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/*
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 *  MMX/SSE/SSE2/PNI support
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 *
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 *  Copyright (c) 2005 Fabrice Bellard
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 *
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 * This library is free software; you can redistribute it and/or
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 * modify it under the terms of the GNU Lesser General Public
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 * License as published by the Free Software Foundation; either
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 * version 2 of the License, or (at your option) any later version.
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 *
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 * This library 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 GNU
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 * Lesser General Public License for more details.
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 *
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 * You should have received a copy of the GNU Lesser General Public
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 * License along with this library; if not, write to the Free Software
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 * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA  02111-1307  USA
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 */
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#if SHIFT == 0
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#define Reg MMXReg
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#define XMM_ONLY(x...)
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#define B(n) MMX_B(n)
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#define W(n) MMX_W(n)
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#define L(n) MMX_L(n)
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#define Q(n) q
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#define SUFFIX _mmx
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#else
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#define Reg XMMReg
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#define XMM_ONLY(x...) x
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#define B(n) XMM_B(n)
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#define W(n) XMM_W(n)
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#define L(n) XMM_L(n)
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#define Q(n) XMM_Q(n)
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#define SUFFIX _xmm
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#endif
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void OPPROTO glue(op_psrlw, SUFFIX)(void)
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{
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    Reg *d, *s;
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    int shift;
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    d = (Reg *)((char *)env + PARAM1);
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    s = (Reg *)((char *)env + PARAM2);
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    if (s->Q(0) > 15) {
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        d->Q(0) = 0;
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#if SHIFT == 1
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        d->Q(1) = 0;
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#endif
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    } else {
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        shift = s->B(0);
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        d->W(0) >>= shift;
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        d->W(1) >>= shift;
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        d->W(2) >>= shift;
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        d->W(3) >>= shift;
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#if SHIFT == 1
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        d->W(4) >>= shift;
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        d->W(5) >>= shift;
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        d->W(6) >>= shift;
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        d->W(7) >>= shift;
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#endif
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    }
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    FORCE_RET();
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}
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void OPPROTO glue(op_psraw, SUFFIX)(void)
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{
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    Reg *d, *s;
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    int shift;
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    d = (Reg *)((char *)env + PARAM1);
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    s = (Reg *)((char *)env + PARAM2);
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    if (s->Q(0) > 15) {
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        shift = 15;
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    } else {
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        shift = s->B(0);
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    }
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    d->W(0) = (int16_t)d->W(0) >> shift;
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    d->W(1) = (int16_t)d->W(1) >> shift;
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    d->W(2) = (int16_t)d->W(2) >> shift;
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    d->W(3) = (int16_t)d->W(3) >> shift;
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#if SHIFT == 1
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    d->W(4) = (int16_t)d->W(4) >> shift;
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    d->W(5) = (int16_t)d->W(5) >> shift;
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    d->W(6) = (int16_t)d->W(6) >> shift;
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    d->W(7) = (int16_t)d->W(7) >> shift;
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#endif
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}
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void OPPROTO glue(op_psllw, SUFFIX)(void)
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{
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    Reg *d, *s;
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    int shift;
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    d = (Reg *)((char *)env + PARAM1);
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    s = (Reg *)((char *)env + PARAM2);
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    if (s->Q(0) > 15) {
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        d->Q(0) = 0;
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#if SHIFT == 1
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        d->Q(1) = 0;
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#endif
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    } else {
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        shift = s->B(0);
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        d->W(0) <<= shift;
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        d->W(1) <<= shift;
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        d->W(2) <<= shift;
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        d->W(3) <<= shift;
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#if SHIFT == 1
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        d->W(4) <<= shift;
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        d->W(5) <<= shift;
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        d->W(6) <<= shift;
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        d->W(7) <<= shift;
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#endif
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    }
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    FORCE_RET();
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}
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void OPPROTO glue(op_psrld, SUFFIX)(void)
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{
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    Reg *d, *s;
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    int shift;
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    d = (Reg *)((char *)env + PARAM1);
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    s = (Reg *)((char *)env + PARAM2);
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    if (s->Q(0) > 31) {
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        d->Q(0) = 0;
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#if SHIFT == 1
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        d->Q(1) = 0;
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#endif
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    } else {
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        shift = s->B(0);
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        d->L(0) >>= shift;
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        d->L(1) >>= shift;
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#if SHIFT == 1
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        d->L(2) >>= shift;
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        d->L(3) >>= shift;
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#endif
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    }
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    FORCE_RET();
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}
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void OPPROTO glue(op_psrad, SUFFIX)(void)
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{
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    Reg *d, *s;
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    int shift;
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    d = (Reg *)((char *)env + PARAM1);
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    s = (Reg *)((char *)env + PARAM2);
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    if (s->Q(0) > 31) {
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        shift = 31;
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    } else {
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        shift = s->B(0);
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    }
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    d->L(0) = (int32_t)d->L(0) >> shift;
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    d->L(1) = (int32_t)d->L(1) >> shift;
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#if SHIFT == 1
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    d->L(2) = (int32_t)d->L(2) >> shift;
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    d->L(3) = (int32_t)d->L(3) >> shift;
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#endif
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}
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void OPPROTO glue(op_pslld, SUFFIX)(void)
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{
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    Reg *d, *s;
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    int shift;
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    d = (Reg *)((char *)env + PARAM1);
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    s = (Reg *)((char *)env + PARAM2);
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    if (s->Q(0) > 31) {
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        d->Q(0) = 0;
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#if SHIFT == 1
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        d->Q(1) = 0;
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#endif
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    } else {
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        shift = s->B(0);
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        d->L(0) <<= shift;
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        d->L(1) <<= shift;
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#if SHIFT == 1
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        d->L(2) <<= shift;
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        d->L(3) <<= shift;
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#endif
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    }
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    FORCE_RET();
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}
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void OPPROTO glue(op_psrlq, SUFFIX)(void)
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{
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    Reg *d, *s;
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    int shift;
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    d = (Reg *)((char *)env + PARAM1);
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    s = (Reg *)((char *)env + PARAM2);
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    if (s->Q(0) > 63) {
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        d->Q(0) = 0;
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#if SHIFT == 1
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        d->Q(1) = 0;
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#endif
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    } else {
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        shift = s->B(0);
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        d->Q(0) >>= shift;
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#if SHIFT == 1
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        d->Q(1) >>= shift;
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#endif
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    }
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    FORCE_RET();
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}
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void OPPROTO glue(op_psllq, SUFFIX)(void)
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{
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    Reg *d, *s;
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    int shift;
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    d = (Reg *)((char *)env + PARAM1);
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    s = (Reg *)((char *)env + PARAM2);
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    if (s->Q(0) > 63) {
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        d->Q(0) = 0;
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#if SHIFT == 1
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        d->Q(1) = 0;
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#endif
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    } else {
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        shift = s->B(0);
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        d->Q(0) <<= shift;
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#if SHIFT == 1
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        d->Q(1) <<= shift;
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#endif
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    }
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    FORCE_RET();
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}
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#if SHIFT == 1
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void OPPROTO glue(op_psrldq, SUFFIX)(void)
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{
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    Reg *d, *s;
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    int shift, i;
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    d = (Reg *)((char *)env + PARAM1);
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    s = (Reg *)((char *)env + PARAM2);
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    shift = s->L(0);
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    if (shift > 16)
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        shift = 16;
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    for(i = 0; i < 16 - shift; i++)
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        d->B(i) = d->B(i + shift);
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    for(i = 16 - shift; i < 16; i++)
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        d->B(i) = 0;
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    FORCE_RET();
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}
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void OPPROTO glue(op_pslldq, SUFFIX)(void)
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{
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    Reg *d, *s;
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    int shift, i;
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    d = (Reg *)((char *)env + PARAM1);
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    s = (Reg *)((char *)env + PARAM2);
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    shift = s->L(0);
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    if (shift > 16)
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        shift = 16;
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    for(i = 15; i >= shift; i--)
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        d->B(i) = d->B(i - shift);
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    for(i = 0; i < shift; i++)
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        d->B(i) = 0;
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    FORCE_RET();
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}
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#endif
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#define SSE_OP_B(name, F)\
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void OPPROTO glue(name, SUFFIX) (void)\
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{\
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    Reg *d, *s;\
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    d = (Reg *)((char *)env + PARAM1);\
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    s = (Reg *)((char *)env + PARAM2);\
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    d->B(0) = F(d->B(0), s->B(0));\
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    d->B(1) = F(d->B(1), s->B(1));\
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    d->B(2) = F(d->B(2), s->B(2));\
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    d->B(3) = F(d->B(3), s->B(3));\
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    d->B(4) = F(d->B(4), s->B(4));\
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    d->B(5) = F(d->B(5), s->B(5));\
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    d->B(6) = F(d->B(6), s->B(6));\
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    d->B(7) = F(d->B(7), s->B(7));\
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    XMM_ONLY(\
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    d->B(8) = F(d->B(8), s->B(8));\
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    d->B(9) = F(d->B(9), s->B(9));\
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    d->B(10) = F(d->B(10), s->B(10));\
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    d->B(11) = F(d->B(11), s->B(11));\
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    d->B(12) = F(d->B(12), s->B(12));\
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    d->B(13) = F(d->B(13), s->B(13));\
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    d->B(14) = F(d->B(14), s->B(14));\
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    d->B(15) = F(d->B(15), s->B(15));\
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    )\
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}
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#define SSE_OP_W(name, F)\
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void OPPROTO glue(name, SUFFIX) (void)\
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{\
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    Reg *d, *s;\
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    d = (Reg *)((char *)env + PARAM1);\
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    s = (Reg *)((char *)env + PARAM2);\
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    d->W(0) = F(d->W(0), s->W(0));\
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    d->W(1) = F(d->W(1), s->W(1));\
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    d->W(2) = F(d->W(2), s->W(2));\
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    d->W(3) = F(d->W(3), s->W(3));\
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    XMM_ONLY(\
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    d->W(4) = F(d->W(4), s->W(4));\
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    d->W(5) = F(d->W(5), s->W(5));\
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    d->W(6) = F(d->W(6), s->W(6));\
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    d->W(7) = F(d->W(7), s->W(7));\
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    )\
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}
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#define SSE_OP_L(name, F)\
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void OPPROTO glue(name, SUFFIX) (void)\
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{\
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    Reg *d, *s;\
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    d = (Reg *)((char *)env + PARAM1);\
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    s = (Reg *)((char *)env + PARAM2);\
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    d->L(0) = F(d->L(0), s->L(0));\
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    d->L(1) = F(d->L(1), s->L(1));\
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    XMM_ONLY(\
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    d->L(2) = F(d->L(2), s->L(2));\
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    d->L(3) = F(d->L(3), s->L(3));\
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    )\
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}
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#define SSE_OP_Q(name, F)\
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void OPPROTO glue(name, SUFFIX) (void)\
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{\
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    Reg *d, *s;\
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    d = (Reg *)((char *)env + PARAM1);\
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    s = (Reg *)((char *)env + PARAM2);\
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    d->Q(0) = F(d->Q(0), s->Q(0));\
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    XMM_ONLY(\
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    d->Q(1) = F(d->Q(1), s->Q(1));\
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    )\
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}
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#if SHIFT == 0
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static inline int satub(int x)
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{
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    if (x < 0)
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        return 0;
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    else if (x > 255)
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        return 255;
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    else
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        return x;
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}
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static inline int satuw(int x)
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{
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    if (x < 0)
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        return 0;
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    else if (x > 65535)
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        return 65535;
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    else
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        return x;
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}
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static inline int satsb(int x)
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{
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    if (x < -128)
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        return -128;
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    else if (x > 127)
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        return 127;
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    else
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        return x;
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}
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375 664e0f19 bellard
static inline int satsw(int x)
376 664e0f19 bellard
{
377 664e0f19 bellard
    if (x < -32768)
378 664e0f19 bellard
        return -32768;
379 664e0f19 bellard
    else if (x > 32767)
380 664e0f19 bellard
        return 32767;
381 664e0f19 bellard
    else
382 664e0f19 bellard
        return x;
383 664e0f19 bellard
}
384 664e0f19 bellard
385 664e0f19 bellard
#define FADD(a, b) ((a) + (b))
386 664e0f19 bellard
#define FADDUB(a, b) satub((a) + (b))
387 664e0f19 bellard
#define FADDUW(a, b) satuw((a) + (b))
388 664e0f19 bellard
#define FADDSB(a, b) satsb((int8_t)(a) + (int8_t)(b))
389 664e0f19 bellard
#define FADDSW(a, b) satsw((int16_t)(a) + (int16_t)(b))
390 664e0f19 bellard
391 664e0f19 bellard
#define FSUB(a, b) ((a) - (b))
392 664e0f19 bellard
#define FSUBUB(a, b) satub((a) - (b))
393 664e0f19 bellard
#define FSUBUW(a, b) satuw((a) - (b))
394 664e0f19 bellard
#define FSUBSB(a, b) satsb((int8_t)(a) - (int8_t)(b))
395 664e0f19 bellard
#define FSUBSW(a, b) satsw((int16_t)(a) - (int16_t)(b))
396 664e0f19 bellard
#define FMINUB(a, b) ((a) < (b)) ? (a) : (b)
397 664e0f19 bellard
#define FMINSW(a, b) ((int16_t)(a) < (int16_t)(b)) ? (a) : (b)
398 664e0f19 bellard
#define FMAXUB(a, b) ((a) > (b)) ? (a) : (b)
399 664e0f19 bellard
#define FMAXSW(a, b) ((int16_t)(a) > (int16_t)(b)) ? (a) : (b)
400 664e0f19 bellard
401 664e0f19 bellard
#define FAND(a, b) (a) & (b)
402 664e0f19 bellard
#define FANDN(a, b) ((~(a)) & (b))
403 664e0f19 bellard
#define FOR(a, b) (a) | (b)
404 664e0f19 bellard
#define FXOR(a, b) (a) ^ (b)
405 664e0f19 bellard
406 664e0f19 bellard
#define FCMPGTB(a, b) (int8_t)(a) > (int8_t)(b) ? -1 : 0
407 664e0f19 bellard
#define FCMPGTW(a, b) (int16_t)(a) > (int16_t)(b) ? -1 : 0
408 664e0f19 bellard
#define FCMPGTL(a, b) (int32_t)(a) > (int32_t)(b) ? -1 : 0
409 664e0f19 bellard
#define FCMPEQ(a, b) (a) == (b) ? -1 : 0
410 664e0f19 bellard
411 664e0f19 bellard
#define FMULLW(a, b) (a) * (b)
412 664e0f19 bellard
#define FMULHUW(a, b) (a) * (b) >> 16
413 664e0f19 bellard
#define FMULHW(a, b) (int16_t)(a) * (int16_t)(b) >> 16
414 664e0f19 bellard
415 664e0f19 bellard
#define FAVG(a, b) ((a) + (b) + 1) >> 1
416 664e0f19 bellard
#endif
417 664e0f19 bellard
418 664e0f19 bellard
SSE_OP_B(op_paddb, FADD)
419 664e0f19 bellard
SSE_OP_W(op_paddw, FADD)
420 664e0f19 bellard
SSE_OP_L(op_paddl, FADD)
421 664e0f19 bellard
SSE_OP_Q(op_paddq, FADD)
422 664e0f19 bellard
423 664e0f19 bellard
SSE_OP_B(op_psubb, FSUB)
424 664e0f19 bellard
SSE_OP_W(op_psubw, FSUB)
425 664e0f19 bellard
SSE_OP_L(op_psubl, FSUB)
426 664e0f19 bellard
SSE_OP_Q(op_psubq, FSUB)
427 664e0f19 bellard
428 664e0f19 bellard
SSE_OP_B(op_paddusb, FADDUB)
429 664e0f19 bellard
SSE_OP_B(op_paddsb, FADDSB)
430 664e0f19 bellard
SSE_OP_B(op_psubusb, FSUBUB)
431 664e0f19 bellard
SSE_OP_B(op_psubsb, FSUBSB)
432 664e0f19 bellard
433 664e0f19 bellard
SSE_OP_W(op_paddusw, FADDUW)
434 664e0f19 bellard
SSE_OP_W(op_paddsw, FADDSW)
435 664e0f19 bellard
SSE_OP_W(op_psubusw, FSUBUW)
436 664e0f19 bellard
SSE_OP_W(op_psubsw, FSUBSW)
437 664e0f19 bellard
438 664e0f19 bellard
SSE_OP_B(op_pminub, FMINUB)
439 664e0f19 bellard
SSE_OP_B(op_pmaxub, FMAXUB)
440 664e0f19 bellard
441 664e0f19 bellard
SSE_OP_W(op_pminsw, FMINSW)
442 664e0f19 bellard
SSE_OP_W(op_pmaxsw, FMAXSW)
443 664e0f19 bellard
444 664e0f19 bellard
SSE_OP_Q(op_pand, FAND)
445 664e0f19 bellard
SSE_OP_Q(op_pandn, FANDN)
446 664e0f19 bellard
SSE_OP_Q(op_por, FOR)
447 664e0f19 bellard
SSE_OP_Q(op_pxor, FXOR)
448 664e0f19 bellard
449 664e0f19 bellard
SSE_OP_B(op_pcmpgtb, FCMPGTB)
450 664e0f19 bellard
SSE_OP_W(op_pcmpgtw, FCMPGTW)
451 664e0f19 bellard
SSE_OP_L(op_pcmpgtl, FCMPGTL)
452 664e0f19 bellard
453 664e0f19 bellard
SSE_OP_B(op_pcmpeqb, FCMPEQ)
454 664e0f19 bellard
SSE_OP_W(op_pcmpeqw, FCMPEQ)
455 664e0f19 bellard
SSE_OP_L(op_pcmpeql, FCMPEQ)
456 664e0f19 bellard
457 664e0f19 bellard
SSE_OP_W(op_pmullw, FMULLW)
458 664e0f19 bellard
SSE_OP_W(op_pmulhuw, FMULHUW)
459 664e0f19 bellard
SSE_OP_W(op_pmulhw, FMULHW)
460 664e0f19 bellard
461 664e0f19 bellard
SSE_OP_B(op_pavgb, FAVG)
462 664e0f19 bellard
SSE_OP_W(op_pavgw, FAVG)
463 664e0f19 bellard
464 664e0f19 bellard
void OPPROTO glue(op_pmuludq, SUFFIX) (void)
465 664e0f19 bellard
{
466 664e0f19 bellard
    Reg *d, *s;
467 664e0f19 bellard
    d = (Reg *)((char *)env + PARAM1);
468 664e0f19 bellard
    s = (Reg *)((char *)env + PARAM2);
469 664e0f19 bellard
470 664e0f19 bellard
    d->Q(0) = (uint64_t)s->L(0) * (uint64_t)d->L(0);
471 664e0f19 bellard
#if SHIFT == 1
472 664e0f19 bellard
    d->Q(1) = (uint64_t)s->L(2) * (uint64_t)d->L(2);
473 664e0f19 bellard
#endif
474 664e0f19 bellard
}
475 664e0f19 bellard
476 664e0f19 bellard
void OPPROTO glue(op_pmaddwd, SUFFIX) (void)
477 664e0f19 bellard
{
478 664e0f19 bellard
    int i;
479 664e0f19 bellard
    Reg *d, *s;
480 664e0f19 bellard
    d = (Reg *)((char *)env + PARAM1);
481 664e0f19 bellard
    s = (Reg *)((char *)env + PARAM2);
482 664e0f19 bellard
483 664e0f19 bellard
    for(i = 0; i < (2 << SHIFT); i++) {
484 664e0f19 bellard
        d->L(i) = (int16_t)s->W(2*i) * (int16_t)d->W(2*i) +
485 664e0f19 bellard
            (int16_t)s->W(2*i+1) * (int16_t)d->W(2*i+1);
486 664e0f19 bellard
    }
487 0523c6b7 bellard
    FORCE_RET();
488 664e0f19 bellard
}
489 664e0f19 bellard
490 664e0f19 bellard
#if SHIFT == 0
491 664e0f19 bellard
static inline int abs1(int a)
492 664e0f19 bellard
{
493 664e0f19 bellard
    if (a < 0)
494 664e0f19 bellard
        return -a;
495 664e0f19 bellard
    else
496 664e0f19 bellard
        return a;
497 664e0f19 bellard
}
498 664e0f19 bellard
#endif
499 664e0f19 bellard
void OPPROTO glue(op_psadbw, SUFFIX) (void)
500 664e0f19 bellard
{
501 664e0f19 bellard
    unsigned int val;
502 664e0f19 bellard
    Reg *d, *s;
503 664e0f19 bellard
    d = (Reg *)((char *)env + PARAM1);
504 664e0f19 bellard
    s = (Reg *)((char *)env + PARAM2);
505 664e0f19 bellard
506 664e0f19 bellard
    val = 0;
507 664e0f19 bellard
    val += abs1(d->B(0) - s->B(0));
508 664e0f19 bellard
    val += abs1(d->B(1) - s->B(1));
509 664e0f19 bellard
    val += abs1(d->B(2) - s->B(2));
510 664e0f19 bellard
    val += abs1(d->B(3) - s->B(3));
511 664e0f19 bellard
    val += abs1(d->B(4) - s->B(4));
512 664e0f19 bellard
    val += abs1(d->B(5) - s->B(5));
513 664e0f19 bellard
    val += abs1(d->B(6) - s->B(6));
514 664e0f19 bellard
    val += abs1(d->B(7) - s->B(7));
515 664e0f19 bellard
    d->Q(0) = val;
516 664e0f19 bellard
#if SHIFT == 1
517 664e0f19 bellard
    val = 0;
518 664e0f19 bellard
    val += abs1(d->B(8) - s->B(8));
519 664e0f19 bellard
    val += abs1(d->B(9) - s->B(9));
520 664e0f19 bellard
    val += abs1(d->B(10) - s->B(10));
521 664e0f19 bellard
    val += abs1(d->B(11) - s->B(11));
522 664e0f19 bellard
    val += abs1(d->B(12) - s->B(12));
523 664e0f19 bellard
    val += abs1(d->B(13) - s->B(13));
524 664e0f19 bellard
    val += abs1(d->B(14) - s->B(14));
525 664e0f19 bellard
    val += abs1(d->B(15) - s->B(15));
526 664e0f19 bellard
    d->Q(1) = val;
527 664e0f19 bellard
#endif
528 664e0f19 bellard
}
529 664e0f19 bellard
530 664e0f19 bellard
void OPPROTO glue(op_maskmov, SUFFIX) (void)
531 664e0f19 bellard
{
532 664e0f19 bellard
    int i;
533 664e0f19 bellard
    Reg *d, *s;
534 664e0f19 bellard
    d = (Reg *)((char *)env + PARAM1);
535 664e0f19 bellard
    s = (Reg *)((char *)env + PARAM2);
536 664e0f19 bellard
    for(i = 0; i < (8 << SHIFT); i++) {
537 664e0f19 bellard
        if (s->B(i) & 0x80)
538 d52cf7a6 bellard
            stb(A0 + i, d->B(i));
539 664e0f19 bellard
    }
540 0523c6b7 bellard
    FORCE_RET();
541 664e0f19 bellard
}
542 664e0f19 bellard
543 664e0f19 bellard
void OPPROTO glue(op_movl_mm_T0, SUFFIX) (void)
544 664e0f19 bellard
{
545 664e0f19 bellard
    Reg *d;
546 664e0f19 bellard
    d = (Reg *)((char *)env + PARAM1);
547 664e0f19 bellard
    d->L(0) = T0;
548 664e0f19 bellard
    d->L(1) = 0;
549 664e0f19 bellard
#if SHIFT == 1
550 664e0f19 bellard
    d->Q(1) = 0;
551 664e0f19 bellard
#endif
552 664e0f19 bellard
}
553 664e0f19 bellard
554 664e0f19 bellard
void OPPROTO glue(op_movl_T0_mm, SUFFIX) (void)
555 664e0f19 bellard
{
556 664e0f19 bellard
    Reg *s;
557 664e0f19 bellard
    s = (Reg *)((char *)env + PARAM1);
558 664e0f19 bellard
    T0 = s->L(0);
559 664e0f19 bellard
}
560 664e0f19 bellard
561 dabd98dd bellard
#ifdef TARGET_X86_64
562 dabd98dd bellard
void OPPROTO glue(op_movq_mm_T0, SUFFIX) (void)
563 dabd98dd bellard
{
564 dabd98dd bellard
    Reg *d;
565 dabd98dd bellard
    d = (Reg *)((char *)env + PARAM1);
566 dabd98dd bellard
    d->Q(0) = T0;
567 dabd98dd bellard
#if SHIFT == 1
568 dabd98dd bellard
    d->Q(1) = 0;
569 dabd98dd bellard
#endif
570 dabd98dd bellard
}
571 dabd98dd bellard
572 dabd98dd bellard
void OPPROTO glue(op_movq_T0_mm, SUFFIX) (void)
573 dabd98dd bellard
{
574 dabd98dd bellard
    Reg *s;
575 dabd98dd bellard
    s = (Reg *)((char *)env + PARAM1);
576 dabd98dd bellard
    T0 = s->Q(0);
577 dabd98dd bellard
}
578 dabd98dd bellard
#endif
579 dabd98dd bellard
580 664e0f19 bellard
#if SHIFT == 0
581 664e0f19 bellard
void OPPROTO glue(op_pshufw, SUFFIX) (void)
582 664e0f19 bellard
{
583 664e0f19 bellard
    Reg r, *d, *s;
584 664e0f19 bellard
    int order;
585 664e0f19 bellard
    d = (Reg *)((char *)env + PARAM1);
586 664e0f19 bellard
    s = (Reg *)((char *)env + PARAM2);
587 664e0f19 bellard
    order = PARAM3;
588 664e0f19 bellard
    r.W(0) = s->W(order & 3);
589 664e0f19 bellard
    r.W(1) = s->W((order >> 2) & 3);
590 664e0f19 bellard
    r.W(2) = s->W((order >> 4) & 3);
591 664e0f19 bellard
    r.W(3) = s->W((order >> 6) & 3);
592 664e0f19 bellard
    *d = r;
593 664e0f19 bellard
}
594 664e0f19 bellard
#else
595 d52cf7a6 bellard
void OPPROTO op_shufps(void)
596 d52cf7a6 bellard
{
597 d52cf7a6 bellard
    Reg r, *d, *s;
598 d52cf7a6 bellard
    int order;
599 d52cf7a6 bellard
    d = (Reg *)((char *)env + PARAM1);
600 d52cf7a6 bellard
    s = (Reg *)((char *)env + PARAM2);
601 d52cf7a6 bellard
    order = PARAM3;
602 d52cf7a6 bellard
    r.L(0) = d->L(order & 3);
603 d52cf7a6 bellard
    r.L(1) = d->L((order >> 2) & 3);
604 d52cf7a6 bellard
    r.L(2) = s->L((order >> 4) & 3);
605 d52cf7a6 bellard
    r.L(3) = s->L((order >> 6) & 3);
606 d52cf7a6 bellard
    *d = r;
607 d52cf7a6 bellard
}
608 d52cf7a6 bellard
609 664e0f19 bellard
void OPPROTO op_shufpd(void)
610 664e0f19 bellard
{
611 664e0f19 bellard
    Reg r, *d, *s;
612 664e0f19 bellard
    int order;
613 664e0f19 bellard
    d = (Reg *)((char *)env + PARAM1);
614 664e0f19 bellard
    s = (Reg *)((char *)env + PARAM2);
615 664e0f19 bellard
    order = PARAM3;
616 d52cf7a6 bellard
    r.Q(0) = d->Q(order & 1);
617 664e0f19 bellard
    r.Q(1) = s->Q((order >> 1) & 1);
618 664e0f19 bellard
    *d = r;
619 664e0f19 bellard
}
620 664e0f19 bellard
621 664e0f19 bellard
void OPPROTO glue(op_pshufd, SUFFIX) (void)
622 664e0f19 bellard
{
623 664e0f19 bellard
    Reg r, *d, *s;
624 664e0f19 bellard
    int order;
625 664e0f19 bellard
    d = (Reg *)((char *)env + PARAM1);
626 664e0f19 bellard
    s = (Reg *)((char *)env + PARAM2);
627 664e0f19 bellard
    order = PARAM3;
628 664e0f19 bellard
    r.L(0) = s->L(order & 3);
629 664e0f19 bellard
    r.L(1) = s->L((order >> 2) & 3);
630 664e0f19 bellard
    r.L(2) = s->L((order >> 4) & 3);
631 664e0f19 bellard
    r.L(3) = s->L((order >> 6) & 3);
632 664e0f19 bellard
    *d = r;
633 664e0f19 bellard
}
634 664e0f19 bellard
635 664e0f19 bellard
void OPPROTO glue(op_pshuflw, SUFFIX) (void)
636 664e0f19 bellard
{
637 664e0f19 bellard
    Reg r, *d, *s;
638 664e0f19 bellard
    int order;
639 664e0f19 bellard
    d = (Reg *)((char *)env + PARAM1);
640 664e0f19 bellard
    s = (Reg *)((char *)env + PARAM2);
641 664e0f19 bellard
    order = PARAM3;
642 664e0f19 bellard
    r.W(0) = s->W(order & 3);
643 664e0f19 bellard
    r.W(1) = s->W((order >> 2) & 3);
644 664e0f19 bellard
    r.W(2) = s->W((order >> 4) & 3);
645 664e0f19 bellard
    r.W(3) = s->W((order >> 6) & 3);
646 664e0f19 bellard
    r.Q(1) = s->Q(1);
647 664e0f19 bellard
    *d = r;
648 664e0f19 bellard
}
649 664e0f19 bellard
650 664e0f19 bellard
void OPPROTO glue(op_pshufhw, SUFFIX) (void)
651 664e0f19 bellard
{
652 664e0f19 bellard
    Reg r, *d, *s;
653 664e0f19 bellard
    int order;
654 664e0f19 bellard
    d = (Reg *)((char *)env + PARAM1);
655 664e0f19 bellard
    s = (Reg *)((char *)env + PARAM2);
656 664e0f19 bellard
    order = PARAM3;
657 664e0f19 bellard
    r.Q(0) = s->Q(0);
658 664e0f19 bellard
    r.W(4) = s->W(4 + (order & 3));
659 664e0f19 bellard
    r.W(5) = s->W(4 + ((order >> 2) & 3));
660 664e0f19 bellard
    r.W(6) = s->W(4 + ((order >> 4) & 3));
661 664e0f19 bellard
    r.W(7) = s->W(4 + ((order >> 6) & 3));
662 664e0f19 bellard
    *d = r;
663 664e0f19 bellard
}
664 664e0f19 bellard
#endif
665 664e0f19 bellard
666 664e0f19 bellard
#if SHIFT == 1
667 664e0f19 bellard
/* FPU ops */
668 664e0f19 bellard
/* XXX: not accurate */
669 664e0f19 bellard
670 664e0f19 bellard
#define SSE_OP_S(name, F)\
671 664e0f19 bellard
void OPPROTO op_ ## name ## ps (void)\
672 664e0f19 bellard
{\
673 664e0f19 bellard
    Reg *d, *s;\
674 664e0f19 bellard
    d = (Reg *)((char *)env + PARAM1);\
675 664e0f19 bellard
    s = (Reg *)((char *)env + PARAM2);\
676 7a0e1f41 bellard
    d->XMM_S(0) = F(32, d->XMM_S(0), s->XMM_S(0));\
677 7a0e1f41 bellard
    d->XMM_S(1) = F(32, d->XMM_S(1), s->XMM_S(1));\
678 7a0e1f41 bellard
    d->XMM_S(2) = F(32, d->XMM_S(2), s->XMM_S(2));\
679 7a0e1f41 bellard
    d->XMM_S(3) = F(32, d->XMM_S(3), s->XMM_S(3));\
680 664e0f19 bellard
}\
681 664e0f19 bellard
\
682 664e0f19 bellard
void OPPROTO op_ ## name ## ss (void)\
683 664e0f19 bellard
{\
684 664e0f19 bellard
    Reg *d, *s;\
685 664e0f19 bellard
    d = (Reg *)((char *)env + PARAM1);\
686 664e0f19 bellard
    s = (Reg *)((char *)env + PARAM2);\
687 7a0e1f41 bellard
    d->XMM_S(0) = F(32, d->XMM_S(0), s->XMM_S(0));\
688 664e0f19 bellard
}\
689 664e0f19 bellard
void OPPROTO op_ ## name ## pd (void)\
690 664e0f19 bellard
{\
691 664e0f19 bellard
    Reg *d, *s;\
692 664e0f19 bellard
    d = (Reg *)((char *)env + PARAM1);\
693 664e0f19 bellard
    s = (Reg *)((char *)env + PARAM2);\
694 7a0e1f41 bellard
    d->XMM_D(0) = F(64, d->XMM_D(0), s->XMM_D(0));\
695 7a0e1f41 bellard
    d->XMM_D(1) = F(64, d->XMM_D(1), s->XMM_D(1));\
696 664e0f19 bellard
}\
697 664e0f19 bellard
\
698 664e0f19 bellard
void OPPROTO op_ ## name ## sd (void)\
699 664e0f19 bellard
{\
700 664e0f19 bellard
    Reg *d, *s;\
701 664e0f19 bellard
    d = (Reg *)((char *)env + PARAM1);\
702 664e0f19 bellard
    s = (Reg *)((char *)env + PARAM2);\
703 7a0e1f41 bellard
    d->XMM_D(0) = F(64, d->XMM_D(0), s->XMM_D(0));\
704 664e0f19 bellard
}
705 664e0f19 bellard
706 7a0e1f41 bellard
#define FPU_ADD(size, a, b) float ## size ## _add(a, b, &env->sse_status)
707 7a0e1f41 bellard
#define FPU_SUB(size, a, b) float ## size ## _sub(a, b, &env->sse_status)
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#define FPU_MUL(size, a, b) float ## size ## _mul(a, b, &env->sse_status)
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#define FPU_DIV(size, a, b) float ## size ## _div(a, b, &env->sse_status)
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#define FPU_MIN(size, a, b) (a) < (b) ? (a) : (b)
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#define FPU_MAX(size, a, b) (a) > (b) ? (a) : (b)
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#define FPU_SQRT(size, a, b) float ## size ## _sqrt(b, &env->sse_status)
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SSE_OP_S(add, FPU_ADD)
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SSE_OP_S(sub, FPU_SUB)
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SSE_OP_S(mul, FPU_MUL)
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SSE_OP_S(div, FPU_DIV)
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SSE_OP_S(min, FPU_MIN)
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SSE_OP_S(max, FPU_MAX)
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SSE_OP_S(sqrt, FPU_SQRT)
721 664e0f19 bellard
722 664e0f19 bellard
723 664e0f19 bellard
/* float to float conversions */
724 664e0f19 bellard
void OPPROTO op_cvtps2pd(void)
725 664e0f19 bellard
{
726 8422b113 bellard
    float32 s0, s1;
727 664e0f19 bellard
    Reg *d, *s;
728 664e0f19 bellard
    d = (Reg *)((char *)env + PARAM1);
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    s = (Reg *)((char *)env + PARAM2);
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    s0 = s->XMM_S(0);
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    s1 = s->XMM_S(1);
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    d->XMM_D(0) = float32_to_float64(s0, &env->sse_status);
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    d->XMM_D(1) = float32_to_float64(s1, &env->sse_status);
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}
735 664e0f19 bellard
736 664e0f19 bellard
void OPPROTO op_cvtpd2ps(void)
737 664e0f19 bellard
{
738 664e0f19 bellard
    Reg *d, *s;
739 664e0f19 bellard
    d = (Reg *)((char *)env + PARAM1);
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    s = (Reg *)((char *)env + PARAM2);
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    d->XMM_S(0) = float64_to_float32(s->XMM_D(0), &env->sse_status);
742 7a0e1f41 bellard
    d->XMM_S(1) = float64_to_float32(s->XMM_D(1), &env->sse_status);
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    d->Q(1) = 0;
744 664e0f19 bellard
}
745 664e0f19 bellard
746 664e0f19 bellard
void OPPROTO op_cvtss2sd(void)
747 664e0f19 bellard
{
748 664e0f19 bellard
    Reg *d, *s;
749 664e0f19 bellard
    d = (Reg *)((char *)env + PARAM1);
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    s = (Reg *)((char *)env + PARAM2);
751 7a0e1f41 bellard
    d->XMM_D(0) = float32_to_float64(s->XMM_S(0), &env->sse_status);
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}
753 664e0f19 bellard
754 664e0f19 bellard
void OPPROTO op_cvtsd2ss(void)
755 664e0f19 bellard
{
756 664e0f19 bellard
    Reg *d, *s;
757 664e0f19 bellard
    d = (Reg *)((char *)env + PARAM1);
758 664e0f19 bellard
    s = (Reg *)((char *)env + PARAM2);
759 7a0e1f41 bellard
    d->XMM_S(0) = float64_to_float32(s->XMM_D(0), &env->sse_status);
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}
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762 664e0f19 bellard
/* integer to float */
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void OPPROTO op_cvtdq2ps(void)
764 664e0f19 bellard
{
765 664e0f19 bellard
    XMMReg *d = (XMMReg *)((char *)env + PARAM1);
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    XMMReg *s = (XMMReg *)((char *)env + PARAM2);
767 7a0e1f41 bellard
    d->XMM_S(0) = int32_to_float32(s->XMM_L(0), &env->sse_status);
768 7a0e1f41 bellard
    d->XMM_S(1) = int32_to_float32(s->XMM_L(1), &env->sse_status);
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    d->XMM_S(2) = int32_to_float32(s->XMM_L(2), &env->sse_status);
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    d->XMM_S(3) = int32_to_float32(s->XMM_L(3), &env->sse_status);
771 664e0f19 bellard
}
772 664e0f19 bellard
773 664e0f19 bellard
void OPPROTO op_cvtdq2pd(void)
774 664e0f19 bellard
{
775 664e0f19 bellard
    XMMReg *d = (XMMReg *)((char *)env + PARAM1);
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    XMMReg *s = (XMMReg *)((char *)env + PARAM2);
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    int32_t l0, l1;
778 664e0f19 bellard
    l0 = (int32_t)s->XMM_L(0);
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    l1 = (int32_t)s->XMM_L(1);
780 7a0e1f41 bellard
    d->XMM_D(0) = int32_to_float64(l0, &env->sse_status);
781 7a0e1f41 bellard
    d->XMM_D(1) = int32_to_float64(l1, &env->sse_status);
782 664e0f19 bellard
}
783 664e0f19 bellard
784 664e0f19 bellard
void OPPROTO op_cvtpi2ps(void)
785 664e0f19 bellard
{
786 664e0f19 bellard
    XMMReg *d = (Reg *)((char *)env + PARAM1);
787 664e0f19 bellard
    MMXReg *s = (MMXReg *)((char *)env + PARAM2);
788 7a0e1f41 bellard
    d->XMM_S(0) = int32_to_float32(s->MMX_L(0), &env->sse_status);
789 7a0e1f41 bellard
    d->XMM_S(1) = int32_to_float32(s->MMX_L(1), &env->sse_status);
790 664e0f19 bellard
}
791 664e0f19 bellard
792 664e0f19 bellard
void OPPROTO op_cvtpi2pd(void)
793 664e0f19 bellard
{
794 664e0f19 bellard
    XMMReg *d = (Reg *)((char *)env + PARAM1);
795 664e0f19 bellard
    MMXReg *s = (MMXReg *)((char *)env + PARAM2);
796 7a0e1f41 bellard
    d->XMM_D(0) = int32_to_float64(s->MMX_L(0), &env->sse_status);
797 7a0e1f41 bellard
    d->XMM_D(1) = int32_to_float64(s->MMX_L(1), &env->sse_status);
798 664e0f19 bellard
}
799 664e0f19 bellard
800 664e0f19 bellard
void OPPROTO op_cvtsi2ss(void)
801 664e0f19 bellard
{
802 664e0f19 bellard
    XMMReg *d = (Reg *)((char *)env + PARAM1);
803 7a0e1f41 bellard
    d->XMM_S(0) = int32_to_float32(T0, &env->sse_status);
804 664e0f19 bellard
}
805 664e0f19 bellard
806 664e0f19 bellard
void OPPROTO op_cvtsi2sd(void)
807 664e0f19 bellard
{
808 664e0f19 bellard
    XMMReg *d = (Reg *)((char *)env + PARAM1);
809 7a0e1f41 bellard
    d->XMM_D(0) = int32_to_float64(T0, &env->sse_status);
810 664e0f19 bellard
}
811 664e0f19 bellard
812 664e0f19 bellard
#ifdef TARGET_X86_64
813 664e0f19 bellard
void OPPROTO op_cvtsq2ss(void)
814 664e0f19 bellard
{
815 664e0f19 bellard
    XMMReg *d = (Reg *)((char *)env + PARAM1);
816 7a0e1f41 bellard
    d->XMM_S(0) = int64_to_float32(T0, &env->sse_status);
817 664e0f19 bellard
}
818 664e0f19 bellard
819 664e0f19 bellard
void OPPROTO op_cvtsq2sd(void)
820 664e0f19 bellard
{
821 664e0f19 bellard
    XMMReg *d = (Reg *)((char *)env + PARAM1);
822 7a0e1f41 bellard
    d->XMM_D(0) = int64_to_float64(T0, &env->sse_status);
823 664e0f19 bellard
}
824 664e0f19 bellard
#endif
825 664e0f19 bellard
826 664e0f19 bellard
/* float to integer */
827 664e0f19 bellard
void OPPROTO op_cvtps2dq(void)
828 664e0f19 bellard
{
829 664e0f19 bellard
    XMMReg *d = (XMMReg *)((char *)env + PARAM1);
830 664e0f19 bellard
    XMMReg *s = (XMMReg *)((char *)env + PARAM2);
831 7a0e1f41 bellard
    d->XMM_L(0) = float32_to_int32(s->XMM_S(0), &env->sse_status);
832 7a0e1f41 bellard
    d->XMM_L(1) = float32_to_int32(s->XMM_S(1), &env->sse_status);
833 7a0e1f41 bellard
    d->XMM_L(2) = float32_to_int32(s->XMM_S(2), &env->sse_status);
834 7a0e1f41 bellard
    d->XMM_L(3) = float32_to_int32(s->XMM_S(3), &env->sse_status);
835 664e0f19 bellard
}
836 664e0f19 bellard
837 664e0f19 bellard
void OPPROTO op_cvtpd2dq(void)
838 664e0f19 bellard
{
839 664e0f19 bellard
    XMMReg *d = (XMMReg *)((char *)env + PARAM1);
840 664e0f19 bellard
    XMMReg *s = (XMMReg *)((char *)env + PARAM2);
841 7a0e1f41 bellard
    d->XMM_L(0) = float64_to_int32(s->XMM_D(0), &env->sse_status);
842 7a0e1f41 bellard
    d->XMM_L(1) = float64_to_int32(s->XMM_D(1), &env->sse_status);
843 664e0f19 bellard
    d->XMM_Q(1) = 0;
844 664e0f19 bellard
}
845 664e0f19 bellard
846 664e0f19 bellard
void OPPROTO op_cvtps2pi(void)
847 664e0f19 bellard
{
848 664e0f19 bellard
    MMXReg *d = (MMXReg *)((char *)env + PARAM1);
849 664e0f19 bellard
    XMMReg *s = (XMMReg *)((char *)env + PARAM2);
850 7a0e1f41 bellard
    d->MMX_L(0) = float32_to_int32(s->XMM_S(0), &env->sse_status);
851 7a0e1f41 bellard
    d->MMX_L(1) = float32_to_int32(s->XMM_S(1), &env->sse_status);
852 664e0f19 bellard
}
853 664e0f19 bellard
854 664e0f19 bellard
void OPPROTO op_cvtpd2pi(void)
855 664e0f19 bellard
{
856 664e0f19 bellard
    MMXReg *d = (MMXReg *)((char *)env + PARAM1);
857 664e0f19 bellard
    XMMReg *s = (XMMReg *)((char *)env + PARAM2);
858 7a0e1f41 bellard
    d->MMX_L(0) = float64_to_int32(s->XMM_D(0), &env->sse_status);
859 7a0e1f41 bellard
    d->MMX_L(1) = float64_to_int32(s->XMM_D(1), &env->sse_status);
860 664e0f19 bellard
}
861 664e0f19 bellard
862 664e0f19 bellard
void OPPROTO op_cvtss2si(void)
863 664e0f19 bellard
{
864 664e0f19 bellard
    XMMReg *s = (XMMReg *)((char *)env + PARAM1);
865 7a0e1f41 bellard
    T0 = float32_to_int32(s->XMM_S(0), &env->sse_status);
866 664e0f19 bellard
}
867 664e0f19 bellard
868 664e0f19 bellard
void OPPROTO op_cvtsd2si(void)
869 664e0f19 bellard
{
870 664e0f19 bellard
    XMMReg *s = (XMMReg *)((char *)env + PARAM1);
871 7a0e1f41 bellard
    T0 = float64_to_int32(s->XMM_D(0), &env->sse_status);
872 664e0f19 bellard
}
873 664e0f19 bellard
874 664e0f19 bellard
#ifdef TARGET_X86_64
875 664e0f19 bellard
void OPPROTO op_cvtss2sq(void)
876 664e0f19 bellard
{
877 664e0f19 bellard
    XMMReg *s = (XMMReg *)((char *)env + PARAM1);
878 7a0e1f41 bellard
    T0 = float32_to_int64(s->XMM_S(0), &env->sse_status);
879 664e0f19 bellard
}
880 664e0f19 bellard
881 664e0f19 bellard
void OPPROTO op_cvtsd2sq(void)
882 664e0f19 bellard
{
883 664e0f19 bellard
    XMMReg *s = (XMMReg *)((char *)env + PARAM1);
884 7a0e1f41 bellard
    T0 = float64_to_int64(s->XMM_D(0), &env->sse_status);
885 664e0f19 bellard
}
886 664e0f19 bellard
#endif
887 664e0f19 bellard
888 664e0f19 bellard
/* float to integer truncated */
889 664e0f19 bellard
void OPPROTO op_cvttps2dq(void)
890 664e0f19 bellard
{
891 664e0f19 bellard
    XMMReg *d = (XMMReg *)((char *)env + PARAM1);
892 664e0f19 bellard
    XMMReg *s = (XMMReg *)((char *)env + PARAM2);
893 7a0e1f41 bellard
    d->XMM_L(0) = float32_to_int32_round_to_zero(s->XMM_S(0), &env->sse_status);
894 7a0e1f41 bellard
    d->XMM_L(1) = float32_to_int32_round_to_zero(s->XMM_S(1), &env->sse_status);
895 7a0e1f41 bellard
    d->XMM_L(2) = float32_to_int32_round_to_zero(s->XMM_S(2), &env->sse_status);
896 7a0e1f41 bellard
    d->XMM_L(3) = float32_to_int32_round_to_zero(s->XMM_S(3), &env->sse_status);
897 664e0f19 bellard
}
898 664e0f19 bellard
899 664e0f19 bellard
void OPPROTO op_cvttpd2dq(void)
900 664e0f19 bellard
{
901 664e0f19 bellard
    XMMReg *d = (XMMReg *)((char *)env + PARAM1);
902 664e0f19 bellard
    XMMReg *s = (XMMReg *)((char *)env + PARAM2);
903 7a0e1f41 bellard
    d->XMM_L(0) = float64_to_int32_round_to_zero(s->XMM_D(0), &env->sse_status);
904 7a0e1f41 bellard
    d->XMM_L(1) = float64_to_int32_round_to_zero(s->XMM_D(1), &env->sse_status);
905 664e0f19 bellard
    d->XMM_Q(1) = 0;
906 664e0f19 bellard
}
907 664e0f19 bellard
908 664e0f19 bellard
void OPPROTO op_cvttps2pi(void)
909 664e0f19 bellard
{
910 664e0f19 bellard
    MMXReg *d = (MMXReg *)((char *)env + PARAM1);
911 664e0f19 bellard
    XMMReg *s = (XMMReg *)((char *)env + PARAM2);
912 7a0e1f41 bellard
    d->MMX_L(0) = float32_to_int32_round_to_zero(s->XMM_S(0), &env->sse_status);
913 7a0e1f41 bellard
    d->MMX_L(1) = float32_to_int32_round_to_zero(s->XMM_S(1), &env->sse_status);
914 664e0f19 bellard
}
915 664e0f19 bellard
916 664e0f19 bellard
void OPPROTO op_cvttpd2pi(void)
917 664e0f19 bellard
{
918 664e0f19 bellard
    MMXReg *d = (MMXReg *)((char *)env + PARAM1);
919 664e0f19 bellard
    XMMReg *s = (XMMReg *)((char *)env + PARAM2);
920 7a0e1f41 bellard
    d->MMX_L(0) = float64_to_int32_round_to_zero(s->XMM_D(0), &env->sse_status);
921 7a0e1f41 bellard
    d->MMX_L(1) = float64_to_int32_round_to_zero(s->XMM_D(1), &env->sse_status);
922 664e0f19 bellard
}
923 664e0f19 bellard
924 664e0f19 bellard
void OPPROTO op_cvttss2si(void)
925 664e0f19 bellard
{
926 664e0f19 bellard
    XMMReg *s = (XMMReg *)((char *)env + PARAM1);
927 7a0e1f41 bellard
    T0 = float32_to_int32_round_to_zero(s->XMM_S(0), &env->sse_status);
928 664e0f19 bellard
}
929 664e0f19 bellard
930 664e0f19 bellard
void OPPROTO op_cvttsd2si(void)
931 664e0f19 bellard
{
932 664e0f19 bellard
    XMMReg *s = (XMMReg *)((char *)env + PARAM1);
933 7a0e1f41 bellard
    T0 = float64_to_int32_round_to_zero(s->XMM_D(0), &env->sse_status);
934 664e0f19 bellard
}
935 664e0f19 bellard
936 664e0f19 bellard
#ifdef TARGET_X86_64
937 664e0f19 bellard
void OPPROTO op_cvttss2sq(void)
938 664e0f19 bellard
{
939 664e0f19 bellard
    XMMReg *s = (XMMReg *)((char *)env + PARAM1);
940 7a0e1f41 bellard
    T0 = float32_to_int64_round_to_zero(s->XMM_S(0), &env->sse_status);
941 664e0f19 bellard
}
942 664e0f19 bellard
943 664e0f19 bellard
void OPPROTO op_cvttsd2sq(void)
944 664e0f19 bellard
{
945 664e0f19 bellard
    XMMReg *s = (XMMReg *)((char *)env + PARAM1);
946 7a0e1f41 bellard
    T0 = float64_to_int64_round_to_zero(s->XMM_D(0), &env->sse_status);
947 664e0f19 bellard
}
948 664e0f19 bellard
#endif
949 664e0f19 bellard
950 664e0f19 bellard
void OPPROTO op_rsqrtps(void)
951 664e0f19 bellard
{
952 664e0f19 bellard
    XMMReg *d = (XMMReg *)((char *)env + PARAM1);
953 664e0f19 bellard
    XMMReg *s = (XMMReg *)((char *)env + PARAM2);
954 664e0f19 bellard
    d->XMM_S(0) = approx_rsqrt(s->XMM_S(0));
955 664e0f19 bellard
    d->XMM_S(1) = approx_rsqrt(s->XMM_S(1));
956 664e0f19 bellard
    d->XMM_S(2) = approx_rsqrt(s->XMM_S(2));
957 664e0f19 bellard
    d->XMM_S(3) = approx_rsqrt(s->XMM_S(3));
958 664e0f19 bellard
}
959 664e0f19 bellard
960 664e0f19 bellard
void OPPROTO op_rsqrtss(void)
961 664e0f19 bellard
{
962 664e0f19 bellard
    XMMReg *d = (XMMReg *)((char *)env + PARAM1);
963 664e0f19 bellard
    XMMReg *s = (XMMReg *)((char *)env + PARAM2);
964 664e0f19 bellard
    d->XMM_S(0) = approx_rsqrt(s->XMM_S(0));
965 664e0f19 bellard
}
966 664e0f19 bellard
967 664e0f19 bellard
void OPPROTO op_rcpps(void)
968 664e0f19 bellard
{
969 664e0f19 bellard
    XMMReg *d = (XMMReg *)((char *)env + PARAM1);
970 664e0f19 bellard
    XMMReg *s = (XMMReg *)((char *)env + PARAM2);
971 664e0f19 bellard
    d->XMM_S(0) = approx_rcp(s->XMM_S(0));
972 664e0f19 bellard
    d->XMM_S(1) = approx_rcp(s->XMM_S(1));
973 664e0f19 bellard
    d->XMM_S(2) = approx_rcp(s->XMM_S(2));
974 664e0f19 bellard
    d->XMM_S(3) = approx_rcp(s->XMM_S(3));
975 664e0f19 bellard
}
976 664e0f19 bellard
977 664e0f19 bellard
void OPPROTO op_rcpss(void)
978 664e0f19 bellard
{
979 664e0f19 bellard
    XMMReg *d = (XMMReg *)((char *)env + PARAM1);
980 664e0f19 bellard
    XMMReg *s = (XMMReg *)((char *)env + PARAM2);
981 664e0f19 bellard
    d->XMM_S(0) = approx_rcp(s->XMM_S(0));
982 664e0f19 bellard
}
983 664e0f19 bellard
984 664e0f19 bellard
void OPPROTO op_haddps(void)
985 664e0f19 bellard
{
986 664e0f19 bellard
    XMMReg *d = (XMMReg *)((char *)env + PARAM1);
987 664e0f19 bellard
    XMMReg *s = (XMMReg *)((char *)env + PARAM2);
988 664e0f19 bellard
    XMMReg r;
989 664e0f19 bellard
    r.XMM_S(0) = d->XMM_S(0) + d->XMM_S(1);
990 664e0f19 bellard
    r.XMM_S(1) = d->XMM_S(2) + d->XMM_S(3);
991 664e0f19 bellard
    r.XMM_S(2) = s->XMM_S(0) + s->XMM_S(1);
992 664e0f19 bellard
    r.XMM_S(3) = s->XMM_S(2) + s->XMM_S(3);
993 664e0f19 bellard
    *d = r;
994 664e0f19 bellard
}
995 664e0f19 bellard
996 664e0f19 bellard
void OPPROTO op_haddpd(void)
997 664e0f19 bellard
{
998 664e0f19 bellard
    XMMReg *d = (XMMReg *)((char *)env + PARAM1);
999 664e0f19 bellard
    XMMReg *s = (XMMReg *)((char *)env + PARAM2);
1000 664e0f19 bellard
    XMMReg r;
1001 664e0f19 bellard
    r.XMM_D(0) = d->XMM_D(0) + d->XMM_D(1);
1002 664e0f19 bellard
    r.XMM_D(1) = s->XMM_D(0) + s->XMM_D(1);
1003 664e0f19 bellard
    *d = r;
1004 664e0f19 bellard
}
1005 664e0f19 bellard
1006 664e0f19 bellard
void OPPROTO op_hsubps(void)
1007 664e0f19 bellard
{
1008 664e0f19 bellard
    XMMReg *d = (XMMReg *)((char *)env + PARAM1);
1009 664e0f19 bellard
    XMMReg *s = (XMMReg *)((char *)env + PARAM2);
1010 664e0f19 bellard
    XMMReg r;
1011 664e0f19 bellard
    r.XMM_S(0) = d->XMM_S(0) - d->XMM_S(1);
1012 664e0f19 bellard
    r.XMM_S(1) = d->XMM_S(2) - d->XMM_S(3);
1013 664e0f19 bellard
    r.XMM_S(2) = s->XMM_S(0) - s->XMM_S(1);
1014 664e0f19 bellard
    r.XMM_S(3) = s->XMM_S(2) - s->XMM_S(3);
1015 664e0f19 bellard
    *d = r;
1016 664e0f19 bellard
}
1017 664e0f19 bellard
1018 664e0f19 bellard
void OPPROTO op_hsubpd(void)
1019 664e0f19 bellard
{
1020 664e0f19 bellard
    XMMReg *d = (XMMReg *)((char *)env + PARAM1);
1021 664e0f19 bellard
    XMMReg *s = (XMMReg *)((char *)env + PARAM2);
1022 664e0f19 bellard
    XMMReg r;
1023 664e0f19 bellard
    r.XMM_D(0) = d->XMM_D(0) - d->XMM_D(1);
1024 664e0f19 bellard
    r.XMM_D(1) = s->XMM_D(0) - s->XMM_D(1);
1025 664e0f19 bellard
    *d = r;
1026 664e0f19 bellard
}
1027 664e0f19 bellard
1028 664e0f19 bellard
void OPPROTO op_addsubps(void)
1029 664e0f19 bellard
{
1030 664e0f19 bellard
    XMMReg *d = (XMMReg *)((char *)env + PARAM1);
1031 664e0f19 bellard
    XMMReg *s = (XMMReg *)((char *)env + PARAM2);
1032 664e0f19 bellard
    d->XMM_S(0) = d->XMM_S(0) - s->XMM_S(0);
1033 664e0f19 bellard
    d->XMM_S(1) = d->XMM_S(1) + s->XMM_S(1);
1034 664e0f19 bellard
    d->XMM_S(2) = d->XMM_S(2) - s->XMM_S(2);
1035 664e0f19 bellard
    d->XMM_S(3) = d->XMM_S(3) + s->XMM_S(3);
1036 664e0f19 bellard
}
1037 664e0f19 bellard
1038 664e0f19 bellard
void OPPROTO op_addsubpd(void)
1039 664e0f19 bellard
{
1040 664e0f19 bellard
    XMMReg *d = (XMMReg *)((char *)env + PARAM1);
1041 664e0f19 bellard
    XMMReg *s = (XMMReg *)((char *)env + PARAM2);
1042 664e0f19 bellard
    d->XMM_D(0) = d->XMM_D(0) - s->XMM_D(0);
1043 664e0f19 bellard
    d->XMM_D(1) = d->XMM_D(1) + s->XMM_D(1);
1044 664e0f19 bellard
}
1045 664e0f19 bellard
1046 664e0f19 bellard
/* XXX: unordered */
1047 664e0f19 bellard
#define SSE_OP_CMP(name, F)\
1048 664e0f19 bellard
void OPPROTO op_ ## name ## ps (void)\
1049 664e0f19 bellard
{\
1050 664e0f19 bellard
    Reg *d, *s;\
1051 664e0f19 bellard
    d = (Reg *)((char *)env + PARAM1);\
1052 664e0f19 bellard
    s = (Reg *)((char *)env + PARAM2);\
1053 8422b113 bellard
    d->XMM_L(0) = F(32, d->XMM_S(0), s->XMM_S(0));\
1054 8422b113 bellard
    d->XMM_L(1) = F(32, d->XMM_S(1), s->XMM_S(1));\
1055 8422b113 bellard
    d->XMM_L(2) = F(32, d->XMM_S(2), s->XMM_S(2));\
1056 8422b113 bellard
    d->XMM_L(3) = F(32, d->XMM_S(3), s->XMM_S(3));\
1057 664e0f19 bellard
}\
1058 664e0f19 bellard
\
1059 664e0f19 bellard
void OPPROTO op_ ## name ## ss (void)\
1060 664e0f19 bellard
{\
1061 664e0f19 bellard
    Reg *d, *s;\
1062 664e0f19 bellard
    d = (Reg *)((char *)env + PARAM1);\
1063 664e0f19 bellard
    s = (Reg *)((char *)env + PARAM2);\
1064 8422b113 bellard
    d->XMM_L(0) = F(32, d->XMM_S(0), s->XMM_S(0));\
1065 664e0f19 bellard
}\
1066 664e0f19 bellard
void OPPROTO op_ ## name ## pd (void)\
1067 664e0f19 bellard
{\
1068 664e0f19 bellard
    Reg *d, *s;\
1069 664e0f19 bellard
    d = (Reg *)((char *)env + PARAM1);\
1070 664e0f19 bellard
    s = (Reg *)((char *)env + PARAM2);\
1071 8422b113 bellard
    d->XMM_Q(0) = F(64, d->XMM_D(0), s->XMM_D(0));\
1072 8422b113 bellard
    d->XMM_Q(1) = F(64, d->XMM_D(1), s->XMM_D(1));\
1073 664e0f19 bellard
}\
1074 664e0f19 bellard
\
1075 664e0f19 bellard
void OPPROTO op_ ## name ## sd (void)\
1076 664e0f19 bellard
{\
1077 664e0f19 bellard
    Reg *d, *s;\
1078 664e0f19 bellard
    d = (Reg *)((char *)env + PARAM1);\
1079 664e0f19 bellard
    s = (Reg *)((char *)env + PARAM2);\
1080 8422b113 bellard
    d->XMM_Q(0) = F(64, d->XMM_D(0), s->XMM_D(0));\
1081 664e0f19 bellard
}
1082 664e0f19 bellard
1083 8422b113 bellard
#define FPU_CMPEQ(size, a, b) float ## size ## _eq(a, b, &env->sse_status) ? -1 : 0
1084 8422b113 bellard
#define FPU_CMPLT(size, a, b) float ## size ## _lt(a, b, &env->sse_status) ? -1 : 0
1085 8422b113 bellard
#define FPU_CMPLE(size, a, b) float ## size ## _le(a, b, &env->sse_status) ? -1 : 0
1086 8422b113 bellard
#define FPU_CMPUNORD(size, a, b) float ## size ## _unordered(a, b, &env->sse_status) ? - 1 : 0
1087 8422b113 bellard
#define FPU_CMPNEQ(size, a, b) float ## size ## _eq(a, b, &env->sse_status) ? 0 : -1
1088 8422b113 bellard
#define FPU_CMPNLT(size, a, b) float ## size ## _lt(a, b, &env->sse_status) ? 0 : -1
1089 8422b113 bellard
#define FPU_CMPNLE(size, a, b) float ## size ## _le(a, b, &env->sse_status) ? 0 : -1
1090 8422b113 bellard
#define FPU_CMPORD(size, a, b) float ## size ## _unordered(a, b, &env->sse_status) ? 0 : -1
1091 664e0f19 bellard
1092 664e0f19 bellard
SSE_OP_CMP(cmpeq, FPU_CMPEQ)
1093 664e0f19 bellard
SSE_OP_CMP(cmplt, FPU_CMPLT)
1094 664e0f19 bellard
SSE_OP_CMP(cmple, FPU_CMPLE)
1095 664e0f19 bellard
SSE_OP_CMP(cmpunord, FPU_CMPUNORD)
1096 664e0f19 bellard
SSE_OP_CMP(cmpneq, FPU_CMPNEQ)
1097 664e0f19 bellard
SSE_OP_CMP(cmpnlt, FPU_CMPNLT)
1098 664e0f19 bellard
SSE_OP_CMP(cmpnle, FPU_CMPNLE)
1099 664e0f19 bellard
SSE_OP_CMP(cmpord, FPU_CMPORD)
1100 664e0f19 bellard
1101 43fb823b bellard
const int comis_eflags[4] = {CC_C, CC_Z, 0, CC_Z | CC_P | CC_C};
1102 43fb823b bellard
1103 664e0f19 bellard
void OPPROTO op_ucomiss(void)
1104 664e0f19 bellard
{
1105 43fb823b bellard
    int ret;
1106 8422b113 bellard
    float32 s0, s1;
1107 664e0f19 bellard
    Reg *d, *s;
1108 664e0f19 bellard
    d = (Reg *)((char *)env + PARAM1);
1109 664e0f19 bellard
    s = (Reg *)((char *)env + PARAM2);
1110 664e0f19 bellard
1111 664e0f19 bellard
    s0 = d->XMM_S(0);
1112 664e0f19 bellard
    s1 = s->XMM_S(0);
1113 43fb823b bellard
    ret = float32_compare_quiet(s0, s1, &env->sse_status);
1114 43fb823b bellard
    CC_SRC = comis_eflags[ret + 1];
1115 664e0f19 bellard
    FORCE_RET();
1116 664e0f19 bellard
}
1117 664e0f19 bellard
1118 664e0f19 bellard
void OPPROTO op_comiss(void)
1119 664e0f19 bellard
{
1120 43fb823b bellard
    int ret;
1121 8422b113 bellard
    float32 s0, s1;
1122 664e0f19 bellard
    Reg *d, *s;
1123 664e0f19 bellard
    d = (Reg *)((char *)env + PARAM1);
1124 664e0f19 bellard
    s = (Reg *)((char *)env + PARAM2);
1125 664e0f19 bellard
1126 664e0f19 bellard
    s0 = d->XMM_S(0);
1127 664e0f19 bellard
    s1 = s->XMM_S(0);
1128 43fb823b bellard
    ret = float32_compare(s0, s1, &env->sse_status);
1129 43fb823b bellard
    CC_SRC = comis_eflags[ret + 1];
1130 664e0f19 bellard
    FORCE_RET();
1131 664e0f19 bellard
}
1132 664e0f19 bellard
1133 664e0f19 bellard
void OPPROTO op_ucomisd(void)
1134 664e0f19 bellard
{
1135 43fb823b bellard
    int ret;
1136 8422b113 bellard
    float64 d0, d1;
1137 664e0f19 bellard
    Reg *d, *s;
1138 664e0f19 bellard
    d = (Reg *)((char *)env + PARAM1);
1139 664e0f19 bellard
    s = (Reg *)((char *)env + PARAM2);
1140 664e0f19 bellard
1141 664e0f19 bellard
    d0 = d->XMM_D(0);
1142 664e0f19 bellard
    d1 = s->XMM_D(0);
1143 43fb823b bellard
    ret = float64_compare_quiet(d0, d1, &env->sse_status);
1144 43fb823b bellard
    CC_SRC = comis_eflags[ret + 1];
1145 664e0f19 bellard
    FORCE_RET();
1146 664e0f19 bellard
}
1147 664e0f19 bellard
1148 664e0f19 bellard
void OPPROTO op_comisd(void)
1149 664e0f19 bellard
{
1150 43fb823b bellard
    int ret;
1151 8422b113 bellard
    float64 d0, d1;
1152 664e0f19 bellard
    Reg *d, *s;
1153 664e0f19 bellard
    d = (Reg *)((char *)env + PARAM1);
1154 664e0f19 bellard
    s = (Reg *)((char *)env + PARAM2);
1155 664e0f19 bellard
1156 664e0f19 bellard
    d0 = d->XMM_D(0);
1157 664e0f19 bellard
    d1 = s->XMM_D(0);
1158 43fb823b bellard
    ret = float64_compare(d0, d1, &env->sse_status);
1159 43fb823b bellard
    CC_SRC = comis_eflags[ret + 1];
1160 664e0f19 bellard
    FORCE_RET();
1161 664e0f19 bellard
}
1162 664e0f19 bellard
1163 664e0f19 bellard
void OPPROTO op_movmskps(void)
1164 664e0f19 bellard
{
1165 664e0f19 bellard
    int b0, b1, b2, b3;
1166 664e0f19 bellard
    Reg *s;
1167 664e0f19 bellard
    s = (Reg *)((char *)env + PARAM1);
1168 664e0f19 bellard
    b0 = s->XMM_L(0) >> 31;
1169 664e0f19 bellard
    b1 = s->XMM_L(1) >> 31;
1170 664e0f19 bellard
    b2 = s->XMM_L(2) >> 31;
1171 664e0f19 bellard
    b3 = s->XMM_L(3) >> 31;
1172 664e0f19 bellard
    T0 = b0 | (b1 << 1) | (b2 << 2) | (b3 << 3);
1173 664e0f19 bellard
}
1174 664e0f19 bellard
1175 664e0f19 bellard
void OPPROTO op_movmskpd(void)
1176 664e0f19 bellard
{
1177 664e0f19 bellard
    int b0, b1;
1178 664e0f19 bellard
    Reg *s;
1179 664e0f19 bellard
    s = (Reg *)((char *)env + PARAM1);
1180 664e0f19 bellard
    b0 = s->XMM_L(1) >> 31;
1181 664e0f19 bellard
    b1 = s->XMM_L(3) >> 31;
1182 664e0f19 bellard
    T0 = b0 | (b1 << 1);
1183 664e0f19 bellard
}
1184 664e0f19 bellard
1185 664e0f19 bellard
#endif
1186 664e0f19 bellard
1187 664e0f19 bellard
void OPPROTO glue(op_pmovmskb, SUFFIX)(void)
1188 664e0f19 bellard
{
1189 664e0f19 bellard
    Reg *s;
1190 664e0f19 bellard
    s = (Reg *)((char *)env + PARAM1);
1191 664e0f19 bellard
    T0 = 0;
1192 664e0f19 bellard
    T0 |= (s->XMM_B(0) >> 7);
1193 664e0f19 bellard
    T0 |= (s->XMM_B(1) >> 6) & 0x02;
1194 664e0f19 bellard
    T0 |= (s->XMM_B(2) >> 5) & 0x04;
1195 664e0f19 bellard
    T0 |= (s->XMM_B(3) >> 4) & 0x08;
1196 664e0f19 bellard
    T0 |= (s->XMM_B(4) >> 3) & 0x10;
1197 664e0f19 bellard
    T0 |= (s->XMM_B(5) >> 2) & 0x20;
1198 664e0f19 bellard
    T0 |= (s->XMM_B(6) >> 1) & 0x40;
1199 664e0f19 bellard
    T0 |= (s->XMM_B(7)) & 0x80;
1200 664e0f19 bellard
#if SHIFT == 1
1201 664e0f19 bellard
    T0 |= (s->XMM_B(8) << 1) & 0x0100;
1202 664e0f19 bellard
    T0 |= (s->XMM_B(9) << 2) & 0x0200;
1203 664e0f19 bellard
    T0 |= (s->XMM_B(10) << 3) & 0x0400;
1204 664e0f19 bellard
    T0 |= (s->XMM_B(11) << 4) & 0x0800;
1205 664e0f19 bellard
    T0 |= (s->XMM_B(12) << 5) & 0x1000;
1206 664e0f19 bellard
    T0 |= (s->XMM_B(13) << 6) & 0x2000;
1207 664e0f19 bellard
    T0 |= (s->XMM_B(14) << 7) & 0x4000;
1208 664e0f19 bellard
    T0 |= (s->XMM_B(15) << 8) & 0x8000;
1209 664e0f19 bellard
#endif
1210 664e0f19 bellard
}
1211 664e0f19 bellard
1212 664e0f19 bellard
void OPPROTO glue(op_pinsrw, SUFFIX) (void)
1213 664e0f19 bellard
{
1214 664e0f19 bellard
    Reg *d = (Reg *)((char *)env + PARAM1);
1215 664e0f19 bellard
    int pos = PARAM2;
1216 5fafdf24 ths
   
1217 664e0f19 bellard
    d->W(pos) = T0;
1218 664e0f19 bellard
}
1219 664e0f19 bellard
1220 664e0f19 bellard
void OPPROTO glue(op_pextrw, SUFFIX) (void)
1221 664e0f19 bellard
{
1222 664e0f19 bellard
    Reg *s = (Reg *)((char *)env + PARAM1);
1223 664e0f19 bellard
    int pos = PARAM2;
1224 5fafdf24 ths
   
1225 664e0f19 bellard
    T0 = s->W(pos);
1226 664e0f19 bellard
}
1227 664e0f19 bellard
1228 664e0f19 bellard
void OPPROTO glue(op_packsswb, SUFFIX) (void)
1229 664e0f19 bellard
{
1230 664e0f19 bellard
    Reg r, *d, *s;
1231 664e0f19 bellard
    d = (Reg *)((char *)env + PARAM1);
1232 664e0f19 bellard
    s = (Reg *)((char *)env + PARAM2);
1233 664e0f19 bellard
1234 664e0f19 bellard
    r.B(0) = satsb((int16_t)d->W(0));
1235 664e0f19 bellard
    r.B(1) = satsb((int16_t)d->W(1));
1236 664e0f19 bellard
    r.B(2) = satsb((int16_t)d->W(2));
1237 664e0f19 bellard
    r.B(3) = satsb((int16_t)d->W(3));
1238 664e0f19 bellard
#if SHIFT == 1
1239 664e0f19 bellard
    r.B(4) = satsb((int16_t)d->W(4));
1240 664e0f19 bellard
    r.B(5) = satsb((int16_t)d->W(5));
1241 664e0f19 bellard
    r.B(6) = satsb((int16_t)d->W(6));
1242 664e0f19 bellard
    r.B(7) = satsb((int16_t)d->W(7));
1243 664e0f19 bellard
#endif
1244 664e0f19 bellard
    r.B((4 << SHIFT) + 0) = satsb((int16_t)s->W(0));
1245 664e0f19 bellard
    r.B((4 << SHIFT) + 1) = satsb((int16_t)s->W(1));
1246 664e0f19 bellard
    r.B((4 << SHIFT) + 2) = satsb((int16_t)s->W(2));
1247 664e0f19 bellard
    r.B((4 << SHIFT) + 3) = satsb((int16_t)s->W(3));
1248 664e0f19 bellard
#if SHIFT == 1
1249 664e0f19 bellard
    r.B(12) = satsb((int16_t)s->W(4));
1250 664e0f19 bellard
    r.B(13) = satsb((int16_t)s->W(5));
1251 664e0f19 bellard
    r.B(14) = satsb((int16_t)s->W(6));
1252 664e0f19 bellard
    r.B(15) = satsb((int16_t)s->W(7));
1253 664e0f19 bellard
#endif
1254 664e0f19 bellard
    *d = r;
1255 664e0f19 bellard
}
1256 664e0f19 bellard
1257 664e0f19 bellard
void OPPROTO glue(op_packuswb, SUFFIX) (void)
1258 664e0f19 bellard
{
1259 664e0f19 bellard
    Reg r, *d, *s;
1260 664e0f19 bellard
    d = (Reg *)((char *)env + PARAM1);
1261 664e0f19 bellard
    s = (Reg *)((char *)env + PARAM2);
1262 664e0f19 bellard
1263 664e0f19 bellard
    r.B(0) = satub((int16_t)d->W(0));
1264 664e0f19 bellard
    r.B(1) = satub((int16_t)d->W(1));
1265 664e0f19 bellard
    r.B(2) = satub((int16_t)d->W(2));
1266 664e0f19 bellard
    r.B(3) = satub((int16_t)d->W(3));
1267 664e0f19 bellard
#if SHIFT == 1
1268 664e0f19 bellard
    r.B(4) = satub((int16_t)d->W(4));
1269 664e0f19 bellard
    r.B(5) = satub((int16_t)d->W(5));
1270 664e0f19 bellard
    r.B(6) = satub((int16_t)d->W(6));
1271 664e0f19 bellard
    r.B(7) = satub((int16_t)d->W(7));
1272 664e0f19 bellard
#endif
1273 664e0f19 bellard
    r.B((4 << SHIFT) + 0) = satub((int16_t)s->W(0));
1274 664e0f19 bellard
    r.B((4 << SHIFT) + 1) = satub((int16_t)s->W(1));
1275 664e0f19 bellard
    r.B((4 << SHIFT) + 2) = satub((int16_t)s->W(2));
1276 664e0f19 bellard
    r.B((4 << SHIFT) + 3) = satub((int16_t)s->W(3));
1277 664e0f19 bellard
#if SHIFT == 1
1278 664e0f19 bellard
    r.B(12) = satub((int16_t)s->W(4));
1279 664e0f19 bellard
    r.B(13) = satub((int16_t)s->W(5));
1280 664e0f19 bellard
    r.B(14) = satub((int16_t)s->W(6));
1281 664e0f19 bellard
    r.B(15) = satub((int16_t)s->W(7));
1282 664e0f19 bellard
#endif
1283 664e0f19 bellard
    *d = r;
1284 664e0f19 bellard
}
1285 664e0f19 bellard
1286 664e0f19 bellard
void OPPROTO glue(op_packssdw, SUFFIX) (void)
1287 664e0f19 bellard
{
1288 664e0f19 bellard
    Reg r, *d, *s;
1289 664e0f19 bellard
    d = (Reg *)((char *)env + PARAM1);
1290 664e0f19 bellard
    s = (Reg *)((char *)env + PARAM2);
1291 664e0f19 bellard
1292 664e0f19 bellard
    r.W(0) = satsw(d->L(0));
1293 664e0f19 bellard
    r.W(1) = satsw(d->L(1));
1294 664e0f19 bellard
#if SHIFT == 1
1295 664e0f19 bellard
    r.W(2) = satsw(d->L(2));
1296 664e0f19 bellard
    r.W(3) = satsw(d->L(3));
1297 664e0f19 bellard
#endif
1298 664e0f19 bellard
    r.W((2 << SHIFT) + 0) = satsw(s->L(0));
1299 664e0f19 bellard
    r.W((2 << SHIFT) + 1) = satsw(s->L(1));
1300 664e0f19 bellard
#if SHIFT == 1
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    r.W(6) = satsw(s->L(2));
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    r.W(7) = satsw(s->L(3));
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#endif
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    *d = r;
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}
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#define UNPCK_OP(base_name, base)                               \
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                                                                \
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void OPPROTO glue(op_punpck ## base_name ## bw, SUFFIX) (void)   \
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{                                                               \
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    Reg r, *d, *s;                                              \
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    d = (Reg *)((char *)env + PARAM1);                          \
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    s = (Reg *)((char *)env + PARAM2);                          \
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                                                                \
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    r.B(0) = d->B((base << (SHIFT + 2)) + 0);                   \
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    r.B(1) = s->B((base << (SHIFT + 2)) + 0);                   \
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    r.B(2) = d->B((base << (SHIFT + 2)) + 1);                   \
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    r.B(3) = s->B((base << (SHIFT + 2)) + 1);                   \
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    r.B(4) = d->B((base << (SHIFT + 2)) + 2);                   \
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    r.B(5) = s->B((base << (SHIFT + 2)) + 2);                   \
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    r.B(6) = d->B((base << (SHIFT + 2)) + 3);                   \
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    r.B(7) = s->B((base << (SHIFT + 2)) + 3);                   \
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XMM_ONLY(                                                       \
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    r.B(8) = d->B((base << (SHIFT + 2)) + 4);                   \
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    r.B(9) = s->B((base << (SHIFT + 2)) + 4);                   \
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    r.B(10) = d->B((base << (SHIFT + 2)) + 5);                  \
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    r.B(11) = s->B((base << (SHIFT + 2)) + 5);                  \
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    r.B(12) = d->B((base << (SHIFT + 2)) + 6);                  \
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    r.B(13) = s->B((base << (SHIFT + 2)) + 6);                  \
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    r.B(14) = d->B((base << (SHIFT + 2)) + 7);                  \
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    r.B(15) = s->B((base << (SHIFT + 2)) + 7);                  \
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)                                                               \
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    *d = r;                                                     \
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}                                                               \
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                                                                \
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void OPPROTO glue(op_punpck ## base_name ## wd, SUFFIX) (void)   \
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{                                                               \
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    Reg r, *d, *s;                                              \
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    d = (Reg *)((char *)env + PARAM1);                          \
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    s = (Reg *)((char *)env + PARAM2);                          \
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                                                                \
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    r.W(0) = d->W((base << (SHIFT + 1)) + 0);                   \
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    r.W(1) = s->W((base << (SHIFT + 1)) + 0);                   \
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    r.W(2) = d->W((base << (SHIFT + 1)) + 1);                   \
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    r.W(3) = s->W((base << (SHIFT + 1)) + 1);                   \
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XMM_ONLY(                                                       \
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    r.W(4) = d->W((base << (SHIFT + 1)) + 2);                   \
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    r.W(5) = s->W((base << (SHIFT + 1)) + 2);                   \
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    r.W(6) = d->W((base << (SHIFT + 1)) + 3);                   \
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    r.W(7) = s->W((base << (SHIFT + 1)) + 3);                   \
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)                                                               \
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    *d = r;                                                     \
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}                                                               \
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                                                                \
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void OPPROTO glue(op_punpck ## base_name ## dq, SUFFIX) (void)   \
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{                                                               \
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    Reg r, *d, *s;                                              \
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    d = (Reg *)((char *)env + PARAM1);                          \
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    s = (Reg *)((char *)env + PARAM2);                          \
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                                                                \
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    r.L(0) = d->L((base << SHIFT) + 0);                         \
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    r.L(1) = s->L((base << SHIFT) + 0);                         \
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XMM_ONLY(                                                       \
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    r.L(2) = d->L((base << SHIFT) + 1);                         \
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    r.L(3) = s->L((base << SHIFT) + 1);                         \
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)                                                               \
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    *d = r;                                                     \
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}                                                               \
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                                                                \
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XMM_ONLY(                                                       \
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void OPPROTO glue(op_punpck ## base_name ## qdq, SUFFIX) (void)  \
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{                                                               \
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    Reg r, *d, *s;                                              \
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    d = (Reg *)((char *)env + PARAM1);                          \
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    s = (Reg *)((char *)env + PARAM2);                          \
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                                                                \
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    r.Q(0) = d->Q(base);                                        \
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    r.Q(1) = s->Q(base);                                        \
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    *d = r;                                                     \
1380 664e0f19 bellard
}                                                               \
1381 664e0f19 bellard
)
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1383 664e0f19 bellard
UNPCK_OP(l, 0)
1384 664e0f19 bellard
UNPCK_OP(h, 1)
1385 664e0f19 bellard
1386 664e0f19 bellard
#undef SHIFT
1387 664e0f19 bellard
#undef XMM_ONLY
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#undef Reg
1389 664e0f19 bellard
#undef B
1390 664e0f19 bellard
#undef W
1391 664e0f19 bellard
#undef L
1392 664e0f19 bellard
#undef Q
1393 664e0f19 bellard
#undef SUFFIX