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[/] [openrisc/] [trunk/] [gnu-old/] [gcc-4.2.2/] [gcc/] [config/] [i386/] [mm3dnow.h] - Blame information for rev 868

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/* Copyright (C) 2004 Free Software Foundation, Inc.
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   This file is part of GCC.
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   GCC is free software; you can redistribute it and/or modify
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   it under the terms of the GNU General Public License as published by
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   the Free Software Foundation; either version 2, or (at your option)
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   any later version.
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   GCC is distributed in the hope that it will be useful,
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   but WITHOUT ANY WARRANTY; without even the implied warranty of
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   MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
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   GNU General Public License for more details.
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   You should have received a copy of the GNU General Public License
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   along with GCC; see the file COPYING.  If not, write to
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   the Free Software Foundation, 51 Franklin Street, Fifth Floor,
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   Boston, MA 02110-1301, USA.  */
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/* As a special exception, if you include this header file into source
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   files compiled by GCC, this header file does not by itself cause
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   the resulting executable to be covered by the GNU General Public
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   License.  This exception does not however invalidate any other
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   reasons why the executable file might be covered by the GNU General
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   Public License.  */
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/* Implemented from the mm3dnow.h (of supposedly AMD origin) included with
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   MSVC 7.1.  */
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#ifndef _MM3DNOW_H_INCLUDED
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#define _MM3DNOW_H_INCLUDED
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#ifdef __3dNOW__
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#include <mmintrin.h>
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/* Internal data types for implementing the intrinsics.  */
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typedef float __v2sf __attribute__ ((__vector_size__ (8)));
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static __inline void
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_m_femms (void)
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{
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  __builtin_ia32_femms();
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}
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static __inline __m64
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_m_pavgusb (__m64 __A, __m64 __B)
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{
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  return (__m64)__builtin_ia32_pavgusb ((__v8qi)__A, (__v8qi)__B);
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}
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static __inline __m64
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_m_pf2id (__m64 __A)
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{
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  return (__m64)__builtin_ia32_pf2id ((__v2sf)__A);
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}
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static __inline __m64
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_m_pfacc (__m64 __A, __m64 __B)
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{
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  return (__m64)__builtin_ia32_pfacc ((__v2sf)__A, (__v2sf)__B);
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}
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static __inline __m64
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_m_pfadd (__m64 __A, __m64 __B)
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{
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  return (__m64)__builtin_ia32_pfadd ((__v2sf)__A, (__v2sf)__B);
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}
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static __inline __m64
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_m_pfcmpeq (__m64 __A, __m64 __B)
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{
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  return (__m64)__builtin_ia32_pfcmpeq ((__v2sf)__A, (__v2sf)__B);
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}
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static __inline __m64
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_m_pfcmpge (__m64 __A, __m64 __B)
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{
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  return (__m64)__builtin_ia32_pfcmpge ((__v2sf)__A, (__v2sf)__B);
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}
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static __inline __m64
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_m_pfcmpgt (__m64 __A, __m64 __B)
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{
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  return (__m64)__builtin_ia32_pfcmpgt ((__v2sf)__A, (__v2sf)__B);
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}
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static __inline __m64
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_m_pfmax (__m64 __A, __m64 __B)
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{
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  return (__m64)__builtin_ia32_pfmax ((__v2sf)__A, (__v2sf)__B);
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}
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static __inline __m64
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_m_pfmin (__m64 __A, __m64 __B)
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{
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  return (__m64)__builtin_ia32_pfmin ((__v2sf)__A, (__v2sf)__B);
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}
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static __inline __m64
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_m_pfmul (__m64 __A, __m64 __B)
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{
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  return (__m64)__builtin_ia32_pfmul ((__v2sf)__A, (__v2sf)__B);
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}
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static __inline __m64
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_m_pfrcp (__m64 __A)
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{
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  return (__m64)__builtin_ia32_pfrcp ((__v2sf)__A);
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}
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static __inline __m64
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_m_pfrcpit1 (__m64 __A, __m64 __B)
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{
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  return (__m64)__builtin_ia32_pfrcpit1 ((__v2sf)__A, (__v2sf)__B);
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}
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static __inline __m64
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_m_pfrcpit2 (__m64 __A, __m64 __B)
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{
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  return (__m64)__builtin_ia32_pfrcpit2 ((__v2sf)__A, (__v2sf)__B);
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}
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static __inline __m64
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_m_pfrsqrt (__m64 __A)
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{
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  return (__m64)__builtin_ia32_pfrsqrt ((__v2sf)__A);
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}
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static __inline __m64
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_m_pfrsqit1 (__m64 __A, __m64 __B)
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{
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  return (__m64)__builtin_ia32_pfrsqit1 ((__v2sf)__A, (__v2sf)__B);
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}
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static __inline __m64
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_m_pfsub (__m64 __A, __m64 __B)
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{
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  return (__m64)__builtin_ia32_pfsub ((__v2sf)__A, (__v2sf)__B);
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}
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static __inline __m64
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_m_pfsubr (__m64 __A, __m64 __B)
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{
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  return (__m64)__builtin_ia32_pfsubr ((__v2sf)__A, (__v2sf)__B);
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}
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static __inline __m64
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_m_pi2fd (__m64 __A)
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{
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  return (__m64)__builtin_ia32_pi2fd ((__v2si)__A);
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}
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static __inline __m64
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_m_pmulhrw (__m64 __A, __m64 __B)
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{
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  return (__m64)__builtin_ia32_pmulhrw ((__v4hi)__A, (__v4hi)__B);
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}
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static __inline void
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_m_prefetch (void *__P)
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{
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  __builtin_prefetch (__P, 0, 3 /* _MM_HINT_T0 */);
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}
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static __inline void
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_m_prefetchw (void *__P)
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{
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  __builtin_prefetch (__P, 1, 3 /* _MM_HINT_T0 */);
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}
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static __inline __m64
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_m_from_float (float __A)
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{
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  return (__m64)(__v2sf){ __A, 0 };
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}
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static __inline float
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_m_to_float (__m64 __A)
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{
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  union { __v2sf v; float a[2]; } __tmp = { (__v2sf)__A };
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  return __tmp.a[0];
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}
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#ifdef __3dNOW_A__
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static __inline __m64
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_m_pf2iw (__m64 __A)
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{
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  return (__m64)__builtin_ia32_pf2iw ((__v2sf)__A);
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}
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static __inline __m64
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_m_pfnacc (__m64 __A, __m64 __B)
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{
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  return (__m64)__builtin_ia32_pfnacc ((__v2sf)__A, (__v2sf)__B);
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}
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static __inline __m64
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_m_pfpnacc (__m64 __A, __m64 __B)
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{
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  return (__m64)__builtin_ia32_pfpnacc ((__v2sf)__A, (__v2sf)__B);
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}
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static __inline __m64
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_m_pi2fw (__m64 __A)
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{
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  return (__m64)__builtin_ia32_pi2fw ((__v2si)__A);
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}
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static __inline __m64
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_m_pswapd (__m64 __A)
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{
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  return (__m64)__builtin_ia32_pswapdsf ((__v2sf)__A);
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}
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#endif /* __3dNOW_A__ */
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#endif /* __3dNOW__ */
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#endif /* _MM3DNOW_H_INCLUDED */

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