strtodI.c revision 1.2 1 1.2 christos /* $NetBSD: strtodI.c,v 1.2 2008/03/21 23:13:48 christos Exp $ */
2 1.1 kleink
3 1.1 kleink /****************************************************************
4 1.1 kleink
5 1.1 kleink The author of this software is David M. Gay.
6 1.1 kleink
7 1.1 kleink Copyright (C) 1998, 2000 by Lucent Technologies
8 1.1 kleink All Rights Reserved
9 1.1 kleink
10 1.1 kleink Permission to use, copy, modify, and distribute this software and
11 1.1 kleink its documentation for any purpose and without fee is hereby
12 1.1 kleink granted, provided that the above copyright notice appear in all
13 1.1 kleink copies and that both that the copyright notice and this
14 1.1 kleink permission notice and warranty disclaimer appear in supporting
15 1.1 kleink documentation, and that the name of Lucent or any of its entities
16 1.1 kleink not be used in advertising or publicity pertaining to
17 1.1 kleink distribution of the software without specific, written prior
18 1.1 kleink permission.
19 1.1 kleink
20 1.1 kleink LUCENT DISCLAIMS ALL WARRANTIES WITH REGARD TO THIS SOFTWARE,
21 1.1 kleink INCLUDING ALL IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS.
22 1.1 kleink IN NO EVENT SHALL LUCENT OR ANY OF ITS ENTITIES BE LIABLE FOR ANY
23 1.1 kleink SPECIAL, INDIRECT OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES
24 1.1 kleink WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER
25 1.1 kleink IN AN ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION,
26 1.1 kleink ARISING OUT OF OR IN CONNECTION WITH THE USE OR PERFORMANCE OF
27 1.1 kleink THIS SOFTWARE.
28 1.1 kleink
29 1.1 kleink ****************************************************************/
30 1.1 kleink
31 1.1 kleink /* Please send bug reports to David M. Gay (dmg at acm dot org,
32 1.1 kleink * with " at " changed at "@" and " dot " changed to "."). */
33 1.1 kleink
34 1.1 kleink #include "gdtoaimp.h"
35 1.1 kleink
36 1.1 kleink static double
37 1.1 kleink #ifdef KR_headers
38 1.1 kleink ulpdown(d) double *d;
39 1.1 kleink #else
40 1.1 kleink ulpdown(double *d)
41 1.1 kleink #endif
42 1.1 kleink {
43 1.1 kleink double u;
44 1.1 kleink ULong *L = (ULong*)d;
45 1.1 kleink
46 1.1 kleink u = ulp(*d);
47 1.1 kleink if (!(L[_1] | L[_0] & 0xfffff)
48 1.1 kleink && (L[_0] & 0x7ff00000) > 0x00100000)
49 1.1 kleink u *= 0.5;
50 1.1 kleink return u;
51 1.1 kleink }
52 1.1 kleink
53 1.1 kleink int
54 1.1 kleink #ifdef KR_headers
55 1.1 kleink strtodI(s, sp, dd) CONST char *s; char **sp; double *dd;
56 1.1 kleink #else
57 1.1 kleink strtodI(CONST char *s, char **sp, double *dd)
58 1.1 kleink #endif
59 1.1 kleink {
60 1.1 kleink static FPI fpi = { 53, 1-1023-53+1, 2046-1023-53+1, 1, SI };
61 1.1 kleink ULong bits[2], sign;
62 1.1 kleink Long exp;
63 1.1 kleink int j, k;
64 1.1 kleink typedef union {
65 1.1 kleink double d[2];
66 1.1 kleink ULong L[4];
67 1.1 kleink } U;
68 1.1 kleink U *u;
69 1.1 kleink
70 1.1 kleink k = strtodg(s, sp, &fpi, &exp, bits);
71 1.2 christos if (k == STRTOG_NoMemory)
72 1.2 christos return k;
73 1.1 kleink u = (U*)dd;
74 1.1 kleink sign = k & STRTOG_Neg ? 0x80000000L : 0;
75 1.1 kleink switch(k & STRTOG_Retmask) {
76 1.1 kleink case STRTOG_NoNumber:
77 1.1 kleink u->d[0] = u->d[1] = 0.;
78 1.1 kleink break;
79 1.1 kleink
80 1.1 kleink case STRTOG_Zero:
81 1.1 kleink u->d[0] = u->d[1] = 0.;
82 1.1 kleink #ifdef Sudden_Underflow
83 1.1 kleink if (k & STRTOG_Inexact) {
84 1.1 kleink if (sign)
85 1.1 kleink u->L[_0] = 0x80100000L;
86 1.1 kleink else
87 1.1 kleink u->L[2+_0] = 0x100000L;
88 1.1 kleink }
89 1.1 kleink break;
90 1.1 kleink #else
91 1.1 kleink goto contain;
92 1.1 kleink #endif
93 1.1 kleink
94 1.1 kleink case STRTOG_Denormal:
95 1.1 kleink u->L[_1] = bits[0];
96 1.1 kleink u->L[_0] = bits[1];
97 1.1 kleink goto contain;
98 1.1 kleink
99 1.1 kleink case STRTOG_Normal:
100 1.1 kleink u->L[_1] = bits[0];
101 1.1 kleink u->L[_0] = (bits[1] & ~0x100000) | ((exp + 0x3ff + 52) << 20);
102 1.1 kleink contain:
103 1.1 kleink j = k & STRTOG_Inexact;
104 1.1 kleink if (sign) {
105 1.1 kleink u->L[_0] |= sign;
106 1.1 kleink j = STRTOG_Inexact - j;
107 1.1 kleink }
108 1.1 kleink switch(j) {
109 1.1 kleink case STRTOG_Inexlo:
110 1.1 kleink #ifdef Sudden_Underflow
111 1.1 kleink if ((u->L[_0] & 0x7ff00000) < 0x3500000) {
112 1.1 kleink u->L[2+_0] = u->L[_0] + 0x3500000;
113 1.1 kleink u->L[2+_1] = u->L[_1];
114 1.1 kleink u->d[1] += ulp(u->d[1]);
115 1.1 kleink u->L[2+_0] -= 0x3500000;
116 1.1 kleink if (!(u->L[2+_0] & 0x7ff00000)) {
117 1.1 kleink u->L[2+_0] = sign;
118 1.1 kleink u->L[2+_1] = 0;
119 1.1 kleink }
120 1.1 kleink }
121 1.1 kleink else
122 1.1 kleink #endif
123 1.1 kleink u->d[1] = u->d[0] + ulp(u->d[0]);
124 1.1 kleink break;
125 1.1 kleink case STRTOG_Inexhi:
126 1.1 kleink u->d[1] = u->d[0];
127 1.1 kleink #ifdef Sudden_Underflow
128 1.1 kleink if ((u->L[_0] & 0x7ff00000) < 0x3500000) {
129 1.1 kleink u->L[_0] += 0x3500000;
130 1.1 kleink u->d[0] -= ulpdown(u->d);
131 1.1 kleink u->L[_0] -= 0x3500000;
132 1.1 kleink if (!(u->L[_0] & 0x7ff00000)) {
133 1.1 kleink u->L[_0] = sign;
134 1.1 kleink u->L[_1] = 0;
135 1.1 kleink }
136 1.1 kleink }
137 1.1 kleink else
138 1.1 kleink #endif
139 1.1 kleink u->d[0] -= ulpdown(u->d);
140 1.1 kleink break;
141 1.1 kleink default:
142 1.1 kleink u->d[1] = u->d[0];
143 1.1 kleink }
144 1.1 kleink break;
145 1.1 kleink
146 1.1 kleink case STRTOG_Infinite:
147 1.1 kleink u->L[_0] = u->L[2+_0] = sign | 0x7ff00000;
148 1.1 kleink u->L[_1] = u->L[2+_1] = 0;
149 1.1 kleink if (k & STRTOG_Inexact) {
150 1.1 kleink if (sign) {
151 1.1 kleink u->L[2+_0] = 0xffefffffL;
152 1.1 kleink u->L[2+_1] = 0xffffffffL;
153 1.1 kleink }
154 1.1 kleink else {
155 1.1 kleink u->L[_0] = 0x7fefffffL;
156 1.1 kleink u->L[_1] = 0xffffffffL;
157 1.1 kleink }
158 1.1 kleink }
159 1.1 kleink break;
160 1.1 kleink
161 1.1 kleink case STRTOG_NaN:
162 1.1 kleink u->L[0] = u->L[2] = d_QNAN0;
163 1.1 kleink u->L[1] = u->L[3] = d_QNAN1;
164 1.1 kleink break;
165 1.1 kleink
166 1.1 kleink case STRTOG_NaNbits:
167 1.1 kleink u->L[_0] = u->L[2+_0] = 0x7ff00000 | sign | bits[1];
168 1.1 kleink u->L[_1] = u->L[2+_1] = bits[0];
169 1.1 kleink }
170 1.1 kleink return k;
171 1.1 kleink }
172