2008-05-30 Vladimir Makarov <vmakarov@redhat.com>
[official-gcc.git] / gcc / config / i386 / mmintrin.h
blob3c135e61766d1fdfe01b57e943e3bb12782ec733
1 /* Copyright (C) 2002, 2003, 2004, 2005, 2006, 2007 Free Software
2 Foundation, Inc.
4 This file is part of GCC.
6 GCC is free software; you can redistribute it and/or modify
7 it under the terms of the GNU General Public License as published by
8 the Free Software Foundation; either version 2, or (at your option)
9 any later version.
11 GCC is distributed in the hope that it will be useful,
12 but WITHOUT ANY WARRANTY; without even the implied warranty of
13 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
14 GNU General Public License for more details.
16 You should have received a copy of the GNU General Public License
17 along with GCC; see the file COPYING. If not, write to
18 the Free Software Foundation, 51 Franklin Street, Fifth Floor,
19 Boston, MA 02110-1301, USA. */
21 /* As a special exception, if you include this header file into source
22 files compiled by GCC, this header file does not by itself cause
23 the resulting executable to be covered by the GNU General Public
24 License. This exception does not however invalidate any other
25 reasons why the executable file might be covered by the GNU General
26 Public License. */
28 /* Implemented from the specification included in the Intel C++ Compiler
29 User Guide and Reference, version 9.0. */
31 #ifndef _MMINTRIN_H_INCLUDED
32 #define _MMINTRIN_H_INCLUDED
34 #ifndef __MMX__
35 # error "MMX instruction set not enabled"
36 #else
37 /* The Intel API is flexible enough that we must allow aliasing with other
38 vector types, and their scalar components. */
39 typedef int __m64 __attribute__ ((__vector_size__ (8), __may_alias__));
41 /* Internal data types for implementing the intrinsics. */
42 typedef int __v2si __attribute__ ((__vector_size__ (8)));
43 typedef short __v4hi __attribute__ ((__vector_size__ (8)));
44 typedef char __v8qi __attribute__ ((__vector_size__ (8)));
45 typedef long long __v1di __attribute__ ((__vector_size__ (8)));
46 typedef float __v2sf __attribute__ ((__vector_size__ (8)));
48 /* Empty the multimedia state. */
49 extern __inline void __attribute__((__gnu_inline__, __always_inline__, __artificial__))
50 _mm_empty (void)
52 __builtin_ia32_emms ();
55 extern __inline void __attribute__((__gnu_inline__, __always_inline__, __artificial__))
56 _m_empty (void)
58 _mm_empty ();
61 /* Convert I to a __m64 object. The integer is zero-extended to 64-bits. */
62 extern __inline __m64 __attribute__((__gnu_inline__, __always_inline__, __artificial__))
63 _mm_cvtsi32_si64 (int __i)
65 return (__m64) __builtin_ia32_vec_init_v2si (__i, 0);
68 extern __inline __m64 __attribute__((__gnu_inline__, __always_inline__, __artificial__))
69 _m_from_int (int __i)
71 return _mm_cvtsi32_si64 (__i);
74 #ifdef __x86_64__
75 /* Convert I to a __m64 object. */
77 /* Intel intrinsic. */
78 extern __inline __m64 __attribute__((__gnu_inline__, __always_inline__, __artificial__))
79 _m_from_int64 (long long __i)
81 return (__m64) __i;
84 extern __inline __m64 __attribute__((__gnu_inline__, __always_inline__, __artificial__))
85 _mm_cvtsi64_m64 (long long __i)
87 return (__m64) __i;
90 /* Microsoft intrinsic. */
91 extern __inline __m64 __attribute__((__gnu_inline__, __always_inline__, __artificial__))
92 _mm_cvtsi64x_si64 (long long __i)
94 return (__m64) __i;
97 extern __inline __m64 __attribute__((__gnu_inline__, __always_inline__, __artificial__))
98 _mm_set_pi64x (long long __i)
100 return (__m64) __i;
102 #endif
104 /* Convert the lower 32 bits of the __m64 object into an integer. */
105 extern __inline int __attribute__((__gnu_inline__, __always_inline__, __artificial__))
106 _mm_cvtsi64_si32 (__m64 __i)
108 return __builtin_ia32_vec_ext_v2si ((__v2si)__i, 0);
111 extern __inline int __attribute__((__gnu_inline__, __always_inline__, __artificial__))
112 _m_to_int (__m64 __i)
114 return _mm_cvtsi64_si32 (__i);
117 #ifdef __x86_64__
118 /* Convert the __m64 object to a 64bit integer. */
120 /* Intel intrinsic. */
121 extern __inline long long __attribute__((__gnu_inline__, __always_inline__, __artificial__))
122 _m_to_int64 (__m64 __i)
124 return (long long)__i;
127 extern __inline long long __attribute__((__gnu_inline__, __always_inline__, __artificial__))
128 _mm_cvtm64_si64 (__m64 __i)
130 return (long long)__i;
133 /* Microsoft intrinsic. */
134 extern __inline long long __attribute__((__gnu_inline__, __always_inline__, __artificial__))
135 _mm_cvtsi64_si64x (__m64 __i)
137 return (long long)__i;
139 #endif
141 /* Pack the four 16-bit values from M1 into the lower four 8-bit values of
142 the result, and the four 16-bit values from M2 into the upper four 8-bit
143 values of the result, all with signed saturation. */
144 extern __inline __m64 __attribute__((__gnu_inline__, __always_inline__, __artificial__))
145 _mm_packs_pi16 (__m64 __m1, __m64 __m2)
147 return (__m64) __builtin_ia32_packsswb ((__v4hi)__m1, (__v4hi)__m2);
150 extern __inline __m64 __attribute__((__gnu_inline__, __always_inline__, __artificial__))
151 _m_packsswb (__m64 __m1, __m64 __m2)
153 return _mm_packs_pi16 (__m1, __m2);
156 /* Pack the two 32-bit values from M1 in to the lower two 16-bit values of
157 the result, and the two 32-bit values from M2 into the upper two 16-bit
158 values of the result, all with signed saturation. */
159 extern __inline __m64 __attribute__((__gnu_inline__, __always_inline__, __artificial__))
160 _mm_packs_pi32 (__m64 __m1, __m64 __m2)
162 return (__m64) __builtin_ia32_packssdw ((__v2si)__m1, (__v2si)__m2);
165 extern __inline __m64 __attribute__((__gnu_inline__, __always_inline__, __artificial__))
166 _m_packssdw (__m64 __m1, __m64 __m2)
168 return _mm_packs_pi32 (__m1, __m2);
171 /* Pack the four 16-bit values from M1 into the lower four 8-bit values of
172 the result, and the four 16-bit values from M2 into the upper four 8-bit
173 values of the result, all with unsigned saturation. */
174 extern __inline __m64 __attribute__((__gnu_inline__, __always_inline__, __artificial__))
175 _mm_packs_pu16 (__m64 __m1, __m64 __m2)
177 return (__m64) __builtin_ia32_packuswb ((__v4hi)__m1, (__v4hi)__m2);
180 extern __inline __m64 __attribute__((__gnu_inline__, __always_inline__, __artificial__))
181 _m_packuswb (__m64 __m1, __m64 __m2)
183 return _mm_packs_pu16 (__m1, __m2);
186 /* Interleave the four 8-bit values from the high half of M1 with the four
187 8-bit values from the high half of M2. */
188 extern __inline __m64 __attribute__((__gnu_inline__, __always_inline__, __artificial__))
189 _mm_unpackhi_pi8 (__m64 __m1, __m64 __m2)
191 return (__m64) __builtin_ia32_punpckhbw ((__v8qi)__m1, (__v8qi)__m2);
194 extern __inline __m64 __attribute__((__gnu_inline__, __always_inline__, __artificial__))
195 _m_punpckhbw (__m64 __m1, __m64 __m2)
197 return _mm_unpackhi_pi8 (__m1, __m2);
200 /* Interleave the two 16-bit values from the high half of M1 with the two
201 16-bit values from the high half of M2. */
202 extern __inline __m64 __attribute__((__gnu_inline__, __always_inline__, __artificial__))
203 _mm_unpackhi_pi16 (__m64 __m1, __m64 __m2)
205 return (__m64) __builtin_ia32_punpckhwd ((__v4hi)__m1, (__v4hi)__m2);
208 extern __inline __m64 __attribute__((__gnu_inline__, __always_inline__, __artificial__))
209 _m_punpckhwd (__m64 __m1, __m64 __m2)
211 return _mm_unpackhi_pi16 (__m1, __m2);
214 /* Interleave the 32-bit value from the high half of M1 with the 32-bit
215 value from the high half of M2. */
216 extern __inline __m64 __attribute__((__gnu_inline__, __always_inline__, __artificial__))
217 _mm_unpackhi_pi32 (__m64 __m1, __m64 __m2)
219 return (__m64) __builtin_ia32_punpckhdq ((__v2si)__m1, (__v2si)__m2);
222 extern __inline __m64 __attribute__((__gnu_inline__, __always_inline__, __artificial__))
223 _m_punpckhdq (__m64 __m1, __m64 __m2)
225 return _mm_unpackhi_pi32 (__m1, __m2);
228 /* Interleave the four 8-bit values from the low half of M1 with the four
229 8-bit values from the low half of M2. */
230 extern __inline __m64 __attribute__((__gnu_inline__, __always_inline__, __artificial__))
231 _mm_unpacklo_pi8 (__m64 __m1, __m64 __m2)
233 return (__m64) __builtin_ia32_punpcklbw ((__v8qi)__m1, (__v8qi)__m2);
236 extern __inline __m64 __attribute__((__gnu_inline__, __always_inline__, __artificial__))
237 _m_punpcklbw (__m64 __m1, __m64 __m2)
239 return _mm_unpacklo_pi8 (__m1, __m2);
242 /* Interleave the two 16-bit values from the low half of M1 with the two
243 16-bit values from the low half of M2. */
244 extern __inline __m64 __attribute__((__gnu_inline__, __always_inline__, __artificial__))
245 _mm_unpacklo_pi16 (__m64 __m1, __m64 __m2)
247 return (__m64) __builtin_ia32_punpcklwd ((__v4hi)__m1, (__v4hi)__m2);
250 extern __inline __m64 __attribute__((__gnu_inline__, __always_inline__, __artificial__))
251 _m_punpcklwd (__m64 __m1, __m64 __m2)
253 return _mm_unpacklo_pi16 (__m1, __m2);
256 /* Interleave the 32-bit value from the low half of M1 with the 32-bit
257 value from the low half of M2. */
258 extern __inline __m64 __attribute__((__gnu_inline__, __always_inline__, __artificial__))
259 _mm_unpacklo_pi32 (__m64 __m1, __m64 __m2)
261 return (__m64) __builtin_ia32_punpckldq ((__v2si)__m1, (__v2si)__m2);
264 extern __inline __m64 __attribute__((__gnu_inline__, __always_inline__, __artificial__))
265 _m_punpckldq (__m64 __m1, __m64 __m2)
267 return _mm_unpacklo_pi32 (__m1, __m2);
270 /* Add the 8-bit values in M1 to the 8-bit values in M2. */
271 extern __inline __m64 __attribute__((__gnu_inline__, __always_inline__, __artificial__))
272 _mm_add_pi8 (__m64 __m1, __m64 __m2)
274 return (__m64) __builtin_ia32_paddb ((__v8qi)__m1, (__v8qi)__m2);
277 extern __inline __m64 __attribute__((__gnu_inline__, __always_inline__, __artificial__))
278 _m_paddb (__m64 __m1, __m64 __m2)
280 return _mm_add_pi8 (__m1, __m2);
283 /* Add the 16-bit values in M1 to the 16-bit values in M2. */
284 extern __inline __m64 __attribute__((__gnu_inline__, __always_inline__, __artificial__))
285 _mm_add_pi16 (__m64 __m1, __m64 __m2)
287 return (__m64) __builtin_ia32_paddw ((__v4hi)__m1, (__v4hi)__m2);
290 extern __inline __m64 __attribute__((__gnu_inline__, __always_inline__, __artificial__))
291 _m_paddw (__m64 __m1, __m64 __m2)
293 return _mm_add_pi16 (__m1, __m2);
296 /* Add the 32-bit values in M1 to the 32-bit values in M2. */
297 extern __inline __m64 __attribute__((__gnu_inline__, __always_inline__, __artificial__))
298 _mm_add_pi32 (__m64 __m1, __m64 __m2)
300 return (__m64) __builtin_ia32_paddd ((__v2si)__m1, (__v2si)__m2);
303 extern __inline __m64 __attribute__((__gnu_inline__, __always_inline__, __artificial__))
304 _m_paddd (__m64 __m1, __m64 __m2)
306 return _mm_add_pi32 (__m1, __m2);
309 /* Add the 64-bit values in M1 to the 64-bit values in M2. */
310 #ifdef __SSE2__
311 extern __inline __m64 __attribute__((__gnu_inline__, __always_inline__, __artificial__))
312 _mm_add_si64 (__m64 __m1, __m64 __m2)
314 return (__m64) __builtin_ia32_paddq ((__v1di)__m1, (__v1di)__m2);
316 #endif
318 /* Add the 8-bit values in M1 to the 8-bit values in M2 using signed
319 saturated arithmetic. */
320 extern __inline __m64 __attribute__((__gnu_inline__, __always_inline__, __artificial__))
321 _mm_adds_pi8 (__m64 __m1, __m64 __m2)
323 return (__m64) __builtin_ia32_paddsb ((__v8qi)__m1, (__v8qi)__m2);
326 extern __inline __m64 __attribute__((__gnu_inline__, __always_inline__, __artificial__))
327 _m_paddsb (__m64 __m1, __m64 __m2)
329 return _mm_adds_pi8 (__m1, __m2);
332 /* Add the 16-bit values in M1 to the 16-bit values in M2 using signed
333 saturated arithmetic. */
334 extern __inline __m64 __attribute__((__gnu_inline__, __always_inline__, __artificial__))
335 _mm_adds_pi16 (__m64 __m1, __m64 __m2)
337 return (__m64) __builtin_ia32_paddsw ((__v4hi)__m1, (__v4hi)__m2);
340 extern __inline __m64 __attribute__((__gnu_inline__, __always_inline__, __artificial__))
341 _m_paddsw (__m64 __m1, __m64 __m2)
343 return _mm_adds_pi16 (__m1, __m2);
346 /* Add the 8-bit values in M1 to the 8-bit values in M2 using unsigned
347 saturated arithmetic. */
348 extern __inline __m64 __attribute__((__gnu_inline__, __always_inline__, __artificial__))
349 _mm_adds_pu8 (__m64 __m1, __m64 __m2)
351 return (__m64) __builtin_ia32_paddusb ((__v8qi)__m1, (__v8qi)__m2);
354 extern __inline __m64 __attribute__((__gnu_inline__, __always_inline__, __artificial__))
355 _m_paddusb (__m64 __m1, __m64 __m2)
357 return _mm_adds_pu8 (__m1, __m2);
360 /* Add the 16-bit values in M1 to the 16-bit values in M2 using unsigned
361 saturated arithmetic. */
362 extern __inline __m64 __attribute__((__gnu_inline__, __always_inline__, __artificial__))
363 _mm_adds_pu16 (__m64 __m1, __m64 __m2)
365 return (__m64) __builtin_ia32_paddusw ((__v4hi)__m1, (__v4hi)__m2);
368 extern __inline __m64 __attribute__((__gnu_inline__, __always_inline__, __artificial__))
369 _m_paddusw (__m64 __m1, __m64 __m2)
371 return _mm_adds_pu16 (__m1, __m2);
374 /* Subtract the 8-bit values in M2 from the 8-bit values in M1. */
375 extern __inline __m64 __attribute__((__gnu_inline__, __always_inline__, __artificial__))
376 _mm_sub_pi8 (__m64 __m1, __m64 __m2)
378 return (__m64) __builtin_ia32_psubb ((__v8qi)__m1, (__v8qi)__m2);
381 extern __inline __m64 __attribute__((__gnu_inline__, __always_inline__, __artificial__))
382 _m_psubb (__m64 __m1, __m64 __m2)
384 return _mm_sub_pi8 (__m1, __m2);
387 /* Subtract the 16-bit values in M2 from the 16-bit values in M1. */
388 extern __inline __m64 __attribute__((__gnu_inline__, __always_inline__, __artificial__))
389 _mm_sub_pi16 (__m64 __m1, __m64 __m2)
391 return (__m64) __builtin_ia32_psubw ((__v4hi)__m1, (__v4hi)__m2);
394 extern __inline __m64 __attribute__((__gnu_inline__, __always_inline__, __artificial__))
395 _m_psubw (__m64 __m1, __m64 __m2)
397 return _mm_sub_pi16 (__m1, __m2);
400 /* Subtract the 32-bit values in M2 from the 32-bit values in M1. */
401 extern __inline __m64 __attribute__((__gnu_inline__, __always_inline__, __artificial__))
402 _mm_sub_pi32 (__m64 __m1, __m64 __m2)
404 return (__m64) __builtin_ia32_psubd ((__v2si)__m1, (__v2si)__m2);
407 extern __inline __m64 __attribute__((__gnu_inline__, __always_inline__, __artificial__))
408 _m_psubd (__m64 __m1, __m64 __m2)
410 return _mm_sub_pi32 (__m1, __m2);
413 /* Add the 64-bit values in M1 to the 64-bit values in M2. */
414 #ifdef __SSE2__
415 extern __inline __m64 __attribute__((__gnu_inline__, __always_inline__, __artificial__))
416 _mm_sub_si64 (__m64 __m1, __m64 __m2)
418 return (__m64) __builtin_ia32_psubq ((__v1di)__m1, (__v1di)__m2);
420 #endif
422 /* Subtract the 8-bit values in M2 from the 8-bit values in M1 using signed
423 saturating arithmetic. */
424 extern __inline __m64 __attribute__((__gnu_inline__, __always_inline__, __artificial__))
425 _mm_subs_pi8 (__m64 __m1, __m64 __m2)
427 return (__m64) __builtin_ia32_psubsb ((__v8qi)__m1, (__v8qi)__m2);
430 extern __inline __m64 __attribute__((__gnu_inline__, __always_inline__, __artificial__))
431 _m_psubsb (__m64 __m1, __m64 __m2)
433 return _mm_subs_pi8 (__m1, __m2);
436 /* Subtract the 16-bit values in M2 from the 16-bit values in M1 using
437 signed saturating arithmetic. */
438 extern __inline __m64 __attribute__((__gnu_inline__, __always_inline__, __artificial__))
439 _mm_subs_pi16 (__m64 __m1, __m64 __m2)
441 return (__m64) __builtin_ia32_psubsw ((__v4hi)__m1, (__v4hi)__m2);
444 extern __inline __m64 __attribute__((__gnu_inline__, __always_inline__, __artificial__))
445 _m_psubsw (__m64 __m1, __m64 __m2)
447 return _mm_subs_pi16 (__m1, __m2);
450 /* Subtract the 8-bit values in M2 from the 8-bit values in M1 using
451 unsigned saturating arithmetic. */
452 extern __inline __m64 __attribute__((__gnu_inline__, __always_inline__, __artificial__))
453 _mm_subs_pu8 (__m64 __m1, __m64 __m2)
455 return (__m64) __builtin_ia32_psubusb ((__v8qi)__m1, (__v8qi)__m2);
458 extern __inline __m64 __attribute__((__gnu_inline__, __always_inline__, __artificial__))
459 _m_psubusb (__m64 __m1, __m64 __m2)
461 return _mm_subs_pu8 (__m1, __m2);
464 /* Subtract the 16-bit values in M2 from the 16-bit values in M1 using
465 unsigned saturating arithmetic. */
466 extern __inline __m64 __attribute__((__gnu_inline__, __always_inline__, __artificial__))
467 _mm_subs_pu16 (__m64 __m1, __m64 __m2)
469 return (__m64) __builtin_ia32_psubusw ((__v4hi)__m1, (__v4hi)__m2);
472 extern __inline __m64 __attribute__((__gnu_inline__, __always_inline__, __artificial__))
473 _m_psubusw (__m64 __m1, __m64 __m2)
475 return _mm_subs_pu16 (__m1, __m2);
478 /* Multiply four 16-bit values in M1 by four 16-bit values in M2 producing
479 four 32-bit intermediate results, which are then summed by pairs to
480 produce two 32-bit results. */
481 extern __inline __m64 __attribute__((__gnu_inline__, __always_inline__, __artificial__))
482 _mm_madd_pi16 (__m64 __m1, __m64 __m2)
484 return (__m64) __builtin_ia32_pmaddwd ((__v4hi)__m1, (__v4hi)__m2);
487 extern __inline __m64 __attribute__((__gnu_inline__, __always_inline__, __artificial__))
488 _m_pmaddwd (__m64 __m1, __m64 __m2)
490 return _mm_madd_pi16 (__m1, __m2);
493 /* Multiply four signed 16-bit values in M1 by four signed 16-bit values in
494 M2 and produce the high 16 bits of the 32-bit results. */
495 extern __inline __m64 __attribute__((__gnu_inline__, __always_inline__, __artificial__))
496 _mm_mulhi_pi16 (__m64 __m1, __m64 __m2)
498 return (__m64) __builtin_ia32_pmulhw ((__v4hi)__m1, (__v4hi)__m2);
501 extern __inline __m64 __attribute__((__gnu_inline__, __always_inline__, __artificial__))
502 _m_pmulhw (__m64 __m1, __m64 __m2)
504 return _mm_mulhi_pi16 (__m1, __m2);
507 /* Multiply four 16-bit values in M1 by four 16-bit values in M2 and produce
508 the low 16 bits of the results. */
509 extern __inline __m64 __attribute__((__gnu_inline__, __always_inline__, __artificial__))
510 _mm_mullo_pi16 (__m64 __m1, __m64 __m2)
512 return (__m64) __builtin_ia32_pmullw ((__v4hi)__m1, (__v4hi)__m2);
515 extern __inline __m64 __attribute__((__gnu_inline__, __always_inline__, __artificial__))
516 _m_pmullw (__m64 __m1, __m64 __m2)
518 return _mm_mullo_pi16 (__m1, __m2);
521 /* Shift four 16-bit values in M left by COUNT. */
522 extern __inline __m64 __attribute__((__gnu_inline__, __always_inline__, __artificial__))
523 _mm_sll_pi16 (__m64 __m, __m64 __count)
525 return (__m64) __builtin_ia32_psllw ((__v4hi)__m, (__v4hi)__count);
528 extern __inline __m64 __attribute__((__gnu_inline__, __always_inline__, __artificial__))
529 _m_psllw (__m64 __m, __m64 __count)
531 return _mm_sll_pi16 (__m, __count);
534 extern __inline __m64 __attribute__((__gnu_inline__, __always_inline__, __artificial__))
535 _mm_slli_pi16 (__m64 __m, int __count)
537 return (__m64) __builtin_ia32_psllwi ((__v4hi)__m, __count);
540 extern __inline __m64 __attribute__((__gnu_inline__, __always_inline__, __artificial__))
541 _m_psllwi (__m64 __m, int __count)
543 return _mm_slli_pi16 (__m, __count);
546 /* Shift two 32-bit values in M left by COUNT. */
547 extern __inline __m64 __attribute__((__gnu_inline__, __always_inline__, __artificial__))
548 _mm_sll_pi32 (__m64 __m, __m64 __count)
550 return (__m64) __builtin_ia32_pslld ((__v2si)__m, (__v2si)__count);
553 extern __inline __m64 __attribute__((__gnu_inline__, __always_inline__, __artificial__))
554 _m_pslld (__m64 __m, __m64 __count)
556 return _mm_sll_pi32 (__m, __count);
559 extern __inline __m64 __attribute__((__gnu_inline__, __always_inline__, __artificial__))
560 _mm_slli_pi32 (__m64 __m, int __count)
562 return (__m64) __builtin_ia32_pslldi ((__v2si)__m, __count);
565 extern __inline __m64 __attribute__((__gnu_inline__, __always_inline__, __artificial__))
566 _m_pslldi (__m64 __m, int __count)
568 return _mm_slli_pi32 (__m, __count);
571 /* Shift the 64-bit value in M left by COUNT. */
572 extern __inline __m64 __attribute__((__gnu_inline__, __always_inline__, __artificial__))
573 _mm_sll_si64 (__m64 __m, __m64 __count)
575 return (__m64) __builtin_ia32_psllq ((__v1di)__m, (__v1di)__count);
578 extern __inline __m64 __attribute__((__gnu_inline__, __always_inline__, __artificial__))
579 _m_psllq (__m64 __m, __m64 __count)
581 return _mm_sll_si64 (__m, __count);
584 extern __inline __m64 __attribute__((__gnu_inline__, __always_inline__, __artificial__))
585 _mm_slli_si64 (__m64 __m, int __count)
587 return (__m64) __builtin_ia32_psllqi ((__v1di)__m, __count);
590 extern __inline __m64 __attribute__((__gnu_inline__, __always_inline__, __artificial__))
591 _m_psllqi (__m64 __m, int __count)
593 return _mm_slli_si64 (__m, __count);
596 /* Shift four 16-bit values in M right by COUNT; shift in the sign bit. */
597 extern __inline __m64 __attribute__((__gnu_inline__, __always_inline__, __artificial__))
598 _mm_sra_pi16 (__m64 __m, __m64 __count)
600 return (__m64) __builtin_ia32_psraw ((__v4hi)__m, (__v4hi)__count);
603 extern __inline __m64 __attribute__((__gnu_inline__, __always_inline__, __artificial__))
604 _m_psraw (__m64 __m, __m64 __count)
606 return _mm_sra_pi16 (__m, __count);
609 extern __inline __m64 __attribute__((__gnu_inline__, __always_inline__, __artificial__))
610 _mm_srai_pi16 (__m64 __m, int __count)
612 return (__m64) __builtin_ia32_psrawi ((__v4hi)__m, __count);
615 extern __inline __m64 __attribute__((__gnu_inline__, __always_inline__, __artificial__))
616 _m_psrawi (__m64 __m, int __count)
618 return _mm_srai_pi16 (__m, __count);
621 /* Shift two 32-bit values in M right by COUNT; shift in the sign bit. */
622 extern __inline __m64 __attribute__((__gnu_inline__, __always_inline__, __artificial__))
623 _mm_sra_pi32 (__m64 __m, __m64 __count)
625 return (__m64) __builtin_ia32_psrad ((__v2si)__m, (__v2si)__count);
628 extern __inline __m64 __attribute__((__gnu_inline__, __always_inline__, __artificial__))
629 _m_psrad (__m64 __m, __m64 __count)
631 return _mm_sra_pi32 (__m, __count);
634 extern __inline __m64 __attribute__((__gnu_inline__, __always_inline__, __artificial__))
635 _mm_srai_pi32 (__m64 __m, int __count)
637 return (__m64) __builtin_ia32_psradi ((__v2si)__m, __count);
640 extern __inline __m64 __attribute__((__gnu_inline__, __always_inline__, __artificial__))
641 _m_psradi (__m64 __m, int __count)
643 return _mm_srai_pi32 (__m, __count);
646 /* Shift four 16-bit values in M right by COUNT; shift in zeros. */
647 extern __inline __m64 __attribute__((__gnu_inline__, __always_inline__, __artificial__))
648 _mm_srl_pi16 (__m64 __m, __m64 __count)
650 return (__m64) __builtin_ia32_psrlw ((__v4hi)__m, (__v4hi)__count);
653 extern __inline __m64 __attribute__((__gnu_inline__, __always_inline__, __artificial__))
654 _m_psrlw (__m64 __m, __m64 __count)
656 return _mm_srl_pi16 (__m, __count);
659 extern __inline __m64 __attribute__((__gnu_inline__, __always_inline__, __artificial__))
660 _mm_srli_pi16 (__m64 __m, int __count)
662 return (__m64) __builtin_ia32_psrlwi ((__v4hi)__m, __count);
665 extern __inline __m64 __attribute__((__gnu_inline__, __always_inline__, __artificial__))
666 _m_psrlwi (__m64 __m, int __count)
668 return _mm_srli_pi16 (__m, __count);
671 /* Shift two 32-bit values in M right by COUNT; shift in zeros. */
672 extern __inline __m64 __attribute__((__gnu_inline__, __always_inline__, __artificial__))
673 _mm_srl_pi32 (__m64 __m, __m64 __count)
675 return (__m64) __builtin_ia32_psrld ((__v2si)__m, (__v2si)__count);
678 extern __inline __m64 __attribute__((__gnu_inline__, __always_inline__, __artificial__))
679 _m_psrld (__m64 __m, __m64 __count)
681 return _mm_srl_pi32 (__m, __count);
684 extern __inline __m64 __attribute__((__gnu_inline__, __always_inline__, __artificial__))
685 _mm_srli_pi32 (__m64 __m, int __count)
687 return (__m64) __builtin_ia32_psrldi ((__v2si)__m, __count);
690 extern __inline __m64 __attribute__((__gnu_inline__, __always_inline__, __artificial__))
691 _m_psrldi (__m64 __m, int __count)
693 return _mm_srli_pi32 (__m, __count);
696 /* Shift the 64-bit value in M left by COUNT; shift in zeros. */
697 extern __inline __m64 __attribute__((__gnu_inline__, __always_inline__, __artificial__))
698 _mm_srl_si64 (__m64 __m, __m64 __count)
700 return (__m64) __builtin_ia32_psrlq ((__v1di)__m, (__v1di)__count);
703 extern __inline __m64 __attribute__((__gnu_inline__, __always_inline__, __artificial__))
704 _m_psrlq (__m64 __m, __m64 __count)
706 return _mm_srl_si64 (__m, __count);
709 extern __inline __m64 __attribute__((__gnu_inline__, __always_inline__, __artificial__))
710 _mm_srli_si64 (__m64 __m, int __count)
712 return (__m64) __builtin_ia32_psrlqi ((__v1di)__m, __count);
715 extern __inline __m64 __attribute__((__gnu_inline__, __always_inline__, __artificial__))
716 _m_psrlqi (__m64 __m, int __count)
718 return _mm_srli_si64 (__m, __count);
721 /* Bit-wise AND the 64-bit values in M1 and M2. */
722 extern __inline __m64 __attribute__((__gnu_inline__, __always_inline__, __artificial__))
723 _mm_and_si64 (__m64 __m1, __m64 __m2)
725 return __builtin_ia32_pand (__m1, __m2);
728 extern __inline __m64 __attribute__((__gnu_inline__, __always_inline__, __artificial__))
729 _m_pand (__m64 __m1, __m64 __m2)
731 return _mm_and_si64 (__m1, __m2);
734 /* Bit-wise complement the 64-bit value in M1 and bit-wise AND it with the
735 64-bit value in M2. */
736 extern __inline __m64 __attribute__((__gnu_inline__, __always_inline__, __artificial__))
737 _mm_andnot_si64 (__m64 __m1, __m64 __m2)
739 return __builtin_ia32_pandn (__m1, __m2);
742 extern __inline __m64 __attribute__((__gnu_inline__, __always_inline__, __artificial__))
743 _m_pandn (__m64 __m1, __m64 __m2)
745 return _mm_andnot_si64 (__m1, __m2);
748 /* Bit-wise inclusive OR the 64-bit values in M1 and M2. */
749 extern __inline __m64 __attribute__((__gnu_inline__, __always_inline__, __artificial__))
750 _mm_or_si64 (__m64 __m1, __m64 __m2)
752 return __builtin_ia32_por (__m1, __m2);
755 extern __inline __m64 __attribute__((__gnu_inline__, __always_inline__, __artificial__))
756 _m_por (__m64 __m1, __m64 __m2)
758 return _mm_or_si64 (__m1, __m2);
761 /* Bit-wise exclusive OR the 64-bit values in M1 and M2. */
762 extern __inline __m64 __attribute__((__gnu_inline__, __always_inline__, __artificial__))
763 _mm_xor_si64 (__m64 __m1, __m64 __m2)
765 return __builtin_ia32_pxor (__m1, __m2);
768 extern __inline __m64 __attribute__((__gnu_inline__, __always_inline__, __artificial__))
769 _m_pxor (__m64 __m1, __m64 __m2)
771 return _mm_xor_si64 (__m1, __m2);
774 /* Compare eight 8-bit values. The result of the comparison is 0xFF if the
775 test is true and zero if false. */
776 extern __inline __m64 __attribute__((__gnu_inline__, __always_inline__, __artificial__))
777 _mm_cmpeq_pi8 (__m64 __m1, __m64 __m2)
779 return (__m64) __builtin_ia32_pcmpeqb ((__v8qi)__m1, (__v8qi)__m2);
782 extern __inline __m64 __attribute__((__gnu_inline__, __always_inline__, __artificial__))
783 _m_pcmpeqb (__m64 __m1, __m64 __m2)
785 return _mm_cmpeq_pi8 (__m1, __m2);
788 extern __inline __m64 __attribute__((__gnu_inline__, __always_inline__, __artificial__))
789 _mm_cmpgt_pi8 (__m64 __m1, __m64 __m2)
791 return (__m64) __builtin_ia32_pcmpgtb ((__v8qi)__m1, (__v8qi)__m2);
794 extern __inline __m64 __attribute__((__gnu_inline__, __always_inline__, __artificial__))
795 _m_pcmpgtb (__m64 __m1, __m64 __m2)
797 return _mm_cmpgt_pi8 (__m1, __m2);
800 /* Compare four 16-bit values. The result of the comparison is 0xFFFF if
801 the test is true and zero if false. */
802 extern __inline __m64 __attribute__((__gnu_inline__, __always_inline__, __artificial__))
803 _mm_cmpeq_pi16 (__m64 __m1, __m64 __m2)
805 return (__m64) __builtin_ia32_pcmpeqw ((__v4hi)__m1, (__v4hi)__m2);
808 extern __inline __m64 __attribute__((__gnu_inline__, __always_inline__, __artificial__))
809 _m_pcmpeqw (__m64 __m1, __m64 __m2)
811 return _mm_cmpeq_pi16 (__m1, __m2);
814 extern __inline __m64 __attribute__((__gnu_inline__, __always_inline__, __artificial__))
815 _mm_cmpgt_pi16 (__m64 __m1, __m64 __m2)
817 return (__m64) __builtin_ia32_pcmpgtw ((__v4hi)__m1, (__v4hi)__m2);
820 extern __inline __m64 __attribute__((__gnu_inline__, __always_inline__, __artificial__))
821 _m_pcmpgtw (__m64 __m1, __m64 __m2)
823 return _mm_cmpgt_pi16 (__m1, __m2);
826 /* Compare two 32-bit values. The result of the comparison is 0xFFFFFFFF if
827 the test is true and zero if false. */
828 extern __inline __m64 __attribute__((__gnu_inline__, __always_inline__, __artificial__))
829 _mm_cmpeq_pi32 (__m64 __m1, __m64 __m2)
831 return (__m64) __builtin_ia32_pcmpeqd ((__v2si)__m1, (__v2si)__m2);
834 extern __inline __m64 __attribute__((__gnu_inline__, __always_inline__, __artificial__))
835 _m_pcmpeqd (__m64 __m1, __m64 __m2)
837 return _mm_cmpeq_pi32 (__m1, __m2);
840 extern __inline __m64 __attribute__((__gnu_inline__, __always_inline__, __artificial__))
841 _mm_cmpgt_pi32 (__m64 __m1, __m64 __m2)
843 return (__m64) __builtin_ia32_pcmpgtd ((__v2si)__m1, (__v2si)__m2);
846 extern __inline __m64 __attribute__((__gnu_inline__, __always_inline__, __artificial__))
847 _m_pcmpgtd (__m64 __m1, __m64 __m2)
849 return _mm_cmpgt_pi32 (__m1, __m2);
852 /* Creates a 64-bit zero. */
853 extern __inline __m64 __attribute__((__gnu_inline__, __always_inline__, __artificial__))
854 _mm_setzero_si64 (void)
856 return (__m64)0LL;
859 /* Creates a vector of two 32-bit values; I0 is least significant. */
860 extern __inline __m64 __attribute__((__gnu_inline__, __always_inline__, __artificial__))
861 _mm_set_pi32 (int __i1, int __i0)
863 return (__m64) __builtin_ia32_vec_init_v2si (__i0, __i1);
866 /* Creates a vector of four 16-bit values; W0 is least significant. */
867 extern __inline __m64 __attribute__((__gnu_inline__, __always_inline__, __artificial__))
868 _mm_set_pi16 (short __w3, short __w2, short __w1, short __w0)
870 return (__m64) __builtin_ia32_vec_init_v4hi (__w0, __w1, __w2, __w3);
873 /* Creates a vector of eight 8-bit values; B0 is least significant. */
874 extern __inline __m64 __attribute__((__gnu_inline__, __always_inline__, __artificial__))
875 _mm_set_pi8 (char __b7, char __b6, char __b5, char __b4,
876 char __b3, char __b2, char __b1, char __b0)
878 return (__m64) __builtin_ia32_vec_init_v8qi (__b0, __b1, __b2, __b3,
879 __b4, __b5, __b6, __b7);
882 /* Similar, but with the arguments in reverse order. */
883 extern __inline __m64 __attribute__((__gnu_inline__, __always_inline__, __artificial__))
884 _mm_setr_pi32 (int __i0, int __i1)
886 return _mm_set_pi32 (__i1, __i0);
889 extern __inline __m64 __attribute__((__gnu_inline__, __always_inline__, __artificial__))
890 _mm_setr_pi16 (short __w0, short __w1, short __w2, short __w3)
892 return _mm_set_pi16 (__w3, __w2, __w1, __w0);
895 extern __inline __m64 __attribute__((__gnu_inline__, __always_inline__, __artificial__))
896 _mm_setr_pi8 (char __b0, char __b1, char __b2, char __b3,
897 char __b4, char __b5, char __b6, char __b7)
899 return _mm_set_pi8 (__b7, __b6, __b5, __b4, __b3, __b2, __b1, __b0);
902 /* Creates a vector of two 32-bit values, both elements containing I. */
903 extern __inline __m64 __attribute__((__gnu_inline__, __always_inline__, __artificial__))
904 _mm_set1_pi32 (int __i)
906 return _mm_set_pi32 (__i, __i);
909 /* Creates a vector of four 16-bit values, all elements containing W. */
910 extern __inline __m64 __attribute__((__gnu_inline__, __always_inline__, __artificial__))
911 _mm_set1_pi16 (short __w)
913 return _mm_set_pi16 (__w, __w, __w, __w);
916 /* Creates a vector of eight 8-bit values, all elements containing B. */
917 extern __inline __m64 __attribute__((__gnu_inline__, __always_inline__, __artificial__))
918 _mm_set1_pi8 (char __b)
920 return _mm_set_pi8 (__b, __b, __b, __b, __b, __b, __b, __b);
923 #endif /* __MMX__ */
924 #endif /* _MMINTRIN_H_INCLUDED */