2 NetWinder Floating Point Emulator
3 (c) Rebel.COM, 1998,1999
5 Direct questions, comments to Scott Bambrough <scottb@netwinder.org>
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, see <http://www.gnu.org/licenses/>.
25 //#include "fpmodule.h"
26 //#include "fpmodule.inl"
28 //#include <asm/system.h>
32 FPA11
* qemufpa
= NULL
;
33 CPUARMState
* user_registers
;
35 /* Reset the FPA11 chip. Called to initialize and reset the emulator. */
39 FPA11
*fpa11
= GET_FPA11();
41 /* initialize the register type array */
44 fpa11
->fType
[i
] = typeNone
;
47 /* FPSR: set system id to FP_EMULATOR, set AC, clear all other bits */
48 fpa11
->fpsr
= FP_EMULATOR
| BIT_AC
;
50 /* FPCR: set SB, AB and DA bits, clear all others */
52 fpa11
->fpcr
= MASK_RESET
;
56 void SetRoundingMode(const unsigned int opcode
)
59 FPA11
*fpa11
= GET_FPA11();
62 fpa11
->fpcr
&= ~MASK_ROUNDING_MODE
;
64 switch (opcode
& MASK_ROUNDING_MODE
)
67 case ROUND_TO_NEAREST
:
68 rounding_mode
= float_round_nearest_even
;
70 fpa11
->fpcr
|= ROUND_TO_NEAREST
;
74 case ROUND_TO_PLUS_INFINITY
:
75 rounding_mode
= float_round_up
;
77 fpa11
->fpcr
|= ROUND_TO_PLUS_INFINITY
;
81 case ROUND_TO_MINUS_INFINITY
:
82 rounding_mode
= float_round_down
;
84 fpa11
->fpcr
|= ROUND_TO_MINUS_INFINITY
;
89 rounding_mode
= float_round_to_zero
;
91 fpa11
->fpcr
|= ROUND_TO_ZERO
;
95 set_float_rounding_mode(rounding_mode
, &fpa11
->fp_status
);
98 void SetRoundingPrecision(const unsigned int opcode
)
100 int rounding_precision
;
101 FPA11
*fpa11
= GET_FPA11();
103 fpa11
->fpcr
&= ~MASK_ROUNDING_PRECISION
;
105 switch (opcode
& MASK_ROUNDING_PRECISION
)
108 rounding_precision
= 32;
110 fpa11
->fpcr
|= ROUND_SINGLE
;
115 rounding_precision
= 64;
117 fpa11
->fpcr
|= ROUND_DOUBLE
;
122 rounding_precision
= 80;
124 fpa11
->fpcr
|= ROUND_EXTENDED
;
128 default: rounding_precision
= 80;
130 set_floatx80_rounding_precision(rounding_precision
, &fpa11
->fp_status
);
133 /* Emulate the instruction in the opcode. */
134 /* ??? This is not thread safe. */
135 unsigned int EmulateAll(unsigned int opcode
, FPA11
* qfpa
, CPUARMState
* qregs
)
137 unsigned int nRc
= 0;
138 // unsigned long flags;
140 // save_flags(flags); sti();
143 user_registers
=qregs
;
146 fprintf(stderr
,"emulating FP insn 0x%08x, PC=0x%08x\n",
147 opcode
, qregs
[ARM_REG_PC
]);
151 if (fpa11
->initflag
== 0) /* good place for __builtin_expect */
154 SetRoundingMode(ROUND_TO_NEAREST
);
155 SetRoundingPrecision(ROUND_EXTENDED
);
159 set_float_exception_flags(0, &fpa11
->fp_status
);
161 if (TEST_OPCODE(opcode
,MASK_CPRT
))
163 //fprintf(stderr,"emulating CPRT\n");
164 /* Emulate conversion opcodes. */
165 /* Emulate register transfer opcodes. */
166 /* Emulate comparison opcodes. */
167 nRc
= EmulateCPRT(opcode
);
169 else if (TEST_OPCODE(opcode
,MASK_CPDO
))
171 //fprintf(stderr,"emulating CPDO\n");
172 /* Emulate monadic arithmetic opcodes. */
173 /* Emulate dyadic arithmetic opcodes. */
174 nRc
= EmulateCPDO(opcode
);
176 else if (TEST_OPCODE(opcode
,MASK_CPDT
))
178 //fprintf(stderr,"emulating CPDT\n");
179 /* Emulate load/store opcodes. */
180 /* Emulate load/store multiple opcodes. */
181 nRc
= EmulateCPDT(opcode
);
185 /* Invalid instruction detected. Return FALSE. */
189 // restore_flags(flags);
190 if(nRc
== 1 && get_float_exception_flags(&fpa11
->fp_status
))
192 //printf("fef 0x%x\n",float_exception_flags);
193 nRc
= -get_float_exception_flags(&fpa11
->fp_status
);
196 //printf("returning %d\n",nRc);
201 unsigned int EmulateAll1(unsigned int opcode
)
203 switch ((opcode
>> 24) & 0xf)
207 if ((opcode
>> 20) & 0x1)
209 switch ((opcode
>> 8) & 0xf)
211 case 0x1: return PerformLDF(opcode
); break;
212 case 0x2: return PerformLFM(opcode
); break;
218 switch ((opcode
>> 8) & 0xf)
220 case 0x1: return PerformSTF(opcode
); break;
221 case 0x2: return PerformSFM(opcode
); break;
229 return EmulateCPDO(opcode
);
231 return EmulateCPRT(opcode
);