fcnvff.c revision 1.2 1 1.2 lukem /* $NetBSD: fcnvff.c,v 1.2 2003/07/15 02:29:42 lukem Exp $ */
2 1.1 fredette
3 1.1 fredette /* $OpenBSD: fcnvff.c,v 1.5 2001/03/29 03:58:18 mickey Exp $ */
4 1.1 fredette
5 1.1 fredette /*
6 1.1 fredette * Copyright 1996 1995 by Open Software Foundation, Inc.
7 1.1 fredette * All Rights Reserved
8 1.1 fredette *
9 1.1 fredette * Permission to use, copy, modify, and distribute this software and
10 1.1 fredette * its documentation for any purpose and without fee is hereby granted,
11 1.1 fredette * provided that the above copyright notice appears in all copies and
12 1.1 fredette * that both the copyright notice and this permission notice appear in
13 1.1 fredette * supporting documentation.
14 1.1 fredette *
15 1.1 fredette * OSF DISCLAIMS ALL WARRANTIES WITH REGARD TO THIS SOFTWARE
16 1.1 fredette * INCLUDING ALL IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS
17 1.1 fredette * FOR A PARTICULAR PURPOSE.
18 1.1 fredette *
19 1.1 fredette * IN NO EVENT SHALL OSF BE LIABLE FOR ANY SPECIAL, INDIRECT, OR
20 1.1 fredette * CONSEQUENTIAL DAMAGES OR ANY DAMAGES WHATSOEVER RESULTING FROM
21 1.1 fredette * LOSS OF USE, DATA OR PROFITS, WHETHER IN ACTION OF CONTRACT,
22 1.1 fredette * NEGLIGENCE, OR OTHER TORTIOUS ACTION, ARISING OUT OF OR IN CONNECTION
23 1.1 fredette * WITH THE USE OR PERFORMANCE OF THIS SOFTWARE.
24 1.1 fredette *
25 1.1 fredette */
26 1.1 fredette /*
27 1.1 fredette * pmk1.1
28 1.1 fredette */
29 1.1 fredette /*
30 1.1 fredette * (c) Copyright 1986 HEWLETT-PACKARD COMPANY
31 1.1 fredette *
32 1.1 fredette * To anyone who acknowledges that this file is provided "AS IS"
33 1.1 fredette * without any express or implied warranty:
34 1.1 fredette * permission to use, copy, modify, and distribute this file
35 1.1 fredette * for any purpose is hereby granted without fee, provided that
36 1.1 fredette * the above copyright notice and this notice appears in all
37 1.1 fredette * copies, and that the name of Hewlett-Packard Company not be
38 1.1 fredette * used in advertising or publicity pertaining to distribution
39 1.1 fredette * of the software without specific, written prior permission.
40 1.1 fredette * Hewlett-Packard Company makes no representations about the
41 1.1 fredette * suitability of this software for any purpose.
42 1.1 fredette */
43 1.2 lukem
44 1.2 lukem #include <sys/cdefs.h>
45 1.2 lukem __KERNEL_RCSID(0, "$NetBSD: fcnvff.c,v 1.2 2003/07/15 02:29:42 lukem Exp $");
46 1.1 fredette
47 1.1 fredette #include "../spmath/float.h"
48 1.1 fredette #include "../spmath/sgl_float.h"
49 1.1 fredette #include "../spmath/dbl_float.h"
50 1.1 fredette #include "../spmath/cnv_float.h"
51 1.1 fredette
52 1.1 fredette /*
53 1.1 fredette * Single Floating-point to Double Floating-point
54 1.1 fredette */
55 1.1 fredette /*ARGSUSED*/
56 1.1 fredette int
57 1.1 fredette sgl_to_dbl_fcnvff(srcptr,dstptr,status)
58 1.1 fredette
59 1.1 fredette sgl_floating_point *srcptr;
60 1.1 fredette dbl_floating_point *dstptr;
61 1.1 fredette unsigned int *status;
62 1.1 fredette {
63 1.1 fredette register unsigned int src, resultp1, resultp2;
64 1.1 fredette register int src_exponent;
65 1.1 fredette
66 1.1 fredette src = *srcptr;
67 1.1 fredette src_exponent = Sgl_exponent(src);
68 1.1 fredette Dbl_allp1(resultp1) = Sgl_all(src); /* set sign of result */
69 1.1 fredette /*
70 1.1 fredette * Test for NaN or infinity
71 1.1 fredette */
72 1.1 fredette if (src_exponent == SGL_INFINITY_EXPONENT) {
73 1.1 fredette /*
74 1.1 fredette * determine if NaN or infinity
75 1.1 fredette */
76 1.1 fredette if (Sgl_iszero_mantissa(src)) {
77 1.1 fredette /*
78 1.1 fredette * is infinity; want to return double infinity
79 1.1 fredette */
80 1.1 fredette Dbl_setinfinity_exponentmantissa(resultp1,resultp2);
81 1.1 fredette Dbl_copytoptr(resultp1,resultp2,dstptr);
82 1.1 fredette return(NOEXCEPTION);
83 1.1 fredette }
84 1.1 fredette else {
85 1.1 fredette /*
86 1.1 fredette * is NaN; signaling or quiet?
87 1.1 fredette */
88 1.1 fredette if (Sgl_isone_signaling(src)) {
89 1.1 fredette /* trap if INVALIDTRAP enabled */
90 1.1 fredette if (Is_invalidtrap_enabled())
91 1.1 fredette return(INVALIDEXCEPTION);
92 1.1 fredette /* make NaN quiet */
93 1.1 fredette else {
94 1.1 fredette Set_invalidflag();
95 1.1 fredette Sgl_set_quiet(src);
96 1.1 fredette }
97 1.1 fredette }
98 1.1 fredette /*
99 1.1 fredette * NaN is quiet, return as double NaN
100 1.1 fredette */
101 1.1 fredette Dbl_setinfinity_exponent(resultp1);
102 1.1 fredette Sgl_to_dbl_mantissa(src,resultp1,resultp2);
103 1.1 fredette Dbl_copytoptr(resultp1,resultp2,dstptr);
104 1.1 fredette return(NOEXCEPTION);
105 1.1 fredette }
106 1.1 fredette }
107 1.1 fredette /*
108 1.1 fredette * Test for zero or denormalized
109 1.1 fredette */
110 1.1 fredette if (src_exponent == 0) {
111 1.1 fredette /*
112 1.1 fredette * determine if zero or denormalized
113 1.1 fredette */
114 1.1 fredette if (Sgl_isnotzero_mantissa(src)) {
115 1.1 fredette /*
116 1.1 fredette * is denormalized; want to normalize
117 1.1 fredette */
118 1.1 fredette Sgl_clear_signexponent(src);
119 1.1 fredette Sgl_leftshiftby1(src);
120 1.1 fredette Sgl_normalize(src,src_exponent);
121 1.1 fredette Sgl_to_dbl_exponent(src_exponent,resultp1);
122 1.1 fredette Sgl_to_dbl_mantissa(src,resultp1,resultp2);
123 1.1 fredette }
124 1.1 fredette else {
125 1.1 fredette Dbl_setzero_exponentmantissa(resultp1,resultp2);
126 1.1 fredette }
127 1.1 fredette Dbl_copytoptr(resultp1,resultp2,dstptr);
128 1.1 fredette return(NOEXCEPTION);
129 1.1 fredette }
130 1.1 fredette /*
131 1.1 fredette * No special cases, just complete the conversion
132 1.1 fredette */
133 1.1 fredette Sgl_to_dbl_exponent(src_exponent, resultp1);
134 1.1 fredette Sgl_to_dbl_mantissa(Sgl_mantissa(src), resultp1,resultp2);
135 1.1 fredette Dbl_copytoptr(resultp1,resultp2,dstptr);
136 1.1 fredette return(NOEXCEPTION);
137 1.1 fredette }
138 1.1 fredette
139 1.1 fredette /*
140 1.1 fredette * Double Floating-point to Single Floating-point
141 1.1 fredette */
142 1.1 fredette /*ARGSUSED*/
143 1.1 fredette int
144 1.1 fredette dbl_to_sgl_fcnvff(srcptr,dstptr,status)
145 1.1 fredette
146 1.1 fredette dbl_floating_point *srcptr;
147 1.1 fredette sgl_floating_point *dstptr;
148 1.1 fredette unsigned int *status;
149 1.1 fredette {
150 1.1 fredette register unsigned int srcp1, srcp2, result;
151 1.1 fredette register int src_exponent, dest_exponent, dest_mantissa;
152 1.1 fredette register int inexact = FALSE, guardbit = FALSE, stickybit = FALSE;
153 1.1 fredette register int lsb_odd = FALSE;
154 1.1 fredette int is_tiny;
155 1.1 fredette
156 1.1 fredette Dbl_copyfromptr(srcptr,srcp1,srcp2);
157 1.1 fredette src_exponent = Dbl_exponent(srcp1);
158 1.1 fredette Sgl_all(result) = Dbl_allp1(srcp1); /* set sign of result */
159 1.1 fredette /*
160 1.1 fredette * Test for NaN or infinity
161 1.1 fredette */
162 1.1 fredette if (src_exponent == DBL_INFINITY_EXPONENT) {
163 1.1 fredette /*
164 1.1 fredette * determine if NaN or infinity
165 1.1 fredette */
166 1.1 fredette if (Dbl_iszero_mantissa(srcp1,srcp2)) {
167 1.1 fredette /*
168 1.1 fredette * is infinity; want to return single infinity
169 1.1 fredette */
170 1.1 fredette Sgl_setinfinity_exponentmantissa(result);
171 1.1 fredette *dstptr = result;
172 1.1 fredette return(NOEXCEPTION);
173 1.1 fredette }
174 1.1 fredette /*
175 1.1 fredette * is NaN; signaling or quiet?
176 1.1 fredette */
177 1.1 fredette if (Dbl_isone_signaling(srcp1)) {
178 1.1 fredette /* trap if INVALIDTRAP enabled */
179 1.1 fredette if (Is_invalidtrap_enabled()) return(INVALIDEXCEPTION);
180 1.1 fredette else {
181 1.1 fredette Set_invalidflag();
182 1.1 fredette /* make NaN quiet */
183 1.1 fredette Dbl_set_quiet(srcp1);
184 1.1 fredette }
185 1.1 fredette }
186 1.1 fredette /*
187 1.1 fredette * NaN is quiet, return as single NaN
188 1.1 fredette */
189 1.1 fredette Sgl_setinfinity_exponent(result);
190 1.1 fredette Sgl_set_mantissa(result,Dallp1(srcp1)<<3 | Dallp2(srcp2)>>29);
191 1.1 fredette if (Sgl_iszero_mantissa(result)) Sgl_set_quiet(result);
192 1.1 fredette *dstptr = result;
193 1.1 fredette return(NOEXCEPTION);
194 1.1 fredette }
195 1.1 fredette /*
196 1.1 fredette * Generate result
197 1.1 fredette */
198 1.1 fredette Dbl_to_sgl_exponent(src_exponent,dest_exponent);
199 1.1 fredette if (dest_exponent > 0) {
200 1.1 fredette Dbl_to_sgl_mantissa(srcp1,srcp2,dest_mantissa,inexact,guardbit,
201 1.1 fredette stickybit,lsb_odd);
202 1.1 fredette }
203 1.1 fredette else {
204 1.1 fredette if (Dbl_iszero_exponentmantissa(srcp1,srcp2)){
205 1.1 fredette Sgl_setzero_exponentmantissa(result);
206 1.1 fredette *dstptr = result;
207 1.1 fredette return(NOEXCEPTION);
208 1.1 fredette }
209 1.1 fredette if (Is_underflowtrap_enabled()) {
210 1.1 fredette Dbl_to_sgl_mantissa(srcp1,srcp2,dest_mantissa,inexact,
211 1.1 fredette guardbit,stickybit,lsb_odd);
212 1.1 fredette }
213 1.1 fredette else {
214 1.1 fredette /* compute result, determine inexact info,
215 1.1 fredette * and set Underflowflag if appropriate
216 1.1 fredette */
217 1.1 fredette Dbl_to_sgl_denormalized(srcp1,srcp2,dest_exponent,
218 1.1 fredette dest_mantissa,inexact,guardbit,stickybit,lsb_odd,
219 1.1 fredette is_tiny);
220 1.1 fredette }
221 1.1 fredette }
222 1.1 fredette /*
223 1.1 fredette * Now round result if not exact
224 1.1 fredette */
225 1.1 fredette if (inexact) {
226 1.1 fredette switch (Rounding_mode()) {
227 1.1 fredette case ROUNDPLUS:
228 1.1 fredette if (Sgl_iszero_sign(result)) dest_mantissa++;
229 1.1 fredette break;
230 1.1 fredette case ROUNDMINUS:
231 1.1 fredette if (Sgl_isone_sign(result)) dest_mantissa++;
232 1.1 fredette break;
233 1.1 fredette case ROUNDNEAREST:
234 1.1 fredette if (guardbit) {
235 1.1 fredette if (stickybit || lsb_odd) dest_mantissa++;
236 1.1 fredette }
237 1.1 fredette }
238 1.1 fredette }
239 1.1 fredette Sgl_set_exponentmantissa(result,dest_mantissa);
240 1.1 fredette
241 1.1 fredette /*
242 1.1 fredette * check for mantissa overflow after rounding
243 1.1 fredette */
244 1.1 fredette if ((dest_exponent>0 || Is_underflowtrap_enabled()) &&
245 1.1 fredette Sgl_isone_hidden(result)) dest_exponent++;
246 1.1 fredette
247 1.1 fredette /*
248 1.1 fredette * Test for overflow
249 1.1 fredette */
250 1.1 fredette if (dest_exponent >= SGL_INFINITY_EXPONENT) {
251 1.1 fredette /* trap if OVERFLOWTRAP enabled */
252 1.1 fredette if (Is_overflowtrap_enabled()) {
253 1.1 fredette /*
254 1.1 fredette * Check for gross overflow
255 1.1 fredette */
256 1.1 fredette if (dest_exponent >= SGL_INFINITY_EXPONENT+SGL_WRAP)
257 1.1 fredette return(UNIMPLEMENTEDEXCEPTION);
258 1.1 fredette
259 1.1 fredette /*
260 1.1 fredette * Adjust bias of result
261 1.1 fredette */
262 1.1 fredette Sgl_setwrapped_exponent(result,dest_exponent,ovfl);
263 1.1 fredette *dstptr = result;
264 1.1 fredette if (inexact) {
265 1.1 fredette if (Is_inexacttrap_enabled())
266 1.1 fredette return(OVERFLOWEXCEPTION|INEXACTEXCEPTION);
267 1.1 fredette else
268 1.1 fredette Set_inexactflag();
269 1.1 fredette }
270 1.1 fredette return(OVERFLOWEXCEPTION);
271 1.1 fredette }
272 1.1 fredette Set_overflowflag();
273 1.1 fredette inexact = TRUE;
274 1.1 fredette /* set result to infinity or largest number */
275 1.1 fredette Sgl_setoverflow(result);
276 1.1 fredette }
277 1.1 fredette /*
278 1.1 fredette * Test for underflow
279 1.1 fredette */
280 1.1 fredette else if (dest_exponent <= 0) {
281 1.1 fredette /* trap if UNDERFLOWTRAP enabled */
282 1.1 fredette if (Is_underflowtrap_enabled()) {
283 1.1 fredette /*
284 1.1 fredette * Check for gross underflow
285 1.1 fredette */
286 1.1 fredette if (dest_exponent <= -(SGL_WRAP))
287 1.1 fredette return(UNIMPLEMENTEDEXCEPTION);
288 1.1 fredette /*
289 1.1 fredette * Adjust bias of result
290 1.1 fredette */
291 1.1 fredette Sgl_setwrapped_exponent(result,dest_exponent,unfl);
292 1.1 fredette *dstptr = result;
293 1.1 fredette if (inexact) {
294 1.1 fredette if (Is_inexacttrap_enabled())
295 1.1 fredette return(UNDERFLOWEXCEPTION|INEXACTEXCEPTION);
296 1.1 fredette else
297 1.1 fredette Set_inexactflag();
298 1.1 fredette }
299 1.1 fredette return(UNDERFLOWEXCEPTION);
300 1.1 fredette }
301 1.1 fredette /*
302 1.1 fredette * result is denormalized or signed zero
303 1.1 fredette */
304 1.1 fredette if (inexact && is_tiny) Set_underflowflag();
305 1.1 fredette
306 1.1 fredette }
307 1.1 fredette else Sgl_set_exponent(result,dest_exponent);
308 1.1 fredette *dstptr = result;
309 1.1 fredette /*
310 1.1 fredette * Trap if inexact trap is enabled
311 1.1 fredette */
312 1.1 fredette if (inexact) {
313 1.1 fredette if (Is_inexacttrap_enabled())
314 1.1 fredette return(INEXACTEXCEPTION);
315 1.1 fredette else
316 1.1 fredette Set_inexactflag();
317 1.1 fredette }
318 1.1 fredette return(NOEXCEPTION);
319 1.1 fredette }
320