Merge remote branch 'kwolf/for-anthony' into staging
[qemu.git] / target-arm / neon_helper.c
blobdc09968c866e34d1bf6c5104d73371b344fcbdd4
1 /*
2 * ARM NEON vector operations.
4 * Copyright (c) 2007, 2008 CodeSourcery.
5 * Written by Paul Brook
7 * This code is licenced under the GNU GPL v2.
8 */
9 #include <stdlib.h>
10 #include <stdio.h>
12 #include "cpu.h"
13 #include "exec-all.h"
14 #include "helpers.h"
16 #define SIGNBIT (uint32_t)0x80000000
17 #define SIGNBIT64 ((uint64_t)1 << 63)
19 #define SET_QC() env->vfp.xregs[ARM_VFP_FPSCR] = CPSR_Q
21 static float_status neon_float_status;
22 #define NFS &neon_float_status
24 /* Helper routines to perform bitwise copies between float and int. */
25 static inline float32 vfp_itos(uint32_t i)
27 union {
28 uint32_t i;
29 float32 s;
30 } v;
32 v.i = i;
33 return v.s;
36 static inline uint32_t vfp_stoi(float32 s)
38 union {
39 uint32_t i;
40 float32 s;
41 } v;
43 v.s = s;
44 return v.i;
47 #define NEON_TYPE1(name, type) \
48 typedef struct \
49 { \
50 type v1; \
51 } neon_##name;
52 #ifdef HOST_WORDS_BIGENDIAN
53 #define NEON_TYPE2(name, type) \
54 typedef struct \
55 { \
56 type v2; \
57 type v1; \
58 } neon_##name;
59 #define NEON_TYPE4(name, type) \
60 typedef struct \
61 { \
62 type v4; \
63 type v3; \
64 type v2; \
65 type v1; \
66 } neon_##name;
67 #else
68 #define NEON_TYPE2(name, type) \
69 typedef struct \
70 { \
71 type v1; \
72 type v2; \
73 } neon_##name;
74 #define NEON_TYPE4(name, type) \
75 typedef struct \
76 { \
77 type v1; \
78 type v2; \
79 type v3; \
80 type v4; \
81 } neon_##name;
82 #endif
84 NEON_TYPE4(s8, int8_t)
85 NEON_TYPE4(u8, uint8_t)
86 NEON_TYPE2(s16, int16_t)
87 NEON_TYPE2(u16, uint16_t)
88 NEON_TYPE1(s32, int32_t)
89 NEON_TYPE1(u32, uint32_t)
90 #undef NEON_TYPE4
91 #undef NEON_TYPE2
92 #undef NEON_TYPE1
94 /* Copy from a uint32_t to a vector structure type. */
95 #define NEON_UNPACK(vtype, dest, val) do { \
96 union { \
97 vtype v; \
98 uint32_t i; \
99 } conv_u; \
100 conv_u.i = (val); \
101 dest = conv_u.v; \
102 } while(0)
104 /* Copy from a vector structure type to a uint32_t. */
105 #define NEON_PACK(vtype, dest, val) do { \
106 union { \
107 vtype v; \
108 uint32_t i; \
109 } conv_u; \
110 conv_u.v = (val); \
111 dest = conv_u.i; \
112 } while(0)
114 #define NEON_DO1 \
115 NEON_FN(vdest.v1, vsrc1.v1, vsrc2.v1);
116 #define NEON_DO2 \
117 NEON_FN(vdest.v1, vsrc1.v1, vsrc2.v1); \
118 NEON_FN(vdest.v2, vsrc1.v2, vsrc2.v2);
119 #define NEON_DO4 \
120 NEON_FN(vdest.v1, vsrc1.v1, vsrc2.v1); \
121 NEON_FN(vdest.v2, vsrc1.v2, vsrc2.v2); \
122 NEON_FN(vdest.v3, vsrc1.v3, vsrc2.v3); \
123 NEON_FN(vdest.v4, vsrc1.v4, vsrc2.v4);
125 #define NEON_VOP_BODY(vtype, n) \
127 uint32_t res; \
128 vtype vsrc1; \
129 vtype vsrc2; \
130 vtype vdest; \
131 NEON_UNPACK(vtype, vsrc1, arg1); \
132 NEON_UNPACK(vtype, vsrc2, arg2); \
133 NEON_DO##n; \
134 NEON_PACK(vtype, res, vdest); \
135 return res; \
138 #define NEON_VOP(name, vtype, n) \
139 uint32_t HELPER(glue(neon_,name))(uint32_t arg1, uint32_t arg2) \
140 NEON_VOP_BODY(vtype, n)
142 #define NEON_VOP_ENV(name, vtype, n) \
143 uint32_t HELPER(glue(neon_,name))(CPUState *env, uint32_t arg1, uint32_t arg2) \
144 NEON_VOP_BODY(vtype, n)
146 /* Pairwise operations. */
147 /* For 32-bit elements each segment only contains a single element, so
148 the elementwise and pairwise operations are the same. */
149 #define NEON_PDO2 \
150 NEON_FN(vdest.v1, vsrc1.v1, vsrc1.v2); \
151 NEON_FN(vdest.v2, vsrc2.v1, vsrc2.v2);
152 #define NEON_PDO4 \
153 NEON_FN(vdest.v1, vsrc1.v1, vsrc1.v2); \
154 NEON_FN(vdest.v2, vsrc1.v3, vsrc1.v4); \
155 NEON_FN(vdest.v3, vsrc2.v1, vsrc2.v2); \
156 NEON_FN(vdest.v4, vsrc2.v3, vsrc2.v4); \
158 #define NEON_POP(name, vtype, n) \
159 uint32_t HELPER(glue(neon_,name))(uint32_t arg1, uint32_t arg2) \
161 uint32_t res; \
162 vtype vsrc1; \
163 vtype vsrc2; \
164 vtype vdest; \
165 NEON_UNPACK(vtype, vsrc1, arg1); \
166 NEON_UNPACK(vtype, vsrc2, arg2); \
167 NEON_PDO##n; \
168 NEON_PACK(vtype, res, vdest); \
169 return res; \
172 /* Unary operators. */
173 #define NEON_VOP1(name, vtype, n) \
174 uint32_t HELPER(glue(neon_,name))(uint32_t arg) \
176 vtype vsrc1; \
177 vtype vdest; \
178 NEON_UNPACK(vtype, vsrc1, arg); \
179 NEON_DO##n; \
180 NEON_PACK(vtype, arg, vdest); \
181 return arg; \
185 #define NEON_USAT(dest, src1, src2, type) do { \
186 uint32_t tmp = (uint32_t)src1 + (uint32_t)src2; \
187 if (tmp != (type)tmp) { \
188 SET_QC(); \
189 dest = ~0; \
190 } else { \
191 dest = tmp; \
192 }} while(0)
193 #define NEON_FN(dest, src1, src2) NEON_USAT(dest, src1, src2, uint8_t)
194 NEON_VOP_ENV(qadd_u8, neon_u8, 4)
195 #undef NEON_FN
196 #define NEON_FN(dest, src1, src2) NEON_USAT(dest, src1, src2, uint16_t)
197 NEON_VOP_ENV(qadd_u16, neon_u16, 2)
198 #undef NEON_FN
199 #undef NEON_USAT
201 uint32_t HELPER(neon_qadd_u32)(CPUState *env, uint32_t a, uint32_t b)
203 uint32_t res = a + b;
204 if (res < a) {
205 SET_QC();
206 res = ~0;
208 return res;
211 uint64_t HELPER(neon_qadd_u64)(CPUState *env, uint64_t src1, uint64_t src2)
213 uint64_t res;
215 res = src1 + src2;
216 if (res < src1) {
217 SET_QC();
218 res = ~(uint64_t)0;
220 return res;
223 #define NEON_SSAT(dest, src1, src2, type) do { \
224 int32_t tmp = (uint32_t)src1 + (uint32_t)src2; \
225 if (tmp != (type)tmp) { \
226 SET_QC(); \
227 if (src2 > 0) { \
228 tmp = (1 << (sizeof(type) * 8 - 1)) - 1; \
229 } else { \
230 tmp = 1 << (sizeof(type) * 8 - 1); \
233 dest = tmp; \
234 } while(0)
235 #define NEON_FN(dest, src1, src2) NEON_SSAT(dest, src1, src2, int8_t)
236 NEON_VOP_ENV(qadd_s8, neon_s8, 4)
237 #undef NEON_FN
238 #define NEON_FN(dest, src1, src2) NEON_SSAT(dest, src1, src2, int16_t)
239 NEON_VOP_ENV(qadd_s16, neon_s16, 2)
240 #undef NEON_FN
241 #undef NEON_SSAT
243 uint32_t HELPER(neon_qadd_s32)(CPUState *env, uint32_t a, uint32_t b)
245 uint32_t res = a + b;
246 if (((res ^ a) & SIGNBIT) && !((a ^ b) & SIGNBIT)) {
247 SET_QC();
248 res = ~(((int32_t)a >> 31) ^ SIGNBIT);
250 return res;
253 uint64_t HELPER(neon_qadd_s64)(CPUState *env, uint64_t src1, uint64_t src2)
255 uint64_t res;
257 res = src1 + src2;
258 if (((res ^ src1) & SIGNBIT64) && !((src1 ^ src2) & SIGNBIT64)) {
259 SET_QC();
260 res = ((int64_t)src1 >> 63) ^ ~SIGNBIT64;
262 return res;
265 #define NEON_USAT(dest, src1, src2, type) do { \
266 uint32_t tmp = (uint32_t)src1 - (uint32_t)src2; \
267 if (tmp != (type)tmp) { \
268 SET_QC(); \
269 dest = 0; \
270 } else { \
271 dest = tmp; \
272 }} while(0)
273 #define NEON_FN(dest, src1, src2) NEON_USAT(dest, src1, src2, uint8_t)
274 NEON_VOP_ENV(qsub_u8, neon_u8, 4)
275 #undef NEON_FN
276 #define NEON_FN(dest, src1, src2) NEON_USAT(dest, src1, src2, uint16_t)
277 NEON_VOP_ENV(qsub_u16, neon_u16, 2)
278 #undef NEON_FN
279 #undef NEON_USAT
281 uint32_t HELPER(neon_qsub_u32)(CPUState *env, uint32_t a, uint32_t b)
283 uint32_t res = a - b;
284 if (res > a) {
285 SET_QC();
286 res = 0;
288 return res;
291 uint64_t HELPER(neon_qsub_u64)(CPUState *env, uint64_t src1, uint64_t src2)
293 uint64_t res;
295 if (src1 < src2) {
296 SET_QC();
297 res = 0;
298 } else {
299 res = src1 - src2;
301 return res;
304 #define NEON_SSAT(dest, src1, src2, type) do { \
305 int32_t tmp = (uint32_t)src1 - (uint32_t)src2; \
306 if (tmp != (type)tmp) { \
307 SET_QC(); \
308 if (src2 < 0) { \
309 tmp = (1 << (sizeof(type) * 8 - 1)) - 1; \
310 } else { \
311 tmp = 1 << (sizeof(type) * 8 - 1); \
314 dest = tmp; \
315 } while(0)
316 #define NEON_FN(dest, src1, src2) NEON_SSAT(dest, src1, src2, int8_t)
317 NEON_VOP_ENV(qsub_s8, neon_s8, 4)
318 #undef NEON_FN
319 #define NEON_FN(dest, src1, src2) NEON_SSAT(dest, src1, src2, int16_t)
320 NEON_VOP_ENV(qsub_s16, neon_s16, 2)
321 #undef NEON_FN
322 #undef NEON_SSAT
324 uint32_t HELPER(neon_qsub_s32)(CPUState *env, uint32_t a, uint32_t b)
326 uint32_t res = a - b;
327 if (((res ^ a) & SIGNBIT) && ((a ^ b) & SIGNBIT)) {
328 SET_QC();
329 res = ~(((int32_t)a >> 31) ^ SIGNBIT);
331 return res;
334 uint64_t HELPER(neon_qsub_s64)(CPUState *env, uint64_t src1, uint64_t src2)
336 uint64_t res;
338 res = src1 - src2;
339 if (((res ^ src1) & SIGNBIT64) && ((src1 ^ src2) & SIGNBIT64)) {
340 SET_QC();
341 res = ((int64_t)src1 >> 63) ^ ~SIGNBIT64;
343 return res;
346 #define NEON_FN(dest, src1, src2) dest = (src1 + src2) >> 1
347 NEON_VOP(hadd_s8, neon_s8, 4)
348 NEON_VOP(hadd_u8, neon_u8, 4)
349 NEON_VOP(hadd_s16, neon_s16, 2)
350 NEON_VOP(hadd_u16, neon_u16, 2)
351 #undef NEON_FN
353 int32_t HELPER(neon_hadd_s32)(int32_t src1, int32_t src2)
355 int32_t dest;
357 dest = (src1 >> 1) + (src2 >> 1);
358 if (src1 & src2 & 1)
359 dest++;
360 return dest;
363 uint32_t HELPER(neon_hadd_u32)(uint32_t src1, uint32_t src2)
365 uint32_t dest;
367 dest = (src1 >> 1) + (src2 >> 1);
368 if (src1 & src2 & 1)
369 dest++;
370 return dest;
373 #define NEON_FN(dest, src1, src2) dest = (src1 + src2 + 1) >> 1
374 NEON_VOP(rhadd_s8, neon_s8, 4)
375 NEON_VOP(rhadd_u8, neon_u8, 4)
376 NEON_VOP(rhadd_s16, neon_s16, 2)
377 NEON_VOP(rhadd_u16, neon_u16, 2)
378 #undef NEON_FN
380 int32_t HELPER(neon_rhadd_s32)(int32_t src1, int32_t src2)
382 int32_t dest;
384 dest = (src1 >> 1) + (src2 >> 1);
385 if ((src1 | src2) & 1)
386 dest++;
387 return dest;
390 uint32_t HELPER(neon_rhadd_u32)(uint32_t src1, uint32_t src2)
392 uint32_t dest;
394 dest = (src1 >> 1) + (src2 >> 1);
395 if ((src1 | src2) & 1)
396 dest++;
397 return dest;
400 #define NEON_FN(dest, src1, src2) dest = (src1 - src2) >> 1
401 NEON_VOP(hsub_s8, neon_s8, 4)
402 NEON_VOP(hsub_u8, neon_u8, 4)
403 NEON_VOP(hsub_s16, neon_s16, 2)
404 NEON_VOP(hsub_u16, neon_u16, 2)
405 #undef NEON_FN
407 int32_t HELPER(neon_hsub_s32)(int32_t src1, int32_t src2)
409 int32_t dest;
411 dest = (src1 >> 1) - (src2 >> 1);
412 if ((~src1) & src2 & 1)
413 dest--;
414 return dest;
417 uint32_t HELPER(neon_hsub_u32)(uint32_t src1, uint32_t src2)
419 uint32_t dest;
421 dest = (src1 >> 1) - (src2 >> 1);
422 if ((~src1) & src2 & 1)
423 dest--;
424 return dest;
427 #define NEON_FN(dest, src1, src2) dest = (src1 > src2) ? ~0 : 0
428 NEON_VOP(cgt_s8, neon_s8, 4)
429 NEON_VOP(cgt_u8, neon_u8, 4)
430 NEON_VOP(cgt_s16, neon_s16, 2)
431 NEON_VOP(cgt_u16, neon_u16, 2)
432 NEON_VOP(cgt_s32, neon_s32, 1)
433 NEON_VOP(cgt_u32, neon_u32, 1)
434 #undef NEON_FN
436 #define NEON_FN(dest, src1, src2) dest = (src1 >= src2) ? ~0 : 0
437 NEON_VOP(cge_s8, neon_s8, 4)
438 NEON_VOP(cge_u8, neon_u8, 4)
439 NEON_VOP(cge_s16, neon_s16, 2)
440 NEON_VOP(cge_u16, neon_u16, 2)
441 NEON_VOP(cge_s32, neon_s32, 1)
442 NEON_VOP(cge_u32, neon_u32, 1)
443 #undef NEON_FN
445 #define NEON_FN(dest, src1, src2) dest = (src1 < src2) ? src1 : src2
446 NEON_VOP(min_s8, neon_s8, 4)
447 NEON_VOP(min_u8, neon_u8, 4)
448 NEON_VOP(min_s16, neon_s16, 2)
449 NEON_VOP(min_u16, neon_u16, 2)
450 NEON_VOP(min_s32, neon_s32, 1)
451 NEON_VOP(min_u32, neon_u32, 1)
452 NEON_POP(pmin_s8, neon_s8, 4)
453 NEON_POP(pmin_u8, neon_u8, 4)
454 NEON_POP(pmin_s16, neon_s16, 2)
455 NEON_POP(pmin_u16, neon_u16, 2)
456 #undef NEON_FN
458 #define NEON_FN(dest, src1, src2) dest = (src1 > src2) ? src1 : src2
459 NEON_VOP(max_s8, neon_s8, 4)
460 NEON_VOP(max_u8, neon_u8, 4)
461 NEON_VOP(max_s16, neon_s16, 2)
462 NEON_VOP(max_u16, neon_u16, 2)
463 NEON_VOP(max_s32, neon_s32, 1)
464 NEON_VOP(max_u32, neon_u32, 1)
465 NEON_POP(pmax_s8, neon_s8, 4)
466 NEON_POP(pmax_u8, neon_u8, 4)
467 NEON_POP(pmax_s16, neon_s16, 2)
468 NEON_POP(pmax_u16, neon_u16, 2)
469 #undef NEON_FN
471 #define NEON_FN(dest, src1, src2) \
472 dest = (src1 > src2) ? (src1 - src2) : (src2 - src1)
473 NEON_VOP(abd_s8, neon_s8, 4)
474 NEON_VOP(abd_u8, neon_u8, 4)
475 NEON_VOP(abd_s16, neon_s16, 2)
476 NEON_VOP(abd_u16, neon_u16, 2)
477 NEON_VOP(abd_s32, neon_s32, 1)
478 NEON_VOP(abd_u32, neon_u32, 1)
479 #undef NEON_FN
481 #define NEON_FN(dest, src1, src2) do { \
482 int8_t tmp; \
483 tmp = (int8_t)src2; \
484 if (tmp >= (ssize_t)sizeof(src1) * 8 || \
485 tmp <= -(ssize_t)sizeof(src1) * 8) { \
486 dest = 0; \
487 } else if (tmp < 0) { \
488 dest = src1 >> -tmp; \
489 } else { \
490 dest = src1 << tmp; \
491 }} while (0)
492 NEON_VOP(shl_u8, neon_u8, 4)
493 NEON_VOP(shl_u16, neon_u16, 2)
494 NEON_VOP(shl_u32, neon_u32, 1)
495 #undef NEON_FN
497 uint64_t HELPER(neon_shl_u64)(uint64_t val, uint64_t shiftop)
499 int8_t shift = (int8_t)shiftop;
500 if (shift >= 64 || shift <= -64) {
501 val = 0;
502 } else if (shift < 0) {
503 val >>= -shift;
504 } else {
505 val <<= shift;
507 return val;
510 #define NEON_FN(dest, src1, src2) do { \
511 int8_t tmp; \
512 tmp = (int8_t)src2; \
513 if (tmp >= (ssize_t)sizeof(src1) * 8) { \
514 dest = 0; \
515 } else if (tmp <= -(ssize_t)sizeof(src1) * 8) { \
516 dest = src1 >> (sizeof(src1) * 8 - 1); \
517 } else if (tmp < 0) { \
518 dest = src1 >> -tmp; \
519 } else { \
520 dest = src1 << tmp; \
521 }} while (0)
522 NEON_VOP(shl_s8, neon_s8, 4)
523 NEON_VOP(shl_s16, neon_s16, 2)
524 NEON_VOP(shl_s32, neon_s32, 1)
525 #undef NEON_FN
527 uint64_t HELPER(neon_shl_s64)(uint64_t valop, uint64_t shiftop)
529 int8_t shift = (int8_t)shiftop;
530 int64_t val = valop;
531 if (shift >= 64) {
532 val = 0;
533 } else if (shift <= -64) {
534 val >>= 63;
535 } else if (shift < 0) {
536 val >>= -shift;
537 } else {
538 val <<= shift;
540 return val;
543 #define NEON_FN(dest, src1, src2) do { \
544 int8_t tmp; \
545 tmp = (int8_t)src2; \
546 if (tmp >= (ssize_t)sizeof(src1) * 8) { \
547 dest = 0; \
548 } else if (tmp < -(ssize_t)sizeof(src1) * 8) { \
549 dest = src1 >> (sizeof(src1) * 8 - 1); \
550 } else if (tmp == -(ssize_t)sizeof(src1) * 8) { \
551 dest = src1 >> (tmp - 1); \
552 dest++; \
553 dest >>= 1; \
554 } else if (tmp < 0) { \
555 dest = (src1 + (1 << (-1 - tmp))) >> -tmp; \
556 } else { \
557 dest = src1 << tmp; \
558 }} while (0)
559 NEON_VOP(rshl_s8, neon_s8, 4)
560 NEON_VOP(rshl_s16, neon_s16, 2)
561 NEON_VOP(rshl_s32, neon_s32, 1)
562 #undef NEON_FN
564 uint64_t HELPER(neon_rshl_s64)(uint64_t valop, uint64_t shiftop)
566 int8_t shift = (int8_t)shiftop;
567 int64_t val = valop;
568 if (shift >= 64) {
569 val = 0;
570 } else if (shift < -64) {
571 val >>= 63;
572 } else if (shift == -63) {
573 val >>= 63;
574 val++;
575 val >>= 1;
576 } else if (shift < 0) {
577 val = (val + ((int64_t)1 << (-1 - shift))) >> -shift;
578 } else {
579 val <<= shift;
581 return val;
584 #define NEON_FN(dest, src1, src2) do { \
585 int8_t tmp; \
586 tmp = (int8_t)src2; \
587 if (tmp >= (ssize_t)sizeof(src1) * 8 || \
588 tmp < -(ssize_t)sizeof(src1) * 8) { \
589 dest = 0; \
590 } else if (tmp == -(ssize_t)sizeof(src1) * 8) { \
591 dest = src1 >> (tmp - 1); \
592 } else if (tmp < 0) { \
593 dest = (src1 + (1 << (-1 - tmp))) >> -tmp; \
594 } else { \
595 dest = src1 << tmp; \
596 }} while (0)
597 NEON_VOP(rshl_u8, neon_u8, 4)
598 NEON_VOP(rshl_u16, neon_u16, 2)
599 NEON_VOP(rshl_u32, neon_u32, 1)
600 #undef NEON_FN
602 uint64_t HELPER(neon_rshl_u64)(uint64_t val, uint64_t shiftop)
604 int8_t shift = (uint8_t)shiftop;
605 if (shift >= 64 || shift < 64) {
606 val = 0;
607 } else if (shift == -64) {
608 /* Rounding a 1-bit result just preserves that bit. */
609 val >>= 63;
610 } if (shift < 0) {
611 val = (val + ((uint64_t)1 << (-1 - shift))) >> -shift;
612 val >>= -shift;
613 } else {
614 val <<= shift;
616 return val;
619 #define NEON_FN(dest, src1, src2) do { \
620 int8_t tmp; \
621 tmp = (int8_t)src2; \
622 if (tmp >= (ssize_t)sizeof(src1) * 8) { \
623 if (src1) { \
624 SET_QC(); \
625 dest = ~0; \
626 } else { \
627 dest = 0; \
629 } else if (tmp <= -(ssize_t)sizeof(src1) * 8) { \
630 dest = 0; \
631 } else if (tmp < 0) { \
632 dest = src1 >> -tmp; \
633 } else { \
634 dest = src1 << tmp; \
635 if ((dest >> tmp) != src1) { \
636 SET_QC(); \
637 dest = ~0; \
639 }} while (0)
640 NEON_VOP_ENV(qshl_u8, neon_u8, 4)
641 NEON_VOP_ENV(qshl_u16, neon_u16, 2)
642 NEON_VOP_ENV(qshl_u32, neon_u32, 1)
643 #undef NEON_FN
645 uint64_t HELPER(neon_qshl_u64)(CPUState *env, uint64_t val, uint64_t shiftop)
647 int8_t shift = (int8_t)shiftop;
648 if (shift >= 64) {
649 if (val) {
650 val = ~(uint64_t)0;
651 SET_QC();
653 } else if (shift <= -64) {
654 val = 0;
655 } else if (shift < 0) {
656 val >>= -shift;
657 } else {
658 uint64_t tmp = val;
659 val <<= shift;
660 if ((val >> shift) != tmp) {
661 SET_QC();
662 val = ~(uint64_t)0;
665 return val;
668 #define NEON_FN(dest, src1, src2) do { \
669 int8_t tmp; \
670 tmp = (int8_t)src2; \
671 if (tmp >= (ssize_t)sizeof(src1) * 8) { \
672 if (src1) { \
673 SET_QC(); \
674 dest = (uint32_t)(1 << (sizeof(src1) * 8 - 1)); \
675 if (src1 > 0) { \
676 dest--; \
678 } else { \
679 dest = src1; \
681 } else if (tmp <= -(ssize_t)sizeof(src1) * 8) { \
682 dest = src1 >> 31; \
683 } else if (tmp < 0) { \
684 dest = src1 >> -tmp; \
685 } else { \
686 dest = src1 << tmp; \
687 if ((dest >> tmp) != src1) { \
688 SET_QC(); \
689 dest = (uint32_t)(1 << (sizeof(src1) * 8 - 1)); \
690 if (src1 > 0) { \
691 dest--; \
694 }} while (0)
695 NEON_VOP_ENV(qshl_s8, neon_s8, 4)
696 NEON_VOP_ENV(qshl_s16, neon_s16, 2)
697 NEON_VOP_ENV(qshl_s32, neon_s32, 1)
698 #undef NEON_FN
700 uint64_t HELPER(neon_qshl_s64)(CPUState *env, uint64_t valop, uint64_t shiftop)
702 int8_t shift = (uint8_t)shiftop;
703 int64_t val = valop;
704 if (shift >= 64) {
705 if (val) {
706 SET_QC();
707 val = (val >> 63) ^ ~SIGNBIT64;
709 } else if (shift <= -64) {
710 val >>= 63;
711 } else if (shift < 0) {
712 val >>= -shift;
713 } else {
714 int64_t tmp = val;
715 val <<= shift;
716 if ((val >> shift) != tmp) {
717 SET_QC();
718 val = (tmp >> 63) ^ ~SIGNBIT64;
721 return val;
724 #define NEON_FN(dest, src1, src2) do { \
725 if (src1 & (1 << (sizeof(src1) * 8 - 1))) { \
726 SET_QC(); \
727 dest = 0; \
728 } else { \
729 int8_t tmp; \
730 tmp = (int8_t)src2; \
731 if (tmp >= (ssize_t)sizeof(src1) * 8) { \
732 if (src1) { \
733 SET_QC(); \
734 dest = ~0; \
735 } else { \
736 dest = 0; \
738 } else if (tmp <= -(ssize_t)sizeof(src1) * 8) { \
739 dest = 0; \
740 } else if (tmp < 0) { \
741 dest = src1 >> -tmp; \
742 } else { \
743 dest = src1 << tmp; \
744 if ((dest >> tmp) != src1) { \
745 SET_QC(); \
746 dest = ~0; \
749 }} while (0)
750 NEON_VOP_ENV(qshlu_s8, neon_u8, 4)
751 NEON_VOP_ENV(qshlu_s16, neon_u16, 2)
752 #undef NEON_FN
754 uint32_t HELPER(neon_qshlu_s32)(CPUState *env, uint32_t valop, uint32_t shiftop)
756 if ((int32_t)valop < 0) {
757 SET_QC();
758 return 0;
760 return helper_neon_qshl_u32(env, valop, shiftop);
763 uint64_t HELPER(neon_qshlu_s64)(CPUState *env, uint64_t valop, uint64_t shiftop)
765 if ((int64_t)valop < 0) {
766 SET_QC();
767 return 0;
769 return helper_neon_qshl_u64(env, valop, shiftop);
772 /* FIXME: This is wrong. */
773 #define NEON_FN(dest, src1, src2) do { \
774 int8_t tmp; \
775 tmp = (int8_t)src2; \
776 if (tmp < 0) { \
777 dest = (src1 + (1 << (-1 - tmp))) >> -tmp; \
778 } else { \
779 dest = src1 << tmp; \
780 if ((dest >> tmp) != src1) { \
781 SET_QC(); \
782 dest = ~0; \
784 }} while (0)
785 NEON_VOP_ENV(qrshl_u8, neon_u8, 4)
786 NEON_VOP_ENV(qrshl_u16, neon_u16, 2)
787 NEON_VOP_ENV(qrshl_u32, neon_u32, 1)
788 #undef NEON_FN
790 uint64_t HELPER(neon_qrshl_u64)(CPUState *env, uint64_t val, uint64_t shiftop)
792 int8_t shift = (int8_t)shiftop;
793 if (shift < 0) {
794 val = (val + (1 << (-1 - shift))) >> -shift;
795 } else { \
796 uint64_t tmp = val;
797 val <<= shift;
798 if ((val >> shift) != tmp) {
799 SET_QC();
800 val = ~0;
803 return val;
806 #define NEON_FN(dest, src1, src2) do { \
807 int8_t tmp; \
808 tmp = (int8_t)src2; \
809 if (tmp < 0) { \
810 dest = (src1 + (1 << (-1 - tmp))) >> -tmp; \
811 } else { \
812 dest = src1 << tmp; \
813 if ((dest >> tmp) != src1) { \
814 SET_QC(); \
815 dest = src1 >> 31; \
817 }} while (0)
818 NEON_VOP_ENV(qrshl_s8, neon_s8, 4)
819 NEON_VOP_ENV(qrshl_s16, neon_s16, 2)
820 NEON_VOP_ENV(qrshl_s32, neon_s32, 1)
821 #undef NEON_FN
823 uint64_t HELPER(neon_qrshl_s64)(CPUState *env, uint64_t valop, uint64_t shiftop)
825 int8_t shift = (uint8_t)shiftop;
826 int64_t val = valop;
828 if (shift < 0) {
829 val = (val + (1 << (-1 - shift))) >> -shift;
830 } else {
831 int64_t tmp = val;;
832 val <<= shift;
833 if ((val >> shift) != tmp) {
834 SET_QC();
835 val = tmp >> 31;
838 return val;
841 uint32_t HELPER(neon_add_u8)(uint32_t a, uint32_t b)
843 uint32_t mask;
844 mask = (a ^ b) & 0x80808080u;
845 a &= ~0x80808080u;
846 b &= ~0x80808080u;
847 return (a + b) ^ mask;
850 uint32_t HELPER(neon_add_u16)(uint32_t a, uint32_t b)
852 uint32_t mask;
853 mask = (a ^ b) & 0x80008000u;
854 a &= ~0x80008000u;
855 b &= ~0x80008000u;
856 return (a + b) ^ mask;
859 #define NEON_FN(dest, src1, src2) dest = src1 + src2
860 NEON_POP(padd_u8, neon_u8, 4)
861 NEON_POP(padd_u16, neon_u16, 2)
862 #undef NEON_FN
864 #define NEON_FN(dest, src1, src2) dest = src1 - src2
865 NEON_VOP(sub_u8, neon_u8, 4)
866 NEON_VOP(sub_u16, neon_u16, 2)
867 #undef NEON_FN
869 #define NEON_FN(dest, src1, src2) dest = src1 * src2
870 NEON_VOP(mul_u8, neon_u8, 4)
871 NEON_VOP(mul_u16, neon_u16, 2)
872 #undef NEON_FN
874 /* Polynomial multiplication is like integer multiplication except the
875 partial products are XORed, not added. */
876 uint32_t HELPER(neon_mul_p8)(uint32_t op1, uint32_t op2)
878 uint32_t mask;
879 uint32_t result;
880 result = 0;
881 while (op1) {
882 mask = 0;
883 if (op1 & 1)
884 mask |= 0xff;
885 if (op1 & (1 << 8))
886 mask |= (0xff << 8);
887 if (op1 & (1 << 16))
888 mask |= (0xff << 16);
889 if (op1 & (1 << 24))
890 mask |= (0xff << 24);
891 result ^= op2 & mask;
892 op1 = (op1 >> 1) & 0x7f7f7f7f;
893 op2 = (op2 << 1) & 0xfefefefe;
895 return result;
898 #define NEON_FN(dest, src1, src2) dest = (src1 & src2) ? -1 : 0
899 NEON_VOP(tst_u8, neon_u8, 4)
900 NEON_VOP(tst_u16, neon_u16, 2)
901 NEON_VOP(tst_u32, neon_u32, 1)
902 #undef NEON_FN
904 #define NEON_FN(dest, src1, src2) dest = (src1 == src2) ? -1 : 0
905 NEON_VOP(ceq_u8, neon_u8, 4)
906 NEON_VOP(ceq_u16, neon_u16, 2)
907 NEON_VOP(ceq_u32, neon_u32, 1)
908 #undef NEON_FN
910 #define NEON_FN(dest, src, dummy) dest = (src < 0) ? -src : src
911 NEON_VOP1(abs_s8, neon_s8, 4)
912 NEON_VOP1(abs_s16, neon_s16, 2)
913 #undef NEON_FN
915 /* Count Leading Sign/Zero Bits. */
916 static inline int do_clz8(uint8_t x)
918 int n;
919 for (n = 8; x; n--)
920 x >>= 1;
921 return n;
924 static inline int do_clz16(uint16_t x)
926 int n;
927 for (n = 16; x; n--)
928 x >>= 1;
929 return n;
932 #define NEON_FN(dest, src, dummy) dest = do_clz8(src)
933 NEON_VOP1(clz_u8, neon_u8, 4)
934 #undef NEON_FN
936 #define NEON_FN(dest, src, dummy) dest = do_clz16(src)
937 NEON_VOP1(clz_u16, neon_u16, 2)
938 #undef NEON_FN
940 #define NEON_FN(dest, src, dummy) dest = do_clz8((src < 0) ? ~src : src) - 1
941 NEON_VOP1(cls_s8, neon_s8, 4)
942 #undef NEON_FN
944 #define NEON_FN(dest, src, dummy) dest = do_clz16((src < 0) ? ~src : src) - 1
945 NEON_VOP1(cls_s16, neon_s16, 2)
946 #undef NEON_FN
948 uint32_t HELPER(neon_cls_s32)(uint32_t x)
950 int count;
951 if ((int32_t)x < 0)
952 x = ~x;
953 for (count = 32; x; count--)
954 x = x >> 1;
955 return count - 1;
958 /* Bit count. */
959 uint32_t HELPER(neon_cnt_u8)(uint32_t x)
961 x = (x & 0x55555555) + ((x >> 1) & 0x55555555);
962 x = (x & 0x33333333) + ((x >> 2) & 0x33333333);
963 x = (x & 0x0f0f0f0f) + ((x >> 4) & 0x0f0f0f0f);
964 return x;
967 #define NEON_QDMULH16(dest, src1, src2, round) do { \
968 uint32_t tmp = (int32_t)(int16_t) src1 * (int16_t) src2; \
969 if ((tmp ^ (tmp << 1)) & SIGNBIT) { \
970 SET_QC(); \
971 tmp = (tmp >> 31) ^ ~SIGNBIT; \
972 } else { \
973 tmp <<= 1; \
975 if (round) { \
976 int32_t old = tmp; \
977 tmp += 1 << 15; \
978 if ((int32_t)tmp < old) { \
979 SET_QC(); \
980 tmp = SIGNBIT - 1; \
983 dest = tmp >> 16; \
984 } while(0)
985 #define NEON_FN(dest, src1, src2) NEON_QDMULH16(dest, src1, src2, 0)
986 NEON_VOP_ENV(qdmulh_s16, neon_s16, 2)
987 #undef NEON_FN
988 #define NEON_FN(dest, src1, src2) NEON_QDMULH16(dest, src1, src2, 1)
989 NEON_VOP_ENV(qrdmulh_s16, neon_s16, 2)
990 #undef NEON_FN
991 #undef NEON_QDMULH16
993 #define NEON_QDMULH32(dest, src1, src2, round) do { \
994 uint64_t tmp = (int64_t)(int32_t) src1 * (int32_t) src2; \
995 if ((tmp ^ (tmp << 1)) & SIGNBIT64) { \
996 SET_QC(); \
997 tmp = (tmp >> 63) ^ ~SIGNBIT64; \
998 } else { \
999 tmp <<= 1; \
1001 if (round) { \
1002 int64_t old = tmp; \
1003 tmp += (int64_t)1 << 31; \
1004 if ((int64_t)tmp < old) { \
1005 SET_QC(); \
1006 tmp = SIGNBIT64 - 1; \
1009 dest = tmp >> 32; \
1010 } while(0)
1011 #define NEON_FN(dest, src1, src2) NEON_QDMULH32(dest, src1, src2, 0)
1012 NEON_VOP_ENV(qdmulh_s32, neon_s32, 1)
1013 #undef NEON_FN
1014 #define NEON_FN(dest, src1, src2) NEON_QDMULH32(dest, src1, src2, 1)
1015 NEON_VOP_ENV(qrdmulh_s32, neon_s32, 1)
1016 #undef NEON_FN
1017 #undef NEON_QDMULH32
1019 uint32_t HELPER(neon_narrow_u8)(uint64_t x)
1021 return (x & 0xffu) | ((x >> 8) & 0xff00u) | ((x >> 16) & 0xff0000u)
1022 | ((x >> 24) & 0xff000000u);
1025 uint32_t HELPER(neon_narrow_u16)(uint64_t x)
1027 return (x & 0xffffu) | ((x >> 16) & 0xffff0000u);
1030 uint32_t HELPER(neon_narrow_high_u8)(uint64_t x)
1032 return ((x >> 8) & 0xff) | ((x >> 16) & 0xff00)
1033 | ((x >> 24) & 0xff0000) | ((x >> 32) & 0xff000000);
1036 uint32_t HELPER(neon_narrow_high_u16)(uint64_t x)
1038 return ((x >> 16) & 0xffff) | ((x >> 32) & 0xffff0000);
1041 uint32_t HELPER(neon_narrow_round_high_u8)(uint64_t x)
1043 x &= 0xff80ff80ff80ff80ull;
1044 x += 0x0080008000800080ull;
1045 return ((x >> 8) & 0xff) | ((x >> 16) & 0xff00)
1046 | ((x >> 24) & 0xff0000) | ((x >> 32) & 0xff000000);
1049 uint32_t HELPER(neon_narrow_round_high_u16)(uint64_t x)
1051 x &= 0xffff8000ffff8000ull;
1052 x += 0x0000800000008000ull;
1053 return ((x >> 16) & 0xffff) | ((x >> 32) & 0xffff0000);
1056 uint32_t HELPER(neon_unarrow_sat8)(CPUState *env, uint64_t x)
1058 uint16_t s;
1059 uint8_t d;
1060 uint32_t res = 0;
1061 #define SAT8(n) \
1062 s = x >> n; \
1063 if (s & 0x8000) { \
1064 SET_QC(); \
1065 } else { \
1066 if (s > 0xff) { \
1067 d = 0xff; \
1068 SET_QC(); \
1069 } else { \
1070 d = s; \
1072 res |= (uint32_t)d << (n / 2); \
1075 SAT8(0);
1076 SAT8(16);
1077 SAT8(32);
1078 SAT8(48);
1079 #undef SAT8
1080 return res;
1083 uint32_t HELPER(neon_narrow_sat_u8)(CPUState *env, uint64_t x)
1085 uint16_t s;
1086 uint8_t d;
1087 uint32_t res = 0;
1088 #define SAT8(n) \
1089 s = x >> n; \
1090 if (s > 0xff) { \
1091 d = 0xff; \
1092 SET_QC(); \
1093 } else { \
1094 d = s; \
1096 res |= (uint32_t)d << (n / 2);
1098 SAT8(0);
1099 SAT8(16);
1100 SAT8(32);
1101 SAT8(48);
1102 #undef SAT8
1103 return res;
1106 uint32_t HELPER(neon_narrow_sat_s8)(CPUState *env, uint64_t x)
1108 int16_t s;
1109 uint8_t d;
1110 uint32_t res = 0;
1111 #define SAT8(n) \
1112 s = x >> n; \
1113 if (s != (int8_t)s) { \
1114 d = (s >> 15) ^ 0x7f; \
1115 SET_QC(); \
1116 } else { \
1117 d = s; \
1119 res |= (uint32_t)d << (n / 2);
1121 SAT8(0);
1122 SAT8(16);
1123 SAT8(32);
1124 SAT8(48);
1125 #undef SAT8
1126 return res;
1129 uint32_t HELPER(neon_unarrow_sat16)(CPUState *env, uint64_t x)
1131 uint32_t high;
1132 uint32_t low;
1133 low = x;
1134 if (low & 0x80000000) {
1135 low = 0;
1136 SET_QC();
1137 } else if (low > 0xffff) {
1138 low = 0xffff;
1139 SET_QC();
1141 high = x >> 32;
1142 if (high & 0x80000000) {
1143 high = 0;
1144 SET_QC();
1145 } else if (high > 0xffff) {
1146 high = 0xffff;
1147 SET_QC();
1149 return low | (high << 16);
1152 uint32_t HELPER(neon_narrow_sat_u16)(CPUState *env, uint64_t x)
1154 uint32_t high;
1155 uint32_t low;
1156 low = x;
1157 if (low > 0xffff) {
1158 low = 0xffff;
1159 SET_QC();
1161 high = x >> 32;
1162 if (high > 0xffff) {
1163 high = 0xffff;
1164 SET_QC();
1166 return low | (high << 16);
1169 uint32_t HELPER(neon_narrow_sat_s16)(CPUState *env, uint64_t x)
1171 int32_t low;
1172 int32_t high;
1173 low = x;
1174 if (low != (int16_t)low) {
1175 low = (low >> 31) ^ 0x7fff;
1176 SET_QC();
1178 high = x >> 32;
1179 if (high != (int16_t)high) {
1180 high = (high >> 31) ^ 0x7fff;
1181 SET_QC();
1183 return (uint16_t)low | (high << 16);
1186 uint32_t HELPER(neon_unarrow_sat32)(CPUState *env, uint64_t x)
1188 if (x & 0x8000000000000000ull) {
1189 SET_QC();
1190 return 0;
1192 if (x > 0xffffffffu) {
1193 SET_QC();
1194 return 0xffffffffu;
1196 return x;
1199 uint32_t HELPER(neon_narrow_sat_u32)(CPUState *env, uint64_t x)
1201 if (x > 0xffffffffu) {
1202 SET_QC();
1203 return 0xffffffffu;
1205 return x;
1208 uint32_t HELPER(neon_narrow_sat_s32)(CPUState *env, uint64_t x)
1210 if ((int64_t)x != (int32_t)x) {
1211 SET_QC();
1212 return ((int64_t)x >> 63) ^ 0x7fffffff;
1214 return x;
1217 uint64_t HELPER(neon_widen_u8)(uint32_t x)
1219 uint64_t tmp;
1220 uint64_t ret;
1221 ret = (uint8_t)x;
1222 tmp = (uint8_t)(x >> 8);
1223 ret |= tmp << 16;
1224 tmp = (uint8_t)(x >> 16);
1225 ret |= tmp << 32;
1226 tmp = (uint8_t)(x >> 24);
1227 ret |= tmp << 48;
1228 return ret;
1231 uint64_t HELPER(neon_widen_s8)(uint32_t x)
1233 uint64_t tmp;
1234 uint64_t ret;
1235 ret = (uint16_t)(int8_t)x;
1236 tmp = (uint16_t)(int8_t)(x >> 8);
1237 ret |= tmp << 16;
1238 tmp = (uint16_t)(int8_t)(x >> 16);
1239 ret |= tmp << 32;
1240 tmp = (uint16_t)(int8_t)(x >> 24);
1241 ret |= tmp << 48;
1242 return ret;
1245 uint64_t HELPER(neon_widen_u16)(uint32_t x)
1247 uint64_t high = (uint16_t)(x >> 16);
1248 return ((uint16_t)x) | (high << 32);
1251 uint64_t HELPER(neon_widen_s16)(uint32_t x)
1253 uint64_t high = (int16_t)(x >> 16);
1254 return ((uint32_t)(int16_t)x) | (high << 32);
1257 uint64_t HELPER(neon_addl_u16)(uint64_t a, uint64_t b)
1259 uint64_t mask;
1260 mask = (a ^ b) & 0x8000800080008000ull;
1261 a &= ~0x8000800080008000ull;
1262 b &= ~0x8000800080008000ull;
1263 return (a + b) ^ mask;
1266 uint64_t HELPER(neon_addl_u32)(uint64_t a, uint64_t b)
1268 uint64_t mask;
1269 mask = (a ^ b) & 0x8000000080000000ull;
1270 a &= ~0x8000000080000000ull;
1271 b &= ~0x8000000080000000ull;
1272 return (a + b) ^ mask;
1275 uint64_t HELPER(neon_paddl_u16)(uint64_t a, uint64_t b)
1277 uint64_t tmp;
1278 uint64_t tmp2;
1280 tmp = a & 0x0000ffff0000ffffull;
1281 tmp += (a >> 16) & 0x0000ffff0000ffffull;
1282 tmp2 = b & 0xffff0000ffff0000ull;
1283 tmp2 += (b << 16) & 0xffff0000ffff0000ull;
1284 return ( tmp & 0xffff)
1285 | ((tmp >> 16) & 0xffff0000ull)
1286 | ((tmp2 << 16) & 0xffff00000000ull)
1287 | ( tmp2 & 0xffff000000000000ull);
1290 uint64_t HELPER(neon_paddl_u32)(uint64_t a, uint64_t b)
1292 uint32_t low = a + (a >> 32);
1293 uint32_t high = b + (b >> 32);
1294 return low + ((uint64_t)high << 32);
1297 uint64_t HELPER(neon_subl_u16)(uint64_t a, uint64_t b)
1299 uint64_t mask;
1300 mask = (a ^ ~b) & 0x8000800080008000ull;
1301 a |= 0x8000800080008000ull;
1302 b &= ~0x8000800080008000ull;
1303 return (a - b) ^ mask;
1306 uint64_t HELPER(neon_subl_u32)(uint64_t a, uint64_t b)
1308 uint64_t mask;
1309 mask = (a ^ ~b) & 0x8000000080000000ull;
1310 a |= 0x8000000080000000ull;
1311 b &= ~0x8000000080000000ull;
1312 return (a - b) ^ mask;
1315 uint64_t HELPER(neon_addl_saturate_s32)(CPUState *env, uint64_t a, uint64_t b)
1317 uint32_t x, y;
1318 uint32_t low, high;
1320 x = a;
1321 y = b;
1322 low = x + y;
1323 if (((low ^ x) & SIGNBIT) && !((x ^ y) & SIGNBIT)) {
1324 SET_QC();
1325 low = ((int32_t)x >> 31) ^ ~SIGNBIT;
1327 x = a >> 32;
1328 y = b >> 32;
1329 high = x + y;
1330 if (((high ^ x) & SIGNBIT) && !((x ^ y) & SIGNBIT)) {
1331 SET_QC();
1332 high = ((int32_t)x >> 31) ^ ~SIGNBIT;
1334 return low | ((uint64_t)high << 32);
1337 uint64_t HELPER(neon_addl_saturate_s64)(CPUState *env, uint64_t a, uint64_t b)
1339 uint64_t result;
1341 result = a + b;
1342 if (((result ^ a) & SIGNBIT64) && !((a ^ b) & SIGNBIT64)) {
1343 SET_QC();
1344 result = ((int64_t)a >> 63) ^ ~SIGNBIT64;
1346 return result;
1349 #define DO_ABD(dest, x, y, type) do { \
1350 type tmp_x = x; \
1351 type tmp_y = y; \
1352 dest = ((tmp_x > tmp_y) ? tmp_x - tmp_y : tmp_y - tmp_x); \
1353 } while(0)
1355 uint64_t HELPER(neon_abdl_u16)(uint32_t a, uint32_t b)
1357 uint64_t tmp;
1358 uint64_t result;
1359 DO_ABD(result, a, b, uint8_t);
1360 DO_ABD(tmp, a >> 8, b >> 8, uint8_t);
1361 result |= tmp << 16;
1362 DO_ABD(tmp, a >> 16, b >> 16, uint8_t);
1363 result |= tmp << 32;
1364 DO_ABD(tmp, a >> 24, b >> 24, uint8_t);
1365 result |= tmp << 48;
1366 return result;
1369 uint64_t HELPER(neon_abdl_s16)(uint32_t a, uint32_t b)
1371 uint64_t tmp;
1372 uint64_t result;
1373 DO_ABD(result, a, b, int8_t);
1374 DO_ABD(tmp, a >> 8, b >> 8, int8_t);
1375 result |= tmp << 16;
1376 DO_ABD(tmp, a >> 16, b >> 16, int8_t);
1377 result |= tmp << 32;
1378 DO_ABD(tmp, a >> 24, b >> 24, int8_t);
1379 result |= tmp << 48;
1380 return result;
1383 uint64_t HELPER(neon_abdl_u32)(uint32_t a, uint32_t b)
1385 uint64_t tmp;
1386 uint64_t result;
1387 DO_ABD(result, a, b, uint16_t);
1388 DO_ABD(tmp, a >> 16, b >> 16, uint16_t);
1389 return result | (tmp << 32);
1392 uint64_t HELPER(neon_abdl_s32)(uint32_t a, uint32_t b)
1394 uint64_t tmp;
1395 uint64_t result;
1396 DO_ABD(result, a, b, int16_t);
1397 DO_ABD(tmp, a >> 16, b >> 16, int16_t);
1398 return result | (tmp << 32);
1401 uint64_t HELPER(neon_abdl_u64)(uint32_t a, uint32_t b)
1403 uint64_t result;
1404 DO_ABD(result, a, b, uint32_t);
1405 return result;
1408 uint64_t HELPER(neon_abdl_s64)(uint32_t a, uint32_t b)
1410 uint64_t result;
1411 DO_ABD(result, a, b, int32_t);
1412 return result;
1414 #undef DO_ABD
1416 /* Widening multiply. Named type is the source type. */
1417 #define DO_MULL(dest, x, y, type1, type2) do { \
1418 type1 tmp_x = x; \
1419 type1 tmp_y = y; \
1420 dest = (type2)((type2)tmp_x * (type2)tmp_y); \
1421 } while(0)
1423 uint64_t HELPER(neon_mull_u8)(uint32_t a, uint32_t b)
1425 uint64_t tmp;
1426 uint64_t result;
1428 DO_MULL(result, a, b, uint8_t, uint16_t);
1429 DO_MULL(tmp, a >> 8, b >> 8, uint8_t, uint16_t);
1430 result |= tmp << 16;
1431 DO_MULL(tmp, a >> 16, b >> 16, uint8_t, uint16_t);
1432 result |= tmp << 32;
1433 DO_MULL(tmp, a >> 24, b >> 24, uint8_t, uint16_t);
1434 result |= tmp << 48;
1435 return result;
1438 uint64_t HELPER(neon_mull_s8)(uint32_t a, uint32_t b)
1440 uint64_t tmp;
1441 uint64_t result;
1443 DO_MULL(result, a, b, int8_t, uint16_t);
1444 DO_MULL(tmp, a >> 8, b >> 8, int8_t, uint16_t);
1445 result |= tmp << 16;
1446 DO_MULL(tmp, a >> 16, b >> 16, int8_t, uint16_t);
1447 result |= tmp << 32;
1448 DO_MULL(tmp, a >> 24, b >> 24, int8_t, uint16_t);
1449 result |= tmp << 48;
1450 return result;
1453 uint64_t HELPER(neon_mull_u16)(uint32_t a, uint32_t b)
1455 uint64_t tmp;
1456 uint64_t result;
1458 DO_MULL(result, a, b, uint16_t, uint32_t);
1459 DO_MULL(tmp, a >> 16, b >> 16, uint16_t, uint32_t);
1460 return result | (tmp << 32);
1463 uint64_t HELPER(neon_mull_s16)(uint32_t a, uint32_t b)
1465 uint64_t tmp;
1466 uint64_t result;
1468 DO_MULL(result, a, b, int16_t, uint32_t);
1469 DO_MULL(tmp, a >> 16, b >> 16, int16_t, uint32_t);
1470 return result | (tmp << 32);
1473 uint64_t HELPER(neon_negl_u16)(uint64_t x)
1475 uint16_t tmp;
1476 uint64_t result;
1477 result = (uint16_t)-x;
1478 tmp = -(x >> 16);
1479 result |= (uint64_t)tmp << 16;
1480 tmp = -(x >> 32);
1481 result |= (uint64_t)tmp << 32;
1482 tmp = -(x >> 48);
1483 result |= (uint64_t)tmp << 48;
1484 return result;
1487 uint64_t HELPER(neon_negl_u32)(uint64_t x)
1489 uint32_t low = -x;
1490 uint32_t high = -(x >> 32);
1491 return low | ((uint64_t)high << 32);
1494 /* FIXME: There should be a native op for this. */
1495 uint64_t HELPER(neon_negl_u64)(uint64_t x)
1497 return -x;
1500 /* Saturnating sign manuipulation. */
1501 /* ??? Make these use NEON_VOP1 */
1502 #define DO_QABS8(x) do { \
1503 if (x == (int8_t)0x80) { \
1504 x = 0x7f; \
1505 SET_QC(); \
1506 } else if (x < 0) { \
1507 x = -x; \
1508 }} while (0)
1509 uint32_t HELPER(neon_qabs_s8)(CPUState *env, uint32_t x)
1511 neon_s8 vec;
1512 NEON_UNPACK(neon_s8, vec, x);
1513 DO_QABS8(vec.v1);
1514 DO_QABS8(vec.v2);
1515 DO_QABS8(vec.v3);
1516 DO_QABS8(vec.v4);
1517 NEON_PACK(neon_s8, x, vec);
1518 return x;
1520 #undef DO_QABS8
1522 #define DO_QNEG8(x) do { \
1523 if (x == (int8_t)0x80) { \
1524 x = 0x7f; \
1525 SET_QC(); \
1526 } else { \
1527 x = -x; \
1528 }} while (0)
1529 uint32_t HELPER(neon_qneg_s8)(CPUState *env, uint32_t x)
1531 neon_s8 vec;
1532 NEON_UNPACK(neon_s8, vec, x);
1533 DO_QNEG8(vec.v1);
1534 DO_QNEG8(vec.v2);
1535 DO_QNEG8(vec.v3);
1536 DO_QNEG8(vec.v4);
1537 NEON_PACK(neon_s8, x, vec);
1538 return x;
1540 #undef DO_QNEG8
1542 #define DO_QABS16(x) do { \
1543 if (x == (int16_t)0x8000) { \
1544 x = 0x7fff; \
1545 SET_QC(); \
1546 } else if (x < 0) { \
1547 x = -x; \
1548 }} while (0)
1549 uint32_t HELPER(neon_qabs_s16)(CPUState *env, uint32_t x)
1551 neon_s16 vec;
1552 NEON_UNPACK(neon_s16, vec, x);
1553 DO_QABS16(vec.v1);
1554 DO_QABS16(vec.v2);
1555 NEON_PACK(neon_s16, x, vec);
1556 return x;
1558 #undef DO_QABS16
1560 #define DO_QNEG16(x) do { \
1561 if (x == (int16_t)0x8000) { \
1562 x = 0x7fff; \
1563 SET_QC(); \
1564 } else { \
1565 x = -x; \
1566 }} while (0)
1567 uint32_t HELPER(neon_qneg_s16)(CPUState *env, uint32_t x)
1569 neon_s16 vec;
1570 NEON_UNPACK(neon_s16, vec, x);
1571 DO_QNEG16(vec.v1);
1572 DO_QNEG16(vec.v2);
1573 NEON_PACK(neon_s16, x, vec);
1574 return x;
1576 #undef DO_QNEG16
1578 uint32_t HELPER(neon_qabs_s32)(CPUState *env, uint32_t x)
1580 if (x == SIGNBIT) {
1581 SET_QC();
1582 x = ~SIGNBIT;
1583 } else if ((int32_t)x < 0) {
1584 x = -x;
1586 return x;
1589 uint32_t HELPER(neon_qneg_s32)(CPUState *env, uint32_t x)
1591 if (x == SIGNBIT) {
1592 SET_QC();
1593 x = ~SIGNBIT;
1594 } else {
1595 x = -x;
1597 return x;
1600 /* NEON Float helpers. */
1601 uint32_t HELPER(neon_min_f32)(uint32_t a, uint32_t b)
1603 float32 f0 = vfp_itos(a);
1604 float32 f1 = vfp_itos(b);
1605 return (float32_compare_quiet(f0, f1, NFS) == -1) ? a : b;
1608 uint32_t HELPER(neon_max_f32)(uint32_t a, uint32_t b)
1610 float32 f0 = vfp_itos(a);
1611 float32 f1 = vfp_itos(b);
1612 return (float32_compare_quiet(f0, f1, NFS) == 1) ? a : b;
1615 uint32_t HELPER(neon_abd_f32)(uint32_t a, uint32_t b)
1617 float32 f0 = vfp_itos(a);
1618 float32 f1 = vfp_itos(b);
1619 return vfp_stoi((float32_compare_quiet(f0, f1, NFS) == 1)
1620 ? float32_sub(f0, f1, NFS)
1621 : float32_sub(f1, f0, NFS));
1624 uint32_t HELPER(neon_add_f32)(uint32_t a, uint32_t b)
1626 return vfp_stoi(float32_add(vfp_itos(a), vfp_itos(b), NFS));
1629 uint32_t HELPER(neon_sub_f32)(uint32_t a, uint32_t b)
1631 return vfp_stoi(float32_sub(vfp_itos(a), vfp_itos(b), NFS));
1634 uint32_t HELPER(neon_mul_f32)(uint32_t a, uint32_t b)
1636 return vfp_stoi(float32_mul(vfp_itos(a), vfp_itos(b), NFS));
1639 /* Floating point comparisons produce an integer result. */
1640 #define NEON_VOP_FCMP(name, cmp) \
1641 uint32_t HELPER(neon_##name)(uint32_t a, uint32_t b) \
1643 if (float32_compare_quiet(vfp_itos(a), vfp_itos(b), NFS) cmp 0) \
1644 return ~0; \
1645 else \
1646 return 0; \
1649 NEON_VOP_FCMP(ceq_f32, ==)
1650 NEON_VOP_FCMP(cge_f32, >=)
1651 NEON_VOP_FCMP(cgt_f32, >)
1653 uint32_t HELPER(neon_acge_f32)(uint32_t a, uint32_t b)
1655 float32 f0 = float32_abs(vfp_itos(a));
1656 float32 f1 = float32_abs(vfp_itos(b));
1657 return (float32_compare_quiet(f0, f1,NFS) >= 0) ? ~0 : 0;
1660 uint32_t HELPER(neon_acgt_f32)(uint32_t a, uint32_t b)
1662 float32 f0 = float32_abs(vfp_itos(a));
1663 float32 f1 = float32_abs(vfp_itos(b));
1664 return (float32_compare_quiet(f0, f1, NFS) > 0) ? ~0 : 0;