2 NetWinder Floating Point Emulator
3 (c) Rebel.COM, 1998,1999
7 This program is free software; you can redistribute it and/or modify
8 it under the terms of the GNU General Public License as published by
9 the Free Software Foundation; either version 2 of the License, or
10 (at your option) any later version.
12 This program is distributed in the hope that it will be useful,
13 but WITHOUT ANY WARRANTY; without even the implied warranty of
14 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
15 GNU General Public License for more details.
17 You should have received a copy of the GNU General Public License
18 along with this program; if not, write to the Free Software
19 Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
23 #include "softfloat.h"
26 float32 float32_exp(float32 Fm);
27 float32 float32_ln(float32 Fm);
28 float32 float32_sin(float32 rFm);
29 float32 float32_cos(float32 rFm);
30 float32 float32_arcsin(float32 rFm);
31 float32 float32_arctan(float32 rFm);
32 float32 float32_log(float32 rFm);
33 float32 float32_tan(float32 rFm);
34 float32 float32_arccos(float32 rFm);
35 float32 float32_pow(float32 rFn,float32 rFm);
36 float32 float32_pol(float32 rFn,float32 rFm);
38 unsigned int SingleCPDO(const unsigned int opcode)
40 FPA11 *fpa11 = GET_FPA11();
42 unsigned int Fd, Fm, Fn, nRc = 1;
45 if (CONSTANT_FM(opcode))
47 rFm = getSingleConstant(Fm);
51 switch (fpa11->fType[Fm])
54 rFm = fpa11->fpreg[Fm].fSingle;
61 if (!MONADIC_INSTRUCTION(opcode))
64 switch (fpa11->fType[Fn])
67 rFn = fpa11->fpreg[Fn].fSingle;
75 switch (opcode & MASK_ARITHMETIC_OPCODE)
79 fpa11->fpreg[Fd].fSingle = float32_add(rFn,rFm);
84 fpa11->fpreg[Fd].fSingle = float32_mul(rFn,rFm);
88 fpa11->fpreg[Fd].fSingle = float32_sub(rFn,rFm);
92 fpa11->fpreg[Fd].fSingle = float32_sub(rFm,rFn);
97 fpa11->fpreg[Fd].fSingle = float32_div(rFn,rFm);
102 fpa11->fpreg[Fd].fSingle = float32_div(rFm,rFn);
107 fpa11->fpreg[Fd].fSingle = float32_pow(rFn,rFm);
111 fpa11->fpreg[Fd].fSingle = float32_pow(rFm,rFn);
116 fpa11->fpreg[Fd].fSingle = float32_rem(rFn,rFm);
121 fpa11->fpreg[Fd].fSingle = float32_pol(rFn,rFm);
125 /* monadic opcodes */
127 fpa11->fpreg[Fd].fSingle = rFm;
132 fpa11->fpreg[Fd].fSingle = rFm;
137 fpa11->fpreg[Fd].fSingle = rFm;
142 fpa11->fpreg[Fd].fSingle = float32_round_to_int(rFm);
146 fpa11->fpreg[Fd].fSingle = float32_sqrt(rFm);
151 fpa11->fpreg[Fd].fSingle = float32_log(rFm);
155 fpa11->fpreg[Fd].fSingle = float32_ln(rFm);
159 fpa11->fpreg[Fd].fSingle = float32_exp(rFm);
163 fpa11->fpreg[Fd].fSingle = float32_sin(rFm);
167 fpa11->fpreg[Fd].fSingle = float32_cos(rFm);
171 fpa11->fpreg[Fd].fSingle = float32_tan(rFm);
175 fpa11->fpreg[Fd].fSingle = float32_arcsin(rFm);
179 fpa11->fpreg[Fd].fSingle = float32_arccos(rFm);
183 fpa11->fpreg[Fd].fSingle = float32_arctan(rFm);
196 if (0 != nRc) fpa11->fType[Fd] = typeSingle;
201 float32 float32_exp(float32 Fm)
206 float32 float32_ln(float32 Fm)
211 float32 float32_sin(float32 rFm)
216 float32 float32_cos(float32 rFm)
221 float32 float32_arcsin(float32 rFm)
226 float32 float32_arctan(float32 rFm)
231 float32 float32_arccos(float32 rFm)
233 //return float32_sub(halfPi,float32_arcsin(rFm));
236 float32 float32_log(float32 rFm)
238 return float32_div(float32_ln(rFm),getSingleConstant(7));
241 float32 float32_tan(float32 rFm)
243 return float32_div(float32_sin(rFm),float32_cos(rFm));
246 float32 float32_pow(float32 rFn,float32 rFm)
248 return float32_exp(float32_mul(rFm,float32_ln(rFn)));
251 float32 float32_pol(float32 rFn,float32 rFm)
253 return float32_arctan(float32_div(rFn,rFm));