xtensa: support DMA buffers in high memory
[cris-mirror.git] / arch / mips / math-emu / dp_mul.c
blobc34a6cdf1b253b59050a9a64c5e736bd1c491c4f
1 /* IEEE754 floating point arithmetic
2 * double precision: common utilities
3 */
4 /*
5 * MIPS floating point support
6 * Copyright (C) 1994-2000 Algorithmics Ltd.
8 * This program is free software; you can distribute it and/or modify it
9 * under the terms of the GNU General Public License (Version 2) as
10 * published by the Free Software Foundation.
12 * This program is distributed in the hope it will be useful, but WITHOUT
13 * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
14 * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
15 * for more details.
17 * You should have received a copy of the GNU General Public License along
18 * with this program; if not, write to the Free Software Foundation, Inc.,
19 * 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA.
22 #include "ieee754dp.h"
24 union ieee754dp ieee754dp_mul(union ieee754dp x, union ieee754dp y)
26 int re;
27 int rs;
28 u64 rm;
29 unsigned int lxm;
30 unsigned int hxm;
31 unsigned int lym;
32 unsigned int hym;
33 u64 lrm;
34 u64 hrm;
35 u64 t;
36 u64 at;
38 COMPXDP;
39 COMPYDP;
41 EXPLODEXDP;
42 EXPLODEYDP;
44 ieee754_clearcx();
46 FLUSHXDP;
47 FLUSHYDP;
49 switch (CLPAIR(xc, yc)) {
50 case CLPAIR(IEEE754_CLASS_QNAN, IEEE754_CLASS_SNAN):
51 case CLPAIR(IEEE754_CLASS_ZERO, IEEE754_CLASS_SNAN):
52 case CLPAIR(IEEE754_CLASS_NORM, IEEE754_CLASS_SNAN):
53 case CLPAIR(IEEE754_CLASS_DNORM, IEEE754_CLASS_SNAN):
54 case CLPAIR(IEEE754_CLASS_INF, IEEE754_CLASS_SNAN):
55 return ieee754dp_nanxcpt(y);
57 case CLPAIR(IEEE754_CLASS_SNAN, IEEE754_CLASS_SNAN):
58 case CLPAIR(IEEE754_CLASS_SNAN, IEEE754_CLASS_QNAN):
59 case CLPAIR(IEEE754_CLASS_SNAN, IEEE754_CLASS_ZERO):
60 case CLPAIR(IEEE754_CLASS_SNAN, IEEE754_CLASS_NORM):
61 case CLPAIR(IEEE754_CLASS_SNAN, IEEE754_CLASS_DNORM):
62 case CLPAIR(IEEE754_CLASS_SNAN, IEEE754_CLASS_INF):
63 return ieee754dp_nanxcpt(x);
65 case CLPAIR(IEEE754_CLASS_ZERO, IEEE754_CLASS_QNAN):
66 case CLPAIR(IEEE754_CLASS_NORM, IEEE754_CLASS_QNAN):
67 case CLPAIR(IEEE754_CLASS_DNORM, IEEE754_CLASS_QNAN):
68 case CLPAIR(IEEE754_CLASS_INF, IEEE754_CLASS_QNAN):
69 return y;
71 case CLPAIR(IEEE754_CLASS_QNAN, IEEE754_CLASS_QNAN):
72 case CLPAIR(IEEE754_CLASS_QNAN, IEEE754_CLASS_ZERO):
73 case CLPAIR(IEEE754_CLASS_QNAN, IEEE754_CLASS_NORM):
74 case CLPAIR(IEEE754_CLASS_QNAN, IEEE754_CLASS_DNORM):
75 case CLPAIR(IEEE754_CLASS_QNAN, IEEE754_CLASS_INF):
76 return x;
80 * Infinity handling
82 case CLPAIR(IEEE754_CLASS_INF, IEEE754_CLASS_ZERO):
83 case CLPAIR(IEEE754_CLASS_ZERO, IEEE754_CLASS_INF):
84 ieee754_setcx(IEEE754_INVALID_OPERATION);
85 return ieee754dp_indef();
87 case CLPAIR(IEEE754_CLASS_NORM, IEEE754_CLASS_INF):
88 case CLPAIR(IEEE754_CLASS_DNORM, IEEE754_CLASS_INF):
89 case CLPAIR(IEEE754_CLASS_INF, IEEE754_CLASS_NORM):
90 case CLPAIR(IEEE754_CLASS_INF, IEEE754_CLASS_DNORM):
91 case CLPAIR(IEEE754_CLASS_INF, IEEE754_CLASS_INF):
92 return ieee754dp_inf(xs ^ ys);
94 case CLPAIR(IEEE754_CLASS_ZERO, IEEE754_CLASS_ZERO):
95 case CLPAIR(IEEE754_CLASS_ZERO, IEEE754_CLASS_NORM):
96 case CLPAIR(IEEE754_CLASS_ZERO, IEEE754_CLASS_DNORM):
97 case CLPAIR(IEEE754_CLASS_NORM, IEEE754_CLASS_ZERO):
98 case CLPAIR(IEEE754_CLASS_DNORM, IEEE754_CLASS_ZERO):
99 return ieee754dp_zero(xs ^ ys);
102 case CLPAIR(IEEE754_CLASS_DNORM, IEEE754_CLASS_DNORM):
103 DPDNORMX;
104 /* fall through */
106 case CLPAIR(IEEE754_CLASS_NORM, IEEE754_CLASS_DNORM):
107 DPDNORMY;
108 break;
110 case CLPAIR(IEEE754_CLASS_DNORM, IEEE754_CLASS_NORM):
111 DPDNORMX;
112 break;
114 case CLPAIR(IEEE754_CLASS_NORM, IEEE754_CLASS_NORM):
115 break;
117 /* rm = xm * ym, re = xe+ye basically */
118 assert(xm & DP_HIDDEN_BIT);
119 assert(ym & DP_HIDDEN_BIT);
121 re = xe + ye;
122 rs = xs ^ ys;
124 /* shunt to top of word */
125 xm <<= 64 - (DP_FBITS + 1);
126 ym <<= 64 - (DP_FBITS + 1);
129 * Multiply 64 bits xm, ym to give high 64 bits rm with stickness.
132 lxm = xm;
133 hxm = xm >> 32;
134 lym = ym;
135 hym = ym >> 32;
137 lrm = DPXMULT(lxm, lym);
138 hrm = DPXMULT(hxm, hym);
140 t = DPXMULT(lxm, hym);
142 at = lrm + (t << 32);
143 hrm += at < lrm;
144 lrm = at;
146 hrm = hrm + (t >> 32);
148 t = DPXMULT(hxm, lym);
150 at = lrm + (t << 32);
151 hrm += at < lrm;
152 lrm = at;
154 hrm = hrm + (t >> 32);
156 rm = hrm | (lrm != 0);
159 * Sticky shift down to normal rounding precision.
161 if ((s64) rm < 0) {
162 rm = (rm >> (64 - (DP_FBITS + 1 + 3))) |
163 ((rm << (DP_FBITS + 1 + 3)) != 0);
164 re++;
165 } else {
166 rm = (rm >> (64 - (DP_FBITS + 1 + 3 + 1))) |
167 ((rm << (DP_FBITS + 1 + 3 + 1)) != 0);
169 assert(rm & (DP_HIDDEN_BIT << 3));
171 return ieee754dp_format(rs, re, rm);