1 /* $NetBSD: xdr_float.c,v 1.35 2009/02/14 06:26:42 lukem Exp $ */
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32 #include <sys/cdefs.h>
33 #if defined(LIBC_SCCS) && !defined(lint)
35 static char *sccsid
= "@(#)xdr_float.c 1.12 87/08/11 Copyr 1984 Sun Micro";
36 static char *sccsid
= "@(#)xdr_float.c 2.1 88/07/29 4.0 RPCSRC";
38 __RCSID("$NetBSD: xdr_float.c,v 1.35 2009/02/14 06:26:42 lukem Exp $");
43 * xdr_float.c, Generic XDR routines implementation.
45 * Copyright (C) 1984, Sun Microsystems, Inc.
47 * These are the "floating point" xdr routines used to (de)serialize
48 * most common data items. See xdr.h for more info on the interface to
52 #include "namespace.h"
54 #include <sys/types.h>
55 #include <sys/param.h>
59 #include <rpc/types.h>
63 __weak_alias(xdr_double
,_xdr_double
)
64 __weak_alias(xdr_float
,_xdr_float
)
69 * This routine works on machines with IEEE754 FP and Vaxen.
72 #if defined(__m68k__) || defined(__sparc__) || defined(__i386__) || \
73 defined(__mips__) || defined(__ns32k__) || defined(__alpha__) || \
74 defined(__arm__) || defined(__powerpc__) || defined(__sh__) || \
75 defined(__x86_64__) || defined(__hppa__) || defined(__ia64__)
76 #include <machine/endian.h>
82 /* What IEEE single precision floating point looks like on a Vax */
84 unsigned int mantissa
: 23;
86 unsigned int sign
: 1;
89 /* Vax single precision floating point */
91 unsigned int mantissa1
: 7;
93 unsigned int sign
: 1;
94 unsigned int mantissa2
: 16;
97 #define VAX_SNG_BIAS 0x81
98 #define IEEE_SNG_BIAS 0x7f
100 static struct sgl_limits
{
102 struct ieee_single ieee
;
104 {{ 0x7f, 0xff, 0x0, 0xffff }, /* Max Vax */
105 { 0x0, 0xff, 0x0 }}, /* Max IEEE */
106 {{ 0x0, 0x0, 0x0, 0x0 }, /* Min Vax */
107 { 0x0, 0x0, 0x0 }} /* Min IEEE */
117 struct ieee_single is
;
118 struct vax_single vs
, *vsp
;
119 struct sgl_limits
*lim
;
122 switch (xdrs
->x_op
) {
126 return (XDR_PUTINT32(xdrs
, (int32_t *)(void *)fp
));
128 vs
= *((struct vax_single
*)fp
);
129 for (i
= 0, lim
= sgl_limits
;
130 i
< sizeof(sgl_limits
)/sizeof(struct sgl_limits
);
132 if ((vs
.mantissa2
== lim
->s
.mantissa2
) &&
133 (vs
.exp
== lim
->s
.exp
) &&
134 (vs
.mantissa1
== lim
->s
.mantissa1
)) {
139 is
.exp
= vs
.exp
- VAX_SNG_BIAS
+ IEEE_SNG_BIAS
;
140 is
.mantissa
= (vs
.mantissa1
<< 16) | vs
.mantissa2
;
143 return (XDR_PUTINT32(xdrs
, (int32_t *)(void *)&is
));
148 return (XDR_GETINT32(xdrs
, (int32_t *)(void *)fp
));
150 vsp
= (struct vax_single
*)fp
;
151 if (!XDR_GETINT32(xdrs
, (int32_t *)(void *)&is
))
153 for (i
= 0, lim
= sgl_limits
;
154 i
< sizeof(sgl_limits
)/sizeof(struct sgl_limits
);
156 if ((is
.exp
== lim
->ieee
.exp
) &&
157 (is
.mantissa
== lim
->ieee
.mantissa
)) {
162 vsp
->exp
= is
.exp
- IEEE_SNG_BIAS
+ VAX_SNG_BIAS
;
163 vsp
->mantissa2
= is
.mantissa
;
164 vsp
->mantissa1
= (is
.mantissa
>> 16);
178 /* What IEEE double precision floating point looks like on a Vax */
180 unsigned int mantissa1
: 20;
181 unsigned int exp
: 11;
182 unsigned int sign
: 1;
183 unsigned int mantissa2
: 32;
186 /* Vax double precision floating point */
188 unsigned int mantissa1
: 7;
189 unsigned int exp
: 8;
190 unsigned int sign
: 1;
191 unsigned int mantissa2
: 16;
192 unsigned int mantissa3
: 16;
193 unsigned int mantissa4
: 16;
196 #define VAX_DBL_BIAS 0x81
197 #define IEEE_DBL_BIAS 0x3ff
198 #define MASK(nbits) ((1 << nbits) - 1)
200 static struct dbl_limits
{
202 struct ieee_double ieee
;
204 {{ 0x7f, 0xff, 0x0, 0xffff, 0xffff, 0xffff }, /* Max Vax */
205 { 0x0, 0x7ff, 0x0, 0x0 }}, /* Max IEEE */
206 {{ 0x0, 0x0, 0x0, 0x0, 0x0, 0x0}, /* Min Vax */
207 { 0x0, 0x0, 0x0, 0x0 }} /* Min IEEE */
223 struct ieee_double id
;
224 struct vax_double vd
;
225 struct dbl_limits
*lim
;
229 switch (xdrs
->x_op
) {
233 i32p
= (int32_t *)(void *)dp
;
234 #if (BYTE_ORDER == BIG_ENDIAN) || \
235 (defined(__arm__) && !defined(__VFP_FP__))
236 rv
= XDR_PUTINT32(xdrs
, i32p
);
239 rv
= XDR_PUTINT32(xdrs
, i32p
+1);
241 rv
= XDR_PUTINT32(xdrs
, i32p
+1);
244 rv
= XDR_PUTINT32(xdrs
, i32p
);
248 vd
= *((struct vax_double
*)dp
);
249 for (i
= 0, lim
= dbl_limits
;
250 i
< sizeof(dbl_limits
)/sizeof(struct dbl_limits
);
252 if ((vd
.mantissa4
== lim
->d
.mantissa4
) &&
253 (vd
.mantissa3
== lim
->d
.mantissa3
) &&
254 (vd
.mantissa2
== lim
->d
.mantissa2
) &&
255 (vd
.mantissa1
== lim
->d
.mantissa1
) &&
256 (vd
.exp
== lim
->d
.exp
)) {
261 id
.exp
= vd
.exp
- VAX_DBL_BIAS
+ IEEE_DBL_BIAS
;
262 id
.mantissa1
= (vd
.mantissa1
<< 13) | (vd
.mantissa2
>> 3);
263 id
.mantissa2
= ((vd
.mantissa2
& MASK(3)) << 29) |
264 (vd
.mantissa3
<< 13) |
265 ((vd
.mantissa4
>> 3) & MASK(13));
268 lp
= (int32_t *)(void *)&id
;
269 return (XDR_PUTINT32(xdrs
, lp
++) && XDR_PUTINT32(xdrs
, lp
));
274 i32p
= (int32_t *)(void *)dp
;
275 #if BYTE_ORDER == BIG_ENDIAN || \
276 (defined(__arm__) && !defined(__VFP_FP__))
277 rv
= XDR_GETINT32(xdrs
, i32p
);
280 rv
= XDR_GETINT32(xdrs
, i32p
+1);
282 rv
= XDR_GETINT32(xdrs
, i32p
+1);
285 rv
= XDR_GETINT32(xdrs
, i32p
);
289 lp
= (int32_t *)(void *)&id
;
290 if (!XDR_GETINT32(xdrs
, lp
++) || !XDR_GETINT32(xdrs
, lp
))
292 for (i
= 0, lim
= dbl_limits
;
293 i
< sizeof(dbl_limits
)/sizeof(struct dbl_limits
);
295 if ((id
.mantissa2
== lim
->ieee
.mantissa2
) &&
296 (id
.mantissa1
== lim
->ieee
.mantissa1
) &&
297 (id
.exp
== lim
->ieee
.exp
)) {
302 vd
.exp
= id
.exp
- IEEE_DBL_BIAS
+ VAX_DBL_BIAS
;
303 vd
.mantissa1
= (id
.mantissa1
>> 13);
304 vd
.mantissa2
= ((id
.mantissa1
& MASK(13)) << 3) |
305 (id
.mantissa2
>> 29);
306 vd
.mantissa3
= (id
.mantissa2
>> 13);
307 vd
.mantissa4
= (id
.mantissa2
<< 3);
310 *dp
= *((double *)(void *)&vd
);