_LLO
3741#undef MIPSDSP_HI
3742#undef MIPSDSP_LO
3743#undef MIPSDSP_Q3
3744#undef MIPSDSP_Q2
3745#undef MIPSDSP_Q1
3746#undef MIPSDSP_Q0
3747
3748#undef MIPSDSP_SPLIT32_8
3749#undef MIPSDSP_SPLIT32_16
3750
461c08df
JL
3751#undef MIPSDSP_RETURN32_8
3752#undef MIPSDSP_RETURN32_16
3753
3754#ifdef TARGET_MIPS64
3755#undef MIPSDSP_SPLIT64_16
3756#undef MIPSDSP_SPLIT64_32
3757#undef MIPSDSP_RETURN64_16
3758#undef MIPSDSP_RETURN64_32
3759#endif