fpu_log.c revision 1.13 1 1.13 isaki /* $NetBSD: fpu_log.c,v 1.13 2011/07/18 07:44:30 isaki Exp $ */
2 1.1 briggs
3 1.1 briggs /*
4 1.1 briggs * Copyright (c) 1995 Ken Nakata
5 1.1 briggs * All rights reserved.
6 1.1 briggs *
7 1.1 briggs * Redistribution and use in source and binary forms, with or without
8 1.1 briggs * modification, are permitted provided that the following conditions
9 1.1 briggs * are met:
10 1.1 briggs * 1. Redistributions of source code must retain the above copyright
11 1.1 briggs * notice, this list of conditions and the following disclaimer.
12 1.1 briggs * 2. Redistributions in binary form must reproduce the above copyright
13 1.1 briggs * notice, this list of conditions and the following disclaimer in the
14 1.1 briggs * documentation and/or other materials provided with the distribution.
15 1.1 briggs * 3. Neither the name of the author nor the names of its contributors
16 1.1 briggs * may be used to endorse or promote products derived from this software
17 1.1 briggs * without specific prior written permission.
18 1.1 briggs *
19 1.1 briggs * THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS ``AS IS'' AND
20 1.1 briggs * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
21 1.1 briggs * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
22 1.1 briggs * ARE DISCLAIMED. IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE
23 1.1 briggs * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
24 1.1 briggs * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
25 1.1 briggs * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
26 1.1 briggs * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
27 1.1 briggs * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
28 1.1 briggs * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
29 1.1 briggs * SUCH DAMAGE.
30 1.1 briggs *
31 1.1 briggs * @(#)fpu_log.c 10/8/95
32 1.1 briggs */
33 1.8 lukem
34 1.8 lukem #include <sys/cdefs.h>
35 1.13 isaki __KERNEL_RCSID(0, "$NetBSD: fpu_log.c,v 1.13 2011/07/18 07:44:30 isaki Exp $");
36 1.1 briggs
37 1.1 briggs #include <sys/types.h>
38 1.3 briggs #include <sys/systm.h>
39 1.1 briggs
40 1.1 briggs #include "fpu_emulate.h"
41 1.1 briggs
42 1.1 briggs static u_int logA6[] = { 0x3FC2499A, 0xB5E4040B };
43 1.1 briggs static u_int logA5[] = { 0xBFC555B5, 0x848CB7DB };
44 1.1 briggs static u_int logA4[] = { 0x3FC99999, 0x987D8730 };
45 1.1 briggs static u_int logA3[] = { 0xBFCFFFFF, 0xFF6F7E97 };
46 1.1 briggs static u_int logA2[] = { 0x3FD55555, 0x555555A4 };
47 1.1 briggs static u_int logA1[] = { 0xBFE00000, 0x00000008 };
48 1.1 briggs
49 1.1 briggs static u_int logB5[] = { 0x3F175496, 0xADD7DAD6 };
50 1.1 briggs static u_int logB4[] = { 0x3F3C71C2, 0xFE80C7E0 };
51 1.1 briggs static u_int logB3[] = { 0x3F624924, 0x928BCCFF };
52 1.1 briggs static u_int logB2[] = { 0x3F899999, 0x999995EC };
53 1.1 briggs static u_int logB1[] = { 0x3FB55555, 0x55555555 };
54 1.1 briggs
55 1.1 briggs /* sfpn = shortened fp number; can represent only positive numbers */
56 1.1 briggs static struct sfpn {
57 1.13 isaki int sp_exp;
58 1.13 isaki u_int sp_m0, sp_m1;
59 1.1 briggs } logtbl[] = {
60 1.13 isaki { 0x3FFE - 0x3fff, 0xFE03F80FU, 0xE03F80FEU },
61 1.13 isaki { 0x3FF7 - 0x3fff, 0xFF015358U, 0x833C47E2U },
62 1.13 isaki { 0x3FFE - 0x3fff, 0xFA232CF2U, 0x52138AC0U },
63 1.13 isaki { 0x3FF9 - 0x3fff, 0xBDC8D83EU, 0xAD88D549U },
64 1.13 isaki { 0x3FFE - 0x3fff, 0xF6603D98U, 0x0F6603DAU },
65 1.13 isaki { 0x3FFA - 0x3fff, 0x9CF43DCFU, 0xF5EAFD48U },
66 1.13 isaki { 0x3FFE - 0x3fff, 0xF2B9D648U, 0x0F2B9D65U },
67 1.13 isaki { 0x3FFA - 0x3fff, 0xDA16EB88U, 0xCB8DF614U },
68 1.13 isaki { 0x3FFE - 0x3fff, 0xEF2EB71FU, 0xC4345238U },
69 1.13 isaki { 0x3FFB - 0x3fff, 0x8B29B775U, 0x1BD70743U },
70 1.13 isaki { 0x3FFE - 0x3fff, 0xEBBDB2A5U, 0xC1619C8CU },
71 1.13 isaki { 0x3FFB - 0x3fff, 0xA8D839F8U, 0x30C1FB49U },
72 1.13 isaki { 0x3FFE - 0x3fff, 0xE865AC7BU, 0x7603A197U },
73 1.13 isaki { 0x3FFB - 0x3fff, 0xC61A2EB1U, 0x8CD907ADU },
74 1.13 isaki { 0x3FFE - 0x3fff, 0xE525982AU, 0xF70C880EU },
75 1.13 isaki { 0x3FFB - 0x3fff, 0xE2F2A47AU, 0xDE3A18AFU },
76 1.13 isaki { 0x3FFE - 0x3fff, 0xE1FC780EU, 0x1FC780E2U },
77 1.13 isaki { 0x3FFB - 0x3fff, 0xFF64898EU, 0xDF55D551U },
78 1.13 isaki { 0x3FFE - 0x3fff, 0xDEE95C4CU, 0xA037BA57U },
79 1.13 isaki { 0x3FFC - 0x3fff, 0x8DB956A9U, 0x7B3D0148U },
80 1.13 isaki { 0x3FFE - 0x3fff, 0xDBEB61EEU, 0xD19C5958U },
81 1.13 isaki { 0x3FFC - 0x3fff, 0x9B8FE100U, 0xF47BA1DEU },
82 1.13 isaki { 0x3FFE - 0x3fff, 0xD901B203U, 0x6406C80EU },
83 1.13 isaki { 0x3FFC - 0x3fff, 0xA9372F1DU, 0x0DA1BD17U },
84 1.13 isaki { 0x3FFE - 0x3fff, 0xD62B80D6U, 0x2B80D62CU },
85 1.13 isaki { 0x3FFC - 0x3fff, 0xB6B07F38U, 0xCE90E46BU },
86 1.13 isaki { 0x3FFE - 0x3fff, 0xD3680D36U, 0x80D3680DU },
87 1.13 isaki { 0x3FFC - 0x3fff, 0xC3FD0329U, 0x06488481U },
88 1.13 isaki { 0x3FFE - 0x3fff, 0xD0B69FCBU, 0xD2580D0BU },
89 1.13 isaki { 0x3FFC - 0x3fff, 0xD11DE0FFU, 0x15AB18CAU },
90 1.13 isaki { 0x3FFE - 0x3fff, 0xCE168A77U, 0x25080CE1U },
91 1.13 isaki { 0x3FFC - 0x3fff, 0xDE1433A1U, 0x6C66B150U },
92 1.13 isaki { 0x3FFE - 0x3fff, 0xCB8727C0U, 0x65C393E0U },
93 1.13 isaki { 0x3FFC - 0x3fff, 0xEAE10B5AU, 0x7DDC8ADDU },
94 1.13 isaki { 0x3FFE - 0x3fff, 0xC907DA4EU, 0x871146ADU },
95 1.13 isaki { 0x3FFC - 0x3fff, 0xF7856E5EU, 0xE2C9B291U },
96 1.13 isaki { 0x3FFE - 0x3fff, 0xC6980C69U, 0x80C6980CU },
97 1.13 isaki { 0x3FFD - 0x3fff, 0x82012CA5U, 0xA68206D7U },
98 1.13 isaki { 0x3FFE - 0x3fff, 0xC4372F85U, 0x5D824CA6U },
99 1.13 isaki { 0x3FFD - 0x3fff, 0x882C5FCDU, 0x7256A8C5U },
100 1.13 isaki { 0x3FFE - 0x3fff, 0xC1E4BBD5U, 0x95F6E947U },
101 1.13 isaki { 0x3FFD - 0x3fff, 0x8E44C60BU, 0x4CCFD7DEU },
102 1.13 isaki { 0x3FFE - 0x3fff, 0xBFA02FE8U, 0x0BFA02FFU },
103 1.13 isaki { 0x3FFD - 0x3fff, 0x944AD09EU, 0xF4351AF6U },
104 1.13 isaki { 0x3FFE - 0x3fff, 0xBD691047U, 0x07661AA3U },
105 1.13 isaki { 0x3FFD - 0x3fff, 0x9A3EECD4U, 0xC3EAA6B2U },
106 1.13 isaki { 0x3FFE - 0x3fff, 0xBB3EE721U, 0xA54D880CU },
107 1.13 isaki { 0x3FFD - 0x3fff, 0xA0218434U, 0x353F1DE8U },
108 1.13 isaki { 0x3FFE - 0x3fff, 0xB92143FAU, 0x36F5E02EU },
109 1.13 isaki { 0x3FFD - 0x3fff, 0xA5F2FCABU, 0xBBC506DAU },
110 1.13 isaki { 0x3FFE - 0x3fff, 0xB70FBB5AU, 0x19BE3659U },
111 1.13 isaki { 0x3FFD - 0x3fff, 0xABB3B8BAU, 0x2AD362A5U },
112 1.13 isaki { 0x3FFE - 0x3fff, 0xB509E68AU, 0x9B94821FU },
113 1.13 isaki { 0x3FFD - 0x3fff, 0xB1641795U, 0xCE3CA97BU },
114 1.13 isaki { 0x3FFE - 0x3fff, 0xB30F6352U, 0x8917C80BU },
115 1.13 isaki { 0x3FFD - 0x3fff, 0xB7047551U, 0x5D0F1C61U },
116 1.13 isaki { 0x3FFE - 0x3fff, 0xB11FD3B8U, 0x0B11FD3CU },
117 1.13 isaki { 0x3FFD - 0x3fff, 0xBC952AFEU, 0xEA3D13E1U },
118 1.13 isaki { 0x3FFE - 0x3fff, 0xAF3ADDC6U, 0x80AF3ADEU },
119 1.13 isaki { 0x3FFD - 0x3fff, 0xC2168ED0U, 0xF458BA4AU },
120 1.13 isaki { 0x3FFE - 0x3fff, 0xAD602B58U, 0x0AD602B6U },
121 1.13 isaki { 0x3FFD - 0x3fff, 0xC788F439U, 0xB3163BF1U },
122 1.13 isaki { 0x3FFE - 0x3fff, 0xAB8F69E2U, 0x8359CD11U },
123 1.13 isaki { 0x3FFD - 0x3fff, 0xCCECAC08U, 0xBF04565DU },
124 1.13 isaki { 0x3FFE - 0x3fff, 0xA9C84A47U, 0xA07F5638U },
125 1.13 isaki { 0x3FFD - 0x3fff, 0xD2420487U, 0x2DD85160U },
126 1.13 isaki { 0x3FFE - 0x3fff, 0xA80A80A8U, 0x0A80A80BU },
127 1.13 isaki { 0x3FFD - 0x3fff, 0xD7894992U, 0x3BC3588AU },
128 1.13 isaki { 0x3FFE - 0x3fff, 0xA655C439U, 0x2D7B73A8U },
129 1.13 isaki { 0x3FFD - 0x3fff, 0xDCC2C4B4U, 0x9887DACCU },
130 1.13 isaki { 0x3FFE - 0x3fff, 0xA4A9CF1DU, 0x96833751U },
131 1.13 isaki { 0x3FFD - 0x3fff, 0xE1EEBD3EU, 0x6D6A6B9EU },
132 1.13 isaki { 0x3FFE - 0x3fff, 0xA3065E3FU, 0xAE7CD0E0U },
133 1.13 isaki { 0x3FFD - 0x3fff, 0xE70D785CU, 0x2F9F5BDCU },
134 1.13 isaki { 0x3FFE - 0x3fff, 0xA16B312EU, 0xA8FC377DU },
135 1.13 isaki { 0x3FFD - 0x3fff, 0xEC1F392CU, 0x5179F283U },
136 1.13 isaki { 0x3FFE - 0x3fff, 0x9FD809FDU, 0x809FD80AU },
137 1.13 isaki { 0x3FFD - 0x3fff, 0xF12440D3U, 0xE36130E6U },
138 1.13 isaki { 0x3FFE - 0x3fff, 0x9E4CAD23U, 0xDD5F3A20U },
139 1.13 isaki { 0x3FFD - 0x3fff, 0xF61CCE92U, 0x346600BBU },
140 1.13 isaki { 0x3FFE - 0x3fff, 0x9CC8E160U, 0xC3FB19B9U },
141 1.13 isaki { 0x3FFD - 0x3fff, 0xFB091FD3U, 0x8145630AU },
142 1.13 isaki { 0x3FFE - 0x3fff, 0x9B4C6F9EU, 0xF03A3CAAU },
143 1.13 isaki { 0x3FFD - 0x3fff, 0xFFE97042U, 0xBFA4C2ADU },
144 1.13 isaki { 0x3FFE - 0x3fff, 0x99D722DAU, 0xBDE58F06U },
145 1.13 isaki { 0x3FFE - 0x3fff, 0x825EFCEDU, 0x49369330U },
146 1.13 isaki { 0x3FFE - 0x3fff, 0x9868C809U, 0x868C8098U },
147 1.13 isaki { 0x3FFE - 0x3fff, 0x84C37A7AU, 0xB9A905C9U },
148 1.13 isaki { 0x3FFE - 0x3fff, 0x97012E02U, 0x5C04B809U },
149 1.13 isaki { 0x3FFE - 0x3fff, 0x87224C2EU, 0x8E645FB7U },
150 1.13 isaki { 0x3FFE - 0x3fff, 0x95A02568U, 0x095A0257U },
151 1.13 isaki { 0x3FFE - 0x3fff, 0x897B8CACU, 0x9F7DE298U },
152 1.13 isaki { 0x3FFE - 0x3fff, 0x94458094U, 0x45809446U },
153 1.13 isaki { 0x3FFE - 0x3fff, 0x8BCF55DEU, 0xC4CD05FEU },
154 1.13 isaki { 0x3FFE - 0x3fff, 0x92F11384U, 0x0497889CU },
155 1.13 isaki { 0x3FFE - 0x3fff, 0x8E1DC0FBU, 0x89E125E5U },
156 1.13 isaki { 0x3FFE - 0x3fff, 0x91A2B3C4U, 0xD5E6F809U },
157 1.13 isaki { 0x3FFE - 0x3fff, 0x9066E68CU, 0x955B6C9BU },
158 1.13 isaki { 0x3FFE - 0x3fff, 0x905A3863U, 0x3E06C43BU },
159 1.13 isaki { 0x3FFE - 0x3fff, 0x92AADE74U, 0xC7BE59E0U },
160 1.13 isaki { 0x3FFE - 0x3fff, 0x8F1779D9U, 0xFDC3A219U },
161 1.13 isaki { 0x3FFE - 0x3fff, 0x94E9BFF6U, 0x15845643U },
162 1.13 isaki { 0x3FFE - 0x3fff, 0x8DDA5202U, 0x37694809U },
163 1.13 isaki { 0x3FFE - 0x3fff, 0x9723A1B7U, 0x20134203U },
164 1.13 isaki { 0x3FFE - 0x3fff, 0x8CA29C04U, 0x6514E023U },
165 1.13 isaki { 0x3FFE - 0x3fff, 0x995899C8U, 0x90EB8990U },
166 1.13 isaki { 0x3FFE - 0x3fff, 0x8B70344AU, 0x139BC75AU },
167 1.13 isaki { 0x3FFE - 0x3fff, 0x9B88BDAAU, 0x3A3DAE2FU },
168 1.13 isaki { 0x3FFE - 0x3fff, 0x8A42F870U, 0x5669DB46U },
169 1.13 isaki { 0x3FFE - 0x3fff, 0x9DB4224FU, 0xFFE1157CU },
170 1.13 isaki { 0x3FFE - 0x3fff, 0x891AC73AU, 0xE9819B50U },
171 1.13 isaki { 0x3FFE - 0x3fff, 0x9FDADC26U, 0x8B7A12DAU },
172 1.13 isaki { 0x3FFE - 0x3fff, 0x87F78087U, 0xF78087F8U },
173 1.13 isaki { 0x3FFE - 0x3fff, 0xA1FCFF17U, 0xCE733BD4U },
174 1.13 isaki { 0x3FFE - 0x3fff, 0x86D90544U, 0x7A34ACC6U },
175 1.13 isaki { 0x3FFE - 0x3fff, 0xA41A9E8FU, 0x5446FB9FU },
176 1.13 isaki { 0x3FFE - 0x3fff, 0x85BF3761U, 0x2CEE3C9BU },
177 1.13 isaki { 0x3FFE - 0x3fff, 0xA633CD7EU, 0x6771CD8BU },
178 1.13 isaki { 0x3FFE - 0x3fff, 0x84A9F9C8U, 0x084A9F9DU },
179 1.13 isaki { 0x3FFE - 0x3fff, 0xA8489E60U, 0x0B435A5EU },
180 1.13 isaki { 0x3FFE - 0x3fff, 0x83993052U, 0x3FBE3368U },
181 1.13 isaki { 0x3FFE - 0x3fff, 0xAA59233CU, 0xCCA4BD49U },
182 1.13 isaki { 0x3FFE - 0x3fff, 0x828CBFBEU, 0xB9A020A3U },
183 1.13 isaki { 0x3FFE - 0x3fff, 0xAC656DAEU, 0x6BCC4985U },
184 1.13 isaki { 0x3FFE - 0x3fff, 0x81848DA8U, 0xFAF0D277U },
185 1.13 isaki { 0x3FFE - 0x3fff, 0xAE6D8EE3U, 0x60BB2468U },
186 1.13 isaki { 0x3FFE - 0x3fff, 0x80808080U, 0x80808081U },
187 1.13 isaki { 0x3FFE - 0x3fff, 0xB07197A2U, 0x3C46C654U },
188 1.1 briggs };
189 1.1 briggs
190 1.10 dsl static struct fpn *__fpu_logn(struct fpemu *fe);
191 1.1 briggs
192 1.1 briggs /*
193 1.1 briggs * natural log - algorithm taken from Motorola FPSP,
194 1.1 briggs * except this doesn't bother to check for invalid input.
195 1.1 briggs */
196 1.1 briggs static struct fpn *
197 1.12 dsl __fpu_logn(struct fpemu *fe)
198 1.1 briggs {
199 1.13 isaki static struct fpn X, F, U, V, W, KLOG2;
200 1.13 isaki struct fpn *d;
201 1.13 isaki int i, k;
202 1.13 isaki
203 1.13 isaki CPYFPN(&X, &fe->fe_f2);
204 1.13 isaki
205 1.13 isaki /* see if |X-1| < 1/16 approx. */
206 1.13 isaki if ((-1 == X.fp_exp && (0xf07d0000U >> (31 - FP_LG)) <= X.fp_mant[0]) ||
207 1.13 isaki (0 == X.fp_exp && X.fp_mant[0] <= (0x88410000U >> (31 - FP_LG)))) {
208 1.13 isaki /* log near 1 */
209 1.6 briggs #if FPE_DEBUG
210 1.13 isaki printf("__fpu_logn: log near 1\n");
211 1.6 briggs #endif
212 1.1 briggs
213 1.13 isaki fpu_const(&fe->fe_f1, 0x32);
214 1.13 isaki /* X+1 */
215 1.13 isaki d = fpu_add(fe);
216 1.13 isaki CPYFPN(&V, d);
217 1.13 isaki
218 1.13 isaki CPYFPN(&fe->fe_f1, &X);
219 1.13 isaki fpu_const(&fe->fe_f2, 0x32); /* 1.0 */
220 1.13 isaki fe->fe_f2.fp_sign = 1; /* -1.0 */
221 1.13 isaki /* X-1 */
222 1.13 isaki d = fpu_add(fe);
223 1.13 isaki CPYFPN(&fe->fe_f1, d);
224 1.13 isaki /* 2(X-1) */
225 1.13 isaki fe->fe_f1.fp_exp++; /* *= 2 */
226 1.13 isaki CPYFPN(&fe->fe_f2, &V);
227 1.13 isaki /* U=2(X-1)/(X+1) */
228 1.13 isaki d = fpu_div(fe);
229 1.13 isaki CPYFPN(&U, d);
230 1.13 isaki CPYFPN(&fe->fe_f1, d);
231 1.13 isaki CPYFPN(&fe->fe_f2, d);
232 1.13 isaki /* V=U*U */
233 1.13 isaki d = fpu_mul(fe);
234 1.13 isaki CPYFPN(&V, d);
235 1.13 isaki CPYFPN(&fe->fe_f1, d);
236 1.13 isaki CPYFPN(&fe->fe_f2, d);
237 1.13 isaki /* W=V*V */
238 1.13 isaki d = fpu_mul(fe);
239 1.13 isaki CPYFPN(&W, d);
240 1.13 isaki
241 1.13 isaki /* calculate U+U*V*([B1+W*(B3+W*B5)]+[V*(B2+W*B4)]) */
242 1.13 isaki
243 1.13 isaki /* B1+W*(B3+W*B5) part */
244 1.13 isaki CPYFPN(&fe->fe_f1, d);
245 1.13 isaki fpu_explode(fe, &fe->fe_f2, FTYPE_DBL, logB5);
246 1.13 isaki /* W*B5 */
247 1.13 isaki d = fpu_mul(fe);
248 1.13 isaki CPYFPN(&fe->fe_f1, d);
249 1.13 isaki fpu_explode(fe, &fe->fe_f2, FTYPE_DBL, logB3);
250 1.13 isaki /* B3+W*B5 */
251 1.13 isaki d = fpu_add(fe);
252 1.13 isaki CPYFPN(&fe->fe_f1, d);
253 1.13 isaki CPYFPN(&fe->fe_f2, &W);
254 1.13 isaki /* W*(B3+W*B5) */
255 1.13 isaki d = fpu_mul(fe);
256 1.13 isaki CPYFPN(&fe->fe_f1, d);
257 1.13 isaki fpu_explode(fe, &fe->fe_f2, FTYPE_DBL, logB1);
258 1.13 isaki /* B1+W*(B3+W*B5) */
259 1.13 isaki d = fpu_add(fe);
260 1.13 isaki CPYFPN(&X, d);
261 1.13 isaki
262 1.13 isaki /* [V*(B2+W*B4)] part */
263 1.13 isaki CPYFPN(&fe->fe_f1, &W);
264 1.13 isaki fpu_explode(fe, &fe->fe_f2, FTYPE_DBL, logB4);
265 1.13 isaki /* W*B4 */
266 1.13 isaki d = fpu_mul(fe);
267 1.13 isaki CPYFPN(&fe->fe_f1, d);
268 1.13 isaki fpu_explode(fe, &fe->fe_f2, FTYPE_DBL, logB2);
269 1.13 isaki /* B2+W*B4 */
270 1.13 isaki d = fpu_add(fe);
271 1.13 isaki CPYFPN(&fe->fe_f1, d);
272 1.13 isaki CPYFPN(&fe->fe_f2, &V);
273 1.13 isaki /* V*(B2+W*B4) */
274 1.13 isaki d = fpu_mul(fe);
275 1.13 isaki CPYFPN(&fe->fe_f1, d);
276 1.13 isaki CPYFPN(&fe->fe_f2, &X);
277 1.13 isaki /* B1+W*(B3+W*B5)+V*(B2+W*B4) */
278 1.13 isaki d = fpu_add(fe);
279 1.13 isaki CPYFPN(&fe->fe_f1, d);
280 1.13 isaki CPYFPN(&fe->fe_f2, &V);
281 1.13 isaki /* V*(B1+W*(B3+W*B5)+V*(B2+W*B4)) */
282 1.13 isaki d = fpu_mul(fe);
283 1.13 isaki CPYFPN(&fe->fe_f1, d);
284 1.13 isaki CPYFPN(&fe->fe_f2, &U);
285 1.13 isaki /* U*V*(B1+W*(B3+W*B5)+V*(B2+W*B4)) */
286 1.13 isaki d = fpu_mul(fe);
287 1.13 isaki CPYFPN(&fe->fe_f1, d);
288 1.13 isaki CPYFPN(&fe->fe_f2, &U);
289 1.13 isaki /* U+U*V*(B1+W*(B3+W*B5)+V*(B2+W*B4)) */
290 1.13 isaki d = fpu_add(fe);
291 1.13 isaki } else /* the usual case */ {
292 1.6 briggs #if FPE_DEBUG
293 1.13 isaki printf("__fpu_logn: the usual case. X=(%d,%08x,%08x...)\n",
294 1.13 isaki X.fp_exp, X.fp_mant[0], X.fp_mant[1]);
295 1.6 briggs #endif
296 1.1 briggs
297 1.13 isaki k = X.fp_exp;
298 1.13 isaki /* X <- Y */
299 1.13 isaki X.fp_exp = fe->fe_f2.fp_exp = 0;
300 1.13 isaki
301 1.13 isaki /* get the most significant 7 bits of X */
302 1.13 isaki F.fp_class = FPC_NUM;
303 1.13 isaki F.fp_sign = 0;
304 1.13 isaki F.fp_exp = X.fp_exp;
305 1.13 isaki F.fp_mant[0] = X.fp_mant[0] & (0xfe000000U >> (31 - FP_LG));
306 1.13 isaki F.fp_mant[0] |= (0x01000000U >> (31 - FP_LG));
307 1.13 isaki F.fp_mant[1] = F.fp_mant[2] = 0;
308 1.13 isaki F.fp_sticky = 0;
309 1.1 briggs
310 1.6 briggs #if FPE_DEBUG
311 1.13 isaki printf("__fpu_logn: X=Y*2^k=(%d,%08x,%08x...)*2^%d\n",
312 1.13 isaki fe->fe_f2.fp_exp, fe->fe_f2.fp_mant[0],
313 1.13 isaki fe->fe_f2.fp_mant[1], k);
314 1.13 isaki printf("__fpu_logn: F=(%d,%08x,%08x...)\n",
315 1.13 isaki F.fp_exp, F.fp_mant[0], F.fp_mant[1]);
316 1.6 briggs #endif
317 1.1 briggs
318 1.13 isaki /* index to the table */
319 1.13 isaki i = (F.fp_mant[0] >> (FP_LG - 7)) & 0x7e;
320 1.1 briggs
321 1.6 briggs #if FPE_DEBUG
322 1.13 isaki printf("__fpu_logn: index to logtbl i=%d(%x)\n", i, i);
323 1.6 briggs #endif
324 1.1 briggs
325 1.13 isaki CPYFPN(&fe->fe_f1, &F);
326 1.13 isaki /* -F */
327 1.13 isaki fe->fe_f1.fp_sign = 1;
328 1.13 isaki /* Y-F */
329 1.13 isaki d = fpu_add(fe);
330 1.13 isaki CPYFPN(&fe->fe_f1, d);
331 1.13 isaki
332 1.13 isaki /* fe_f2 = 1/F */
333 1.13 isaki fe->fe_f2.fp_class = FPC_NUM;
334 1.13 isaki fe->fe_f2.fp_sign = fe->fe_f2.fp_sticky = fe->fe_f2.fp_mant[2] = 0;
335 1.13 isaki fe->fe_f2.fp_exp = logtbl[i].sp_exp;
336 1.13 isaki fe->fe_f2.fp_mant[0] = (logtbl[i].sp_m0 >> (31 - FP_LG));
337 1.13 isaki fe->fe_f2.fp_mant[1] = (logtbl[i].sp_m0 << (FP_LG + 1)) |
338 1.13 isaki (logtbl[i].sp_m1 >> (31 - FP_LG));
339 1.13 isaki fe->fe_f2.fp_mant[2] = (u_int)(logtbl[i].sp_m1 << (FP_LG + 1));
340 1.1 briggs
341 1.6 briggs #if FPE_DEBUG
342 1.13 isaki printf("__fpu_logn: 1/F=(%d,%08x,%08x...)\n", fe->fe_f2.fp_exp,
343 1.13 isaki fe->fe_f2.fp_mant[0], fe->fe_f2.fp_mant[1]);
344 1.6 briggs #endif
345 1.1 briggs
346 1.13 isaki /* U = (Y-F) * (1/F) */
347 1.13 isaki d = fpu_mul(fe);
348 1.13 isaki CPYFPN(&U, d);
349 1.13 isaki
350 1.13 isaki /* KLOG2 = K * ln(2) */
351 1.13 isaki /* fe_f1 == (fpn)k */
352 1.13 isaki fpu_explode(fe, &fe->fe_f1, FTYPE_LNG, &k);
353 1.13 isaki (void)fpu_const(&fe->fe_f2, 0x30 /* ln(2) */);
354 1.6 briggs #if FPE_DEBUG
355 1.13 isaki printf("__fpu_logn: fp(k)=(%d,%08x,%08x...)\n", fe->fe_f1.fp_exp,
356 1.13 isaki fe->fe_f1.fp_mant[0], fe->fe_f1.fp_mant[1]);
357 1.13 isaki printf("__fpu_logn: ln(2)=(%d,%08x,%08x...)\n", fe->fe_f2.fp_exp,
358 1.13 isaki fe->fe_f2.fp_mant[0], fe->fe_f2.fp_mant[1]);
359 1.6 briggs #endif
360 1.13 isaki /* K * LOGOF2 */
361 1.13 isaki d = fpu_mul(fe);
362 1.13 isaki CPYFPN(&KLOG2, d);
363 1.13 isaki
364 1.13 isaki /* V=U*U */
365 1.13 isaki CPYFPN(&fe->fe_f1, &U);
366 1.13 isaki CPYFPN(&fe->fe_f2, &U);
367 1.13 isaki d = fpu_mul(fe);
368 1.13 isaki CPYFPN(&V, d);
369 1.13 isaki
370 1.13 isaki /*
371 1.13 isaki * approximation of LOG(1+U) by
372 1.13 isaki * (U+V*(A1+V*(A3+V*A5)))+(U*V*(A2+V*(A4+V*A6)))
373 1.13 isaki */
374 1.13 isaki
375 1.13 isaki /* (U+V*(A1+V*(A3+V*A5))) part */
376 1.13 isaki CPYFPN(&fe->fe_f1, d);
377 1.13 isaki fpu_explode(fe, &fe->fe_f2, FTYPE_DBL, logA5);
378 1.13 isaki /* V*A5 */
379 1.13 isaki d = fpu_mul(fe);
380 1.13 isaki
381 1.13 isaki CPYFPN(&fe->fe_f1, d);
382 1.13 isaki fpu_explode(fe, &fe->fe_f2, FTYPE_DBL, logA3);
383 1.13 isaki /* A3+V*A5 */
384 1.13 isaki d = fpu_add(fe);
385 1.13 isaki
386 1.13 isaki CPYFPN(&fe->fe_f1, d);
387 1.13 isaki CPYFPN(&fe->fe_f2, &V);
388 1.13 isaki /* V*(A3+V*A5) */
389 1.13 isaki d = fpu_mul(fe);
390 1.13 isaki
391 1.13 isaki CPYFPN(&fe->fe_f1, d);
392 1.13 isaki fpu_explode(fe, &fe->fe_f2, FTYPE_DBL, logA1);
393 1.13 isaki /* A1+V*(A3+V*A5) */
394 1.13 isaki d = fpu_add(fe);
395 1.13 isaki
396 1.13 isaki CPYFPN(&fe->fe_f1, d);
397 1.13 isaki CPYFPN(&fe->fe_f2, &V);
398 1.13 isaki /* V*(A1+V*(A3+V*A5)) */
399 1.13 isaki d = fpu_mul(fe);
400 1.13 isaki
401 1.13 isaki CPYFPN(&fe->fe_f1, d);
402 1.13 isaki CPYFPN(&fe->fe_f2, &U);
403 1.13 isaki /* U+V*(A1+V*(A3+V*A5)) */
404 1.13 isaki d = fpu_add(fe);
405 1.13 isaki
406 1.13 isaki CPYFPN(&X, d);
407 1.13 isaki
408 1.13 isaki /* (U*V*(A2+V*(A4+V*A6))) part */
409 1.13 isaki CPYFPN(&fe->fe_f1, &V);
410 1.13 isaki fpu_explode(fe, &fe->fe_f2, FTYPE_DBL, logA6);
411 1.13 isaki /* V*A6 */
412 1.13 isaki d = fpu_mul(fe);
413 1.13 isaki CPYFPN(&fe->fe_f1, d);
414 1.13 isaki fpu_explode(fe, &fe->fe_f2, FTYPE_DBL, logA4);
415 1.13 isaki /* A4+V*A6 */
416 1.13 isaki d = fpu_add(fe);
417 1.13 isaki CPYFPN(&fe->fe_f1, d);
418 1.13 isaki CPYFPN(&fe->fe_f2, &V);
419 1.13 isaki /* V*(A4+V*A6) */
420 1.13 isaki d = fpu_mul(fe);
421 1.13 isaki CPYFPN(&fe->fe_f1, d);
422 1.13 isaki fpu_explode(fe, &fe->fe_f2, FTYPE_DBL, logA2);
423 1.13 isaki /* A2+V*(A4+V*A6) */
424 1.13 isaki d = fpu_add(fe);
425 1.13 isaki CPYFPN(&fe->fe_f1, d);
426 1.13 isaki CPYFPN(&fe->fe_f2, &V);
427 1.13 isaki /* V*(A2+V*(A4+V*A6)) */
428 1.13 isaki d = fpu_mul(fe);
429 1.13 isaki CPYFPN(&fe->fe_f1, d);
430 1.13 isaki CPYFPN(&fe->fe_f2, &U);
431 1.13 isaki /* U*V*(A2+V*(A4+V*A6)) */
432 1.13 isaki d = fpu_mul(fe);
433 1.13 isaki CPYFPN(&fe->fe_f1, d);
434 1.13 isaki i++;
435 1.13 isaki /* fe_f2 = logtbl[i+1] (== LOG(F)) */
436 1.13 isaki fe->fe_f2.fp_class = FPC_NUM;
437 1.13 isaki fe->fe_f2.fp_sign = fe->fe_f2.fp_sticky = fe->fe_f2.fp_mant[2] = 0;
438 1.13 isaki fe->fe_f2.fp_exp = logtbl[i].sp_exp;
439 1.13 isaki fe->fe_f2.fp_mant[0] = (logtbl[i].sp_m0 >> (31 - FP_LG));
440 1.13 isaki fe->fe_f2.fp_mant[1] = (logtbl[i].sp_m0 << (FP_LG + 1)) |
441 1.13 isaki (logtbl[i].sp_m1 >> (31 - FP_LG));
442 1.13 isaki fe->fe_f2.fp_mant[2] = (logtbl[i].sp_m1 << (FP_LG + 1));
443 1.1 briggs
444 1.6 briggs #if FPE_DEBUG
445 1.13 isaki printf("__fpu_logn: ln(F)=(%d,%08x,%08x,...)\n", fe->fe_f2.fp_exp,
446 1.13 isaki fe->fe_f2.fp_mant[0], fe->fe_f2.fp_mant[1]);
447 1.6 briggs #endif
448 1.1 briggs
449 1.13 isaki /* LOG(F)+U*V*(A2+V*(A4+V*A6)) */
450 1.13 isaki d = fpu_add(fe);
451 1.13 isaki CPYFPN(&fe->fe_f1, d);
452 1.13 isaki CPYFPN(&fe->fe_f2, &X);
453 1.13 isaki /* LOG(F)+U+V*(A1+V*(A3+V*A5))+U*V*(A2+V*(A4+V*A6)) */
454 1.13 isaki d = fpu_add(fe);
455 1.1 briggs
456 1.6 briggs #if FPE_DEBUG
457 1.13 isaki printf("__fpu_logn: ln(Y)=(%c,%d,%08x,%08x,%08x)\n",
458 1.13 isaki d->fp_sign ? '-' : '+', d->fp_exp,
459 1.13 isaki d->fp_mant[0], d->fp_mant[1], d->fp_mant[2]);
460 1.6 briggs #endif
461 1.1 briggs
462 1.13 isaki CPYFPN(&fe->fe_f1, d);
463 1.13 isaki CPYFPN(&fe->fe_f2, &KLOG2);
464 1.13 isaki /* K*LOGOF2+LOG(F)+U+V*(A1+V*(A3+V*A5))+U*V*(A2+V*(A4+V*A6)) */
465 1.13 isaki d = fpu_add(fe);
466 1.13 isaki }
467 1.1 briggs
468 1.13 isaki return d;
469 1.1 briggs }
470 1.1 briggs
471 1.1 briggs struct fpn *
472 1.11 dsl fpu_log10(struct fpemu *fe)
473 1.1 briggs {
474 1.13 isaki struct fpn *fp = &fe->fe_f2;
475 1.13 isaki u_int fpsr;
476 1.1 briggs
477 1.13 isaki fpsr = fe->fe_fpsr & ~FPSR_EXCP; /* clear all exceptions */
478 1.1 briggs
479 1.13 isaki if (fp->fp_class >= FPC_NUM) {
480 1.13 isaki if (fp->fp_sign) { /* negative number or Inf */
481 1.13 isaki fp = fpu_newnan(fe);
482 1.13 isaki fpsr |= FPSR_OPERR;
483 1.13 isaki } else if (fp->fp_class == FPC_NUM) {
484 1.13 isaki /* the real work here */
485 1.13 isaki fp = __fpu_logn(fe);
486 1.13 isaki if (fp != &fe->fe_f1)
487 1.13 isaki CPYFPN(&fe->fe_f1, fp);
488 1.13 isaki (void)fpu_const(&fe->fe_f2, 0x31 /* ln(10) */);
489 1.13 isaki fp = fpu_div(fe);
490 1.13 isaki } /* else if fp == +Inf, return +Inf */
491 1.13 isaki } else if (fp->fp_class == FPC_ZERO) {
492 1.13 isaki /* return -Inf */
493 1.13 isaki fp->fp_class = FPC_INF;
494 1.13 isaki fp->fp_sign = 1;
495 1.13 isaki fpsr |= FPSR_DZ;
496 1.13 isaki } else if (fp->fp_class == FPC_SNAN) {
497 1.13 isaki fpsr |= FPSR_SNAN;
498 1.13 isaki fp = fpu_newnan(fe);
499 1.13 isaki } else {
500 1.13 isaki fp = fpu_newnan(fe);
501 1.13 isaki }
502 1.1 briggs
503 1.13 isaki fe->fe_fpsr = fpsr;
504 1.1 briggs
505 1.13 isaki return fp;
506 1.1 briggs }
507 1.1 briggs
508 1.1 briggs struct fpn *
509 1.11 dsl fpu_log2(struct fpemu *fe)
510 1.1 briggs {
511 1.13 isaki struct fpn *fp = &fe->fe_f2;
512 1.13 isaki u_int fpsr;
513 1.1 briggs
514 1.13 isaki fpsr = fe->fe_fpsr & ~FPSR_EXCP; /* clear all exceptions */
515 1.1 briggs
516 1.13 isaki if (fp->fp_class >= FPC_NUM) {
517 1.13 isaki if (fp->fp_sign) { /* negative number or Inf */
518 1.13 isaki fp = fpu_newnan(fe);
519 1.13 isaki fpsr |= FPSR_OPERR;
520 1.13 isaki } else if (fp->fp_class == FPC_NUM) {
521 1.13 isaki /* the real work here */
522 1.13 isaki if (fp->fp_mant[0] == FP_1 && fp->fp_mant[1] == 0 &&
523 1.13 isaki fp->fp_mant[2] == 0) {
524 1.13 isaki /* fp == 2.0 ^ exp <--> log2(fp) == exp */
525 1.13 isaki fpu_explode(fe, &fe->fe_f3, FTYPE_LNG, &fp->fp_exp);
526 1.13 isaki fp = &fe->fe_f3;
527 1.13 isaki } else {
528 1.13 isaki fp = __fpu_logn(fe);
529 1.13 isaki if (fp != &fe->fe_f1)
530 1.13 isaki CPYFPN(&fe->fe_f1, fp);
531 1.13 isaki (void)fpu_const(&fe->fe_f2, 0x30 /* ln(2) */);
532 1.13 isaki fp = fpu_div(fe);
533 1.13 isaki }
534 1.13 isaki } /* else if fp == +Inf, return +Inf */
535 1.13 isaki } else if (fp->fp_class == FPC_ZERO) {
536 1.13 isaki /* return -Inf */
537 1.13 isaki fp->fp_class = FPC_INF;
538 1.13 isaki fp->fp_sign = 1;
539 1.13 isaki fpsr |= FPSR_DZ;
540 1.13 isaki } else if (fp->fp_class == FPC_SNAN) {
541 1.13 isaki fpsr |= FPSR_SNAN;
542 1.13 isaki fp = fpu_newnan(fe);
543 1.13 isaki } else {
544 1.13 isaki fp = fpu_newnan(fe);
545 1.13 isaki }
546 1.1 briggs
547 1.13 isaki fe->fe_fpsr = fpsr;
548 1.13 isaki return fp;
549 1.1 briggs }
550 1.1 briggs
551 1.1 briggs struct fpn *
552 1.11 dsl fpu_logn(struct fpemu *fe)
553 1.1 briggs {
554 1.13 isaki struct fpn *fp = &fe->fe_f2;
555 1.13 isaki u_int fpsr;
556 1.1 briggs
557 1.13 isaki fpsr = fe->fe_fpsr & ~FPSR_EXCP; /* clear all exceptions */
558 1.1 briggs
559 1.13 isaki if (fp->fp_class >= FPC_NUM) {
560 1.13 isaki if (fp->fp_sign) { /* negative number or Inf */
561 1.13 isaki fp = fpu_newnan(fe);
562 1.13 isaki fpsr |= FPSR_OPERR;
563 1.13 isaki } else if (fp->fp_class == FPC_NUM) {
564 1.13 isaki /* the real work here */
565 1.13 isaki fp = __fpu_logn(fe);
566 1.13 isaki } /* else if fp == +Inf, return +Inf */
567 1.13 isaki } else if (fp->fp_class == FPC_ZERO) {
568 1.13 isaki /* return -Inf */
569 1.13 isaki fp->fp_class = FPC_INF;
570 1.13 isaki fp->fp_sign = 1;
571 1.13 isaki fpsr |= FPSR_DZ;
572 1.13 isaki } else if (fp->fp_class == FPC_SNAN) {
573 1.13 isaki fpsr |= FPSR_SNAN;
574 1.13 isaki fp = fpu_newnan(fe);
575 1.13 isaki } else {
576 1.13 isaki fp = fpu_newnan(fe);
577 1.13 isaki }
578 1.1 briggs
579 1.13 isaki fe->fe_fpsr = fpsr;
580 1.1 briggs
581 1.13 isaki return fp;
582 1.1 briggs }
583 1.1 briggs
584 1.1 briggs struct fpn *
585 1.11 dsl fpu_lognp1(struct fpemu *fe)
586 1.1 briggs {
587 1.13 isaki struct fpn *fp;
588 1.1 briggs
589 1.13 isaki /* build a 1.0 */
590 1.13 isaki fp = fpu_const(&fe->fe_f1, 0x32); /* get 1.0 */
591 1.13 isaki /* fp = 1.0 + f2 */
592 1.13 isaki fp = fpu_add(fe);
593 1.13 isaki
594 1.13 isaki /* copy the result to the src opr */
595 1.13 isaki if (&fe->fe_f2 != fp)
596 1.13 isaki CPYFPN(&fe->fe_f2, fp);
597 1.1 briggs
598 1.13 isaki return fpu_logn(fe);
599 1.1 briggs }
600