1 /*	$NetBSD: softfloat.h,v 1.4 2002/05/12 13:12:47 bjh21 Exp $	*/
2 
3 /* This is a derivative work. */
4 
5 /*
6 ===============================================================================
7 
8 This C header file is part of the SoftFloat IEC/IEEE Floating-point
9 Arithmetic Package, Release 2a.
10 
11 Written by John R. Hauser.  This work was made possible in part by the
12 International Computer Science Institute, located at Suite 600, 1947 Center
13 Street, Berkeley, California 94704.  Funding was partially provided by the
14 National Science Foundation under grant MIP-9311980.  The original version
15 of this code was written as part of a project to build a fixed-point vector
16 processor in collaboration with the University of California at Berkeley,
17 overseen by Profs. Nelson Morgan and John Wawrzynek.  More information
18 is available through the Web page `http://HTTP.CS.Berkeley.EDU/~jhauser/
19 arithmetic/SoftFloat.html'.
20 
21 THIS SOFTWARE IS DISTRIBUTED AS IS, FOR FREE.  Although reasonable effort
22 has been made to avoid it, THIS SOFTWARE MAY CONTAIN FAULTS THAT WILL AT
23 TIMES RESULT IN INCORRECT BEHAVIOR.  USE OF THIS SOFTWARE IS RESTRICTED TO
24 PERSONS AND ORGANIZATIONS WHO CAN AND WILL TAKE FULL RESPONSIBILITY FOR ANY
25 AND ALL LOSSES, COSTS, OR OTHER PROBLEMS ARISING FROM ITS USE.
26 
27 Derivative works are acceptable, even for commercial purposes, so long as
28 (1) they include prominent notice that the work is derivative, and (2) they
29 include prominent notice akin to these four paragraphs for those parts of
30 this code that are retained.
31 
32 ===============================================================================
33 */
34 
35 /*
36 -------------------------------------------------------------------------------
37 The macro `FLOATX80' must be defined to enable the extended double-precision
38 floating-point format `floatx80'.  If this macro is not defined, the
39 `floatx80' type will not be defined, and none of the functions that either
40 input or output the `floatx80' type will be defined.  The same applies to
41 the `FLOAT128' macro and the quadruple-precision format `float128'.
42 -------------------------------------------------------------------------------
43 */
44 /* #define FLOATX80 */
45 #define FLOAT128
46 
47 #include "softfloat-qp.h"
48 
49 #include <machine/ieeefp.h>
50 
51 /*
52 -------------------------------------------------------------------------------
53 Software IEC/IEEE floating-point types.
54 -------------------------------------------------------------------------------
55 */
56 typedef unsigned int float32;
57 typedef unsigned long long float64;
58 #ifdef FLOATX80
59 typedef struct {
60     unsigned short high;
61     unsigned long long low;
62 } floatx80;
63 #endif
64 #ifdef FLOAT128
65 typedef struct {
66     unsigned long long high, low;
67 } float128;
68 #endif
69 
70 /*
71 -------------------------------------------------------------------------------
72 Software IEC/IEEE floating-point underflow tininess-detection mode.
73 -------------------------------------------------------------------------------
74 */
75 extern int8 float_detect_tininess;
76 enum {
77     float_tininess_after_rounding  = 0,
78     float_tininess_before_rounding = 1
79 };
80 
81 /*
82 -------------------------------------------------------------------------------
83 Software IEC/IEEE floating-point rounding mode.
84 -------------------------------------------------------------------------------
85 */
86 extern fp_rnd float_rounding_mode;
87 enum {
88     float_round_nearest_even = FP_RN,
89     float_round_to_zero      = FP_RZ,
90     float_round_down         = FP_RM,
91     float_round_up           = FP_RP
92 };
93 
94 /*
95 -------------------------------------------------------------------------------
96 Software IEC/IEEE floating-point exception flags.
97 -------------------------------------------------------------------------------
98 */
99 extern fp_except float_exception_flags;
100 extern fp_except float_exception_mask;
101 enum {
102     float_flag_inexact   = FP_X_IMP,
103     float_flag_underflow = FP_X_UFL,
104     float_flag_overflow  = FP_X_OFL,
105     float_flag_divbyzero = FP_X_DZ,
106     float_flag_invalid   = FP_X_INV
107 };
108 
109 /*
110 -------------------------------------------------------------------------------
111 Routine to raise any or all of the software IEC/IEEE floating-point
112 exception flags.
113 -------------------------------------------------------------------------------
114 */
115 void float_raise( fp_except );
116 
117 /*
118 -------------------------------------------------------------------------------
119 Software IEC/IEEE integer-to-floating-point conversion routines.
120 -------------------------------------------------------------------------------
121 */
122 float32 int32_to_float32( int );
123 float64 int32_to_float64( int );
124 #ifdef FLOATX80
125 floatx80 int32_to_floatx80( int );
126 #endif
127 #ifdef FLOAT128
128 float128 int32_to_float128( int );
129 #endif
130 float32 int64_to_float32( long long );
131 float64 int64_to_float64( long long );
132 #ifdef FLOATX80
133 floatx80 int64_to_floatx80( long long );
134 #endif
135 #ifdef FLOAT128
136 float128 int64_to_float128( long long );
137 #endif
138 
139 /*
140 -------------------------------------------------------------------------------
141 Software IEC/IEEE single-precision conversion routines.
142 -------------------------------------------------------------------------------
143 */
144 int float32_to_int32( float32 );
145 int float32_to_int32_round_to_zero( float32 );
146 unsigned int float32_to_uint32_round_to_zero( float32 );
147 long long float32_to_int64( float32 );
148 long long float32_to_int64_round_to_zero( float32 );
149 float64 float32_to_float64( float32 );
150 #ifdef FLOATX80
151 floatx80 float32_to_floatx80( float32 );
152 #endif
153 #ifdef FLOAT128
154 float128 float32_to_float128( float32 );
155 #endif
156 
157 /*
158 -------------------------------------------------------------------------------
159 Software IEC/IEEE single-precision operations.
160 -------------------------------------------------------------------------------
161 */
162 float32 float32_round_to_int( float32 );
163 float32 float32_add( float32, float32 );
164 float32 float32_sub( float32, float32 );
165 float32 float32_mul( float32, float32 );
166 float32 float32_div( float32, float32 );
167 float32 float32_rem( float32, float32 );
168 float32 float32_sqrt( float32 );
169 flag float32_eq( float32, float32 );
170 flag float32_le( float32, float32 );
171 flag float32_lt( float32, float32 );
172 flag float32_eq_signaling( float32, float32 );
173 flag float32_le_quiet( float32, float32 );
174 flag float32_lt_quiet( float32, float32 );
175 flag float32_is_signaling_nan( float32 );
176 
177 /*
178 -------------------------------------------------------------------------------
179 Software IEC/IEEE double-precision conversion routines.
180 -------------------------------------------------------------------------------
181 */
182 int float64_to_int32( float64 );
183 int float64_to_int32_round_to_zero( float64 );
184 unsigned int float64_to_uint32_round_to_zero( float64 );
185 long long float64_to_int64( float64 );
186 long long float64_to_int64_round_to_zero( float64 );
187 float32 float64_to_float32( float64 );
188 #ifdef FLOATX80
189 floatx80 float64_to_floatx80( float64 );
190 #endif
191 #ifdef FLOAT128
192 float128 float64_to_float128( float64 );
193 #endif
194 
195 /*
196 -------------------------------------------------------------------------------
197 Software IEC/IEEE double-precision operations.
198 -------------------------------------------------------------------------------
199 */
200 float64 float64_round_to_int( float64 );
201 float64 float64_add( float64, float64 );
202 float64 float64_sub( float64, float64 );
203 float64 float64_mul( float64, float64 );
204 float64 float64_div( float64, float64 );
205 float64 float64_rem( float64, float64 );
206 float64 float64_sqrt( float64 );
207 flag float64_eq( float64, float64 );
208 flag float64_le( float64, float64 );
209 flag float64_lt( float64, float64 );
210 flag float64_eq_signaling( float64, float64 );
211 flag float64_le_quiet( float64, float64 );
212 flag float64_lt_quiet( float64, float64 );
213 flag float64_is_signaling_nan( float64 );
214 
215 #ifdef FLOATX80
216 
217 /*
218 -------------------------------------------------------------------------------
219 Software IEC/IEEE extended double-precision conversion routines.
220 -------------------------------------------------------------------------------
221 */
222 int floatx80_to_int32( floatx80 );
223 int floatx80_to_int32_round_to_zero( floatx80 );
224 long long floatx80_to_int64( floatx80 );
225 long long floatx80_to_int64_round_to_zero( floatx80 );
226 float32 floatx80_to_float32( floatx80 );
227 float64 floatx80_to_float64( floatx80 );
228 #ifdef FLOAT128
229 float128 floatx80_to_float128( floatx80 );
230 #endif
231 
232 /*
233 -------------------------------------------------------------------------------
234 Software IEC/IEEE extended double-precision rounding precision.  Valid
235 values are 32, 64, and 80.
236 -------------------------------------------------------------------------------
237 */
238 extern int floatx80_rounding_precision;
239 
240 /*
241 -------------------------------------------------------------------------------
242 Software IEC/IEEE extended double-precision operations.
243 -------------------------------------------------------------------------------
244 */
245 floatx80 floatx80_round_to_int( floatx80 );
246 floatx80 floatx80_add( floatx80, floatx80 );
247 floatx80 floatx80_sub( floatx80, floatx80 );
248 floatx80 floatx80_mul( floatx80, floatx80 );
249 floatx80 floatx80_div( floatx80, floatx80 );
250 floatx80 floatx80_rem( floatx80, floatx80 );
251 floatx80 floatx80_sqrt( floatx80 );
252 flag floatx80_eq( floatx80, floatx80 );
253 flag floatx80_le( floatx80, floatx80 );
254 flag floatx80_lt( floatx80, floatx80 );
255 flag floatx80_eq_signaling( floatx80, floatx80 );
256 flag floatx80_le_quiet( floatx80, floatx80 );
257 flag floatx80_lt_quiet( floatx80, floatx80 );
258 flag floatx80_is_signaling_nan( floatx80 );
259 
260 #endif
261 
262 #ifdef FLOAT128
263 
264 /*
265 -------------------------------------------------------------------------------
266 Software IEC/IEEE quadruple-precision conversion routines.
267 -------------------------------------------------------------------------------
268 */
269 int float128_to_int32( float128 );
270 int float128_to_int32_round_to_zero( float128 );
271 long long float128_to_int64( float128 );
272 long long float128_to_int64_round_to_zero( float128 );
273 float32 float128_to_float32( float128 );
274 float64 float128_to_float64( float128 );
275 #ifdef FLOATX80
276 floatx80 float128_to_floatx80( float128 );
277 #endif
278 
279 /*
280 -------------------------------------------------------------------------------
281 Software IEC/IEEE quadruple-precision operations.
282 -------------------------------------------------------------------------------
283 */
284 float128 float128_round_to_int( float128 );
285 float128 float128_add( float128, float128 );
286 float128 float128_sub( float128, float128 );
287 float128 float128_mul( float128, float128 );
288 float128 float128_div( float128, float128 );
289 float128 float128_rem( float128, float128 );
290 float128 float128_sqrt( float128 );
291 flag float128_eq( float128, float128 );
292 flag float128_le( float128, float128 );
293 flag float128_lt( float128, float128 );
294 flag float128_eq_signaling( float128, float128 );
295 flag float128_le_quiet( float128, float128 );
296 flag float128_lt_quiet( float128, float128 );
297 flag float128_is_signaling_nan( float128 );
298 flag float128_is_nan( float128 );
299 
300 #endif
301