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664e0f19 | 1 | /* |
222a3336 | 2 | * MMX/3DNow!/SSE/SSE2/SSE3/SSSE3/SSE4/PNI support |
5fafdf24 | 3 | * |
664e0f19 | 4 | * Copyright (c) 2005 Fabrice Bellard |
222a3336 | 5 | * Copyright (c) 2008 Intel Corporation <[email protected]> |
664e0f19 FB |
6 | * |
7 | * This library is free software; you can redistribute it and/or | |
8 | * modify it under the terms of the GNU Lesser General Public | |
9 | * License as published by the Free Software Foundation; either | |
10 | * version 2 of the License, or (at your option) any later version. | |
11 | * | |
12 | * This library is distributed in the hope that it will be useful, | |
13 | * but WITHOUT ANY WARRANTY; without even the implied warranty of | |
14 | * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU | |
15 | * Lesser General Public License for more details. | |
16 | * | |
17 | * You should have received a copy of the GNU Lesser General Public | |
8167ee88 | 18 | * License along with this library; if not, see <http://www.gnu.org/licenses/>. |
664e0f19 FB |
19 | */ |
20 | #if SHIFT == 0 | |
21 | #define Reg MMXReg | |
001faf32 | 22 | #define XMM_ONLY(...) |
664e0f19 FB |
23 | #define B(n) MMX_B(n) |
24 | #define W(n) MMX_W(n) | |
25 | #define L(n) MMX_L(n) | |
26 | #define Q(n) q | |
27 | #define SUFFIX _mmx | |
28 | #else | |
29 | #define Reg XMMReg | |
001faf32 | 30 | #define XMM_ONLY(...) __VA_ARGS__ |
664e0f19 FB |
31 | #define B(n) XMM_B(n) |
32 | #define W(n) XMM_W(n) | |
33 | #define L(n) XMM_L(n) | |
34 | #define Q(n) XMM_Q(n) | |
35 | #define SUFFIX _xmm | |
36 | #endif | |
37 | ||
5af45186 | 38 | void glue(helper_psrlw, SUFFIX)(Reg *d, Reg *s) |
664e0f19 | 39 | { |
664e0f19 FB |
40 | int shift; |
41 | ||
664e0f19 FB |
42 | if (s->Q(0) > 15) { |
43 | d->Q(0) = 0; | |
44 | #if SHIFT == 1 | |
45 | d->Q(1) = 0; | |
46 | #endif | |
47 | } else { | |
48 | shift = s->B(0); | |
49 | d->W(0) >>= shift; | |
50 | d->W(1) >>= shift; | |
51 | d->W(2) >>= shift; | |
52 | d->W(3) >>= shift; | |
53 | #if SHIFT == 1 | |
54 | d->W(4) >>= shift; | |
55 | d->W(5) >>= shift; | |
56 | d->W(6) >>= shift; | |
57 | d->W(7) >>= shift; | |
58 | #endif | |
59 | } | |
60 | } | |
61 | ||
5af45186 | 62 | void glue(helper_psraw, SUFFIX)(Reg *d, Reg *s) |
664e0f19 | 63 | { |
664e0f19 FB |
64 | int shift; |
65 | ||
664e0f19 FB |
66 | if (s->Q(0) > 15) { |
67 | shift = 15; | |
68 | } else { | |
69 | shift = s->B(0); | |
70 | } | |
71 | d->W(0) = (int16_t)d->W(0) >> shift; | |
72 | d->W(1) = (int16_t)d->W(1) >> shift; | |
73 | d->W(2) = (int16_t)d->W(2) >> shift; | |
74 | d->W(3) = (int16_t)d->W(3) >> shift; | |
75 | #if SHIFT == 1 | |
76 | d->W(4) = (int16_t)d->W(4) >> shift; | |
77 | d->W(5) = (int16_t)d->W(5) >> shift; | |
78 | d->W(6) = (int16_t)d->W(6) >> shift; | |
79 | d->W(7) = (int16_t)d->W(7) >> shift; | |
80 | #endif | |
81 | } | |
82 | ||
5af45186 | 83 | void glue(helper_psllw, SUFFIX)(Reg *d, Reg *s) |
664e0f19 | 84 | { |
664e0f19 FB |
85 | int shift; |
86 | ||
664e0f19 FB |
87 | if (s->Q(0) > 15) { |
88 | d->Q(0) = 0; | |
89 | #if SHIFT == 1 | |
90 | d->Q(1) = 0; | |
91 | #endif | |
92 | } else { | |
93 | shift = s->B(0); | |
94 | d->W(0) <<= shift; | |
95 | d->W(1) <<= shift; | |
96 | d->W(2) <<= shift; | |
97 | d->W(3) <<= shift; | |
98 | #if SHIFT == 1 | |
99 | d->W(4) <<= shift; | |
100 | d->W(5) <<= shift; | |
101 | d->W(6) <<= shift; | |
102 | d->W(7) <<= shift; | |
103 | #endif | |
104 | } | |
105 | } | |
106 | ||
5af45186 | 107 | void glue(helper_psrld, SUFFIX)(Reg *d, Reg *s) |
664e0f19 | 108 | { |
664e0f19 FB |
109 | int shift; |
110 | ||
664e0f19 FB |
111 | if (s->Q(0) > 31) { |
112 | d->Q(0) = 0; | |
113 | #if SHIFT == 1 | |
114 | d->Q(1) = 0; | |
115 | #endif | |
116 | } else { | |
117 | shift = s->B(0); | |
118 | d->L(0) >>= shift; | |
119 | d->L(1) >>= shift; | |
120 | #if SHIFT == 1 | |
121 | d->L(2) >>= shift; | |
122 | d->L(3) >>= shift; | |
123 | #endif | |
124 | } | |
125 | } | |
126 | ||
5af45186 | 127 | void glue(helper_psrad, SUFFIX)(Reg *d, Reg *s) |
664e0f19 | 128 | { |
664e0f19 FB |
129 | int shift; |
130 | ||
664e0f19 FB |
131 | if (s->Q(0) > 31) { |
132 | shift = 31; | |
133 | } else { | |
134 | shift = s->B(0); | |
135 | } | |
136 | d->L(0) = (int32_t)d->L(0) >> shift; | |
137 | d->L(1) = (int32_t)d->L(1) >> shift; | |
138 | #if SHIFT == 1 | |
139 | d->L(2) = (int32_t)d->L(2) >> shift; | |
140 | d->L(3) = (int32_t)d->L(3) >> shift; | |
141 | #endif | |
142 | } | |
143 | ||
5af45186 | 144 | void glue(helper_pslld, SUFFIX)(Reg *d, Reg *s) |
664e0f19 | 145 | { |
664e0f19 FB |
146 | int shift; |
147 | ||
664e0f19 FB |
148 | if (s->Q(0) > 31) { |
149 | d->Q(0) = 0; | |
150 | #if SHIFT == 1 | |
151 | d->Q(1) = 0; | |
152 | #endif | |
153 | } else { | |
154 | shift = s->B(0); | |
155 | d->L(0) <<= shift; | |
156 | d->L(1) <<= shift; | |
157 | #if SHIFT == 1 | |
158 | d->L(2) <<= shift; | |
159 | d->L(3) <<= shift; | |
160 | #endif | |
161 | } | |
162 | } | |
163 | ||
5af45186 | 164 | void glue(helper_psrlq, SUFFIX)(Reg *d, Reg *s) |
664e0f19 | 165 | { |
664e0f19 FB |
166 | int shift; |
167 | ||
664e0f19 FB |
168 | if (s->Q(0) > 63) { |
169 | d->Q(0) = 0; | |
170 | #if SHIFT == 1 | |
171 | d->Q(1) = 0; | |
172 | #endif | |
173 | } else { | |
174 | shift = s->B(0); | |
175 | d->Q(0) >>= shift; | |
176 | #if SHIFT == 1 | |
177 | d->Q(1) >>= shift; | |
178 | #endif | |
179 | } | |
180 | } | |
181 | ||
5af45186 | 182 | void glue(helper_psllq, SUFFIX)(Reg *d, Reg *s) |
664e0f19 | 183 | { |
664e0f19 FB |
184 | int shift; |
185 | ||
664e0f19 FB |
186 | if (s->Q(0) > 63) { |
187 | d->Q(0) = 0; | |
188 | #if SHIFT == 1 | |
189 | d->Q(1) = 0; | |
190 | #endif | |
191 | } else { | |
192 | shift = s->B(0); | |
193 | d->Q(0) <<= shift; | |
194 | #if SHIFT == 1 | |
195 | d->Q(1) <<= shift; | |
196 | #endif | |
197 | } | |
198 | } | |
199 | ||
200 | #if SHIFT == 1 | |
5af45186 | 201 | void glue(helper_psrldq, SUFFIX)(Reg *d, Reg *s) |
664e0f19 | 202 | { |
664e0f19 FB |
203 | int shift, i; |
204 | ||
664e0f19 | 205 | shift = s->L(0); |
e01d9d31 | 206 | if (shift > 16) { |
664e0f19 | 207 | shift = 16; |
e01d9d31 BS |
208 | } |
209 | for (i = 0; i < 16 - shift; i++) { | |
664e0f19 | 210 | d->B(i) = d->B(i + shift); |
e01d9d31 BS |
211 | } |
212 | for (i = 16 - shift; i < 16; i++) { | |
664e0f19 | 213 | d->B(i) = 0; |
e01d9d31 | 214 | } |
664e0f19 FB |
215 | } |
216 | ||
5af45186 | 217 | void glue(helper_pslldq, SUFFIX)(Reg *d, Reg *s) |
664e0f19 | 218 | { |
664e0f19 FB |
219 | int shift, i; |
220 | ||
664e0f19 | 221 | shift = s->L(0); |
e01d9d31 | 222 | if (shift > 16) { |
664e0f19 | 223 | shift = 16; |
e01d9d31 BS |
224 | } |
225 | for (i = 15; i >= shift; i--) { | |
664e0f19 | 226 | d->B(i) = d->B(i - shift); |
e01d9d31 BS |
227 | } |
228 | for (i = 0; i < shift; i++) { | |
664e0f19 | 229 | d->B(i) = 0; |
e01d9d31 | 230 | } |
664e0f19 FB |
231 | } |
232 | #endif | |
233 | ||
e01d9d31 BS |
234 | #define SSE_HELPER_B(name, F) \ |
235 | void glue(name, SUFFIX)(Reg *d, Reg *s) \ | |
236 | { \ | |
237 | d->B(0) = F(d->B(0), s->B(0)); \ | |
238 | d->B(1) = F(d->B(1), s->B(1)); \ | |
239 | d->B(2) = F(d->B(2), s->B(2)); \ | |
240 | d->B(3) = F(d->B(3), s->B(3)); \ | |
241 | d->B(4) = F(d->B(4), s->B(4)); \ | |
242 | d->B(5) = F(d->B(5), s->B(5)); \ | |
243 | d->B(6) = F(d->B(6), s->B(6)); \ | |
244 | d->B(7) = F(d->B(7), s->B(7)); \ | |
245 | XMM_ONLY( \ | |
246 | d->B(8) = F(d->B(8), s->B(8)); \ | |
247 | d->B(9) = F(d->B(9), s->B(9)); \ | |
248 | d->B(10) = F(d->B(10), s->B(10)); \ | |
249 | d->B(11) = F(d->B(11), s->B(11)); \ | |
250 | d->B(12) = F(d->B(12), s->B(12)); \ | |
251 | d->B(13) = F(d->B(13), s->B(13)); \ | |
252 | d->B(14) = F(d->B(14), s->B(14)); \ | |
253 | d->B(15) = F(d->B(15), s->B(15)); \ | |
254 | ) \ | |
255 | } | |
256 | ||
257 | #define SSE_HELPER_W(name, F) \ | |
258 | void glue(name, SUFFIX)(Reg *d, Reg *s) \ | |
259 | { \ | |
260 | d->W(0) = F(d->W(0), s->W(0)); \ | |
261 | d->W(1) = F(d->W(1), s->W(1)); \ | |
262 | d->W(2) = F(d->W(2), s->W(2)); \ | |
263 | d->W(3) = F(d->W(3), s->W(3)); \ | |
264 | XMM_ONLY( \ | |
265 | d->W(4) = F(d->W(4), s->W(4)); \ | |
266 | d->W(5) = F(d->W(5), s->W(5)); \ | |
267 | d->W(6) = F(d->W(6), s->W(6)); \ | |
268 | d->W(7) = F(d->W(7), s->W(7)); \ | |
269 | ) \ | |
270 | } | |
271 | ||
272 | #define SSE_HELPER_L(name, F) \ | |
273 | void glue(name, SUFFIX)(Reg *d, Reg *s) \ | |
274 | { \ | |
275 | d->L(0) = F(d->L(0), s->L(0)); \ | |
276 | d->L(1) = F(d->L(1), s->L(1)); \ | |
277 | XMM_ONLY( \ | |
278 | d->L(2) = F(d->L(2), s->L(2)); \ | |
279 | d->L(3) = F(d->L(3), s->L(3)); \ | |
280 | ) \ | |
281 | } | |
282 | ||
283 | #define SSE_HELPER_Q(name, F) \ | |
284 | void glue(name, SUFFIX)(Reg *d, Reg *s) \ | |
285 | { \ | |
286 | d->Q(0) = F(d->Q(0), s->Q(0)); \ | |
287 | XMM_ONLY( \ | |
288 | d->Q(1) = F(d->Q(1), s->Q(1)); \ | |
289 | ) \ | |
290 | } | |
664e0f19 FB |
291 | |
292 | #if SHIFT == 0 | |
293 | static inline int satub(int x) | |
294 | { | |
e01d9d31 | 295 | if (x < 0) { |
664e0f19 | 296 | return 0; |
e01d9d31 | 297 | } else if (x > 255) { |
664e0f19 | 298 | return 255; |
e01d9d31 | 299 | } else { |
664e0f19 | 300 | return x; |
e01d9d31 | 301 | } |
664e0f19 FB |
302 | } |
303 | ||
304 | static inline int satuw(int x) | |
305 | { | |
e01d9d31 | 306 | if (x < 0) { |
664e0f19 | 307 | return 0; |
e01d9d31 | 308 | } else if (x > 65535) { |
664e0f19 | 309 | return 65535; |
e01d9d31 | 310 | } else { |
664e0f19 | 311 | return x; |
e01d9d31 | 312 | } |
664e0f19 FB |
313 | } |
314 | ||
315 | static inline int satsb(int x) | |
316 | { | |
e01d9d31 | 317 | if (x < -128) { |
664e0f19 | 318 | return -128; |
e01d9d31 | 319 | } else if (x > 127) { |
664e0f19 | 320 | return 127; |
e01d9d31 | 321 | } else { |
664e0f19 | 322 | return x; |
e01d9d31 | 323 | } |
664e0f19 FB |
324 | } |
325 | ||
326 | static inline int satsw(int x) | |
327 | { | |
e01d9d31 | 328 | if (x < -32768) { |
664e0f19 | 329 | return -32768; |
e01d9d31 | 330 | } else if (x > 32767) { |
664e0f19 | 331 | return 32767; |
e01d9d31 | 332 | } else { |
664e0f19 | 333 | return x; |
e01d9d31 | 334 | } |
664e0f19 FB |
335 | } |
336 | ||
337 | #define FADD(a, b) ((a) + (b)) | |
338 | #define FADDUB(a, b) satub((a) + (b)) | |
339 | #define FADDUW(a, b) satuw((a) + (b)) | |
340 | #define FADDSB(a, b) satsb((int8_t)(a) + (int8_t)(b)) | |
341 | #define FADDSW(a, b) satsw((int16_t)(a) + (int16_t)(b)) | |
342 | ||
343 | #define FSUB(a, b) ((a) - (b)) | |
344 | #define FSUBUB(a, b) satub((a) - (b)) | |
345 | #define FSUBUW(a, b) satuw((a) - (b)) | |
346 | #define FSUBSB(a, b) satsb((int8_t)(a) - (int8_t)(b)) | |
347 | #define FSUBSW(a, b) satsw((int16_t)(a) - (int16_t)(b)) | |
348 | #define FMINUB(a, b) ((a) < (b)) ? (a) : (b) | |
349 | #define FMINSW(a, b) ((int16_t)(a) < (int16_t)(b)) ? (a) : (b) | |
350 | #define FMAXUB(a, b) ((a) > (b)) ? (a) : (b) | |
351 | #define FMAXSW(a, b) ((int16_t)(a) > (int16_t)(b)) ? (a) : (b) | |
352 | ||
e01d9d31 | 353 | #define FAND(a, b) ((a) & (b)) |
664e0f19 | 354 | #define FANDN(a, b) ((~(a)) & (b)) |
e01d9d31 BS |
355 | #define FOR(a, b) ((a) | (b)) |
356 | #define FXOR(a, b) ((a) ^ (b)) | |
664e0f19 | 357 | |
e01d9d31 BS |
358 | #define FCMPGTB(a, b) ((int8_t)(a) > (int8_t)(b) ? -1 : 0) |
359 | #define FCMPGTW(a, b) ((int16_t)(a) > (int16_t)(b) ? -1 : 0) | |
360 | #define FCMPGTL(a, b) ((int32_t)(a) > (int32_t)(b) ? -1 : 0) | |
361 | #define FCMPEQ(a, b) ((a) == (b) ? -1 : 0) | |
664e0f19 | 362 | |
e01d9d31 BS |
363 | #define FMULLW(a, b) ((a) * (b)) |
364 | #define FMULHRW(a, b) (((int16_t)(a) * (int16_t)(b) + 0x8000) >> 16) | |
365 | #define FMULHUW(a, b) ((a) * (b) >> 16) | |
366 | #define FMULHW(a, b) ((int16_t)(a) * (int16_t)(b) >> 16) | |
664e0f19 | 367 | |
e01d9d31 | 368 | #define FAVG(a, b) (((a) + (b) + 1) >> 1) |
664e0f19 FB |
369 | #endif |
370 | ||
5af45186 FB |
371 | SSE_HELPER_B(helper_paddb, FADD) |
372 | SSE_HELPER_W(helper_paddw, FADD) | |
373 | SSE_HELPER_L(helper_paddl, FADD) | |
374 | SSE_HELPER_Q(helper_paddq, FADD) | |
664e0f19 | 375 | |
5af45186 FB |
376 | SSE_HELPER_B(helper_psubb, FSUB) |
377 | SSE_HELPER_W(helper_psubw, FSUB) | |
378 | SSE_HELPER_L(helper_psubl, FSUB) | |
379 | SSE_HELPER_Q(helper_psubq, FSUB) | |
664e0f19 | 380 | |
5af45186 FB |
381 | SSE_HELPER_B(helper_paddusb, FADDUB) |
382 | SSE_HELPER_B(helper_paddsb, FADDSB) | |
383 | SSE_HELPER_B(helper_psubusb, FSUBUB) | |
384 | SSE_HELPER_B(helper_psubsb, FSUBSB) | |
664e0f19 | 385 | |
5af45186 FB |
386 | SSE_HELPER_W(helper_paddusw, FADDUW) |
387 | SSE_HELPER_W(helper_paddsw, FADDSW) | |
388 | SSE_HELPER_W(helper_psubusw, FSUBUW) | |
389 | SSE_HELPER_W(helper_psubsw, FSUBSW) | |
664e0f19 | 390 | |
5af45186 FB |
391 | SSE_HELPER_B(helper_pminub, FMINUB) |
392 | SSE_HELPER_B(helper_pmaxub, FMAXUB) | |
664e0f19 | 393 | |
5af45186 FB |
394 | SSE_HELPER_W(helper_pminsw, FMINSW) |
395 | SSE_HELPER_W(helper_pmaxsw, FMAXSW) | |
664e0f19 | 396 | |
5af45186 FB |
397 | SSE_HELPER_Q(helper_pand, FAND) |
398 | SSE_HELPER_Q(helper_pandn, FANDN) | |
399 | SSE_HELPER_Q(helper_por, FOR) | |
400 | SSE_HELPER_Q(helper_pxor, FXOR) | |
664e0f19 | 401 | |
5af45186 FB |
402 | SSE_HELPER_B(helper_pcmpgtb, FCMPGTB) |
403 | SSE_HELPER_W(helper_pcmpgtw, FCMPGTW) | |
404 | SSE_HELPER_L(helper_pcmpgtl, FCMPGTL) | |
664e0f19 | 405 | |
5af45186 FB |
406 | SSE_HELPER_B(helper_pcmpeqb, FCMPEQ) |
407 | SSE_HELPER_W(helper_pcmpeqw, FCMPEQ) | |
408 | SSE_HELPER_L(helper_pcmpeql, FCMPEQ) | |
664e0f19 | 409 | |
5af45186 | 410 | SSE_HELPER_W(helper_pmullw, FMULLW) |
a35f3ec7 | 411 | #if SHIFT == 0 |
5af45186 | 412 | SSE_HELPER_W(helper_pmulhrw, FMULHRW) |
a35f3ec7 | 413 | #endif |
5af45186 FB |
414 | SSE_HELPER_W(helper_pmulhuw, FMULHUW) |
415 | SSE_HELPER_W(helper_pmulhw, FMULHW) | |
664e0f19 | 416 | |
5af45186 FB |
417 | SSE_HELPER_B(helper_pavgb, FAVG) |
418 | SSE_HELPER_W(helper_pavgw, FAVG) | |
664e0f19 | 419 | |
e01d9d31 | 420 | void glue(helper_pmuludq, SUFFIX)(Reg *d, Reg *s) |
664e0f19 | 421 | { |
664e0f19 FB |
422 | d->Q(0) = (uint64_t)s->L(0) * (uint64_t)d->L(0); |
423 | #if SHIFT == 1 | |
424 | d->Q(1) = (uint64_t)s->L(2) * (uint64_t)d->L(2); | |
425 | #endif | |
426 | } | |
427 | ||
e01d9d31 | 428 | void glue(helper_pmaddwd, SUFFIX)(Reg *d, Reg *s) |
664e0f19 FB |
429 | { |
430 | int i; | |
664e0f19 | 431 | |
e01d9d31 BS |
432 | for (i = 0; i < (2 << SHIFT); i++) { |
433 | d->L(i) = (int16_t)s->W(2 * i) * (int16_t)d->W(2 * i) + | |
434 | (int16_t)s->W(2 * i + 1) * (int16_t)d->W(2 * i + 1); | |
664e0f19 FB |
435 | } |
436 | } | |
437 | ||
438 | #if SHIFT == 0 | |
439 | static inline int abs1(int a) | |
440 | { | |
e01d9d31 | 441 | if (a < 0) { |
664e0f19 | 442 | return -a; |
e01d9d31 | 443 | } else { |
664e0f19 | 444 | return a; |
e01d9d31 | 445 | } |
664e0f19 FB |
446 | } |
447 | #endif | |
e01d9d31 | 448 | void glue(helper_psadbw, SUFFIX)(Reg *d, Reg *s) |
664e0f19 FB |
449 | { |
450 | unsigned int val; | |
664e0f19 FB |
451 | |
452 | val = 0; | |
453 | val += abs1(d->B(0) - s->B(0)); | |
454 | val += abs1(d->B(1) - s->B(1)); | |
455 | val += abs1(d->B(2) - s->B(2)); | |
456 | val += abs1(d->B(3) - s->B(3)); | |
457 | val += abs1(d->B(4) - s->B(4)); | |
458 | val += abs1(d->B(5) - s->B(5)); | |
459 | val += abs1(d->B(6) - s->B(6)); | |
460 | val += abs1(d->B(7) - s->B(7)); | |
461 | d->Q(0) = val; | |
462 | #if SHIFT == 1 | |
463 | val = 0; | |
464 | val += abs1(d->B(8) - s->B(8)); | |
465 | val += abs1(d->B(9) - s->B(9)); | |
466 | val += abs1(d->B(10) - s->B(10)); | |
467 | val += abs1(d->B(11) - s->B(11)); | |
468 | val += abs1(d->B(12) - s->B(12)); | |
469 | val += abs1(d->B(13) - s->B(13)); | |
470 | val += abs1(d->B(14) - s->B(14)); | |
471 | val += abs1(d->B(15) - s->B(15)); | |
472 | d->Q(1) = val; | |
473 | #endif | |
474 | } | |
475 | ||
e01d9d31 | 476 | void glue(helper_maskmov, SUFFIX)(Reg *d, Reg *s, target_ulong a0) |
664e0f19 FB |
477 | { |
478 | int i; | |
e01d9d31 BS |
479 | |
480 | for (i = 0; i < (8 << SHIFT); i++) { | |
481 | if (s->B(i) & 0x80) { | |
b8b6a50b | 482 | stb(a0 + i, d->B(i)); |
e01d9d31 | 483 | } |
664e0f19 FB |
484 | } |
485 | } | |
486 | ||
e01d9d31 | 487 | void glue(helper_movl_mm_T0, SUFFIX)(Reg *d, uint32_t val) |
664e0f19 | 488 | { |
5af45186 | 489 | d->L(0) = val; |
664e0f19 FB |
490 | d->L(1) = 0; |
491 | #if SHIFT == 1 | |
492 | d->Q(1) = 0; | |
493 | #endif | |
494 | } | |
495 | ||
dabd98dd | 496 | #ifdef TARGET_X86_64 |
e01d9d31 | 497 | void glue(helper_movq_mm_T0, SUFFIX)(Reg *d, uint64_t val) |
dabd98dd | 498 | { |
5af45186 | 499 | d->Q(0) = val; |
dabd98dd FB |
500 | #if SHIFT == 1 |
501 | d->Q(1) = 0; | |
502 | #endif | |
503 | } | |
dabd98dd FB |
504 | #endif |
505 | ||
664e0f19 | 506 | #if SHIFT == 0 |
e01d9d31 | 507 | void glue(helper_pshufw, SUFFIX)(Reg *d, Reg *s, int order) |
664e0f19 | 508 | { |
5af45186 | 509 | Reg r; |
e01d9d31 | 510 | |
664e0f19 FB |
511 | r.W(0) = s->W(order & 3); |
512 | r.W(1) = s->W((order >> 2) & 3); | |
513 | r.W(2) = s->W((order >> 4) & 3); | |
514 | r.W(3) = s->W((order >> 6) & 3); | |
515 | *d = r; | |
516 | } | |
517 | #else | |
5af45186 | 518 | void helper_shufps(Reg *d, Reg *s, int order) |
d52cf7a6 | 519 | { |
5af45186 | 520 | Reg r; |
e01d9d31 | 521 | |
d52cf7a6 FB |
522 | r.L(0) = d->L(order & 3); |
523 | r.L(1) = d->L((order >> 2) & 3); | |
524 | r.L(2) = s->L((order >> 4) & 3); | |
525 | r.L(3) = s->L((order >> 6) & 3); | |
526 | *d = r; | |
527 | } | |
528 | ||
5af45186 | 529 | void helper_shufpd(Reg *d, Reg *s, int order) |
664e0f19 | 530 | { |
5af45186 | 531 | Reg r; |
e01d9d31 | 532 | |
d52cf7a6 | 533 | r.Q(0) = d->Q(order & 1); |
664e0f19 FB |
534 | r.Q(1) = s->Q((order >> 1) & 1); |
535 | *d = r; | |
536 | } | |
537 | ||
e01d9d31 | 538 | void glue(helper_pshufd, SUFFIX)(Reg *d, Reg *s, int order) |
664e0f19 | 539 | { |
5af45186 | 540 | Reg r; |
e01d9d31 | 541 | |
664e0f19 FB |
542 | r.L(0) = s->L(order & 3); |
543 | r.L(1) = s->L((order >> 2) & 3); | |
544 | r.L(2) = s->L((order >> 4) & 3); | |
545 | r.L(3) = s->L((order >> 6) & 3); | |
546 | *d = r; | |
547 | } | |
548 | ||
e01d9d31 | 549 | void glue(helper_pshuflw, SUFFIX)(Reg *d, Reg *s, int order) |
664e0f19 | 550 | { |
5af45186 | 551 | Reg r; |
e01d9d31 | 552 | |
664e0f19 FB |
553 | r.W(0) = s->W(order & 3); |
554 | r.W(1) = s->W((order >> 2) & 3); | |
555 | r.W(2) = s->W((order >> 4) & 3); | |
556 | r.W(3) = s->W((order >> 6) & 3); | |
557 | r.Q(1) = s->Q(1); | |
558 | *d = r; | |
559 | } | |
560 | ||
e01d9d31 | 561 | void glue(helper_pshufhw, SUFFIX)(Reg *d, Reg *s, int order) |
664e0f19 | 562 | { |
5af45186 | 563 | Reg r; |
e01d9d31 | 564 | |
664e0f19 FB |
565 | r.Q(0) = s->Q(0); |
566 | r.W(4) = s->W(4 + (order & 3)); | |
567 | r.W(5) = s->W(4 + ((order >> 2) & 3)); | |
568 | r.W(6) = s->W(4 + ((order >> 4) & 3)); | |
569 | r.W(7) = s->W(4 + ((order >> 6) & 3)); | |
570 | *d = r; | |
571 | } | |
572 | #endif | |
573 | ||
574 | #if SHIFT == 1 | |
575 | /* FPU ops */ | |
576 | /* XXX: not accurate */ | |
577 | ||
e01d9d31 BS |
578 | #define SSE_HELPER_S(name, F) \ |
579 | void helper_ ## name ## ps(Reg *d, Reg *s) \ | |
580 | { \ | |
581 | d->XMM_S(0) = F(32, d->XMM_S(0), s->XMM_S(0)); \ | |
582 | d->XMM_S(1) = F(32, d->XMM_S(1), s->XMM_S(1)); \ | |
583 | d->XMM_S(2) = F(32, d->XMM_S(2), s->XMM_S(2)); \ | |
584 | d->XMM_S(3) = F(32, d->XMM_S(3), s->XMM_S(3)); \ | |
585 | } \ | |
586 | \ | |
587 | void helper_ ## name ## ss(Reg *d, Reg *s) \ | |
588 | { \ | |
589 | d->XMM_S(0) = F(32, d->XMM_S(0), s->XMM_S(0)); \ | |
590 | } \ | |
591 | \ | |
592 | void helper_ ## name ## pd(Reg *d, Reg *s) \ | |
593 | { \ | |
594 | d->XMM_D(0) = F(64, d->XMM_D(0), s->XMM_D(0)); \ | |
595 | d->XMM_D(1) = F(64, d->XMM_D(1), s->XMM_D(1)); \ | |
596 | } \ | |
597 | \ | |
598 | void helper_ ## name ## sd(Reg *d, Reg *s) \ | |
599 | { \ | |
600 | d->XMM_D(0) = F(64, d->XMM_D(0), s->XMM_D(0)); \ | |
601 | } | |
664e0f19 | 602 | |
7a0e1f41 FB |
603 | #define FPU_ADD(size, a, b) float ## size ## _add(a, b, &env->sse_status) |
604 | #define FPU_SUB(size, a, b) float ## size ## _sub(a, b, &env->sse_status) | |
605 | #define FPU_MUL(size, a, b) float ## size ## _mul(a, b, &env->sse_status) | |
606 | #define FPU_DIV(size, a, b) float ## size ## _div(a, b, &env->sse_status) | |
7a0e1f41 | 607 | #define FPU_SQRT(size, a, b) float ## size ## _sqrt(b, &env->sse_status) |
664e0f19 | 608 | |
a4d1f142 AJ |
609 | /* Note that the choice of comparison op here is important to get the |
610 | * special cases right: for min and max Intel specifies that (-0,0), | |
611 | * (NaN, anything) and (anything, NaN) return the second argument. | |
612 | */ | |
e01d9d31 BS |
613 | #define FPU_MIN(size, a, b) \ |
614 | (float ## size ## _lt(a, b, &env->sse_status) ? (a) : (b)) | |
615 | #define FPU_MAX(size, a, b) \ | |
616 | (float ## size ## _lt(b, a, &env->sse_status) ? (a) : (b)) | |
a4d1f142 | 617 | |
5af45186 FB |
618 | SSE_HELPER_S(add, FPU_ADD) |
619 | SSE_HELPER_S(sub, FPU_SUB) | |
620 | SSE_HELPER_S(mul, FPU_MUL) | |
621 | SSE_HELPER_S(div, FPU_DIV) | |
622 | SSE_HELPER_S(min, FPU_MIN) | |
623 | SSE_HELPER_S(max, FPU_MAX) | |
624 | SSE_HELPER_S(sqrt, FPU_SQRT) | |
664e0f19 FB |
625 | |
626 | ||
627 | /* float to float conversions */ | |
5af45186 | 628 | void helper_cvtps2pd(Reg *d, Reg *s) |
664e0f19 | 629 | { |
8422b113 | 630 | float32 s0, s1; |
e01d9d31 | 631 | |
664e0f19 FB |
632 | s0 = s->XMM_S(0); |
633 | s1 = s->XMM_S(1); | |
7a0e1f41 FB |
634 | d->XMM_D(0) = float32_to_float64(s0, &env->sse_status); |
635 | d->XMM_D(1) = float32_to_float64(s1, &env->sse_status); | |
664e0f19 FB |
636 | } |
637 | ||
5af45186 | 638 | void helper_cvtpd2ps(Reg *d, Reg *s) |
664e0f19 | 639 | { |
7a0e1f41 FB |
640 | d->XMM_S(0) = float64_to_float32(s->XMM_D(0), &env->sse_status); |
641 | d->XMM_S(1) = float64_to_float32(s->XMM_D(1), &env->sse_status); | |
664e0f19 FB |
642 | d->Q(1) = 0; |
643 | } | |
644 | ||
5af45186 | 645 | void helper_cvtss2sd(Reg *d, Reg *s) |
664e0f19 | 646 | { |
7a0e1f41 | 647 | d->XMM_D(0) = float32_to_float64(s->XMM_S(0), &env->sse_status); |
664e0f19 FB |
648 | } |
649 | ||
5af45186 | 650 | void helper_cvtsd2ss(Reg *d, Reg *s) |
664e0f19 | 651 | { |
7a0e1f41 | 652 | d->XMM_S(0) = float64_to_float32(s->XMM_D(0), &env->sse_status); |
664e0f19 FB |
653 | } |
654 | ||
655 | /* integer to float */ | |
5af45186 | 656 | void helper_cvtdq2ps(Reg *d, Reg *s) |
664e0f19 | 657 | { |
7a0e1f41 FB |
658 | d->XMM_S(0) = int32_to_float32(s->XMM_L(0), &env->sse_status); |
659 | d->XMM_S(1) = int32_to_float32(s->XMM_L(1), &env->sse_status); | |
660 | d->XMM_S(2) = int32_to_float32(s->XMM_L(2), &env->sse_status); | |
661 | d->XMM_S(3) = int32_to_float32(s->XMM_L(3), &env->sse_status); | |
664e0f19 FB |
662 | } |
663 | ||
5af45186 | 664 | void helper_cvtdq2pd(Reg *d, Reg *s) |
664e0f19 | 665 | { |
664e0f19 | 666 | int32_t l0, l1; |
e01d9d31 | 667 | |
664e0f19 FB |
668 | l0 = (int32_t)s->XMM_L(0); |
669 | l1 = (int32_t)s->XMM_L(1); | |
7a0e1f41 FB |
670 | d->XMM_D(0) = int32_to_float64(l0, &env->sse_status); |
671 | d->XMM_D(1) = int32_to_float64(l1, &env->sse_status); | |
664e0f19 FB |
672 | } |
673 | ||
5af45186 | 674 | void helper_cvtpi2ps(XMMReg *d, MMXReg *s) |
664e0f19 | 675 | { |
7a0e1f41 FB |
676 | d->XMM_S(0) = int32_to_float32(s->MMX_L(0), &env->sse_status); |
677 | d->XMM_S(1) = int32_to_float32(s->MMX_L(1), &env->sse_status); | |
664e0f19 FB |
678 | } |
679 | ||
5af45186 | 680 | void helper_cvtpi2pd(XMMReg *d, MMXReg *s) |
664e0f19 | 681 | { |
7a0e1f41 FB |
682 | d->XMM_D(0) = int32_to_float64(s->MMX_L(0), &env->sse_status); |
683 | d->XMM_D(1) = int32_to_float64(s->MMX_L(1), &env->sse_status); | |
664e0f19 FB |
684 | } |
685 | ||
5af45186 | 686 | void helper_cvtsi2ss(XMMReg *d, uint32_t val) |
664e0f19 | 687 | { |
5af45186 | 688 | d->XMM_S(0) = int32_to_float32(val, &env->sse_status); |
664e0f19 FB |
689 | } |
690 | ||
5af45186 | 691 | void helper_cvtsi2sd(XMMReg *d, uint32_t val) |
664e0f19 | 692 | { |
5af45186 | 693 | d->XMM_D(0) = int32_to_float64(val, &env->sse_status); |
664e0f19 FB |
694 | } |
695 | ||
696 | #ifdef TARGET_X86_64 | |
5af45186 | 697 | void helper_cvtsq2ss(XMMReg *d, uint64_t val) |
664e0f19 | 698 | { |
5af45186 | 699 | d->XMM_S(0) = int64_to_float32(val, &env->sse_status); |
664e0f19 FB |
700 | } |
701 | ||
5af45186 | 702 | void helper_cvtsq2sd(XMMReg *d, uint64_t val) |
664e0f19 | 703 | { |
5af45186 | 704 | d->XMM_D(0) = int64_to_float64(val, &env->sse_status); |
664e0f19 FB |
705 | } |
706 | #endif | |
707 | ||
708 | /* float to integer */ | |
5af45186 | 709 | void helper_cvtps2dq(XMMReg *d, XMMReg *s) |
664e0f19 | 710 | { |
7a0e1f41 FB |
711 | d->XMM_L(0) = float32_to_int32(s->XMM_S(0), &env->sse_status); |
712 | d->XMM_L(1) = float32_to_int32(s->XMM_S(1), &env->sse_status); | |
713 | d->XMM_L(2) = float32_to_int32(s->XMM_S(2), &env->sse_status); | |
714 | d->XMM_L(3) = float32_to_int32(s->XMM_S(3), &env->sse_status); | |
664e0f19 FB |
715 | } |
716 | ||
5af45186 | 717 | void helper_cvtpd2dq(XMMReg *d, XMMReg *s) |
664e0f19 | 718 | { |
7a0e1f41 FB |
719 | d->XMM_L(0) = float64_to_int32(s->XMM_D(0), &env->sse_status); |
720 | d->XMM_L(1) = float64_to_int32(s->XMM_D(1), &env->sse_status); | |
664e0f19 FB |
721 | d->XMM_Q(1) = 0; |
722 | } | |
723 | ||
5af45186 | 724 | void helper_cvtps2pi(MMXReg *d, XMMReg *s) |
664e0f19 | 725 | { |
7a0e1f41 FB |
726 | d->MMX_L(0) = float32_to_int32(s->XMM_S(0), &env->sse_status); |
727 | d->MMX_L(1) = float32_to_int32(s->XMM_S(1), &env->sse_status); | |
664e0f19 FB |
728 | } |
729 | ||
5af45186 | 730 | void helper_cvtpd2pi(MMXReg *d, XMMReg *s) |
664e0f19 | 731 | { |
7a0e1f41 FB |
732 | d->MMX_L(0) = float64_to_int32(s->XMM_D(0), &env->sse_status); |
733 | d->MMX_L(1) = float64_to_int32(s->XMM_D(1), &env->sse_status); | |
664e0f19 FB |
734 | } |
735 | ||
5af45186 | 736 | int32_t helper_cvtss2si(XMMReg *s) |
664e0f19 | 737 | { |
5af45186 | 738 | return float32_to_int32(s->XMM_S(0), &env->sse_status); |
664e0f19 FB |
739 | } |
740 | ||
5af45186 | 741 | int32_t helper_cvtsd2si(XMMReg *s) |
664e0f19 | 742 | { |
5af45186 | 743 | return float64_to_int32(s->XMM_D(0), &env->sse_status); |
664e0f19 FB |
744 | } |
745 | ||
746 | #ifdef TARGET_X86_64 | |
5af45186 | 747 | int64_t helper_cvtss2sq(XMMReg *s) |
664e0f19 | 748 | { |
5af45186 | 749 | return float32_to_int64(s->XMM_S(0), &env->sse_status); |
664e0f19 FB |
750 | } |
751 | ||
5af45186 | 752 | int64_t helper_cvtsd2sq(XMMReg *s) |
664e0f19 | 753 | { |
5af45186 | 754 | return float64_to_int64(s->XMM_D(0), &env->sse_status); |
664e0f19 FB |
755 | } |
756 | #endif | |
757 | ||
758 | /* float to integer truncated */ | |
5af45186 | 759 | void helper_cvttps2dq(XMMReg *d, XMMReg *s) |
664e0f19 | 760 | { |
7a0e1f41 FB |
761 | d->XMM_L(0) = float32_to_int32_round_to_zero(s->XMM_S(0), &env->sse_status); |
762 | d->XMM_L(1) = float32_to_int32_round_to_zero(s->XMM_S(1), &env->sse_status); | |
763 | d->XMM_L(2) = float32_to_int32_round_to_zero(s->XMM_S(2), &env->sse_status); | |
764 | d->XMM_L(3) = float32_to_int32_round_to_zero(s->XMM_S(3), &env->sse_status); | |
664e0f19 FB |
765 | } |
766 | ||
5af45186 | 767 | void helper_cvttpd2dq(XMMReg *d, XMMReg *s) |
664e0f19 | 768 | { |
7a0e1f41 FB |
769 | d->XMM_L(0) = float64_to_int32_round_to_zero(s->XMM_D(0), &env->sse_status); |
770 | d->XMM_L(1) = float64_to_int32_round_to_zero(s->XMM_D(1), &env->sse_status); | |
664e0f19 FB |
771 | d->XMM_Q(1) = 0; |
772 | } | |
773 | ||
5af45186 | 774 | void helper_cvttps2pi(MMXReg *d, XMMReg *s) |
664e0f19 | 775 | { |
7a0e1f41 FB |
776 | d->MMX_L(0) = float32_to_int32_round_to_zero(s->XMM_S(0), &env->sse_status); |
777 | d->MMX_L(1) = float32_to_int32_round_to_zero(s->XMM_S(1), &env->sse_status); | |
664e0f19 FB |
778 | } |
779 | ||
5af45186 | 780 | void helper_cvttpd2pi(MMXReg *d, XMMReg *s) |
664e0f19 | 781 | { |
7a0e1f41 FB |
782 | d->MMX_L(0) = float64_to_int32_round_to_zero(s->XMM_D(0), &env->sse_status); |
783 | d->MMX_L(1) = float64_to_int32_round_to_zero(s->XMM_D(1), &env->sse_status); | |
664e0f19 FB |
784 | } |
785 | ||
5af45186 | 786 | int32_t helper_cvttss2si(XMMReg *s) |
664e0f19 | 787 | { |
5af45186 | 788 | return float32_to_int32_round_to_zero(s->XMM_S(0), &env->sse_status); |
664e0f19 FB |
789 | } |
790 | ||
5af45186 | 791 | int32_t helper_cvttsd2si(XMMReg *s) |
664e0f19 | 792 | { |
5af45186 | 793 | return float64_to_int32_round_to_zero(s->XMM_D(0), &env->sse_status); |
664e0f19 FB |
794 | } |
795 | ||
796 | #ifdef TARGET_X86_64 | |
5af45186 | 797 | int64_t helper_cvttss2sq(XMMReg *s) |
664e0f19 | 798 | { |
5af45186 | 799 | return float32_to_int64_round_to_zero(s->XMM_S(0), &env->sse_status); |
664e0f19 FB |
800 | } |
801 | ||
5af45186 | 802 | int64_t helper_cvttsd2sq(XMMReg *s) |
664e0f19 | 803 | { |
5af45186 | 804 | return float64_to_int64_round_to_zero(s->XMM_D(0), &env->sse_status); |
664e0f19 FB |
805 | } |
806 | #endif | |
807 | ||
5af45186 | 808 | void helper_rsqrtps(XMMReg *d, XMMReg *s) |
664e0f19 | 809 | { |
c2ef9a83 AJ |
810 | d->XMM_S(0) = float32_div(float32_one, |
811 | float32_sqrt(s->XMM_S(0), &env->sse_status), | |
812 | &env->sse_status); | |
813 | d->XMM_S(1) = float32_div(float32_one, | |
814 | float32_sqrt(s->XMM_S(1), &env->sse_status), | |
815 | &env->sse_status); | |
816 | d->XMM_S(2) = float32_div(float32_one, | |
817 | float32_sqrt(s->XMM_S(2), &env->sse_status), | |
818 | &env->sse_status); | |
819 | d->XMM_S(3) = float32_div(float32_one, | |
820 | float32_sqrt(s->XMM_S(3), &env->sse_status), | |
821 | &env->sse_status); | |
664e0f19 FB |
822 | } |
823 | ||
5af45186 | 824 | void helper_rsqrtss(XMMReg *d, XMMReg *s) |
664e0f19 | 825 | { |
c2ef9a83 AJ |
826 | d->XMM_S(0) = float32_div(float32_one, |
827 | float32_sqrt(s->XMM_S(0), &env->sse_status), | |
828 | &env->sse_status); | |
664e0f19 FB |
829 | } |
830 | ||
5af45186 | 831 | void helper_rcpps(XMMReg *d, XMMReg *s) |
664e0f19 | 832 | { |
c2ef9a83 AJ |
833 | d->XMM_S(0) = float32_div(float32_one, s->XMM_S(0), &env->sse_status); |
834 | d->XMM_S(1) = float32_div(float32_one, s->XMM_S(1), &env->sse_status); | |
835 | d->XMM_S(2) = float32_div(float32_one, s->XMM_S(2), &env->sse_status); | |
836 | d->XMM_S(3) = float32_div(float32_one, s->XMM_S(3), &env->sse_status); | |
664e0f19 FB |
837 | } |
838 | ||
5af45186 | 839 | void helper_rcpss(XMMReg *d, XMMReg *s) |
664e0f19 | 840 | { |
c2ef9a83 | 841 | d->XMM_S(0) = float32_div(float32_one, s->XMM_S(0), &env->sse_status); |
664e0f19 FB |
842 | } |
843 | ||
d9f4bb27 AP |
844 | static inline uint64_t helper_extrq(uint64_t src, int shift, int len) |
845 | { | |
846 | uint64_t mask; | |
847 | ||
848 | if (len == 0) { | |
849 | mask = ~0LL; | |
850 | } else { | |
851 | mask = (1ULL << len) - 1; | |
852 | } | |
853 | return (src >> shift) & mask; | |
854 | } | |
855 | ||
856 | void helper_extrq_r(XMMReg *d, XMMReg *s) | |
857 | { | |
858 | d->XMM_Q(0) = helper_extrq(d->XMM_Q(0), s->XMM_B(1), s->XMM_B(0)); | |
859 | } | |
860 | ||
861 | void helper_extrq_i(XMMReg *d, int index, int length) | |
862 | { | |
863 | d->XMM_Q(0) = helper_extrq(d->XMM_Q(0), index, length); | |
864 | } | |
865 | ||
866 | static inline uint64_t helper_insertq(uint64_t src, int shift, int len) | |
867 | { | |
868 | uint64_t mask; | |
869 | ||
870 | if (len == 0) { | |
871 | mask = ~0ULL; | |
872 | } else { | |
873 | mask = (1ULL << len) - 1; | |
874 | } | |
875 | return (src & ~(mask << shift)) | ((src & mask) << shift); | |
876 | } | |
877 | ||
878 | void helper_insertq_r(XMMReg *d, XMMReg *s) | |
879 | { | |
880 | d->XMM_Q(0) = helper_insertq(s->XMM_Q(0), s->XMM_B(9), s->XMM_B(8)); | |
881 | } | |
882 | ||
883 | void helper_insertq_i(XMMReg *d, int index, int length) | |
884 | { | |
885 | d->XMM_Q(0) = helper_insertq(d->XMM_Q(0), index, length); | |
886 | } | |
887 | ||
5af45186 | 888 | void helper_haddps(XMMReg *d, XMMReg *s) |
664e0f19 | 889 | { |
664e0f19 | 890 | XMMReg r; |
e01d9d31 | 891 | |
5c6562c2 MR |
892 | r.XMM_S(0) = float32_add(d->XMM_S(0), d->XMM_S(1), &env->sse_status); |
893 | r.XMM_S(1) = float32_add(d->XMM_S(2), d->XMM_S(3), &env->sse_status); | |
894 | r.XMM_S(2) = float32_add(s->XMM_S(0), s->XMM_S(1), &env->sse_status); | |
895 | r.XMM_S(3) = float32_add(s->XMM_S(2), s->XMM_S(3), &env->sse_status); | |
664e0f19 FB |
896 | *d = r; |
897 | } | |
898 | ||
5af45186 | 899 | void helper_haddpd(XMMReg *d, XMMReg *s) |
664e0f19 | 900 | { |
664e0f19 | 901 | XMMReg r; |
e01d9d31 | 902 | |
5c6562c2 MR |
903 | r.XMM_D(0) = float64_add(d->XMM_D(0), d->XMM_D(1), &env->sse_status); |
904 | r.XMM_D(1) = float64_add(s->XMM_D(0), s->XMM_D(1), &env->sse_status); | |
664e0f19 FB |
905 | *d = r; |
906 | } | |
907 | ||
5af45186 | 908 | void helper_hsubps(XMMReg *d, XMMReg *s) |
664e0f19 | 909 | { |
664e0f19 | 910 | XMMReg r; |
e01d9d31 | 911 | |
5c6562c2 MR |
912 | r.XMM_S(0) = float32_sub(d->XMM_S(0), d->XMM_S(1), &env->sse_status); |
913 | r.XMM_S(1) = float32_sub(d->XMM_S(2), d->XMM_S(3), &env->sse_status); | |
914 | r.XMM_S(2) = float32_sub(s->XMM_S(0), s->XMM_S(1), &env->sse_status); | |
915 | r.XMM_S(3) = float32_sub(s->XMM_S(2), s->XMM_S(3), &env->sse_status); | |
664e0f19 FB |
916 | *d = r; |
917 | } | |
918 | ||
5af45186 | 919 | void helper_hsubpd(XMMReg *d, XMMReg *s) |
664e0f19 | 920 | { |
664e0f19 | 921 | XMMReg r; |
e01d9d31 | 922 | |
5c6562c2 MR |
923 | r.XMM_D(0) = float64_sub(d->XMM_D(0), d->XMM_D(1), &env->sse_status); |
924 | r.XMM_D(1) = float64_sub(s->XMM_D(0), s->XMM_D(1), &env->sse_status); | |
664e0f19 FB |
925 | *d = r; |
926 | } | |
927 | ||
5af45186 | 928 | void helper_addsubps(XMMReg *d, XMMReg *s) |
664e0f19 | 929 | { |
5c6562c2 MR |
930 | d->XMM_S(0) = float32_sub(d->XMM_S(0), s->XMM_S(0), &env->sse_status); |
931 | d->XMM_S(1) = float32_add(d->XMM_S(1), s->XMM_S(1), &env->sse_status); | |
932 | d->XMM_S(2) = float32_sub(d->XMM_S(2), s->XMM_S(2), &env->sse_status); | |
933 | d->XMM_S(3) = float32_add(d->XMM_S(3), s->XMM_S(3), &env->sse_status); | |
664e0f19 FB |
934 | } |
935 | ||
5af45186 | 936 | void helper_addsubpd(XMMReg *d, XMMReg *s) |
664e0f19 | 937 | { |
5c6562c2 MR |
938 | d->XMM_D(0) = float64_sub(d->XMM_D(0), s->XMM_D(0), &env->sse_status); |
939 | d->XMM_D(1) = float64_add(d->XMM_D(1), s->XMM_D(1), &env->sse_status); | |
664e0f19 FB |
940 | } |
941 | ||
942 | /* XXX: unordered */ | |
e01d9d31 BS |
943 | #define SSE_HELPER_CMP(name, F) \ |
944 | void helper_ ## name ## ps(Reg *d, Reg *s) \ | |
945 | { \ | |
946 | d->XMM_L(0) = F(32, d->XMM_S(0), s->XMM_S(0)); \ | |
947 | d->XMM_L(1) = F(32, d->XMM_S(1), s->XMM_S(1)); \ | |
948 | d->XMM_L(2) = F(32, d->XMM_S(2), s->XMM_S(2)); \ | |
949 | d->XMM_L(3) = F(32, d->XMM_S(3), s->XMM_S(3)); \ | |
950 | } \ | |
951 | \ | |
952 | void helper_ ## name ## ss(Reg *d, Reg *s) \ | |
953 | { \ | |
954 | d->XMM_L(0) = F(32, d->XMM_S(0), s->XMM_S(0)); \ | |
955 | } \ | |
956 | \ | |
957 | void helper_ ## name ## pd(Reg *d, Reg *s) \ | |
958 | { \ | |
959 | d->XMM_Q(0) = F(64, d->XMM_D(0), s->XMM_D(0)); \ | |
960 | d->XMM_Q(1) = F(64, d->XMM_D(1), s->XMM_D(1)); \ | |
961 | } \ | |
962 | \ | |
963 | void helper_ ## name ## sd(Reg *d, Reg *s) \ | |
964 | { \ | |
965 | d->XMM_Q(0) = F(64, d->XMM_D(0), s->XMM_D(0)); \ | |
966 | } | |
967 | ||
968 | #define FPU_CMPEQ(size, a, b) \ | |
969 | (float ## size ## _eq_quiet(a, b, &env->sse_status) ? -1 : 0) | |
970 | #define FPU_CMPLT(size, a, b) \ | |
971 | (float ## size ## _lt(a, b, &env->sse_status) ? -1 : 0) | |
972 | #define FPU_CMPLE(size, a, b) \ | |
973 | (float ## size ## _le(a, b, &env->sse_status) ? -1 : 0) | |
974 | #define FPU_CMPUNORD(size, a, b) \ | |
975 | (float ## size ## _unordered_quiet(a, b, &env->sse_status) ? -1 : 0) | |
976 | #define FPU_CMPNEQ(size, a, b) \ | |
977 | (float ## size ## _eq_quiet(a, b, &env->sse_status) ? 0 : -1) | |
978 | #define FPU_CMPNLT(size, a, b) \ | |
979 | (float ## size ## _lt(a, b, &env->sse_status) ? 0 : -1) | |
980 | #define FPU_CMPNLE(size, a, b) \ | |
981 | (float ## size ## _le(a, b, &env->sse_status) ? 0 : -1) | |
982 | #define FPU_CMPORD(size, a, b) \ | |
983 | (float ## size ## _unordered_quiet(a, b, &env->sse_status) ? 0 : -1) | |
664e0f19 | 984 | |
5af45186 FB |
985 | SSE_HELPER_CMP(cmpeq, FPU_CMPEQ) |
986 | SSE_HELPER_CMP(cmplt, FPU_CMPLT) | |
987 | SSE_HELPER_CMP(cmple, FPU_CMPLE) | |
988 | SSE_HELPER_CMP(cmpunord, FPU_CMPUNORD) | |
989 | SSE_HELPER_CMP(cmpneq, FPU_CMPNEQ) | |
990 | SSE_HELPER_CMP(cmpnlt, FPU_CMPNLT) | |
991 | SSE_HELPER_CMP(cmpnle, FPU_CMPNLE) | |
992 | SSE_HELPER_CMP(cmpord, FPU_CMPORD) | |
664e0f19 | 993 | |
1e6eec8b | 994 | static const int comis_eflags[4] = {CC_C, CC_Z, 0, CC_Z | CC_P | CC_C}; |
43fb823b | 995 | |
5af45186 | 996 | void helper_ucomiss(Reg *d, Reg *s) |
664e0f19 | 997 | { |
43fb823b | 998 | int ret; |
8422b113 | 999 | float32 s0, s1; |
664e0f19 FB |
1000 | |
1001 | s0 = d->XMM_S(0); | |
1002 | s1 = s->XMM_S(0); | |
43fb823b FB |
1003 | ret = float32_compare_quiet(s0, s1, &env->sse_status); |
1004 | CC_SRC = comis_eflags[ret + 1]; | |
664e0f19 FB |
1005 | } |
1006 | ||
5af45186 | 1007 | void helper_comiss(Reg *d, Reg *s) |
664e0f19 | 1008 | { |
43fb823b | 1009 | int ret; |
8422b113 | 1010 | float32 s0, s1; |
664e0f19 FB |
1011 | |
1012 | s0 = d->XMM_S(0); | |
1013 | s1 = s->XMM_S(0); | |
43fb823b FB |
1014 | ret = float32_compare(s0, s1, &env->sse_status); |
1015 | CC_SRC = comis_eflags[ret + 1]; | |
664e0f19 FB |
1016 | } |
1017 | ||
5af45186 | 1018 | void helper_ucomisd(Reg *d, Reg *s) |
664e0f19 | 1019 | { |
43fb823b | 1020 | int ret; |
8422b113 | 1021 | float64 d0, d1; |
664e0f19 FB |
1022 | |
1023 | d0 = d->XMM_D(0); | |
1024 | d1 = s->XMM_D(0); | |
43fb823b FB |
1025 | ret = float64_compare_quiet(d0, d1, &env->sse_status); |
1026 | CC_SRC = comis_eflags[ret + 1]; | |
664e0f19 FB |
1027 | } |
1028 | ||
5af45186 | 1029 | void helper_comisd(Reg *d, Reg *s) |
664e0f19 | 1030 | { |
43fb823b | 1031 | int ret; |
8422b113 | 1032 | float64 d0, d1; |
664e0f19 FB |
1033 | |
1034 | d0 = d->XMM_D(0); | |
1035 | d1 = s->XMM_D(0); | |
43fb823b FB |
1036 | ret = float64_compare(d0, d1, &env->sse_status); |
1037 | CC_SRC = comis_eflags[ret + 1]; | |
664e0f19 FB |
1038 | } |
1039 | ||
5af45186 | 1040 | uint32_t helper_movmskps(Reg *s) |
664e0f19 FB |
1041 | { |
1042 | int b0, b1, b2, b3; | |
e01d9d31 | 1043 | |
664e0f19 FB |
1044 | b0 = s->XMM_L(0) >> 31; |
1045 | b1 = s->XMM_L(1) >> 31; | |
1046 | b2 = s->XMM_L(2) >> 31; | |
1047 | b3 = s->XMM_L(3) >> 31; | |
5af45186 | 1048 | return b0 | (b1 << 1) | (b2 << 2) | (b3 << 3); |
664e0f19 FB |
1049 | } |
1050 | ||
5af45186 | 1051 | uint32_t helper_movmskpd(Reg *s) |
664e0f19 FB |
1052 | { |
1053 | int b0, b1; | |
e01d9d31 | 1054 | |
664e0f19 FB |
1055 | b0 = s->XMM_L(1) >> 31; |
1056 | b1 = s->XMM_L(3) >> 31; | |
5af45186 | 1057 | return b0 | (b1 << 1); |
664e0f19 FB |
1058 | } |
1059 | ||
1060 | #endif | |
1061 | ||
5af45186 FB |
1062 | uint32_t glue(helper_pmovmskb, SUFFIX)(Reg *s) |
1063 | { | |
1064 | uint32_t val; | |
e01d9d31 | 1065 | |
5af45186 | 1066 | val = 0; |
30913bae AJ |
1067 | val |= (s->B(0) >> 7); |
1068 | val |= (s->B(1) >> 6) & 0x02; | |
1069 | val |= (s->B(2) >> 5) & 0x04; | |
1070 | val |= (s->B(3) >> 4) & 0x08; | |
1071 | val |= (s->B(4) >> 3) & 0x10; | |
1072 | val |= (s->B(5) >> 2) & 0x20; | |
1073 | val |= (s->B(6) >> 1) & 0x40; | |
1074 | val |= (s->B(7)) & 0x80; | |
664e0f19 | 1075 | #if SHIFT == 1 |
30913bae AJ |
1076 | val |= (s->B(8) << 1) & 0x0100; |
1077 | val |= (s->B(9) << 2) & 0x0200; | |
1078 | val |= (s->B(10) << 3) & 0x0400; | |
1079 | val |= (s->B(11) << 4) & 0x0800; | |
1080 | val |= (s->B(12) << 5) & 0x1000; | |
1081 | val |= (s->B(13) << 6) & 0x2000; | |
1082 | val |= (s->B(14) << 7) & 0x4000; | |
1083 | val |= (s->B(15) << 8) & 0x8000; | |
664e0f19 | 1084 | #endif |
5af45186 | 1085 | return val; |
664e0f19 FB |
1086 | } |
1087 | ||
e01d9d31 | 1088 | void glue(helper_packsswb, SUFFIX)(Reg *d, Reg *s) |
664e0f19 | 1089 | { |
5af45186 | 1090 | Reg r; |
664e0f19 FB |
1091 | |
1092 | r.B(0) = satsb((int16_t)d->W(0)); | |
1093 | r.B(1) = satsb((int16_t)d->W(1)); | |
1094 | r.B(2) = satsb((int16_t)d->W(2)); | |
1095 | r.B(3) = satsb((int16_t)d->W(3)); | |
1096 | #if SHIFT == 1 | |
1097 | r.B(4) = satsb((int16_t)d->W(4)); | |
1098 | r.B(5) = satsb((int16_t)d->W(5)); | |
1099 | r.B(6) = satsb((int16_t)d->W(6)); | |
1100 | r.B(7) = satsb((int16_t)d->W(7)); | |
1101 | #endif | |
1102 | r.B((4 << SHIFT) + 0) = satsb((int16_t)s->W(0)); | |
1103 | r.B((4 << SHIFT) + 1) = satsb((int16_t)s->W(1)); | |
1104 | r.B((4 << SHIFT) + 2) = satsb((int16_t)s->W(2)); | |
1105 | r.B((4 << SHIFT) + 3) = satsb((int16_t)s->W(3)); | |
1106 | #if SHIFT == 1 | |
1107 | r.B(12) = satsb((int16_t)s->W(4)); | |
1108 | r.B(13) = satsb((int16_t)s->W(5)); | |
1109 | r.B(14) = satsb((int16_t)s->W(6)); | |
1110 | r.B(15) = satsb((int16_t)s->W(7)); | |
1111 | #endif | |
1112 | *d = r; | |
1113 | } | |
1114 | ||
e01d9d31 | 1115 | void glue(helper_packuswb, SUFFIX)(Reg *d, Reg *s) |
664e0f19 | 1116 | { |
5af45186 | 1117 | Reg r; |
664e0f19 FB |
1118 | |
1119 | r.B(0) = satub((int16_t)d->W(0)); | |
1120 | r.B(1) = satub((int16_t)d->W(1)); | |
1121 | r.B(2) = satub((int16_t)d->W(2)); | |
1122 | r.B(3) = satub((int16_t)d->W(3)); | |
1123 | #if SHIFT == 1 | |
1124 | r.B(4) = satub((int16_t)d->W(4)); | |
1125 | r.B(5) = satub((int16_t)d->W(5)); | |
1126 | r.B(6) = satub((int16_t)d->W(6)); | |
1127 | r.B(7) = satub((int16_t)d->W(7)); | |
1128 | #endif | |
1129 | r.B((4 << SHIFT) + 0) = satub((int16_t)s->W(0)); | |
1130 | r.B((4 << SHIFT) + 1) = satub((int16_t)s->W(1)); | |
1131 | r.B((4 << SHIFT) + 2) = satub((int16_t)s->W(2)); | |
1132 | r.B((4 << SHIFT) + 3) = satub((int16_t)s->W(3)); | |
1133 | #if SHIFT == 1 | |
1134 | r.B(12) = satub((int16_t)s->W(4)); | |
1135 | r.B(13) = satub((int16_t)s->W(5)); | |
1136 | r.B(14) = satub((int16_t)s->W(6)); | |
1137 | r.B(15) = satub((int16_t)s->W(7)); | |
1138 | #endif | |
1139 | *d = r; | |
1140 | } | |
1141 | ||
e01d9d31 | 1142 | void glue(helper_packssdw, SUFFIX)(Reg *d, Reg *s) |
664e0f19 | 1143 | { |
5af45186 | 1144 | Reg r; |
664e0f19 FB |
1145 | |
1146 | r.W(0) = satsw(d->L(0)); | |
1147 | r.W(1) = satsw(d->L(1)); | |
1148 | #if SHIFT == 1 | |
1149 | r.W(2) = satsw(d->L(2)); | |
1150 | r.W(3) = satsw(d->L(3)); | |
1151 | #endif | |
1152 | r.W((2 << SHIFT) + 0) = satsw(s->L(0)); | |
1153 | r.W((2 << SHIFT) + 1) = satsw(s->L(1)); | |
1154 | #if SHIFT == 1 | |
1155 | r.W(6) = satsw(s->L(2)); | |
1156 | r.W(7) = satsw(s->L(3)); | |
1157 | #endif | |
1158 | *d = r; | |
1159 | } | |
1160 | ||
e01d9d31 BS |
1161 | #define UNPCK_OP(base_name, base) \ |
1162 | \ | |
1163 | void glue(helper_punpck ## base_name ## bw, SUFFIX)(Reg *d, Reg *s) \ | |
1164 | { \ | |
1165 | Reg r; \ | |
1166 | \ | |
1167 | r.B(0) = d->B((base << (SHIFT + 2)) + 0); \ | |
1168 | r.B(1) = s->B((base << (SHIFT + 2)) + 0); \ | |
1169 | r.B(2) = d->B((base << (SHIFT + 2)) + 1); \ | |
1170 | r.B(3) = s->B((base << (SHIFT + 2)) + 1); \ | |
1171 | r.B(4) = d->B((base << (SHIFT + 2)) + 2); \ | |
1172 | r.B(5) = s->B((base << (SHIFT + 2)) + 2); \ | |
1173 | r.B(6) = d->B((base << (SHIFT + 2)) + 3); \ | |
1174 | r.B(7) = s->B((base << (SHIFT + 2)) + 3); \ | |
1175 | XMM_ONLY( \ | |
1176 | r.B(8) = d->B((base << (SHIFT + 2)) + 4); \ | |
1177 | r.B(9) = s->B((base << (SHIFT + 2)) + 4); \ | |
1178 | r.B(10) = d->B((base << (SHIFT + 2)) + 5); \ | |
1179 | r.B(11) = s->B((base << (SHIFT + 2)) + 5); \ | |
1180 | r.B(12) = d->B((base << (SHIFT + 2)) + 6); \ | |
1181 | r.B(13) = s->B((base << (SHIFT + 2)) + 6); \ | |
1182 | r.B(14) = d->B((base << (SHIFT + 2)) + 7); \ | |
1183 | r.B(15) = s->B((base << (SHIFT + 2)) + 7); \ | |
1184 | ) \ | |
1185 | *d = r; \ | |
1186 | } \ | |
1187 | \ | |
1188 | void glue(helper_punpck ## base_name ## wd, SUFFIX)(Reg *d, Reg *s) \ | |
1189 | { \ | |
1190 | Reg r; \ | |
1191 | \ | |
1192 | r.W(0) = d->W((base << (SHIFT + 1)) + 0); \ | |
1193 | r.W(1) = s->W((base << (SHIFT + 1)) + 0); \ | |
1194 | r.W(2) = d->W((base << (SHIFT + 1)) + 1); \ | |
1195 | r.W(3) = s->W((base << (SHIFT + 1)) + 1); \ | |
1196 | XMM_ONLY( \ | |
1197 | r.W(4) = d->W((base << (SHIFT + 1)) + 2); \ | |
1198 | r.W(5) = s->W((base << (SHIFT + 1)) + 2); \ | |
1199 | r.W(6) = d->W((base << (SHIFT + 1)) + 3); \ | |
1200 | r.W(7) = s->W((base << (SHIFT + 1)) + 3); \ | |
1201 | ) \ | |
1202 | *d = r; \ | |
1203 | } \ | |
1204 | \ | |
1205 | void glue(helper_punpck ## base_name ## dq, SUFFIX)(Reg *d, Reg *s) \ | |
1206 | { \ | |
1207 | Reg r; \ | |
1208 | \ | |
1209 | r.L(0) = d->L((base << SHIFT) + 0); \ | |
1210 | r.L(1) = s->L((base << SHIFT) + 0); \ | |
1211 | XMM_ONLY( \ | |
1212 | r.L(2) = d->L((base << SHIFT) + 1); \ | |
1213 | r.L(3) = s->L((base << SHIFT) + 1); \ | |
1214 | ) \ | |
1215 | *d = r; \ | |
1216 | } \ | |
1217 | \ | |
1218 | XMM_ONLY( \ | |
1219 | void glue(helper_punpck ## base_name ## qdq, SUFFIX)(Reg *d, \ | |
1220 | Reg *s) \ | |
1221 | { \ | |
1222 | Reg r; \ | |
1223 | \ | |
1224 | r.Q(0) = d->Q(base); \ | |
1225 | r.Q(1) = s->Q(base); \ | |
1226 | *d = r; \ | |
1227 | } \ | |
1228 | ) | |
664e0f19 FB |
1229 | |
1230 | UNPCK_OP(l, 0) | |
1231 | UNPCK_OP(h, 1) | |
1232 | ||
a35f3ec7 AJ |
1233 | /* 3DNow! float ops */ |
1234 | #if SHIFT == 0 | |
5af45186 | 1235 | void helper_pi2fd(MMXReg *d, MMXReg *s) |
a35f3ec7 | 1236 | { |
a35f3ec7 AJ |
1237 | d->MMX_S(0) = int32_to_float32(s->MMX_L(0), &env->mmx_status); |
1238 | d->MMX_S(1) = int32_to_float32(s->MMX_L(1), &env->mmx_status); | |
1239 | } | |
1240 | ||
5af45186 | 1241 | void helper_pi2fw(MMXReg *d, MMXReg *s) |
a35f3ec7 | 1242 | { |
a35f3ec7 AJ |
1243 | d->MMX_S(0) = int32_to_float32((int16_t)s->MMX_W(0), &env->mmx_status); |
1244 | d->MMX_S(1) = int32_to_float32((int16_t)s->MMX_W(2), &env->mmx_status); | |
1245 | } | |
1246 | ||
5af45186 | 1247 | void helper_pf2id(MMXReg *d, MMXReg *s) |
a35f3ec7 | 1248 | { |
a35f3ec7 AJ |
1249 | d->MMX_L(0) = float32_to_int32_round_to_zero(s->MMX_S(0), &env->mmx_status); |
1250 | d->MMX_L(1) = float32_to_int32_round_to_zero(s->MMX_S(1), &env->mmx_status); | |
1251 | } | |
1252 | ||
5af45186 | 1253 | void helper_pf2iw(MMXReg *d, MMXReg *s) |
a35f3ec7 | 1254 | { |
e01d9d31 BS |
1255 | d->MMX_L(0) = satsw(float32_to_int32_round_to_zero(s->MMX_S(0), |
1256 | &env->mmx_status)); | |
1257 | d->MMX_L(1) = satsw(float32_to_int32_round_to_zero(s->MMX_S(1), | |
1258 | &env->mmx_status)); | |
a35f3ec7 AJ |
1259 | } |
1260 | ||
5af45186 | 1261 | void helper_pfacc(MMXReg *d, MMXReg *s) |
a35f3ec7 | 1262 | { |
a35f3ec7 | 1263 | MMXReg r; |
e01d9d31 | 1264 | |
a35f3ec7 AJ |
1265 | r.MMX_S(0) = float32_add(d->MMX_S(0), d->MMX_S(1), &env->mmx_status); |
1266 | r.MMX_S(1) = float32_add(s->MMX_S(0), s->MMX_S(1), &env->mmx_status); | |
1267 | *d = r; | |
1268 | } | |
1269 | ||
5af45186 | 1270 | void helper_pfadd(MMXReg *d, MMXReg *s) |
a35f3ec7 | 1271 | { |
a35f3ec7 AJ |
1272 | d->MMX_S(0) = float32_add(d->MMX_S(0), s->MMX_S(0), &env->mmx_status); |
1273 | d->MMX_S(1) = float32_add(d->MMX_S(1), s->MMX_S(1), &env->mmx_status); | |
1274 | } | |
1275 | ||
5af45186 | 1276 | void helper_pfcmpeq(MMXReg *d, MMXReg *s) |
a35f3ec7 | 1277 | { |
e01d9d31 BS |
1278 | d->MMX_L(0) = float32_eq_quiet(d->MMX_S(0), s->MMX_S(0), |
1279 | &env->mmx_status) ? -1 : 0; | |
1280 | d->MMX_L(1) = float32_eq_quiet(d->MMX_S(1), s->MMX_S(1), | |
1281 | &env->mmx_status) ? -1 : 0; | |
a35f3ec7 AJ |
1282 | } |
1283 | ||
5af45186 | 1284 | void helper_pfcmpge(MMXReg *d, MMXReg *s) |
a35f3ec7 | 1285 | { |
e01d9d31 BS |
1286 | d->MMX_L(0) = float32_le(s->MMX_S(0), d->MMX_S(0), |
1287 | &env->mmx_status) ? -1 : 0; | |
1288 | d->MMX_L(1) = float32_le(s->MMX_S(1), d->MMX_S(1), | |
1289 | &env->mmx_status) ? -1 : 0; | |
a35f3ec7 AJ |
1290 | } |
1291 | ||
5af45186 | 1292 | void helper_pfcmpgt(MMXReg *d, MMXReg *s) |
a35f3ec7 | 1293 | { |
e01d9d31 BS |
1294 | d->MMX_L(0) = float32_lt(s->MMX_S(0), d->MMX_S(0), |
1295 | &env->mmx_status) ? -1 : 0; | |
1296 | d->MMX_L(1) = float32_lt(s->MMX_S(1), d->MMX_S(1), | |
1297 | &env->mmx_status) ? -1 : 0; | |
a35f3ec7 AJ |
1298 | } |
1299 | ||
5af45186 | 1300 | void helper_pfmax(MMXReg *d, MMXReg *s) |
a35f3ec7 | 1301 | { |
e01d9d31 | 1302 | if (float32_lt(d->MMX_S(0), s->MMX_S(0), &env->mmx_status)) { |
a35f3ec7 | 1303 | d->MMX_S(0) = s->MMX_S(0); |
e01d9d31 BS |
1304 | } |
1305 | if (float32_lt(d->MMX_S(1), s->MMX_S(1), &env->mmx_status)) { | |
a35f3ec7 | 1306 | d->MMX_S(1) = s->MMX_S(1); |
e01d9d31 | 1307 | } |
a35f3ec7 AJ |
1308 | } |
1309 | ||
5af45186 | 1310 | void helper_pfmin(MMXReg *d, MMXReg *s) |
a35f3ec7 | 1311 | { |
e01d9d31 | 1312 | if (float32_lt(s->MMX_S(0), d->MMX_S(0), &env->mmx_status)) { |
a35f3ec7 | 1313 | d->MMX_S(0) = s->MMX_S(0); |
e01d9d31 BS |
1314 | } |
1315 | if (float32_lt(s->MMX_S(1), d->MMX_S(1), &env->mmx_status)) { | |
a35f3ec7 | 1316 | d->MMX_S(1) = s->MMX_S(1); |
e01d9d31 | 1317 | } |
a35f3ec7 AJ |
1318 | } |
1319 | ||
5af45186 | 1320 | void helper_pfmul(MMXReg *d, MMXReg *s) |
a35f3ec7 | 1321 | { |
a35f3ec7 AJ |
1322 | d->MMX_S(0) = float32_mul(d->MMX_S(0), s->MMX_S(0), &env->mmx_status); |
1323 | d->MMX_S(1) = float32_mul(d->MMX_S(1), s->MMX_S(1), &env->mmx_status); | |
1324 | } | |
1325 | ||
5af45186 | 1326 | void helper_pfnacc(MMXReg *d, MMXReg *s) |
a35f3ec7 | 1327 | { |
a35f3ec7 | 1328 | MMXReg r; |
e01d9d31 | 1329 | |
a35f3ec7 AJ |
1330 | r.MMX_S(0) = float32_sub(d->MMX_S(0), d->MMX_S(1), &env->mmx_status); |
1331 | r.MMX_S(1) = float32_sub(s->MMX_S(0), s->MMX_S(1), &env->mmx_status); | |
1332 | *d = r; | |
1333 | } | |
1334 | ||
5af45186 | 1335 | void helper_pfpnacc(MMXReg *d, MMXReg *s) |
a35f3ec7 | 1336 | { |
a35f3ec7 | 1337 | MMXReg r; |
e01d9d31 | 1338 | |
a35f3ec7 AJ |
1339 | r.MMX_S(0) = float32_sub(d->MMX_S(0), d->MMX_S(1), &env->mmx_status); |
1340 | r.MMX_S(1) = float32_add(s->MMX_S(0), s->MMX_S(1), &env->mmx_status); | |
1341 | *d = r; | |
1342 | } | |
1343 | ||
5af45186 | 1344 | void helper_pfrcp(MMXReg *d, MMXReg *s) |
a35f3ec7 | 1345 | { |
c2ef9a83 | 1346 | d->MMX_S(0) = float32_div(float32_one, s->MMX_S(0), &env->mmx_status); |
a35f3ec7 AJ |
1347 | d->MMX_S(1) = d->MMX_S(0); |
1348 | } | |
1349 | ||
5af45186 | 1350 | void helper_pfrsqrt(MMXReg *d, MMXReg *s) |
a35f3ec7 | 1351 | { |
a35f3ec7 | 1352 | d->MMX_L(1) = s->MMX_L(0) & 0x7fffffff; |
c2ef9a83 AJ |
1353 | d->MMX_S(1) = float32_div(float32_one, |
1354 | float32_sqrt(d->MMX_S(1), &env->mmx_status), | |
1355 | &env->mmx_status); | |
a35f3ec7 AJ |
1356 | d->MMX_L(1) |= s->MMX_L(0) & 0x80000000; |
1357 | d->MMX_L(0) = d->MMX_L(1); | |
1358 | } | |
1359 | ||
5af45186 | 1360 | void helper_pfsub(MMXReg *d, MMXReg *s) |
a35f3ec7 | 1361 | { |
a35f3ec7 AJ |
1362 | d->MMX_S(0) = float32_sub(d->MMX_S(0), s->MMX_S(0), &env->mmx_status); |
1363 | d->MMX_S(1) = float32_sub(d->MMX_S(1), s->MMX_S(1), &env->mmx_status); | |
1364 | } | |
1365 | ||
5af45186 | 1366 | void helper_pfsubr(MMXReg *d, MMXReg *s) |
a35f3ec7 | 1367 | { |
a35f3ec7 AJ |
1368 | d->MMX_S(0) = float32_sub(s->MMX_S(0), d->MMX_S(0), &env->mmx_status); |
1369 | d->MMX_S(1) = float32_sub(s->MMX_S(1), d->MMX_S(1), &env->mmx_status); | |
1370 | } | |
1371 | ||
5af45186 | 1372 | void helper_pswapd(MMXReg *d, MMXReg *s) |
a35f3ec7 | 1373 | { |
a35f3ec7 | 1374 | MMXReg r; |
e01d9d31 | 1375 | |
a35f3ec7 AJ |
1376 | r.MMX_L(0) = s->MMX_L(1); |
1377 | r.MMX_L(1) = s->MMX_L(0); | |
1378 | *d = r; | |
1379 | } | |
1380 | #endif | |
1381 | ||
4242b1bd | 1382 | /* SSSE3 op helpers */ |
e01d9d31 | 1383 | void glue(helper_pshufb, SUFFIX)(Reg *d, Reg *s) |
4242b1bd AZ |
1384 | { |
1385 | int i; | |
1386 | Reg r; | |
1387 | ||
e01d9d31 | 1388 | for (i = 0; i < (8 << SHIFT); i++) { |
4242b1bd | 1389 | r.B(i) = (s->B(i) & 0x80) ? 0 : (d->B(s->B(i) & ((8 << SHIFT) - 1))); |
e01d9d31 | 1390 | } |
4242b1bd AZ |
1391 | |
1392 | *d = r; | |
1393 | } | |
1394 | ||
e01d9d31 | 1395 | void glue(helper_phaddw, SUFFIX)(Reg *d, Reg *s) |
4242b1bd AZ |
1396 | { |
1397 | d->W(0) = (int16_t)d->W(0) + (int16_t)d->W(1); | |
1398 | d->W(1) = (int16_t)d->W(2) + (int16_t)d->W(3); | |
1399 | XMM_ONLY(d->W(2) = (int16_t)d->W(4) + (int16_t)d->W(5)); | |
1400 | XMM_ONLY(d->W(3) = (int16_t)d->W(6) + (int16_t)d->W(7)); | |
1401 | d->W((2 << SHIFT) + 0) = (int16_t)s->W(0) + (int16_t)s->W(1); | |
1402 | d->W((2 << SHIFT) + 1) = (int16_t)s->W(2) + (int16_t)s->W(3); | |
1403 | XMM_ONLY(d->W(6) = (int16_t)s->W(4) + (int16_t)s->W(5)); | |
1404 | XMM_ONLY(d->W(7) = (int16_t)s->W(6) + (int16_t)s->W(7)); | |
1405 | } | |
1406 | ||
e01d9d31 | 1407 | void glue(helper_phaddd, SUFFIX)(Reg *d, Reg *s) |
4242b1bd AZ |
1408 | { |
1409 | d->L(0) = (int32_t)d->L(0) + (int32_t)d->L(1); | |
1410 | XMM_ONLY(d->L(1) = (int32_t)d->L(2) + (int32_t)d->L(3)); | |
1411 | d->L((1 << SHIFT) + 0) = (int32_t)s->L(0) + (int32_t)s->L(1); | |
1412 | XMM_ONLY(d->L(3) = (int32_t)s->L(2) + (int32_t)s->L(3)); | |
1413 | } | |
1414 | ||
e01d9d31 | 1415 | void glue(helper_phaddsw, SUFFIX)(Reg *d, Reg *s) |
4242b1bd AZ |
1416 | { |
1417 | d->W(0) = satsw((int16_t)d->W(0) + (int16_t)d->W(1)); | |
1418 | d->W(1) = satsw((int16_t)d->W(2) + (int16_t)d->W(3)); | |
1419 | XMM_ONLY(d->W(2) = satsw((int16_t)d->W(4) + (int16_t)d->W(5))); | |
1420 | XMM_ONLY(d->W(3) = satsw((int16_t)d->W(6) + (int16_t)d->W(7))); | |
1421 | d->W((2 << SHIFT) + 0) = satsw((int16_t)s->W(0) + (int16_t)s->W(1)); | |
1422 | d->W((2 << SHIFT) + 1) = satsw((int16_t)s->W(2) + (int16_t)s->W(3)); | |
1423 | XMM_ONLY(d->W(6) = satsw((int16_t)s->W(4) + (int16_t)s->W(5))); | |
1424 | XMM_ONLY(d->W(7) = satsw((int16_t)s->W(6) + (int16_t)s->W(7))); | |
1425 | } | |
1426 | ||
e01d9d31 | 1427 | void glue(helper_pmaddubsw, SUFFIX)(Reg *d, Reg *s) |
4242b1bd | 1428 | { |
e01d9d31 BS |
1429 | d->W(0) = satsw((int8_t)s->B(0) * (uint8_t)d->B(0) + |
1430 | (int8_t)s->B(1) * (uint8_t)d->B(1)); | |
1431 | d->W(1) = satsw((int8_t)s->B(2) * (uint8_t)d->B(2) + | |
1432 | (int8_t)s->B(3) * (uint8_t)d->B(3)); | |
1433 | d->W(2) = satsw((int8_t)s->B(4) * (uint8_t)d->B(4) + | |
1434 | (int8_t)s->B(5) * (uint8_t)d->B(5)); | |
1435 | d->W(3) = satsw((int8_t)s->B(6) * (uint8_t)d->B(6) + | |
1436 | (int8_t)s->B(7) * (uint8_t)d->B(7)); | |
4242b1bd | 1437 | #if SHIFT == 1 |
e01d9d31 BS |
1438 | d->W(4) = satsw((int8_t)s->B(8) * (uint8_t)d->B(8) + |
1439 | (int8_t)s->B(9) * (uint8_t)d->B(9)); | |
4242b1bd AZ |
1440 | d->W(5) = satsw((int8_t)s->B(10) * (uint8_t)d->B(10) + |
1441 | (int8_t)s->B(11) * (uint8_t)d->B(11)); | |
1442 | d->W(6) = satsw((int8_t)s->B(12) * (uint8_t)d->B(12) + | |
1443 | (int8_t)s->B(13) * (uint8_t)d->B(13)); | |
1444 | d->W(7) = satsw((int8_t)s->B(14) * (uint8_t)d->B(14) + | |
1445 | (int8_t)s->B(15) * (uint8_t)d->B(15)); | |
1446 | #endif | |
1447 | } | |
1448 | ||
e01d9d31 | 1449 | void glue(helper_phsubw, SUFFIX)(Reg *d, Reg *s) |
4242b1bd AZ |
1450 | { |
1451 | d->W(0) = (int16_t)d->W(0) - (int16_t)d->W(1); | |
1452 | d->W(1) = (int16_t)d->W(2) - (int16_t)d->W(3); | |
1453 | XMM_ONLY(d->W(2) = (int16_t)d->W(4) - (int16_t)d->W(5)); | |
1454 | XMM_ONLY(d->W(3) = (int16_t)d->W(6) - (int16_t)d->W(7)); | |
1455 | d->W((2 << SHIFT) + 0) = (int16_t)s->W(0) - (int16_t)s->W(1); | |
1456 | d->W((2 << SHIFT) + 1) = (int16_t)s->W(2) - (int16_t)s->W(3); | |
1457 | XMM_ONLY(d->W(6) = (int16_t)s->W(4) - (int16_t)s->W(5)); | |
1458 | XMM_ONLY(d->W(7) = (int16_t)s->W(6) - (int16_t)s->W(7)); | |
1459 | } | |
1460 | ||
e01d9d31 | 1461 | void glue(helper_phsubd, SUFFIX)(Reg *d, Reg *s) |
4242b1bd AZ |
1462 | { |
1463 | d->L(0) = (int32_t)d->L(0) - (int32_t)d->L(1); | |
1464 | XMM_ONLY(d->L(1) = (int32_t)d->L(2) - (int32_t)d->L(3)); | |
1465 | d->L((1 << SHIFT) + 0) = (int32_t)s->L(0) - (int32_t)s->L(1); | |
1466 | XMM_ONLY(d->L(3) = (int32_t)s->L(2) - (int32_t)s->L(3)); | |
1467 | } | |
1468 | ||
e01d9d31 | 1469 | void glue(helper_phsubsw, SUFFIX)(Reg *d, Reg *s) |
4242b1bd AZ |
1470 | { |
1471 | d->W(0) = satsw((int16_t)d->W(0) - (int16_t)d->W(1)); | |
1472 | d->W(1) = satsw((int16_t)d->W(2) - (int16_t)d->W(3)); | |
1473 | XMM_ONLY(d->W(2) = satsw((int16_t)d->W(4) - (int16_t)d->W(5))); | |
1474 | XMM_ONLY(d->W(3) = satsw((int16_t)d->W(6) - (int16_t)d->W(7))); | |
1475 | d->W((2 << SHIFT) + 0) = satsw((int16_t)s->W(0) - (int16_t)s->W(1)); | |
1476 | d->W((2 << SHIFT) + 1) = satsw((int16_t)s->W(2) - (int16_t)s->W(3)); | |
1477 | XMM_ONLY(d->W(6) = satsw((int16_t)s->W(4) - (int16_t)s->W(5))); | |
1478 | XMM_ONLY(d->W(7) = satsw((int16_t)s->W(6) - (int16_t)s->W(7))); | |
1479 | } | |
1480 | ||
e01d9d31 BS |
1481 | #define FABSB(_, x) (x > INT8_MAX ? -(int8_t)x : x) |
1482 | #define FABSW(_, x) (x > INT16_MAX ? -(int16_t)x : x) | |
1483 | #define FABSL(_, x) (x > INT32_MAX ? -(int32_t)x : x) | |
4242b1bd AZ |
1484 | SSE_HELPER_B(helper_pabsb, FABSB) |
1485 | SSE_HELPER_W(helper_pabsw, FABSW) | |
1486 | SSE_HELPER_L(helper_pabsd, FABSL) | |
1487 | ||
e01d9d31 | 1488 | #define FMULHRSW(d, s) (((int16_t) d * (int16_t)s + 0x4000) >> 15) |
4242b1bd AZ |
1489 | SSE_HELPER_W(helper_pmulhrsw, FMULHRSW) |
1490 | ||
e01d9d31 BS |
1491 | #define FSIGNB(d, s) (s <= INT8_MAX ? s ? d : 0 : -(int8_t)d) |
1492 | #define FSIGNW(d, s) (s <= INT16_MAX ? s ? d : 0 : -(int16_t)d) | |
1493 | #define FSIGNL(d, s) (s <= INT32_MAX ? s ? d : 0 : -(int32_t)d) | |
4242b1bd AZ |
1494 | SSE_HELPER_B(helper_psignb, FSIGNB) |
1495 | SSE_HELPER_W(helper_psignw, FSIGNW) | |
1496 | SSE_HELPER_L(helper_psignd, FSIGNL) | |
1497 | ||
e01d9d31 | 1498 | void glue(helper_palignr, SUFFIX)(Reg *d, Reg *s, int32_t shift) |
4242b1bd AZ |
1499 | { |
1500 | Reg r; | |
1501 | ||
1502 | /* XXX could be checked during translation */ | |
1503 | if (shift >= (16 << SHIFT)) { | |
1504 | r.Q(0) = 0; | |
1505 | XMM_ONLY(r.Q(1) = 0); | |
1506 | } else { | |
1507 | shift <<= 3; | |
1508 | #define SHR(v, i) (i < 64 && i > -64 ? i > 0 ? v >> (i) : (v << -(i)) : 0) | |
1509 | #if SHIFT == 0 | |
e01d9d31 BS |
1510 | r.Q(0) = SHR(s->Q(0), shift - 0) | |
1511 | SHR(d->Q(0), shift - 64); | |
4242b1bd | 1512 | #else |
e01d9d31 BS |
1513 | r.Q(0) = SHR(s->Q(0), shift - 0) | |
1514 | SHR(s->Q(1), shift - 64) | | |
1515 | SHR(d->Q(0), shift - 128) | | |
1516 | SHR(d->Q(1), shift - 192); | |
1517 | r.Q(1) = SHR(s->Q(0), shift + 64) | | |
1518 | SHR(s->Q(1), shift - 0) | | |
1519 | SHR(d->Q(0), shift - 64) | | |
1520 | SHR(d->Q(1), shift - 128); | |
4242b1bd AZ |
1521 | #endif |
1522 | #undef SHR | |
1523 | } | |
1524 | ||
1525 | *d = r; | |
1526 | } | |
1527 | ||
e01d9d31 | 1528 | #define XMM0 (env->xmm_regs[0]) |
222a3336 AZ |
1529 | |
1530 | #if SHIFT == 1 | |
e01d9d31 BS |
1531 | #define SSE_HELPER_V(name, elem, num, F) \ |
1532 | void glue(name, SUFFIX)(Reg *d, Reg *s) \ | |
1533 | { \ | |
1534 | d->elem(0) = F(d->elem(0), s->elem(0), XMM0.elem(0)); \ | |
1535 | d->elem(1) = F(d->elem(1), s->elem(1), XMM0.elem(1)); \ | |
1536 | if (num > 2) { \ | |
1537 | d->elem(2) = F(d->elem(2), s->elem(2), XMM0.elem(2)); \ | |
1538 | d->elem(3) = F(d->elem(3), s->elem(3), XMM0.elem(3)); \ | |
1539 | if (num > 4) { \ | |
1540 | d->elem(4) = F(d->elem(4), s->elem(4), XMM0.elem(4)); \ | |
1541 | d->elem(5) = F(d->elem(5), s->elem(5), XMM0.elem(5)); \ | |
1542 | d->elem(6) = F(d->elem(6), s->elem(6), XMM0.elem(6)); \ | |
1543 | d->elem(7) = F(d->elem(7), s->elem(7), XMM0.elem(7)); \ | |
1544 | if (num > 8) { \ | |
1545 | d->elem(8) = F(d->elem(8), s->elem(8), XMM0.elem(8)); \ | |
1546 | d->elem(9) = F(d->elem(9), s->elem(9), XMM0.elem(9)); \ | |
1547 | d->elem(10) = F(d->elem(10), s->elem(10), XMM0.elem(10)); \ | |
1548 | d->elem(11) = F(d->elem(11), s->elem(11), XMM0.elem(11)); \ | |
1549 | d->elem(12) = F(d->elem(12), s->elem(12), XMM0.elem(12)); \ | |
1550 | d->elem(13) = F(d->elem(13), s->elem(13), XMM0.elem(13)); \ | |
1551 | d->elem(14) = F(d->elem(14), s->elem(14), XMM0.elem(14)); \ | |
1552 | d->elem(15) = F(d->elem(15), s->elem(15), XMM0.elem(15)); \ | |
1553 | } \ | |
1554 | } \ | |
1555 | } \ | |
1556 | } | |
1557 | ||
1558 | #define SSE_HELPER_I(name, elem, num, F) \ | |
1559 | void glue(name, SUFFIX)(Reg *d, Reg *s, uint32_t imm) \ | |
1560 | { \ | |
1561 | d->elem(0) = F(d->elem(0), s->elem(0), ((imm >> 0) & 1)); \ | |
1562 | d->elem(1) = F(d->elem(1), s->elem(1), ((imm >> 1) & 1)); \ | |
1563 | if (num > 2) { \ | |
1564 | d->elem(2) = F(d->elem(2), s->elem(2), ((imm >> 2) & 1)); \ | |
1565 | d->elem(3) = F(d->elem(3), s->elem(3), ((imm >> 3) & 1)); \ | |
1566 | if (num > 4) { \ | |
1567 | d->elem(4) = F(d->elem(4), s->elem(4), ((imm >> 4) & 1)); \ | |
1568 | d->elem(5) = F(d->elem(5), s->elem(5), ((imm >> 5) & 1)); \ | |
1569 | d->elem(6) = F(d->elem(6), s->elem(6), ((imm >> 6) & 1)); \ | |
1570 | d->elem(7) = F(d->elem(7), s->elem(7), ((imm >> 7) & 1)); \ | |
1571 | if (num > 8) { \ | |
1572 | d->elem(8) = F(d->elem(8), s->elem(8), ((imm >> 8) & 1)); \ | |
1573 | d->elem(9) = F(d->elem(9), s->elem(9), ((imm >> 9) & 1)); \ | |
1574 | d->elem(10) = F(d->elem(10), s->elem(10), \ | |
1575 | ((imm >> 10) & 1)); \ | |
1576 | d->elem(11) = F(d->elem(11), s->elem(11), \ | |
1577 | ((imm >> 11) & 1)); \ | |
1578 | d->elem(12) = F(d->elem(12), s->elem(12), \ | |
1579 | ((imm >> 12) & 1)); \ | |
1580 | d->elem(13) = F(d->elem(13), s->elem(13), \ | |
1581 | ((imm >> 13) & 1)); \ | |
1582 | d->elem(14) = F(d->elem(14), s->elem(14), \ | |
1583 | ((imm >> 14) & 1)); \ | |
1584 | d->elem(15) = F(d->elem(15), s->elem(15), \ | |
1585 | ((imm >> 15) & 1)); \ | |
1586 | } \ | |
1587 | } \ | |
1588 | } \ | |
1589 | } | |
222a3336 AZ |
1590 | |
1591 | /* SSE4.1 op helpers */ | |
e01d9d31 BS |
1592 | #define FBLENDVB(d, s, m) ((m & 0x80) ? s : d) |
1593 | #define FBLENDVPS(d, s, m) ((m & 0x80000000) ? s : d) | |
1594 | #define FBLENDVPD(d, s, m) ((m & 0x8000000000000000LL) ? s : d) | |
222a3336 AZ |
1595 | SSE_HELPER_V(helper_pblendvb, B, 16, FBLENDVB) |
1596 | SSE_HELPER_V(helper_blendvps, L, 4, FBLENDVPS) | |
1597 | SSE_HELPER_V(helper_blendvpd, Q, 2, FBLENDVPD) | |
1598 | ||
e01d9d31 | 1599 | void glue(helper_ptest, SUFFIX)(Reg *d, Reg *s) |
222a3336 AZ |
1600 | { |
1601 | uint64_t zf = (s->Q(0) & d->Q(0)) | (s->Q(1) & d->Q(1)); | |
1602 | uint64_t cf = (s->Q(0) & ~d->Q(0)) | (s->Q(1) & ~d->Q(1)); | |
1603 | ||
1604 | CC_SRC = (zf ? 0 : CC_Z) | (cf ? 0 : CC_C); | |
1605 | } | |
1606 | ||
e01d9d31 BS |
1607 | #define SSE_HELPER_F(name, elem, num, F) \ |
1608 | void glue(name, SUFFIX)(Reg *d, Reg *s) \ | |
1609 | { \ | |
1610 | d->elem(0) = F(0); \ | |
1611 | d->elem(1) = F(1); \ | |
1612 | if (num > 2) { \ | |
1613 | d->elem(2) = F(2); \ | |
1614 | d->elem(3) = F(3); \ | |
1615 | if (num > 4) { \ | |
1616 | d->elem(4) = F(4); \ | |
1617 | d->elem(5) = F(5); \ | |
1618 | d->elem(6) = F(6); \ | |
1619 | d->elem(7) = F(7); \ | |
1620 | } \ | |
1621 | } \ | |
1622 | } | |
222a3336 AZ |
1623 | |
1624 | SSE_HELPER_F(helper_pmovsxbw, W, 8, (int8_t) s->B) | |
1625 | SSE_HELPER_F(helper_pmovsxbd, L, 4, (int8_t) s->B) | |
1626 | SSE_HELPER_F(helper_pmovsxbq, Q, 2, (int8_t) s->B) | |
1627 | SSE_HELPER_F(helper_pmovsxwd, L, 4, (int16_t) s->W) | |
1628 | SSE_HELPER_F(helper_pmovsxwq, Q, 2, (int16_t) s->W) | |
1629 | SSE_HELPER_F(helper_pmovsxdq, Q, 2, (int32_t) s->L) | |
1630 | SSE_HELPER_F(helper_pmovzxbw, W, 8, s->B) | |
1631 | SSE_HELPER_F(helper_pmovzxbd, L, 4, s->B) | |
1632 | SSE_HELPER_F(helper_pmovzxbq, Q, 2, s->B) | |
1633 | SSE_HELPER_F(helper_pmovzxwd, L, 4, s->W) | |
1634 | SSE_HELPER_F(helper_pmovzxwq, Q, 2, s->W) | |
1635 | SSE_HELPER_F(helper_pmovzxdq, Q, 2, s->L) | |
1636 | ||
e01d9d31 | 1637 | void glue(helper_pmuldq, SUFFIX)(Reg *d, Reg *s) |
222a3336 | 1638 | { |
e01d9d31 BS |
1639 | d->Q(0) = (int64_t)(int32_t) d->L(0) * (int32_t) s->L(0); |
1640 | d->Q(1) = (int64_t)(int32_t) d->L(2) * (int32_t) s->L(2); | |
222a3336 AZ |
1641 | } |
1642 | ||
e01d9d31 | 1643 | #define FCMPEQQ(d, s) (d == s ? -1 : 0) |
222a3336 AZ |
1644 | SSE_HELPER_Q(helper_pcmpeqq, FCMPEQQ) |
1645 | ||
e01d9d31 | 1646 | void glue(helper_packusdw, SUFFIX)(Reg *d, Reg *s) |
222a3336 AZ |
1647 | { |
1648 | d->W(0) = satuw((int32_t) d->L(0)); | |
1649 | d->W(1) = satuw((int32_t) d->L(1)); | |
1650 | d->W(2) = satuw((int32_t) d->L(2)); | |
1651 | d->W(3) = satuw((int32_t) d->L(3)); | |
1652 | d->W(4) = satuw((int32_t) s->L(0)); | |
1653 | d->W(5) = satuw((int32_t) s->L(1)); | |
1654 | d->W(6) = satuw((int32_t) s->L(2)); | |
1655 | d->W(7) = satuw((int32_t) s->L(3)); | |
1656 | } | |
1657 | ||
e01d9d31 BS |
1658 | #define FMINSB(d, s) MIN((int8_t)d, (int8_t)s) |
1659 | #define FMINSD(d, s) MIN((int32_t)d, (int32_t)s) | |
1660 | #define FMAXSB(d, s) MAX((int8_t)d, (int8_t)s) | |
1661 | #define FMAXSD(d, s) MAX((int32_t)d, (int32_t)s) | |
222a3336 AZ |
1662 | SSE_HELPER_B(helper_pminsb, FMINSB) |
1663 | SSE_HELPER_L(helper_pminsd, FMINSD) | |
1664 | SSE_HELPER_W(helper_pminuw, MIN) | |
1665 | SSE_HELPER_L(helper_pminud, MIN) | |
1666 | SSE_HELPER_B(helper_pmaxsb, FMAXSB) | |
1667 | SSE_HELPER_L(helper_pmaxsd, FMAXSD) | |
1668 | SSE_HELPER_W(helper_pmaxuw, MAX) | |
1669 | SSE_HELPER_L(helper_pmaxud, MAX) | |
1670 | ||
e01d9d31 | 1671 | #define FMULLD(d, s) ((int32_t)d * (int32_t)s) |
222a3336 AZ |
1672 | SSE_HELPER_L(helper_pmulld, FMULLD) |
1673 | ||
e01d9d31 | 1674 | void glue(helper_phminposuw, SUFFIX)(Reg *d, Reg *s) |
222a3336 AZ |
1675 | { |
1676 | int idx = 0; | |
1677 | ||
e01d9d31 | 1678 | if (s->W(1) < s->W(idx)) { |
222a3336 | 1679 | idx = 1; |
e01d9d31 BS |
1680 | } |
1681 | if (s->W(2) < s->W(idx)) { | |
222a3336 | 1682 | idx = 2; |
e01d9d31 BS |
1683 | } |
1684 | if (s->W(3) < s->W(idx)) { | |
222a3336 | 1685 | idx = 3; |
e01d9d31 BS |
1686 | } |
1687 | if (s->W(4) < s->W(idx)) { | |
222a3336 | 1688 | idx = 4; |
e01d9d31 BS |
1689 | } |
1690 | if (s->W(5) < s->W(idx)) { | |
222a3336 | 1691 | idx = 5; |
e01d9d31 BS |
1692 | } |
1693 | if (s->W(6) < s->W(idx)) { | |
222a3336 | 1694 | idx = 6; |
e01d9d31 BS |
1695 | } |
1696 | if (s->W(7) < s->W(idx)) { | |
222a3336 | 1697 | idx = 7; |
e01d9d31 | 1698 | } |
222a3336 AZ |
1699 | |
1700 | d->Q(1) = 0; | |
1701 | d->L(1) = 0; | |
1702 | d->W(1) = idx; | |
1703 | d->W(0) = s->W(idx); | |
1704 | } | |
1705 | ||
e01d9d31 | 1706 | void glue(helper_roundps, SUFFIX)(Reg *d, Reg *s, uint32_t mode) |
222a3336 AZ |
1707 | { |
1708 | signed char prev_rounding_mode; | |
1709 | ||
1710 | prev_rounding_mode = env->sse_status.float_rounding_mode; | |
e01d9d31 | 1711 | if (!(mode & (1 << 2))) { |
222a3336 AZ |
1712 | switch (mode & 3) { |
1713 | case 0: | |
1714 | set_float_rounding_mode(float_round_nearest_even, &env->sse_status); | |
1715 | break; | |
1716 | case 1: | |
1717 | set_float_rounding_mode(float_round_down, &env->sse_status); | |
1718 | break; | |
1719 | case 2: | |
1720 | set_float_rounding_mode(float_round_up, &env->sse_status); | |
1721 | break; | |
1722 | case 3: | |
1723 | set_float_rounding_mode(float_round_to_zero, &env->sse_status); | |
1724 | break; | |
1725 | } | |
e01d9d31 | 1726 | } |
222a3336 | 1727 | |
adc71666 AJ |
1728 | d->XMM_S(0) = float32_round_to_int(s->XMM_S(0), &env->sse_status); |
1729 | d->XMM_S(1) = float32_round_to_int(s->XMM_S(1), &env->sse_status); | |
1730 | d->XMM_S(2) = float32_round_to_int(s->XMM_S(2), &env->sse_status); | |
1731 | d->XMM_S(3) = float32_round_to_int(s->XMM_S(3), &env->sse_status); | |
222a3336 AZ |
1732 | |
1733 | #if 0 /* TODO */ | |
e01d9d31 BS |
1734 | if (mode & (1 << 3)) { |
1735 | set_float_exception_flags(get_float_exception_flags(&env->sse_status) & | |
1736 | ~float_flag_inexact, | |
1737 | &env->sse_status); | |
1738 | } | |
222a3336 AZ |
1739 | #endif |
1740 | env->sse_status.float_rounding_mode = prev_rounding_mode; | |
1741 | } | |
1742 | ||
e01d9d31 | 1743 | void glue(helper_roundpd, SUFFIX)(Reg *d, Reg *s, uint32_t mode) |
222a3336 AZ |
1744 | { |
1745 | signed char prev_rounding_mode; | |
1746 | ||
1747 | prev_rounding_mode = env->sse_status.float_rounding_mode; | |
e01d9d31 | 1748 | if (!(mode & (1 << 2))) { |
222a3336 AZ |
1749 | switch (mode & 3) { |
1750 | case 0: | |
1751 | set_float_rounding_mode(float_round_nearest_even, &env->sse_status); | |
1752 | break; | |
1753 | case 1: | |
1754 | set_float_rounding_mode(float_round_down, &env->sse_status); | |
1755 | break; | |
1756 | case 2: | |
1757 | set_float_rounding_mode(float_round_up, &env->sse_status); | |
1758 | break; | |
1759 | case 3: | |
1760 | set_float_rounding_mode(float_round_to_zero, &env->sse_status); | |
1761 | break; | |
1762 | } | |
e01d9d31 | 1763 | } |
222a3336 | 1764 | |
adc71666 AJ |
1765 | d->XMM_D(0) = float64_round_to_int(s->XMM_D(0), &env->sse_status); |
1766 | d->XMM_D(1) = float64_round_to_int(s->XMM_D(1), &env->sse_status); | |
222a3336 AZ |
1767 | |
1768 | #if 0 /* TODO */ | |
e01d9d31 BS |
1769 | if (mode & (1 << 3)) { |
1770 | set_float_exception_flags(get_float_exception_flags(&env->sse_status) & | |
1771 | ~float_flag_inexact, | |
1772 | &env->sse_status); | |
1773 | } | |
222a3336 AZ |
1774 | #endif |
1775 | env->sse_status.float_rounding_mode = prev_rounding_mode; | |
1776 | } | |
1777 | ||
e01d9d31 | 1778 | void glue(helper_roundss, SUFFIX)(Reg *d, Reg *s, uint32_t mode) |
222a3336 AZ |
1779 | { |
1780 | signed char prev_rounding_mode; | |
1781 | ||
1782 | prev_rounding_mode = env->sse_status.float_rounding_mode; | |
e01d9d31 | 1783 | if (!(mode & (1 << 2))) { |
222a3336 AZ |
1784 | switch (mode & 3) { |
1785 | case 0: | |
1786 | set_float_rounding_mode(float_round_nearest_even, &env->sse_status); | |
1787 | break; | |
1788 | case 1: | |
1789 | set_float_rounding_mode(float_round_down, &env->sse_status); | |
1790 | break; | |
1791 | case 2: | |
1792 | set_float_rounding_mode(float_round_up, &env->sse_status); | |
1793 | break; | |
1794 | case 3: | |
1795 | set_float_rounding_mode(float_round_to_zero, &env->sse_status); | |
1796 | break; | |
1797 | } | |
e01d9d31 | 1798 | } |
222a3336 | 1799 | |
adc71666 | 1800 | d->XMM_S(0) = float32_round_to_int(s->XMM_S(0), &env->sse_status); |
222a3336 AZ |
1801 | |
1802 | #if 0 /* TODO */ | |
e01d9d31 BS |
1803 | if (mode & (1 << 3)) { |
1804 | set_float_exception_flags(get_float_exception_flags(&env->sse_status) & | |
1805 | ~float_flag_inexact, | |
1806 | &env->sse_status); | |
1807 | } | |
222a3336 AZ |
1808 | #endif |
1809 | env->sse_status.float_rounding_mode = prev_rounding_mode; | |
1810 | } | |
1811 | ||
e01d9d31 | 1812 | void glue(helper_roundsd, SUFFIX)(Reg *d, Reg *s, uint32_t mode) |
222a3336 AZ |
1813 | { |
1814 | signed char prev_rounding_mode; | |
1815 | ||
1816 | prev_rounding_mode = env->sse_status.float_rounding_mode; | |
e01d9d31 | 1817 | if (!(mode & (1 << 2))) { |
222a3336 AZ |
1818 | switch (mode & 3) { |
1819 | case 0: | |
1820 | set_float_rounding_mode(float_round_nearest_even, &env->sse_status); | |
1821 | break; | |
1822 | case 1: | |
1823 | set_float_rounding_mode(float_round_down, &env->sse_status); | |
1824 | break; | |
1825 | case 2: | |
1826 | set_float_rounding_mode(float_round_up, &env->sse_status); | |
1827 | break; | |
1828 | case 3: | |
1829 | set_float_rounding_mode(float_round_to_zero, &env->sse_status); | |
1830 | break; | |
1831 | } | |
e01d9d31 | 1832 | } |
222a3336 | 1833 | |
adc71666 | 1834 | d->XMM_D(0) = float64_round_to_int(s->XMM_D(0), &env->sse_status); |
222a3336 AZ |
1835 | |
1836 | #if 0 /* TODO */ | |
e01d9d31 BS |
1837 | if (mode & (1 << 3)) { |
1838 | set_float_exception_flags(get_float_exception_flags(&env->sse_status) & | |
1839 | ~float_flag_inexact, | |
1840 | &env->sse_status); | |
1841 | } | |
222a3336 AZ |
1842 | #endif |
1843 | env->sse_status.float_rounding_mode = prev_rounding_mode; | |
1844 | } | |
1845 | ||
e01d9d31 | 1846 | #define FBLENDP(d, s, m) (m ? s : d) |
222a3336 AZ |
1847 | SSE_HELPER_I(helper_blendps, L, 4, FBLENDP) |
1848 | SSE_HELPER_I(helper_blendpd, Q, 2, FBLENDP) | |
1849 | SSE_HELPER_I(helper_pblendw, W, 8, FBLENDP) | |
1850 | ||
e01d9d31 | 1851 | void glue(helper_dpps, SUFFIX)(Reg *d, Reg *s, uint32_t mask) |
222a3336 | 1852 | { |
170d5b4b | 1853 | float32 iresult = float32_zero; |
222a3336 | 1854 | |
e01d9d31 | 1855 | if (mask & (1 << 4)) { |
222a3336 | 1856 | iresult = float32_add(iresult, |
e01d9d31 BS |
1857 | float32_mul(d->XMM_S(0), s->XMM_S(0), |
1858 | &env->sse_status), | |
1859 | &env->sse_status); | |
1860 | } | |
1861 | if (mask & (1 << 5)) { | |
222a3336 | 1862 | iresult = float32_add(iresult, |
e01d9d31 BS |
1863 | float32_mul(d->XMM_S(1), s->XMM_S(1), |
1864 | &env->sse_status), | |
1865 | &env->sse_status); | |
1866 | } | |
1867 | if (mask & (1 << 6)) { | |
222a3336 | 1868 | iresult = float32_add(iresult, |
e01d9d31 BS |
1869 | float32_mul(d->XMM_S(2), s->XMM_S(2), |
1870 | &env->sse_status), | |
1871 | &env->sse_status); | |
1872 | } | |
1873 | if (mask & (1 << 7)) { | |
222a3336 | 1874 | iresult = float32_add(iresult, |
e01d9d31 BS |
1875 | float32_mul(d->XMM_S(3), s->XMM_S(3), |
1876 | &env->sse_status), | |
1877 | &env->sse_status); | |
1878 | } | |
170d5b4b AJ |
1879 | d->XMM_S(0) = (mask & (1 << 0)) ? iresult : float32_zero; |
1880 | d->XMM_S(1) = (mask & (1 << 1)) ? iresult : float32_zero; | |
1881 | d->XMM_S(2) = (mask & (1 << 2)) ? iresult : float32_zero; | |
1882 | d->XMM_S(3) = (mask & (1 << 3)) ? iresult : float32_zero; | |
222a3336 AZ |
1883 | } |
1884 | ||
e01d9d31 | 1885 | void glue(helper_dppd, SUFFIX)(Reg *d, Reg *s, uint32_t mask) |
222a3336 | 1886 | { |
170d5b4b | 1887 | float64 iresult = float64_zero; |
222a3336 | 1888 | |
e01d9d31 | 1889 | if (mask & (1 << 4)) { |
222a3336 | 1890 | iresult = float64_add(iresult, |
e01d9d31 BS |
1891 | float64_mul(d->XMM_D(0), s->XMM_D(0), |
1892 | &env->sse_status), | |
1893 | &env->sse_status); | |
1894 | } | |
1895 | if (mask & (1 << 5)) { | |
222a3336 | 1896 | iresult = float64_add(iresult, |
e01d9d31 BS |
1897 | float64_mul(d->XMM_D(1), s->XMM_D(1), |
1898 | &env->sse_status), | |
1899 | &env->sse_status); | |
1900 | } | |
170d5b4b AJ |
1901 | d->XMM_D(0) = (mask & (1 << 0)) ? iresult : float64_zero; |
1902 | d->XMM_D(1) = (mask & (1 << 1)) ? iresult : float64_zero; | |
222a3336 AZ |
1903 | } |
1904 | ||
e01d9d31 | 1905 | void glue(helper_mpsadbw, SUFFIX)(Reg *d, Reg *s, uint32_t offset) |
222a3336 AZ |
1906 | { |
1907 | int s0 = (offset & 3) << 2; | |
1908 | int d0 = (offset & 4) << 0; | |
1909 | int i; | |
1910 | Reg r; | |
1911 | ||
1912 | for (i = 0; i < 8; i++, d0++) { | |
1913 | r.W(i) = 0; | |
1914 | r.W(i) += abs1(d->B(d0 + 0) - s->B(s0 + 0)); | |
1915 | r.W(i) += abs1(d->B(d0 + 1) - s->B(s0 + 1)); | |
1916 | r.W(i) += abs1(d->B(d0 + 2) - s->B(s0 + 2)); | |
1917 | r.W(i) += abs1(d->B(d0 + 3) - s->B(s0 + 3)); | |
1918 | } | |
1919 | ||
1920 | *d = r; | |
1921 | } | |
1922 | ||
1923 | /* SSE4.2 op helpers */ | |
1924 | /* it's unclear whether signed or unsigned */ | |
e01d9d31 | 1925 | #define FCMPGTQ(d, s) (d > s ? -1 : 0) |
222a3336 AZ |
1926 | SSE_HELPER_Q(helper_pcmpgtq, FCMPGTQ) |
1927 | ||
1928 | static inline int pcmp_elen(int reg, uint32_t ctrl) | |
1929 | { | |
1930 | int val; | |
1931 | ||
1932 | /* Presence of REX.W is indicated by a bit higher than 7 set */ | |
e01d9d31 BS |
1933 | if (ctrl >> 8) { |
1934 | val = abs1((int64_t)env->regs[reg]); | |
1935 | } else { | |
1936 | val = abs1((int32_t)env->regs[reg]); | |
1937 | } | |
222a3336 AZ |
1938 | |
1939 | if (ctrl & 1) { | |
e01d9d31 | 1940 | if (val > 8) { |
222a3336 | 1941 | return 8; |
e01d9d31 BS |
1942 | } |
1943 | } else { | |
1944 | if (val > 16) { | |
222a3336 | 1945 | return 16; |
e01d9d31 BS |
1946 | } |
1947 | } | |
222a3336 AZ |
1948 | return val; |
1949 | } | |
1950 | ||
1951 | static inline int pcmp_ilen(Reg *r, uint8_t ctrl) | |
1952 | { | |
1953 | int val = 0; | |
1954 | ||
1955 | if (ctrl & 1) { | |
e01d9d31 | 1956 | while (val < 8 && r->W(val)) { |
222a3336 | 1957 | val++; |
e01d9d31 BS |
1958 | } |
1959 | } else { | |
1960 | while (val < 16 && r->B(val)) { | |
222a3336 | 1961 | val++; |
e01d9d31 BS |
1962 | } |
1963 | } | |
222a3336 AZ |
1964 | |
1965 | return val; | |
1966 | } | |
1967 | ||
1968 | static inline int pcmp_val(Reg *r, uint8_t ctrl, int i) | |
1969 | { | |
1970 | switch ((ctrl >> 0) & 3) { | |
1971 | case 0: | |
1972 | return r->B(i); | |
1973 | case 1: | |
1974 | return r->W(i); | |
1975 | case 2: | |
e01d9d31 | 1976 | return (int8_t)r->B(i); |
222a3336 AZ |
1977 | case 3: |
1978 | default: | |
e01d9d31 | 1979 | return (int16_t)r->W(i); |
222a3336 AZ |
1980 | } |
1981 | } | |
1982 | ||
1983 | static inline unsigned pcmpxstrx(Reg *d, Reg *s, | |
e01d9d31 | 1984 | int8_t ctrl, int valids, int validd) |
222a3336 AZ |
1985 | { |
1986 | unsigned int res = 0; | |
1987 | int v; | |
1988 | int j, i; | |
1989 | int upper = (ctrl & 1) ? 7 : 15; | |
1990 | ||
1991 | valids--; | |
1992 | validd--; | |
1993 | ||
1994 | CC_SRC = (valids < upper ? CC_Z : 0) | (validd < upper ? CC_S : 0); | |
1995 | ||
1996 | switch ((ctrl >> 2) & 3) { | |
1997 | case 0: | |
1998 | for (j = valids; j >= 0; j--) { | |
1999 | res <<= 1; | |
2000 | v = pcmp_val(s, ctrl, j); | |
e01d9d31 | 2001 | for (i = validd; i >= 0; i--) { |
222a3336 | 2002 | res |= (v == pcmp_val(d, ctrl, i)); |
e01d9d31 | 2003 | } |
222a3336 AZ |
2004 | } |
2005 | break; | |
2006 | case 1: | |
2007 | for (j = valids; j >= 0; j--) { | |
2008 | res <<= 1; | |
2009 | v = pcmp_val(s, ctrl, j); | |
e01d9d31 | 2010 | for (i = ((validd - 1) | 1); i >= 0; i -= 2) { |
222a3336 AZ |
2011 | res |= (pcmp_val(d, ctrl, i - 0) <= v && |
2012 | pcmp_val(d, ctrl, i - 1) >= v); | |
e01d9d31 | 2013 | } |
222a3336 AZ |
2014 | } |
2015 | break; | |
2016 | case 2: | |
2017 | res = (2 << (upper - MAX(valids, validd))) - 1; | |
2018 | res <<= MAX(valids, validd) - MIN(valids, validd); | |
2019 | for (i = MIN(valids, validd); i >= 0; i--) { | |
2020 | res <<= 1; | |
2021 | v = pcmp_val(s, ctrl, i); | |
2022 | res |= (v == pcmp_val(d, ctrl, i)); | |
2023 | } | |
2024 | break; | |
2025 | case 3: | |
2026 | for (j = valids - validd; j >= 0; j--) { | |
2027 | res <<= 1; | |
2028 | res |= 1; | |
e01d9d31 | 2029 | for (i = MIN(upper - j, validd); i >= 0; i--) { |
222a3336 | 2030 | res &= (pcmp_val(s, ctrl, i + j) == pcmp_val(d, ctrl, i)); |
e01d9d31 | 2031 | } |
222a3336 AZ |
2032 | } |
2033 | break; | |
2034 | } | |
2035 | ||
2036 | switch ((ctrl >> 4) & 3) { | |
2037 | case 1: | |
2038 | res ^= (2 << upper) - 1; | |
2039 | break; | |
2040 | case 3: | |
2041 | res ^= (2 << valids) - 1; | |
2042 | break; | |
2043 | } | |
2044 | ||
e01d9d31 BS |
2045 | if (res) { |
2046 | CC_SRC |= CC_C; | |
2047 | } | |
2048 | if (res & 1) { | |
2049 | CC_SRC |= CC_O; | |
2050 | } | |
222a3336 AZ |
2051 | |
2052 | return res; | |
2053 | } | |
2054 | ||
2055 | static inline int rffs1(unsigned int val) | |
2056 | { | |
2057 | int ret = 1, hi; | |
2058 | ||
e01d9d31 | 2059 | for (hi = sizeof(val) * 4; hi; hi /= 2) { |
222a3336 AZ |
2060 | if (val >> hi) { |
2061 | val >>= hi; | |
2062 | ret += hi; | |
2063 | } | |
e01d9d31 | 2064 | } |
222a3336 AZ |
2065 | |
2066 | return ret; | |
2067 | } | |
2068 | ||
2069 | static inline int ffs1(unsigned int val) | |
2070 | { | |
2071 | int ret = 1, hi; | |
2072 | ||
e01d9d31 | 2073 | for (hi = sizeof(val) * 4; hi; hi /= 2) { |
222a3336 AZ |
2074 | if (val << hi) { |
2075 | val <<= hi; | |
2076 | ret += hi; | |
2077 | } | |
e01d9d31 | 2078 | } |
222a3336 AZ |
2079 | |
2080 | return ret; | |
2081 | } | |
2082 | ||
e01d9d31 | 2083 | void glue(helper_pcmpestri, SUFFIX)(Reg *d, Reg *s, uint32_t ctrl) |
222a3336 AZ |
2084 | { |
2085 | unsigned int res = pcmpxstrx(d, s, ctrl, | |
e01d9d31 BS |
2086 | pcmp_elen(R_EDX, ctrl), |
2087 | pcmp_elen(R_EAX, ctrl)); | |
222a3336 | 2088 | |
e01d9d31 | 2089 | if (res) { |
222a3336 | 2090 | env->regs[R_ECX] = ((ctrl & (1 << 6)) ? rffs1 : ffs1)(res) - 1; |
e01d9d31 | 2091 | } else { |
222a3336 | 2092 | env->regs[R_ECX] = 16 >> (ctrl & (1 << 0)); |
e01d9d31 | 2093 | } |
222a3336 AZ |
2094 | } |
2095 | ||
e01d9d31 | 2096 | void glue(helper_pcmpestrm, SUFFIX)(Reg *d, Reg *s, uint32_t ctrl) |
222a3336 AZ |
2097 | { |
2098 | int i; | |
2099 | unsigned int res = pcmpxstrx(d, s, ctrl, | |
e01d9d31 BS |
2100 | pcmp_elen(R_EDX, ctrl), |
2101 | pcmp_elen(R_EAX, ctrl)); | |
222a3336 AZ |
2102 | |
2103 | if ((ctrl >> 6) & 1) { | |
e01d9d31 | 2104 | if (ctrl & 1) { |
bc426899 | 2105 | for (i = 0; i < 8; i++, res >>= 1) { |
222a3336 | 2106 | d->W(i) = (res & 1) ? ~0 : 0; |
bc426899 | 2107 | } |
e01d9d31 | 2108 | } else { |
bc426899 | 2109 | for (i = 0; i < 16; i++, res >>= 1) { |
222a3336 | 2110 | d->B(i) = (res & 1) ? ~0 : 0; |
bc426899 | 2111 | } |
e01d9d31 | 2112 | } |
222a3336 AZ |
2113 | } else { |
2114 | d->Q(1) = 0; | |
2115 | d->Q(0) = res; | |
2116 | } | |
2117 | } | |
2118 | ||
e01d9d31 | 2119 | void glue(helper_pcmpistri, SUFFIX)(Reg *d, Reg *s, uint32_t ctrl) |
222a3336 AZ |
2120 | { |
2121 | unsigned int res = pcmpxstrx(d, s, ctrl, | |
e01d9d31 BS |
2122 | pcmp_ilen(s, ctrl), |
2123 | pcmp_ilen(d, ctrl)); | |
222a3336 | 2124 | |
e01d9d31 | 2125 | if (res) { |
222a3336 | 2126 | env->regs[R_ECX] = ((ctrl & (1 << 6)) ? rffs1 : ffs1)(res) - 1; |
e01d9d31 | 2127 | } else { |
222a3336 | 2128 | env->regs[R_ECX] = 16 >> (ctrl & (1 << 0)); |
e01d9d31 | 2129 | } |
222a3336 AZ |
2130 | } |
2131 | ||
e01d9d31 | 2132 | void glue(helper_pcmpistrm, SUFFIX)(Reg *d, Reg *s, uint32_t ctrl) |
222a3336 AZ |
2133 | { |
2134 | int i; | |
2135 | unsigned int res = pcmpxstrx(d, s, ctrl, | |
e01d9d31 BS |
2136 | pcmp_ilen(s, ctrl), |
2137 | pcmp_ilen(d, ctrl)); | |
222a3336 AZ |
2138 | |
2139 | if ((ctrl >> 6) & 1) { | |
e01d9d31 | 2140 | if (ctrl & 1) { |
bc426899 | 2141 | for (i = 0; i < 8; i++, res >>= 1) { |
222a3336 | 2142 | d->W(i) = (res & 1) ? ~0 : 0; |
bc426899 | 2143 | } |
e01d9d31 | 2144 | } else { |
bc426899 | 2145 | for (i = 0; i < 16; i++, res >>= 1) { |
222a3336 | 2146 | d->B(i) = (res & 1) ? ~0 : 0; |
bc426899 | 2147 | } |
e01d9d31 | 2148 | } |
222a3336 AZ |
2149 | } else { |
2150 | d->Q(1) = 0; | |
2151 | d->Q(0) = res; | |
2152 | } | |
2153 | } | |
2154 | ||
2155 | #define CRCPOLY 0x1edc6f41 | |
2156 | #define CRCPOLY_BITREV 0x82f63b78 | |
2157 | target_ulong helper_crc32(uint32_t crc1, target_ulong msg, uint32_t len) | |
2158 | { | |
2159 | target_ulong crc = (msg & ((target_ulong) -1 >> | |
e01d9d31 | 2160 | (TARGET_LONG_BITS - len))) ^ crc1; |
222a3336 | 2161 | |
e01d9d31 | 2162 | while (len--) { |
222a3336 | 2163 | crc = (crc >> 1) ^ ((crc & 1) ? CRCPOLY_BITREV : 0); |
e01d9d31 | 2164 | } |
222a3336 AZ |
2165 | |
2166 | return crc; | |
2167 | } | |
2168 | ||
2169 | #define POPMASK(i) ((target_ulong) -1 / ((1LL << (1 << i)) + 1)) | |
e01d9d31 | 2170 | #define POPCOUNT(n, i) ((n & POPMASK(i)) + ((n >> (1 << i)) & POPMASK(i))) |
222a3336 AZ |
2171 | target_ulong helper_popcnt(target_ulong n, uint32_t type) |
2172 | { | |
2173 | CC_SRC = n ? 0 : CC_Z; | |
2174 | ||
2175 | n = POPCOUNT(n, 0); | |
2176 | n = POPCOUNT(n, 1); | |
2177 | n = POPCOUNT(n, 2); | |
2178 | n = POPCOUNT(n, 3); | |
e01d9d31 | 2179 | if (type == 1) { |
222a3336 | 2180 | return n & 0xff; |
e01d9d31 | 2181 | } |
222a3336 AZ |
2182 | |
2183 | n = POPCOUNT(n, 4); | |
2184 | #ifndef TARGET_X86_64 | |
2185 | return n; | |
2186 | #else | |
e01d9d31 | 2187 | if (type == 2) { |
222a3336 | 2188 | return n & 0xff; |
e01d9d31 | 2189 | } |
222a3336 AZ |
2190 | |
2191 | return POPCOUNT(n, 5); | |
2192 | #endif | |
2193 | } | |
2194 | #endif | |
2195 | ||
664e0f19 FB |
2196 | #undef SHIFT |
2197 | #undef XMM_ONLY | |
2198 | #undef Reg | |
2199 | #undef B | |
2200 | #undef W | |
2201 | #undef L | |
2202 | #undef Q | |
2203 | #undef SUFFIX |