1 1.8 rin /* $NetBSD: fpu_subr.c,v 1.8 2022/08/30 01:48:09 rin Exp $ */ 2 1.2 deraadt 3 1.1 deraadt /* 4 1.1 deraadt * Copyright (c) 1992, 1993 5 1.1 deraadt * The Regents of the University of California. All rights reserved. 6 1.1 deraadt * 7 1.1 deraadt * This software was developed by the Computer Systems Engineering group 8 1.1 deraadt * at Lawrence Berkeley Laboratory under DARPA contract BG 91-66 and 9 1.1 deraadt * contributed to Berkeley. 10 1.1 deraadt * 11 1.1 deraadt * All advertising materials mentioning features or use of this software 12 1.1 deraadt * must display the following acknowledgement: 13 1.1 deraadt * This product includes software developed by the University of 14 1.1 deraadt * California, Lawrence Berkeley Laboratory. 15 1.1 deraadt * 16 1.1 deraadt * Redistribution and use in source and binary forms, with or without 17 1.1 deraadt * modification, are permitted provided that the following conditions 18 1.1 deraadt * are met: 19 1.1 deraadt * 1. Redistributions of source code must retain the above copyright 20 1.1 deraadt * notice, this list of conditions and the following disclaimer. 21 1.1 deraadt * 2. Redistributions in binary form must reproduce the above copyright 22 1.1 deraadt * notice, this list of conditions and the following disclaimer in the 23 1.1 deraadt * documentation and/or other materials provided with the distribution. 24 1.5 agc * 3. Neither the name of the University nor the names of its contributors 25 1.1 deraadt * may be used to endorse or promote products derived from this software 26 1.1 deraadt * without specific prior written permission. 27 1.1 deraadt * 28 1.1 deraadt * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND 29 1.1 deraadt * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE 30 1.1 deraadt * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE 31 1.1 deraadt * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE 32 1.1 deraadt * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL 33 1.1 deraadt * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS 34 1.1 deraadt * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) 35 1.1 deraadt * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT 36 1.1 deraadt * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY 37 1.1 deraadt * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF 38 1.1 deraadt * SUCH DAMAGE. 39 1.1 deraadt * 40 1.1 deraadt * @(#)fpu_subr.c 8.1 (Berkeley) 6/11/93 41 1.1 deraadt */ 42 1.1 deraadt 43 1.1 deraadt /* 44 1.1 deraadt * FPU subroutines. 45 1.1 deraadt */ 46 1.4 lukem 47 1.4 lukem #include <sys/cdefs.h> 48 1.8 rin __KERNEL_RCSID(0, "$NetBSD: fpu_subr.c,v 1.8 2022/08/30 01:48:09 rin Exp $"); 49 1.1 deraadt 50 1.1 deraadt #include <sys/types.h> 51 1.3 christos #ifdef DIAGNOSTIC 52 1.3 christos #include <sys/systm.h> 53 1.3 christos #endif 54 1.1 deraadt 55 1.1 deraadt #include <machine/reg.h> 56 1.3 christos #include <machine/instr.h> 57 1.1 deraadt 58 1.1 deraadt #include <sparc/fpu/fpu_arith.h> 59 1.1 deraadt #include <sparc/fpu/fpu_emu.h> 60 1.3 christos #include <sparc/fpu/fpu_extern.h> 61 1.1 deraadt 62 1.1 deraadt /* 63 1.1 deraadt * Shift the given number right rsh bits. Any bits that `fall off' will get 64 1.1 deraadt * shoved into the sticky field; we return the resulting sticky. Note that 65 1.1 deraadt * shifting NaNs is legal (this will never shift all bits out); a NaN's 66 1.1 deraadt * sticky field is ignored anyway. 67 1.1 deraadt */ 68 1.1 deraadt int 69 1.8 rin fpu_shr(struct fpn *fp, int rsh) 70 1.1 deraadt { 71 1.7 rin u_int m0, m1, m2, m3, s; 72 1.7 rin int lsh; 73 1.1 deraadt 74 1.1 deraadt #ifdef DIAGNOSTIC 75 1.1 deraadt if (rsh <= 0 || (fp->fp_class != FPC_NUM && !ISNAN(fp))) 76 1.1 deraadt panic("fpu_rightshift 1"); 77 1.1 deraadt #endif 78 1.1 deraadt 79 1.1 deraadt m0 = fp->fp_mant[0]; 80 1.1 deraadt m1 = fp->fp_mant[1]; 81 1.1 deraadt m2 = fp->fp_mant[2]; 82 1.1 deraadt m3 = fp->fp_mant[3]; 83 1.1 deraadt 84 1.1 deraadt /* If shifting all the bits out, take a shortcut. */ 85 1.1 deraadt if (rsh >= FP_NMANT) { 86 1.1 deraadt #ifdef DIAGNOSTIC 87 1.1 deraadt if ((m0 | m1 | m2 | m3) == 0) 88 1.1 deraadt panic("fpu_rightshift 2"); 89 1.1 deraadt #endif 90 1.1 deraadt fp->fp_mant[0] = 0; 91 1.1 deraadt fp->fp_mant[1] = 0; 92 1.1 deraadt fp->fp_mant[2] = 0; 93 1.1 deraadt fp->fp_mant[3] = 0; 94 1.1 deraadt #ifdef notdef 95 1.1 deraadt if ((m0 | m1 | m2 | m3) == 0) 96 1.1 deraadt fp->fp_class = FPC_ZERO; 97 1.1 deraadt else 98 1.1 deraadt #endif 99 1.1 deraadt fp->fp_sticky = 1; 100 1.1 deraadt return (1); 101 1.1 deraadt } 102 1.1 deraadt 103 1.1 deraadt /* Squish out full words. */ 104 1.1 deraadt s = fp->fp_sticky; 105 1.1 deraadt if (rsh >= 32 * 3) { 106 1.1 deraadt s |= m3 | m2 | m1; 107 1.1 deraadt m3 = m0, m2 = 0, m1 = 0, m0 = 0; 108 1.1 deraadt } else if (rsh >= 32 * 2) { 109 1.1 deraadt s |= m3 | m2; 110 1.1 deraadt m3 = m1, m2 = m0, m1 = 0, m0 = 0; 111 1.1 deraadt } else if (rsh >= 32) { 112 1.1 deraadt s |= m3; 113 1.1 deraadt m3 = m2, m2 = m1, m1 = m0, m0 = 0; 114 1.1 deraadt } 115 1.1 deraadt 116 1.1 deraadt /* Handle any remaining partial word. */ 117 1.1 deraadt if ((rsh &= 31) != 0) { 118 1.1 deraadt lsh = 32 - rsh; 119 1.1 deraadt s |= m3 << lsh; 120 1.1 deraadt m3 = (m3 >> rsh) | (m2 << lsh); 121 1.1 deraadt m2 = (m2 >> rsh) | (m1 << lsh); 122 1.1 deraadt m1 = (m1 >> rsh) | (m0 << lsh); 123 1.1 deraadt m0 >>= rsh; 124 1.1 deraadt } 125 1.1 deraadt fp->fp_mant[0] = m0; 126 1.1 deraadt fp->fp_mant[1] = m1; 127 1.1 deraadt fp->fp_mant[2] = m2; 128 1.1 deraadt fp->fp_mant[3] = m3; 129 1.1 deraadt fp->fp_sticky = s; 130 1.1 deraadt return (s); 131 1.1 deraadt } 132 1.1 deraadt 133 1.1 deraadt /* 134 1.1 deraadt * Force a number to be normal, i.e., make its fraction have all zero 135 1.1 deraadt * bits before FP_1, then FP_1, then all 1 bits. This is used for denorms 136 1.1 deraadt * and (sometimes) for intermediate results. 137 1.1 deraadt * 138 1.1 deraadt * Internally, this may use a `supernormal' -- a number whose fp_mant 139 1.1 deraadt * is greater than or equal to 2.0 -- so as a side effect you can hand it 140 1.1 deraadt * a supernormal and it will fix it (provided fp->fp_mant[3] == 0). 141 1.1 deraadt */ 142 1.1 deraadt void 143 1.7 rin fpu_norm(struct fpn *fp) 144 1.1 deraadt { 145 1.7 rin u_int m0, m1, m2, m3, top, sup, nrm; 146 1.7 rin int lsh, rsh, exp; 147 1.1 deraadt 148 1.1 deraadt exp = fp->fp_exp; 149 1.1 deraadt m0 = fp->fp_mant[0]; 150 1.1 deraadt m1 = fp->fp_mant[1]; 151 1.1 deraadt m2 = fp->fp_mant[2]; 152 1.1 deraadt m3 = fp->fp_mant[3]; 153 1.1 deraadt 154 1.1 deraadt /* Handle severe subnormals with 32-bit moves. */ 155 1.1 deraadt if (m0 == 0) { 156 1.1 deraadt if (m1) 157 1.1 deraadt m0 = m1, m1 = m2, m2 = m3, m3 = 0, exp -= 32; 158 1.1 deraadt else if (m2) 159 1.1 deraadt m0 = m2, m1 = m3, m2 = 0, m3 = 0, exp -= 2 * 32; 160 1.1 deraadt else if (m3) 161 1.1 deraadt m0 = m3, m1 = 0, m2 = 0, m3 = 0, exp -= 3 * 32; 162 1.1 deraadt else { 163 1.1 deraadt fp->fp_class = FPC_ZERO; 164 1.1 deraadt return; 165 1.1 deraadt } 166 1.1 deraadt } 167 1.1 deraadt 168 1.1 deraadt /* Now fix any supernormal or remaining subnormal. */ 169 1.1 deraadt nrm = FP_1; 170 1.1 deraadt sup = nrm << 1; 171 1.1 deraadt if (m0 >= sup) { 172 1.1 deraadt /* 173 1.1 deraadt * We have a supernormal number. We need to shift it right. 174 1.1 deraadt * We may assume m3==0. 175 1.1 deraadt */ 176 1.1 deraadt for (rsh = 1, top = m0 >> 1; top >= sup; rsh++) /* XXX slow */ 177 1.1 deraadt top >>= 1; 178 1.1 deraadt exp += rsh; 179 1.1 deraadt lsh = 32 - rsh; 180 1.1 deraadt m3 = m2 << lsh; 181 1.1 deraadt m2 = (m2 >> rsh) | (m1 << lsh); 182 1.1 deraadt m1 = (m1 >> rsh) | (m0 << lsh); 183 1.1 deraadt m0 = top; 184 1.1 deraadt } else if (m0 < nrm) { 185 1.1 deraadt /* 186 1.1 deraadt * We have a regular denorm (a subnormal number), and need 187 1.1 deraadt * to shift it left. 188 1.1 deraadt */ 189 1.1 deraadt for (lsh = 1, top = m0 << 1; top < nrm; lsh++) /* XXX slow */ 190 1.1 deraadt top <<= 1; 191 1.1 deraadt exp -= lsh; 192 1.1 deraadt rsh = 32 - lsh; 193 1.1 deraadt m0 = top | (m1 >> rsh); 194 1.1 deraadt m1 = (m1 << lsh) | (m2 >> rsh); 195 1.1 deraadt m2 = (m2 << lsh) | (m3 >> rsh); 196 1.1 deraadt m3 <<= lsh; 197 1.1 deraadt } 198 1.1 deraadt 199 1.1 deraadt fp->fp_exp = exp; 200 1.1 deraadt fp->fp_mant[0] = m0; 201 1.1 deraadt fp->fp_mant[1] = m1; 202 1.1 deraadt fp->fp_mant[2] = m2; 203 1.1 deraadt fp->fp_mant[3] = m3; 204 1.1 deraadt } 205 1.1 deraadt 206 1.1 deraadt /* 207 1.1 deraadt * Concoct a `fresh' Quiet NaN per Appendix N. 208 1.1 deraadt * As a side effect, we set NV (invalid) for the current exceptions. 209 1.1 deraadt */ 210 1.1 deraadt struct fpn * 211 1.7 rin fpu_newnan(struct fpemu *fe) 212 1.1 deraadt { 213 1.7 rin struct fpn *fp; 214 1.1 deraadt 215 1.1 deraadt fe->fe_cx = FSR_NV; 216 1.1 deraadt fp = &fe->fe_f3; 217 1.1 deraadt fp->fp_class = FPC_QNAN; 218 1.1 deraadt fp->fp_sign = 0; 219 1.1 deraadt fp->fp_mant[0] = FP_1 - 1; 220 1.1 deraadt fp->fp_mant[1] = fp->fp_mant[2] = fp->fp_mant[3] = ~0; 221 1.1 deraadt return (fp); 222 1.1 deraadt } 223