1 /* IEEE754 floating point arithmetic
2 * double precision: common utilities
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
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 <linux/compiler.h>
24 #include "ieee754dp.h"
26 int ieee754dp_class(union ieee754dp x
)
33 static inline int ieee754dp_isnan(union ieee754dp x
)
35 return ieee754_class_nan(ieee754dp_class(x
));
38 static inline int ieee754dp_issnan(union ieee754dp x
)
42 assert(ieee754dp_isnan(x
));
43 qbit
= (DPMANT(x
) & DP_MBIT(DP_FBITS
- 1)) == DP_MBIT(DP_FBITS
- 1);
44 return ieee754_csr
.nan2008
^ qbit
;
49 * Raise the Invalid Operation IEEE 754 exception
50 * and convert the signaling NaN supplied to a quiet NaN.
52 union ieee754dp __cold
ieee754dp_nanxcpt(union ieee754dp r
)
54 assert(ieee754dp_issnan(r
));
56 ieee754_setcx(IEEE754_INVALID_OPERATION
);
57 if (ieee754_csr
.nan2008
) {
58 DPMANT(r
) |= DP_MBIT(DP_FBITS
- 1);
60 DPMANT(r
) &= ~DP_MBIT(DP_FBITS
- 1);
61 if (!ieee754dp_isnan(r
))
62 DPMANT(r
) |= DP_MBIT(DP_FBITS
- 2);
68 static u64
ieee754dp_get_rounding(int sn
, u64 xm
)
70 /* inexact must round of 3 bits
72 if (xm
& (DP_MBIT(3) - 1)) {
73 switch (ieee754_csr
.rm
) {
77 xm
+= 0x3 + ((xm
>> 3) & 1);
78 /* xm += (xm&0x8)?0x4:0x3 */
80 case FPU_CSR_RU
: /* toward +Infinity */
84 case FPU_CSR_RD
: /* toward -Infinity */
94 /* generate a normal/denormal number with over,under handling
96 * xe is an unbiased exponent
97 * xm is 3bit extended precision value.
99 union ieee754dp
ieee754dp_format(int sn
, int xe
, u64 xm
)
101 assert(xm
); /* we don't gen exact zeros (probably should) */
103 assert((xm
>> (DP_FBITS
+ 1 + 3)) == 0); /* no excess */
104 assert(xm
& (DP_HIDDEN_BIT
<< 3));
107 /* strip lower bits */
108 int es
= DP_EMIN
- xe
;
110 if (ieee754_csr
.nod
) {
111 ieee754_setcx(IEEE754_UNDERFLOW
);
112 ieee754_setcx(IEEE754_INEXACT
);
114 switch(ieee754_csr
.rm
) {
117 return ieee754dp_zero(sn
);
118 case FPU_CSR_RU
: /* toward +Infinity */
120 return ieee754dp_min(0);
122 return ieee754dp_zero(1);
123 case FPU_CSR_RD
: /* toward -Infinity */
125 return ieee754dp_zero(0);
127 return ieee754dp_min(1);
131 if (xe
== DP_EMIN
- 1 &&
132 ieee754dp_get_rounding(sn
, xm
) >> (DP_FBITS
+ 1 + 3))
134 /* Not tiny after rounding */
135 ieee754_setcx(IEEE754_INEXACT
);
136 xm
= ieee754dp_get_rounding(sn
, xm
);
139 xm
&= ~(DP_MBIT(3) - 1);
143 /* sticky right shift es bits
147 assert((xm
& (DP_HIDDEN_BIT
<< 3)) == 0);
148 assert(xe
== DP_EMIN
);
151 if (xm
& (DP_MBIT(3) - 1)) {
152 ieee754_setcx(IEEE754_INEXACT
);
153 if ((xm
& (DP_HIDDEN_BIT
<< 3)) == 0) {
154 ieee754_setcx(IEEE754_UNDERFLOW
);
157 /* inexact must round of 3 bits
159 xm
= ieee754dp_get_rounding(sn
, xm
);
160 /* adjust exponent for rounding add overflowing
162 if (xm
>> (DP_FBITS
+ 3 + 1)) {
163 /* add causes mantissa overflow */
171 assert((xm
>> (DP_FBITS
+ 1)) == 0); /* no excess */
172 assert(xe
>= DP_EMIN
);
175 ieee754_setcx(IEEE754_OVERFLOW
);
176 ieee754_setcx(IEEE754_INEXACT
);
177 /* -O can be table indexed by (rm,sn) */
178 switch (ieee754_csr
.rm
) {
180 return ieee754dp_inf(sn
);
182 return ieee754dp_max(sn
);
183 case FPU_CSR_RU
: /* toward +Infinity */
185 return ieee754dp_inf(0);
187 return ieee754dp_max(1);
188 case FPU_CSR_RD
: /* toward -Infinity */
190 return ieee754dp_max(0);
192 return ieee754dp_inf(1);
195 /* gen norm/denorm/zero */
197 if ((xm
& DP_HIDDEN_BIT
) == 0) {
198 /* we underflow (tiny/zero) */
199 assert(xe
== DP_EMIN
);
200 if (ieee754_csr
.mx
& IEEE754_UNDERFLOW
)
201 ieee754_setcx(IEEE754_UNDERFLOW
);
202 return builddp(sn
, DP_EMIN
- 1 + DP_EBIAS
, xm
);
204 assert((xm
>> (DP_FBITS
+ 1)) == 0); /* no excess */
205 assert(xm
& DP_HIDDEN_BIT
);
207 return builddp(sn
, xe
+ DP_EBIAS
, xm
& ~DP_HIDDEN_BIT
);