xref: /qemu/target/m68k/fpu_helper.c (revision 42fa9665e598c268a7ccfab5b92636618d9574ec)
1c88f8107SLaurent Vivier /*
2c88f8107SLaurent Vivier  *  m68k FPU helpers
3c88f8107SLaurent Vivier  *
4c88f8107SLaurent Vivier  *  Copyright (c) 2006-2007 CodeSourcery
5c88f8107SLaurent Vivier  *  Written by Paul Brook
6c88f8107SLaurent Vivier  *
7c88f8107SLaurent Vivier  * This library is free software; you can redistribute it and/or
8c88f8107SLaurent Vivier  * modify it under the terms of the GNU Lesser General Public
9c88f8107SLaurent Vivier  * License as published by the Free Software Foundation; either
10d749fb85SThomas Huth  * version 2.1 of the License, or (at your option) any later version.
11c88f8107SLaurent Vivier  *
12c88f8107SLaurent Vivier  * This library is distributed in the hope that it will be useful,
13c88f8107SLaurent Vivier  * but WITHOUT ANY WARRANTY; without even the implied warranty of
14c88f8107SLaurent Vivier  * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the GNU
15d749fb85SThomas Huth  * Lesser General Public License for more details.
16c88f8107SLaurent Vivier  *
17c88f8107SLaurent Vivier  * You should have received a copy of the GNU Lesser General Public
18c88f8107SLaurent Vivier  * License along with this library; if not, see <http://www.gnu.org/licenses/>.
19c88f8107SLaurent Vivier  */
20c88f8107SLaurent Vivier 
21c88f8107SLaurent Vivier #include "qemu/osdep.h"
22c88f8107SLaurent Vivier #include "cpu.h"
23c88f8107SLaurent Vivier #include "exec/helper-proto.h"
24f83311e4SLaurent Vivier #include "exec/exec-all.h"
25*42fa9665SPhilippe Mathieu-Daudé #include "accel/tcg/cpu-ldst.h"
26591596b7SLaurent Vivier #include "softfloat.h"
27c88f8107SLaurent Vivier 
28808d77bcSLucien Murray-Pitts /*
29808d77bcSLucien Murray-Pitts  * Undefined offsets may be different on various FPU.
309d403660SLaurent Vivier  * On 68040 they return 0.0 (floatx80_zero)
319d403660SLaurent Vivier  */
329d403660SLaurent Vivier 
339d403660SLaurent Vivier static const floatx80 fpu_rom[128] = {
346fa9ba09SKamil Rytarowski     [0x00] = make_floatx80_init(0x4000, 0xc90fdaa22168c235ULL),  /* Pi       */
356fa9ba09SKamil Rytarowski     [0x0b] = make_floatx80_init(0x3ffd, 0x9a209a84fbcff798ULL),  /* Log10(2) */
366fa9ba09SKamil Rytarowski     [0x0c] = make_floatx80_init(0x4000, 0xadf85458a2bb4a9aULL),  /* e        */
376fa9ba09SKamil Rytarowski     [0x0d] = make_floatx80_init(0x3fff, 0xb8aa3b295c17f0bcULL),  /* Log2(e)  */
386fa9ba09SKamil Rytarowski     [0x0e] = make_floatx80_init(0x3ffd, 0xde5bd8a937287195ULL),  /* Log10(e) */
396fa9ba09SKamil Rytarowski     [0x0f] = make_floatx80_init(0x0000, 0x0000000000000000ULL),  /* Zero     */
406fa9ba09SKamil Rytarowski     [0x30] = make_floatx80_init(0x3ffe, 0xb17217f7d1cf79acULL),  /* ln(2)    */
416fa9ba09SKamil Rytarowski     [0x31] = make_floatx80_init(0x4000, 0x935d8dddaaa8ac17ULL),  /* ln(10)   */
426fa9ba09SKamil Rytarowski     [0x32] = make_floatx80_init(0x3fff, 0x8000000000000000ULL),  /* 10^0     */
436fa9ba09SKamil Rytarowski     [0x33] = make_floatx80_init(0x4002, 0xa000000000000000ULL),  /* 10^1     */
446fa9ba09SKamil Rytarowski     [0x34] = make_floatx80_init(0x4005, 0xc800000000000000ULL),  /* 10^2     */
456fa9ba09SKamil Rytarowski     [0x35] = make_floatx80_init(0x400c, 0x9c40000000000000ULL),  /* 10^4     */
466fa9ba09SKamil Rytarowski     [0x36] = make_floatx80_init(0x4019, 0xbebc200000000000ULL),  /* 10^8     */
476fa9ba09SKamil Rytarowski     [0x37] = make_floatx80_init(0x4034, 0x8e1bc9bf04000000ULL),  /* 10^16    */
486fa9ba09SKamil Rytarowski     [0x38] = make_floatx80_init(0x4069, 0x9dc5ada82b70b59eULL),  /* 10^32    */
496fa9ba09SKamil Rytarowski     [0x39] = make_floatx80_init(0x40d3, 0xc2781f49ffcfa6d5ULL),  /* 10^64    */
506fa9ba09SKamil Rytarowski     [0x3a] = make_floatx80_init(0x41a8, 0x93ba47c980e98ce0ULL),  /* 10^128   */
516fa9ba09SKamil Rytarowski     [0x3b] = make_floatx80_init(0x4351, 0xaa7eebfb9df9de8eULL),  /* 10^256   */
526fa9ba09SKamil Rytarowski     [0x3c] = make_floatx80_init(0x46a3, 0xe319a0aea60e91c7ULL),  /* 10^512   */
536fa9ba09SKamil Rytarowski     [0x3d] = make_floatx80_init(0x4d48, 0xc976758681750c17ULL),  /* 10^1024  */
546fa9ba09SKamil Rytarowski     [0x3e] = make_floatx80_init(0x5a92, 0x9e8b3b5dc53d5de5ULL),  /* 10^2048  */
556fa9ba09SKamil Rytarowski     [0x3f] = make_floatx80_init(0x7525, 0xc46052028a20979bULL),  /* 10^4096  */
569d403660SLaurent Vivier };
579d403660SLaurent Vivier 
58f83311e4SLaurent Vivier int32_t HELPER(reds32)(CPUM68KState *env, FPReg *val)
59c88f8107SLaurent Vivier {
60f83311e4SLaurent Vivier     return floatx80_to_int32(val->d, &env->fp_status);
61c88f8107SLaurent Vivier }
62c88f8107SLaurent Vivier 
63f83311e4SLaurent Vivier float32 HELPER(redf32)(CPUM68KState *env, FPReg *val)
64c88f8107SLaurent Vivier {
65f83311e4SLaurent Vivier     return floatx80_to_float32(val->d, &env->fp_status);
66c88f8107SLaurent Vivier }
67c88f8107SLaurent Vivier 
68f83311e4SLaurent Vivier void HELPER(exts32)(CPUM68KState *env, FPReg *res, int32_t val)
69c88f8107SLaurent Vivier {
70f83311e4SLaurent Vivier     res->d = int32_to_floatx80(val, &env->fp_status);
71c88f8107SLaurent Vivier }
72c88f8107SLaurent Vivier 
73f83311e4SLaurent Vivier void HELPER(extf32)(CPUM68KState *env, FPReg *res, float32 val)
74c88f8107SLaurent Vivier {
75f83311e4SLaurent Vivier     res->d = float32_to_floatx80(val, &env->fp_status);
76c88f8107SLaurent Vivier }
77c88f8107SLaurent Vivier 
78f83311e4SLaurent Vivier void HELPER(extf64)(CPUM68KState *env, FPReg *res, float64 val)
79c88f8107SLaurent Vivier {
80f83311e4SLaurent Vivier     res->d = float64_to_floatx80(val, &env->fp_status);
81c88f8107SLaurent Vivier }
82c88f8107SLaurent Vivier 
83f83311e4SLaurent Vivier float64 HELPER(redf64)(CPUM68KState *env, FPReg *val)
84c88f8107SLaurent Vivier {
85f83311e4SLaurent Vivier     return floatx80_to_float64(val->d, &env->fp_status);
86c88f8107SLaurent Vivier }
87c88f8107SLaurent Vivier 
88f83311e4SLaurent Vivier void HELPER(firound)(CPUM68KState *env, FPReg *res, FPReg *val)
89c88f8107SLaurent Vivier {
90f83311e4SLaurent Vivier     res->d = floatx80_round_to_int(val->d, &env->fp_status);
91c88f8107SLaurent Vivier }
92c88f8107SLaurent Vivier 
93ba624944SLaurent Vivier static void m68k_restore_precision_mode(CPUM68KState *env)
94ba624944SLaurent Vivier {
95ba624944SLaurent Vivier     switch (env->fpcr & FPCR_PREC_MASK) {
96ba624944SLaurent Vivier     case FPCR_PREC_X: /* extended */
978da5f1dbSRichard Henderson         set_floatx80_rounding_precision(floatx80_precision_x, &env->fp_status);
98ba624944SLaurent Vivier         break;
99ba624944SLaurent Vivier     case FPCR_PREC_S: /* single */
1008da5f1dbSRichard Henderson         set_floatx80_rounding_precision(floatx80_precision_s, &env->fp_status);
101ba624944SLaurent Vivier         break;
102ba624944SLaurent Vivier     case FPCR_PREC_D: /* double */
1038da5f1dbSRichard Henderson         set_floatx80_rounding_precision(floatx80_precision_d, &env->fp_status);
104ba624944SLaurent Vivier         break;
105ba624944SLaurent Vivier     case FPCR_PREC_U: /* undefined */
106ba624944SLaurent Vivier     default:
107ba624944SLaurent Vivier         break;
108ba624944SLaurent Vivier     }
109ba624944SLaurent Vivier }
110ba624944SLaurent Vivier 
111ba624944SLaurent Vivier static void cf_restore_precision_mode(CPUM68KState *env)
112ba624944SLaurent Vivier {
113ba624944SLaurent Vivier     if (env->fpcr & FPCR_PREC_S) { /* single */
1148da5f1dbSRichard Henderson         set_floatx80_rounding_precision(floatx80_precision_s, &env->fp_status);
115ba624944SLaurent Vivier     } else { /* double */
1168da5f1dbSRichard Henderson         set_floatx80_rounding_precision(floatx80_precision_d, &env->fp_status);
117ba624944SLaurent Vivier     }
118ba624944SLaurent Vivier }
119ba624944SLaurent Vivier 
120ba624944SLaurent Vivier static void restore_rounding_mode(CPUM68KState *env)
121ba624944SLaurent Vivier {
122ba624944SLaurent Vivier     switch (env->fpcr & FPCR_RND_MASK) {
123ba624944SLaurent Vivier     case FPCR_RND_N: /* round to nearest */
124ba624944SLaurent Vivier         set_float_rounding_mode(float_round_nearest_even, &env->fp_status);
125ba624944SLaurent Vivier         break;
126ba624944SLaurent Vivier     case FPCR_RND_Z: /* round to zero */
127ba624944SLaurent Vivier         set_float_rounding_mode(float_round_to_zero, &env->fp_status);
128ba624944SLaurent Vivier         break;
129ba624944SLaurent Vivier     case FPCR_RND_M: /* round toward minus infinity */
130ba624944SLaurent Vivier         set_float_rounding_mode(float_round_down, &env->fp_status);
131ba624944SLaurent Vivier         break;
132ba624944SLaurent Vivier     case FPCR_RND_P: /* round toward positive infinity */
133ba624944SLaurent Vivier         set_float_rounding_mode(float_round_up, &env->fp_status);
134ba624944SLaurent Vivier         break;
135ba624944SLaurent Vivier     }
136ba624944SLaurent Vivier }
137ba624944SLaurent Vivier 
138d21f73c6SLaurent Vivier void cpu_m68k_restore_fp_status(CPUM68KState *env)
139ba624944SLaurent Vivier {
140ba624944SLaurent Vivier     if (m68k_feature(env, M68K_FEATURE_CF_FPU)) {
141ba624944SLaurent Vivier         cf_restore_precision_mode(env);
142ba624944SLaurent Vivier     } else {
143ba624944SLaurent Vivier         m68k_restore_precision_mode(env);
144ba624944SLaurent Vivier     }
145ba624944SLaurent Vivier     restore_rounding_mode(env);
146ba624944SLaurent Vivier }
147ba624944SLaurent Vivier 
148d21f73c6SLaurent Vivier void cpu_m68k_set_fpcr(CPUM68KState *env, uint32_t val)
149d21f73c6SLaurent Vivier {
150d21f73c6SLaurent Vivier     env->fpcr = val & 0xffff;
151d21f73c6SLaurent Vivier     cpu_m68k_restore_fp_status(env);
152d21f73c6SLaurent Vivier }
153d21f73c6SLaurent Vivier 
154f83311e4SLaurent Vivier void HELPER(fitrunc)(CPUM68KState *env, FPReg *res, FPReg *val)
155c88f8107SLaurent Vivier {
1563dede407SRichard Henderson     FloatRoundMode rounding_mode = get_float_rounding_mode(&env->fp_status);
157ba624944SLaurent Vivier     set_float_rounding_mode(float_round_to_zero, &env->fp_status);
158f83311e4SLaurent Vivier     res->d = floatx80_round_to_int(val->d, &env->fp_status);
159ba624944SLaurent Vivier     set_float_rounding_mode(rounding_mode, &env->fp_status);
160ba624944SLaurent Vivier }
161ba624944SLaurent Vivier 
162ba624944SLaurent Vivier void HELPER(set_fpcr)(CPUM68KState *env, uint32_t val)
163ba624944SLaurent Vivier {
164ba624944SLaurent Vivier     cpu_m68k_set_fpcr(env, val);
165c88f8107SLaurent Vivier }
166c88f8107SLaurent Vivier 
16758883579SKeith Packard /* Convert host exception flags to cpu_m68k form.  */
16858883579SKeith Packard static int cpu_m68k_exceptbits_from_host(int host_bits)
16958883579SKeith Packard {
17058883579SKeith Packard     int target_bits = 0;
17158883579SKeith Packard 
17258883579SKeith Packard     if (host_bits & float_flag_invalid) {
17358883579SKeith Packard         target_bits |= 0x80;
17458883579SKeith Packard     }
17558883579SKeith Packard     if (host_bits & float_flag_overflow) {
17658883579SKeith Packard         target_bits |= 0x40;
17758883579SKeith Packard     }
1787af64d10SPeter Maydell     if (host_bits & (float_flag_underflow | float_flag_output_denormal_flushed)) {
17958883579SKeith Packard         target_bits |= 0x20;
18058883579SKeith Packard     }
18158883579SKeith Packard     if (host_bits & float_flag_divbyzero) {
18258883579SKeith Packard         target_bits |= 0x10;
18358883579SKeith Packard     }
18458883579SKeith Packard     if (host_bits & float_flag_inexact) {
18558883579SKeith Packard         target_bits |= 0x08;
18658883579SKeith Packard     }
18758883579SKeith Packard     return target_bits;
18858883579SKeith Packard }
18958883579SKeith Packard 
19058883579SKeith Packard /* Convert cpu_m68k exception flags to target form.  */
19158883579SKeith Packard static int cpu_m68k_exceptbits_to_host(int target_bits)
19258883579SKeith Packard {
19358883579SKeith Packard     int host_bits = 0;
19458883579SKeith Packard 
19558883579SKeith Packard     if (target_bits & 0x80) {
19658883579SKeith Packard         host_bits |= float_flag_invalid;
19758883579SKeith Packard     }
19858883579SKeith Packard     if (target_bits & 0x40) {
19958883579SKeith Packard         host_bits |= float_flag_overflow;
20058883579SKeith Packard     }
20158883579SKeith Packard     if (target_bits & 0x20) {
20258883579SKeith Packard         host_bits |= float_flag_underflow;
20358883579SKeith Packard     }
20458883579SKeith Packard     if (target_bits & 0x10) {
20558883579SKeith Packard         host_bits |= float_flag_divbyzero;
20658883579SKeith Packard     }
20758883579SKeith Packard     if (target_bits & 0x08) {
20858883579SKeith Packard         host_bits |= float_flag_inexact;
20958883579SKeith Packard     }
21058883579SKeith Packard     return host_bits;
21158883579SKeith Packard }
21258883579SKeith Packard 
21358883579SKeith Packard uint32_t cpu_m68k_get_fpsr(CPUM68KState *env)
21458883579SKeith Packard {
21558883579SKeith Packard     int host_flags = get_float_exception_flags(&env->fp_status);
21658883579SKeith Packard     int target_flags = cpu_m68k_exceptbits_from_host(host_flags);
21758883579SKeith Packard     int except = (env->fpsr & ~(0xf8)) | target_flags;
21858883579SKeith Packard     return except;
21958883579SKeith Packard }
22058883579SKeith Packard 
22158883579SKeith Packard uint32_t HELPER(get_fpsr)(CPUM68KState *env)
22258883579SKeith Packard {
22358883579SKeith Packard     return cpu_m68k_get_fpsr(env);
22458883579SKeith Packard }
22558883579SKeith Packard 
22658883579SKeith Packard void cpu_m68k_set_fpsr(CPUM68KState *env, uint32_t val)
22758883579SKeith Packard {
22858883579SKeith Packard     env->fpsr = val;
22958883579SKeith Packard 
23058883579SKeith Packard     int host_flags = cpu_m68k_exceptbits_to_host((int) env->fpsr);
23158883579SKeith Packard     set_float_exception_flags(host_flags, &env->fp_status);
23258883579SKeith Packard }
23358883579SKeith Packard 
23458883579SKeith Packard void HELPER(set_fpsr)(CPUM68KState *env, uint32_t val)
23558883579SKeith Packard {
23658883579SKeith Packard     cpu_m68k_set_fpsr(env, val);
23758883579SKeith Packard }
23858883579SKeith Packard 
239a51b6bc3SLaurent Vivier #define PREC_BEGIN(prec)                                        \
240a51b6bc3SLaurent Vivier     do {                                                        \
2418da5f1dbSRichard Henderson         FloatX80RoundPrec old =                                 \
2428da5f1dbSRichard Henderson             get_floatx80_rounding_precision(&env->fp_status);   \
243a51b6bc3SLaurent Vivier         set_floatx80_rounding_precision(prec, &env->fp_status)  \
244a51b6bc3SLaurent Vivier 
245a51b6bc3SLaurent Vivier #define PREC_END()                                              \
246a51b6bc3SLaurent Vivier         set_floatx80_rounding_precision(old, &env->fp_status);  \
247a51b6bc3SLaurent Vivier     } while (0)
248a51b6bc3SLaurent Vivier 
24977bdb229SLaurent Vivier void HELPER(fsround)(CPUM68KState *env, FPReg *res, FPReg *val)
25077bdb229SLaurent Vivier {
2518da5f1dbSRichard Henderson     PREC_BEGIN(floatx80_precision_s);
25277bdb229SLaurent Vivier     res->d = floatx80_round(val->d, &env->fp_status);
25377bdb229SLaurent Vivier     PREC_END();
25477bdb229SLaurent Vivier }
25577bdb229SLaurent Vivier 
25677bdb229SLaurent Vivier void HELPER(fdround)(CPUM68KState *env, FPReg *res, FPReg *val)
25777bdb229SLaurent Vivier {
2588da5f1dbSRichard Henderson     PREC_BEGIN(floatx80_precision_d);
25977bdb229SLaurent Vivier     res->d = floatx80_round(val->d, &env->fp_status);
26077bdb229SLaurent Vivier     PREC_END();
26177bdb229SLaurent Vivier }
26277bdb229SLaurent Vivier 
263f83311e4SLaurent Vivier void HELPER(fsqrt)(CPUM68KState *env, FPReg *res, FPReg *val)
264c88f8107SLaurent Vivier {
265f83311e4SLaurent Vivier     res->d = floatx80_sqrt(val->d, &env->fp_status);
266c88f8107SLaurent Vivier }
267c88f8107SLaurent Vivier 
268a51b6bc3SLaurent Vivier void HELPER(fssqrt)(CPUM68KState *env, FPReg *res, FPReg *val)
269a51b6bc3SLaurent Vivier {
2708da5f1dbSRichard Henderson     PREC_BEGIN(floatx80_precision_s);
271a51b6bc3SLaurent Vivier     res->d = floatx80_sqrt(val->d, &env->fp_status);
272a51b6bc3SLaurent Vivier     PREC_END();
273a51b6bc3SLaurent Vivier }
274a51b6bc3SLaurent Vivier 
275a51b6bc3SLaurent Vivier void HELPER(fdsqrt)(CPUM68KState *env, FPReg *res, FPReg *val)
276a51b6bc3SLaurent Vivier {
2778da5f1dbSRichard Henderson     PREC_BEGIN(floatx80_precision_d);
278a51b6bc3SLaurent Vivier     res->d = floatx80_sqrt(val->d, &env->fp_status);
279a51b6bc3SLaurent Vivier     PREC_END();
280a51b6bc3SLaurent Vivier }
281a51b6bc3SLaurent Vivier 
282f83311e4SLaurent Vivier void HELPER(fabs)(CPUM68KState *env, FPReg *res, FPReg *val)
283c88f8107SLaurent Vivier {
28477bdb229SLaurent Vivier     res->d = floatx80_round(floatx80_abs(val->d), &env->fp_status);
285c88f8107SLaurent Vivier }
286c88f8107SLaurent Vivier 
28777bdb229SLaurent Vivier void HELPER(fsabs)(CPUM68KState *env, FPReg *res, FPReg *val)
288c88f8107SLaurent Vivier {
2898da5f1dbSRichard Henderson     PREC_BEGIN(floatx80_precision_s);
29077bdb229SLaurent Vivier     res->d = floatx80_round(floatx80_abs(val->d), &env->fp_status);
29177bdb229SLaurent Vivier     PREC_END();
29277bdb229SLaurent Vivier }
29377bdb229SLaurent Vivier 
29477bdb229SLaurent Vivier void HELPER(fdabs)(CPUM68KState *env, FPReg *res, FPReg *val)
29577bdb229SLaurent Vivier {
2968da5f1dbSRichard Henderson     PREC_BEGIN(floatx80_precision_d);
29777bdb229SLaurent Vivier     res->d = floatx80_round(floatx80_abs(val->d), &env->fp_status);
29877bdb229SLaurent Vivier     PREC_END();
29977bdb229SLaurent Vivier }
30077bdb229SLaurent Vivier 
30177bdb229SLaurent Vivier void HELPER(fneg)(CPUM68KState *env, FPReg *res, FPReg *val)
30277bdb229SLaurent Vivier {
30377bdb229SLaurent Vivier     res->d = floatx80_round(floatx80_chs(val->d), &env->fp_status);
30477bdb229SLaurent Vivier }
30577bdb229SLaurent Vivier 
30677bdb229SLaurent Vivier void HELPER(fsneg)(CPUM68KState *env, FPReg *res, FPReg *val)
30777bdb229SLaurent Vivier {
3088da5f1dbSRichard Henderson     PREC_BEGIN(floatx80_precision_s);
30977bdb229SLaurent Vivier     res->d = floatx80_round(floatx80_chs(val->d), &env->fp_status);
31077bdb229SLaurent Vivier     PREC_END();
31177bdb229SLaurent Vivier }
31277bdb229SLaurent Vivier 
31377bdb229SLaurent Vivier void HELPER(fdneg)(CPUM68KState *env, FPReg *res, FPReg *val)
31477bdb229SLaurent Vivier {
3158da5f1dbSRichard Henderson     PREC_BEGIN(floatx80_precision_d);
31677bdb229SLaurent Vivier     res->d = floatx80_round(floatx80_chs(val->d), &env->fp_status);
31777bdb229SLaurent Vivier     PREC_END();
318c88f8107SLaurent Vivier }
319c88f8107SLaurent Vivier 
320f83311e4SLaurent Vivier void HELPER(fadd)(CPUM68KState *env, FPReg *res, FPReg *val0, FPReg *val1)
321c88f8107SLaurent Vivier {
322f83311e4SLaurent Vivier     res->d = floatx80_add(val0->d, val1->d, &env->fp_status);
323c88f8107SLaurent Vivier }
324c88f8107SLaurent Vivier 
325a51b6bc3SLaurent Vivier void HELPER(fsadd)(CPUM68KState *env, FPReg *res, FPReg *val0, FPReg *val1)
326a51b6bc3SLaurent Vivier {
3278da5f1dbSRichard Henderson     PREC_BEGIN(floatx80_precision_s);
328a51b6bc3SLaurent Vivier     res->d = floatx80_add(val0->d, val1->d, &env->fp_status);
329a51b6bc3SLaurent Vivier     PREC_END();
330a51b6bc3SLaurent Vivier }
331a51b6bc3SLaurent Vivier 
332a51b6bc3SLaurent Vivier void HELPER(fdadd)(CPUM68KState *env, FPReg *res, FPReg *val0, FPReg *val1)
333a51b6bc3SLaurent Vivier {
3348da5f1dbSRichard Henderson     PREC_BEGIN(floatx80_precision_d);
335a51b6bc3SLaurent Vivier     res->d = floatx80_add(val0->d, val1->d, &env->fp_status);
336a51b6bc3SLaurent Vivier     PREC_END();
337a51b6bc3SLaurent Vivier }
338a51b6bc3SLaurent Vivier 
339f83311e4SLaurent Vivier void HELPER(fsub)(CPUM68KState *env, FPReg *res, FPReg *val0, FPReg *val1)
340c88f8107SLaurent Vivier {
341f83311e4SLaurent Vivier     res->d = floatx80_sub(val1->d, val0->d, &env->fp_status);
342c88f8107SLaurent Vivier }
343c88f8107SLaurent Vivier 
344a51b6bc3SLaurent Vivier void HELPER(fssub)(CPUM68KState *env, FPReg *res, FPReg *val0, FPReg *val1)
345a51b6bc3SLaurent Vivier {
3468da5f1dbSRichard Henderson     PREC_BEGIN(floatx80_precision_s);
347a51b6bc3SLaurent Vivier     res->d = floatx80_sub(val1->d, val0->d, &env->fp_status);
348a51b6bc3SLaurent Vivier     PREC_END();
349a51b6bc3SLaurent Vivier }
350a51b6bc3SLaurent Vivier 
351a51b6bc3SLaurent Vivier void HELPER(fdsub)(CPUM68KState *env, FPReg *res, FPReg *val0, FPReg *val1)
352a51b6bc3SLaurent Vivier {
3538da5f1dbSRichard Henderson     PREC_BEGIN(floatx80_precision_d);
354a51b6bc3SLaurent Vivier     res->d = floatx80_sub(val1->d, val0->d, &env->fp_status);
355a51b6bc3SLaurent Vivier     PREC_END();
356a51b6bc3SLaurent Vivier }
357a51b6bc3SLaurent Vivier 
358f83311e4SLaurent Vivier void HELPER(fmul)(CPUM68KState *env, FPReg *res, FPReg *val0, FPReg *val1)
359f83311e4SLaurent Vivier {
360f83311e4SLaurent Vivier     res->d = floatx80_mul(val0->d, val1->d, &env->fp_status);
361f83311e4SLaurent Vivier }
362f83311e4SLaurent Vivier 
363a51b6bc3SLaurent Vivier void HELPER(fsmul)(CPUM68KState *env, FPReg *res, FPReg *val0, FPReg *val1)
364a51b6bc3SLaurent Vivier {
3658da5f1dbSRichard Henderson     PREC_BEGIN(floatx80_precision_s);
366a51b6bc3SLaurent Vivier     res->d = floatx80_mul(val0->d, val1->d, &env->fp_status);
367a51b6bc3SLaurent Vivier     PREC_END();
368a51b6bc3SLaurent Vivier }
369a51b6bc3SLaurent Vivier 
370a51b6bc3SLaurent Vivier void HELPER(fdmul)(CPUM68KState *env, FPReg *res, FPReg *val0, FPReg *val1)
371a51b6bc3SLaurent Vivier {
3728da5f1dbSRichard Henderson     PREC_BEGIN(floatx80_precision_d);
373a51b6bc3SLaurent Vivier     res->d = floatx80_mul(val0->d, val1->d, &env->fp_status);
374a51b6bc3SLaurent Vivier     PREC_END();
375a51b6bc3SLaurent Vivier }
376a51b6bc3SLaurent Vivier 
3772f77995cSLaurent Vivier void HELPER(fsglmul)(CPUM68KState *env, FPReg *res, FPReg *val0, FPReg *val1)
3782f77995cSLaurent Vivier {
3793dede407SRichard Henderson     FloatRoundMode rounding_mode = get_float_rounding_mode(&env->fp_status);
3802f77995cSLaurent Vivier     floatx80 a, b;
3812f77995cSLaurent Vivier 
3828da5f1dbSRichard Henderson     PREC_BEGIN(floatx80_precision_s);
3832f77995cSLaurent Vivier     set_float_rounding_mode(float_round_to_zero, &env->fp_status);
3842f77995cSLaurent Vivier     a = floatx80_round(val0->d, &env->fp_status);
3852f77995cSLaurent Vivier     b = floatx80_round(val1->d, &env->fp_status);
3862f77995cSLaurent Vivier     set_float_rounding_mode(rounding_mode, &env->fp_status);
3872f77995cSLaurent Vivier     res->d = floatx80_mul(a, b, &env->fp_status);
3882f77995cSLaurent Vivier     PREC_END();
3892f77995cSLaurent Vivier }
3902f77995cSLaurent Vivier 
391f83311e4SLaurent Vivier void HELPER(fdiv)(CPUM68KState *env, FPReg *res, FPReg *val0, FPReg *val1)
392f83311e4SLaurent Vivier {
393f83311e4SLaurent Vivier     res->d = floatx80_div(val1->d, val0->d, &env->fp_status);
394f83311e4SLaurent Vivier }
395f83311e4SLaurent Vivier 
396a51b6bc3SLaurent Vivier void HELPER(fsdiv)(CPUM68KState *env, FPReg *res, FPReg *val0, FPReg *val1)
397a51b6bc3SLaurent Vivier {
3988da5f1dbSRichard Henderson     PREC_BEGIN(floatx80_precision_s);
399a51b6bc3SLaurent Vivier     res->d = floatx80_div(val1->d, val0->d, &env->fp_status);
400a51b6bc3SLaurent Vivier     PREC_END();
401a51b6bc3SLaurent Vivier }
402a51b6bc3SLaurent Vivier 
403a51b6bc3SLaurent Vivier void HELPER(fddiv)(CPUM68KState *env, FPReg *res, FPReg *val0, FPReg *val1)
404a51b6bc3SLaurent Vivier {
4058da5f1dbSRichard Henderson     PREC_BEGIN(floatx80_precision_d);
406a51b6bc3SLaurent Vivier     res->d = floatx80_div(val1->d, val0->d, &env->fp_status);
407a51b6bc3SLaurent Vivier     PREC_END();
408a51b6bc3SLaurent Vivier }
409a51b6bc3SLaurent Vivier 
4102f77995cSLaurent Vivier void HELPER(fsgldiv)(CPUM68KState *env, FPReg *res, FPReg *val0, FPReg *val1)
4112f77995cSLaurent Vivier {
4123dede407SRichard Henderson     FloatRoundMode rounding_mode = get_float_rounding_mode(&env->fp_status);
4132f77995cSLaurent Vivier     floatx80 a, b;
4142f77995cSLaurent Vivier 
4158da5f1dbSRichard Henderson     PREC_BEGIN(floatx80_precision_s);
4162f77995cSLaurent Vivier     set_float_rounding_mode(float_round_to_zero, &env->fp_status);
4172f77995cSLaurent Vivier     a = floatx80_round(val1->d, &env->fp_status);
4182f77995cSLaurent Vivier     b = floatx80_round(val0->d, &env->fp_status);
4192f77995cSLaurent Vivier     set_float_rounding_mode(rounding_mode, &env->fp_status);
4202f77995cSLaurent Vivier     res->d = floatx80_div(a, b, &env->fp_status);
4212f77995cSLaurent Vivier     PREC_END();
4222f77995cSLaurent Vivier }
4232f77995cSLaurent Vivier 
424d8ca9712SPhilippe Mathieu-Daudé static int float_comp_to_cc(FloatRelation float_compare)
425c88f8107SLaurent Vivier {
426ba624944SLaurent Vivier     switch (float_compare) {
427ba624944SLaurent Vivier     case float_relation_equal:
428ba624944SLaurent Vivier         return FPSR_CC_Z;
429ba624944SLaurent Vivier     case float_relation_less:
430ba624944SLaurent Vivier         return FPSR_CC_N;
431ba624944SLaurent Vivier     case float_relation_unordered:
432ba624944SLaurent Vivier         return FPSR_CC_A;
433ba624944SLaurent Vivier     case float_relation_greater:
434ba624944SLaurent Vivier         return 0;
435ba624944SLaurent Vivier     default:
436ba624944SLaurent Vivier         g_assert_not_reached();
437c88f8107SLaurent Vivier     }
438c88f8107SLaurent Vivier }
439c88f8107SLaurent Vivier 
440ba624944SLaurent Vivier void HELPER(fcmp)(CPUM68KState *env, FPReg *val0, FPReg *val1)
441c88f8107SLaurent Vivier {
442d8ca9712SPhilippe Mathieu-Daudé     FloatRelation float_compare;
443ba624944SLaurent Vivier 
444ba624944SLaurent Vivier     float_compare = floatx80_compare(val1->d, val0->d, &env->fp_status);
445ba624944SLaurent Vivier     env->fpsr = (env->fpsr & ~FPSR_CC_MASK) | float_comp_to_cc(float_compare);
446ba624944SLaurent Vivier }
447ba624944SLaurent Vivier 
448ba624944SLaurent Vivier void HELPER(ftst)(CPUM68KState *env, FPReg *val)
449ba624944SLaurent Vivier {
450ba624944SLaurent Vivier     uint32_t cc = 0;
451ba624944SLaurent Vivier 
452ba624944SLaurent Vivier     if (floatx80_is_neg(val->d)) {
453ba624944SLaurent Vivier         cc |= FPSR_CC_N;
454ba624944SLaurent Vivier     }
455ba624944SLaurent Vivier 
456ba624944SLaurent Vivier     if (floatx80_is_any_nan(val->d)) {
457ba624944SLaurent Vivier         cc |= FPSR_CC_A;
4589ea6d1f1SPeter Maydell     } else if (floatx80_is_infinity(val->d, &env->fp_status)) {
459ba624944SLaurent Vivier         cc |= FPSR_CC_I;
460ba624944SLaurent Vivier     } else if (floatx80_is_zero(val->d)) {
461ba624944SLaurent Vivier         cc |= FPSR_CC_Z;
462ba624944SLaurent Vivier     }
463ba624944SLaurent Vivier     env->fpsr = (env->fpsr & ~FPSR_CC_MASK) | cc;
464c88f8107SLaurent Vivier }
4659d403660SLaurent Vivier 
4669d403660SLaurent Vivier void HELPER(fconst)(CPUM68KState *env, FPReg *val, uint32_t offset)
4679d403660SLaurent Vivier {
4689d403660SLaurent Vivier     val->d = fpu_rom[offset];
4699d403660SLaurent Vivier }
470a1e58ddcSLaurent Vivier 
471a1e58ddcSLaurent Vivier typedef int (*float_access)(CPUM68KState *env, uint32_t addr, FPReg *fp,
472a1e58ddcSLaurent Vivier                             uintptr_t ra);
473a1e58ddcSLaurent Vivier 
474a1e58ddcSLaurent Vivier static uint32_t fmovem_predec(CPUM68KState *env, uint32_t addr, uint32_t mask,
475198d7003SKONRAD Frederic                               float_access access_fn)
476a1e58ddcSLaurent Vivier {
477a1e58ddcSLaurent Vivier     uintptr_t ra = GETPC();
478a1e58ddcSLaurent Vivier     int i, size;
479a1e58ddcSLaurent Vivier 
480a1e58ddcSLaurent Vivier     for (i = 7; i >= 0; i--, mask <<= 1) {
481a1e58ddcSLaurent Vivier         if (mask & 0x80) {
482198d7003SKONRAD Frederic             size = access_fn(env, addr, &env->fregs[i], ra);
483a1e58ddcSLaurent Vivier             if ((mask & 0xff) != 0x80) {
484a1e58ddcSLaurent Vivier                 addr -= size;
485a1e58ddcSLaurent Vivier             }
486a1e58ddcSLaurent Vivier         }
487a1e58ddcSLaurent Vivier     }
488a1e58ddcSLaurent Vivier 
489a1e58ddcSLaurent Vivier     return addr;
490a1e58ddcSLaurent Vivier }
491a1e58ddcSLaurent Vivier 
492a1e58ddcSLaurent Vivier static uint32_t fmovem_postinc(CPUM68KState *env, uint32_t addr, uint32_t mask,
493198d7003SKONRAD Frederic                                float_access access_fn)
494a1e58ddcSLaurent Vivier {
495a1e58ddcSLaurent Vivier     uintptr_t ra = GETPC();
496a1e58ddcSLaurent Vivier     int i, size;
497a1e58ddcSLaurent Vivier 
498a1e58ddcSLaurent Vivier     for (i = 0; i < 8; i++, mask <<= 1) {
499a1e58ddcSLaurent Vivier         if (mask & 0x80) {
500198d7003SKONRAD Frederic             size = access_fn(env, addr, &env->fregs[i], ra);
501a1e58ddcSLaurent Vivier             addr += size;
502a1e58ddcSLaurent Vivier         }
503a1e58ddcSLaurent Vivier     }
504a1e58ddcSLaurent Vivier 
505a1e58ddcSLaurent Vivier     return addr;
506a1e58ddcSLaurent Vivier }
507a1e58ddcSLaurent Vivier 
508a1e58ddcSLaurent Vivier static int cpu_ld_floatx80_ra(CPUM68KState *env, uint32_t addr, FPReg *fp,
509a1e58ddcSLaurent Vivier                               uintptr_t ra)
510a1e58ddcSLaurent Vivier {
511a1e58ddcSLaurent Vivier     uint32_t high;
512a1e58ddcSLaurent Vivier     uint64_t low;
513a1e58ddcSLaurent Vivier 
514a1e58ddcSLaurent Vivier     high = cpu_ldl_data_ra(env, addr, ra);
515a1e58ddcSLaurent Vivier     low = cpu_ldq_data_ra(env, addr + 4, ra);
516a1e58ddcSLaurent Vivier 
517a1e58ddcSLaurent Vivier     fp->l.upper = high >> 16;
518a1e58ddcSLaurent Vivier     fp->l.lower = low;
519a1e58ddcSLaurent Vivier 
520a1e58ddcSLaurent Vivier     return 12;
521a1e58ddcSLaurent Vivier }
522a1e58ddcSLaurent Vivier 
523a1e58ddcSLaurent Vivier static int cpu_st_floatx80_ra(CPUM68KState *env, uint32_t addr, FPReg *fp,
524a1e58ddcSLaurent Vivier                                uintptr_t ra)
525a1e58ddcSLaurent Vivier {
526a1e58ddcSLaurent Vivier     cpu_stl_data_ra(env, addr, fp->l.upper << 16, ra);
527a1e58ddcSLaurent Vivier     cpu_stq_data_ra(env, addr + 4, fp->l.lower, ra);
528a1e58ddcSLaurent Vivier 
529a1e58ddcSLaurent Vivier     return 12;
530a1e58ddcSLaurent Vivier }
531a1e58ddcSLaurent Vivier 
532a1e58ddcSLaurent Vivier static int cpu_ld_float64_ra(CPUM68KState *env, uint32_t addr, FPReg *fp,
533a1e58ddcSLaurent Vivier                              uintptr_t ra)
534a1e58ddcSLaurent Vivier {
535a1e58ddcSLaurent Vivier     uint64_t val;
536a1e58ddcSLaurent Vivier 
537a1e58ddcSLaurent Vivier     val = cpu_ldq_data_ra(env, addr, ra);
538a1e58ddcSLaurent Vivier     fp->d = float64_to_floatx80(*(float64 *)&val, &env->fp_status);
539a1e58ddcSLaurent Vivier 
540a1e58ddcSLaurent Vivier     return 8;
541a1e58ddcSLaurent Vivier }
542a1e58ddcSLaurent Vivier 
543a1e58ddcSLaurent Vivier static int cpu_st_float64_ra(CPUM68KState *env, uint32_t addr, FPReg *fp,
544a1e58ddcSLaurent Vivier                              uintptr_t ra)
545a1e58ddcSLaurent Vivier {
546a1e58ddcSLaurent Vivier     float64 val;
547a1e58ddcSLaurent Vivier 
548a1e58ddcSLaurent Vivier     val = floatx80_to_float64(fp->d, &env->fp_status);
549a1e58ddcSLaurent Vivier     cpu_stq_data_ra(env, addr, *(uint64_t *)&val, ra);
550a1e58ddcSLaurent Vivier 
551a1e58ddcSLaurent Vivier     return 8;
552a1e58ddcSLaurent Vivier }
553a1e58ddcSLaurent Vivier 
554a1e58ddcSLaurent Vivier uint32_t HELPER(fmovemx_st_predec)(CPUM68KState *env, uint32_t addr,
555a1e58ddcSLaurent Vivier                                    uint32_t mask)
556a1e58ddcSLaurent Vivier {
557a1e58ddcSLaurent Vivier     return fmovem_predec(env, addr, mask, cpu_st_floatx80_ra);
558a1e58ddcSLaurent Vivier }
559a1e58ddcSLaurent Vivier 
560a1e58ddcSLaurent Vivier uint32_t HELPER(fmovemx_st_postinc)(CPUM68KState *env, uint32_t addr,
561a1e58ddcSLaurent Vivier                                     uint32_t mask)
562a1e58ddcSLaurent Vivier {
563a1e58ddcSLaurent Vivier     return fmovem_postinc(env, addr, mask, cpu_st_floatx80_ra);
564a1e58ddcSLaurent Vivier }
565a1e58ddcSLaurent Vivier 
566a1e58ddcSLaurent Vivier uint32_t HELPER(fmovemx_ld_postinc)(CPUM68KState *env, uint32_t addr,
567a1e58ddcSLaurent Vivier                                     uint32_t mask)
568a1e58ddcSLaurent Vivier {
569a1e58ddcSLaurent Vivier     return fmovem_postinc(env, addr, mask, cpu_ld_floatx80_ra);
570a1e58ddcSLaurent Vivier }
571a1e58ddcSLaurent Vivier 
572a1e58ddcSLaurent Vivier uint32_t HELPER(fmovemd_st_predec)(CPUM68KState *env, uint32_t addr,
573a1e58ddcSLaurent Vivier                                    uint32_t mask)
574a1e58ddcSLaurent Vivier {
575a1e58ddcSLaurent Vivier     return fmovem_predec(env, addr, mask, cpu_st_float64_ra);
576a1e58ddcSLaurent Vivier }
577a1e58ddcSLaurent Vivier 
578a1e58ddcSLaurent Vivier uint32_t HELPER(fmovemd_st_postinc)(CPUM68KState *env, uint32_t addr,
579a1e58ddcSLaurent Vivier                                     uint32_t mask)
580a1e58ddcSLaurent Vivier {
581a1e58ddcSLaurent Vivier     return fmovem_postinc(env, addr, mask, cpu_st_float64_ra);
582a1e58ddcSLaurent Vivier }
583a1e58ddcSLaurent Vivier 
584a1e58ddcSLaurent Vivier uint32_t HELPER(fmovemd_ld_postinc)(CPUM68KState *env, uint32_t addr,
585a1e58ddcSLaurent Vivier                                     uint32_t mask)
586a1e58ddcSLaurent Vivier {
587a1e58ddcSLaurent Vivier     return fmovem_postinc(env, addr, mask, cpu_ld_float64_ra);
588a1e58ddcSLaurent Vivier }
589591596b7SLaurent Vivier 
59060b598dfSMark Cave-Ayland static void make_quotient(CPUM68KState *env, int sign, uint32_t quotient)
591591596b7SLaurent Vivier {
592591596b7SLaurent Vivier     quotient = (sign << 7) | (quotient & 0x7f);
593591596b7SLaurent Vivier     env->fpsr = (env->fpsr & ~FPSR_QT_MASK) | (quotient << FPSR_QT_SHIFT);
594591596b7SLaurent Vivier }
595591596b7SLaurent Vivier 
596591596b7SLaurent Vivier void HELPER(fmod)(CPUM68KState *env, FPReg *res, FPReg *val0, FPReg *val1)
597591596b7SLaurent Vivier {
598ad6dae3bSMark Cave-Ayland     uint64_t quotient;
599ad6dae3bSMark Cave-Ayland     int sign = extractFloatx80Sign(val1->d) ^ extractFloatx80Sign(val0->d);
60060b598dfSMark Cave-Ayland 
601ad6dae3bSMark Cave-Ayland     res->d = floatx80_modrem(val1->d, val0->d, true, &quotient,
602ad6dae3bSMark Cave-Ayland                              &env->fp_status);
603591596b7SLaurent Vivier 
6043ec21437SMark Cave-Ayland     if (floatx80_is_any_nan(res->d)) {
6053ec21437SMark Cave-Ayland         return;
6063ec21437SMark Cave-Ayland     }
6073ec21437SMark Cave-Ayland 
60860b598dfSMark Cave-Ayland     make_quotient(env, sign, quotient);
609591596b7SLaurent Vivier }
610591596b7SLaurent Vivier 
611591596b7SLaurent Vivier void HELPER(frem)(CPUM68KState *env, FPReg *res, FPReg *val0, FPReg *val1)
612591596b7SLaurent Vivier {
6131a282f60SMark Cave-Ayland     FPReg fp_quot;
6141a282f60SMark Cave-Ayland     floatx80 fp_rem;
6151a282f60SMark Cave-Ayland 
6161a282f60SMark Cave-Ayland     fp_rem = floatx80_rem(val1->d, val0->d, &env->fp_status);
6171a282f60SMark Cave-Ayland     if (!floatx80_is_any_nan(fp_rem)) {
618b1969a5dSPeter Maydell         /* Use local temporary fp_status to set different rounding mode */
619b1969a5dSPeter Maydell         float_status fp_status = env->fp_status;
62060b598dfSMark Cave-Ayland         uint32_t quotient;
62160b598dfSMark Cave-Ayland         int sign;
62260b598dfSMark Cave-Ayland 
6231a282f60SMark Cave-Ayland         /* Calculate quotient directly using round to nearest mode */
6241a282f60SMark Cave-Ayland         set_float_rounding_mode(float_round_nearest_even, &fp_status);
6251a282f60SMark Cave-Ayland         fp_quot.d = floatx80_div(val1->d, val0->d, &fp_status);
626591596b7SLaurent Vivier 
6271a282f60SMark Cave-Ayland         sign = extractFloatx80Sign(fp_quot.d);
6281a282f60SMark Cave-Ayland         quotient = floatx80_to_int32(floatx80_abs(fp_quot.d), &env->fp_status);
6291a282f60SMark Cave-Ayland         make_quotient(env, sign, quotient);
6303ec21437SMark Cave-Ayland     }
6313ec21437SMark Cave-Ayland 
6321a282f60SMark Cave-Ayland     res->d = fp_rem;
633591596b7SLaurent Vivier }
6340d379c17SLaurent Vivier 
6350d379c17SLaurent Vivier void HELPER(fgetexp)(CPUM68KState *env, FPReg *res, FPReg *val)
6360d379c17SLaurent Vivier {
6370d379c17SLaurent Vivier     res->d = floatx80_getexp(val->d, &env->fp_status);
6380d379c17SLaurent Vivier }
6390d379c17SLaurent Vivier 
6400d379c17SLaurent Vivier void HELPER(fgetman)(CPUM68KState *env, FPReg *res, FPReg *val)
6410d379c17SLaurent Vivier {
6420d379c17SLaurent Vivier     res->d = floatx80_getman(val->d, &env->fp_status);
6430d379c17SLaurent Vivier }
6440d379c17SLaurent Vivier 
6450d379c17SLaurent Vivier void HELPER(fscale)(CPUM68KState *env, FPReg *res, FPReg *val0, FPReg *val1)
6460d379c17SLaurent Vivier {
6470d379c17SLaurent Vivier     res->d = floatx80_scale(val1->d, val0->d, &env->fp_status);
6480d379c17SLaurent Vivier }
6494b5c65b8SLaurent Vivier 
6504b5c65b8SLaurent Vivier void HELPER(flognp1)(CPUM68KState *env, FPReg *res, FPReg *val)
6514b5c65b8SLaurent Vivier {
6524b5c65b8SLaurent Vivier     res->d = floatx80_lognp1(val->d, &env->fp_status);
6534b5c65b8SLaurent Vivier }
65450067bd1SLaurent Vivier 
65550067bd1SLaurent Vivier void HELPER(flogn)(CPUM68KState *env, FPReg *res, FPReg *val)
65650067bd1SLaurent Vivier {
65750067bd1SLaurent Vivier     res->d = floatx80_logn(val->d, &env->fp_status);
65850067bd1SLaurent Vivier }
659248efb66SLaurent Vivier 
660248efb66SLaurent Vivier void HELPER(flog10)(CPUM68KState *env, FPReg *res, FPReg *val)
661248efb66SLaurent Vivier {
662248efb66SLaurent Vivier     res->d = floatx80_log10(val->d, &env->fp_status);
663248efb66SLaurent Vivier }
66467b453edSLaurent Vivier 
66567b453edSLaurent Vivier void HELPER(flog2)(CPUM68KState *env, FPReg *res, FPReg *val)
66667b453edSLaurent Vivier {
66767b453edSLaurent Vivier     res->d = floatx80_log2(val->d, &env->fp_status);
66867b453edSLaurent Vivier }
66940ad0873SLaurent Vivier 
67040ad0873SLaurent Vivier void HELPER(fetox)(CPUM68KState *env, FPReg *res, FPReg *val)
67140ad0873SLaurent Vivier {
67240ad0873SLaurent Vivier     res->d = floatx80_etox(val->d, &env->fp_status);
67340ad0873SLaurent Vivier }
674068f1615SLaurent Vivier 
675068f1615SLaurent Vivier void HELPER(ftwotox)(CPUM68KState *env, FPReg *res, FPReg *val)
676068f1615SLaurent Vivier {
677068f1615SLaurent Vivier     res->d = floatx80_twotox(val->d, &env->fp_status);
678068f1615SLaurent Vivier }
6796c25be6eSLaurent Vivier 
6806c25be6eSLaurent Vivier void HELPER(ftentox)(CPUM68KState *env, FPReg *res, FPReg *val)
6816c25be6eSLaurent Vivier {
6826c25be6eSLaurent Vivier     res->d = floatx80_tentox(val->d, &env->fp_status);
6836c25be6eSLaurent Vivier }
68427340180SLaurent Vivier 
68527340180SLaurent Vivier void HELPER(ftan)(CPUM68KState *env, FPReg *res, FPReg *val)
68627340180SLaurent Vivier {
68727340180SLaurent Vivier     res->d = floatx80_tan(val->d, &env->fp_status);
68827340180SLaurent Vivier }
6895add1ac4SLaurent Vivier 
6905add1ac4SLaurent Vivier void HELPER(fsin)(CPUM68KState *env, FPReg *res, FPReg *val)
6915add1ac4SLaurent Vivier {
6925add1ac4SLaurent Vivier     res->d = floatx80_sin(val->d, &env->fp_status);
6935add1ac4SLaurent Vivier }
69468d0ed37SLaurent Vivier 
69568d0ed37SLaurent Vivier void HELPER(fcos)(CPUM68KState *env, FPReg *res, FPReg *val)
69668d0ed37SLaurent Vivier {
69768d0ed37SLaurent Vivier     res->d = floatx80_cos(val->d, &env->fp_status);
69868d0ed37SLaurent Vivier }
69947446c9cSLaurent Vivier 
70047446c9cSLaurent Vivier void HELPER(fsincos)(CPUM68KState *env, FPReg *res0, FPReg *res1, FPReg *val)
70147446c9cSLaurent Vivier {
70247446c9cSLaurent Vivier     floatx80 a = val->d;
703808d77bcSLucien Murray-Pitts     /*
704808d77bcSLucien Murray-Pitts      * If res0 and res1 specify the same floating-point data register,
70547446c9cSLaurent Vivier      * the sine result is stored in the register, and the cosine
70647446c9cSLaurent Vivier      * result is discarded.
70747446c9cSLaurent Vivier      */
70847446c9cSLaurent Vivier     res1->d = floatx80_cos(a, &env->fp_status);
70947446c9cSLaurent Vivier     res0->d = floatx80_sin(a, &env->fp_status);
71047446c9cSLaurent Vivier }
7118c992abcSLaurent Vivier 
7128c992abcSLaurent Vivier void HELPER(fatan)(CPUM68KState *env, FPReg *res, FPReg *val)
7138c992abcSLaurent Vivier {
7148c992abcSLaurent Vivier     res->d = floatx80_atan(val->d, &env->fp_status);
7158c992abcSLaurent Vivier }
716bc20b34eSLaurent Vivier 
717bc20b34eSLaurent Vivier void HELPER(fasin)(CPUM68KState *env, FPReg *res, FPReg *val)
718bc20b34eSLaurent Vivier {
719bc20b34eSLaurent Vivier     res->d = floatx80_asin(val->d, &env->fp_status);
720bc20b34eSLaurent Vivier }
721c84813b8SLaurent Vivier 
722c84813b8SLaurent Vivier void HELPER(facos)(CPUM68KState *env, FPReg *res, FPReg *val)
723c84813b8SLaurent Vivier {
724c84813b8SLaurent Vivier     res->d = floatx80_acos(val->d, &env->fp_status);
725c84813b8SLaurent Vivier }
726e3655afaSLaurent Vivier 
727e3655afaSLaurent Vivier void HELPER(fatanh)(CPUM68KState *env, FPReg *res, FPReg *val)
728e3655afaSLaurent Vivier {
729e3655afaSLaurent Vivier     res->d = floatx80_atanh(val->d, &env->fp_status);
730e3655afaSLaurent Vivier }
7319937b029SLaurent Vivier 
732250b1da3SLaurent Vivier void HELPER(fetoxm1)(CPUM68KState *env, FPReg *res, FPReg *val)
733250b1da3SLaurent Vivier {
734250b1da3SLaurent Vivier     res->d = floatx80_etoxm1(val->d, &env->fp_status);
735250b1da3SLaurent Vivier }
736250b1da3SLaurent Vivier 
7379937b029SLaurent Vivier void HELPER(ftanh)(CPUM68KState *env, FPReg *res, FPReg *val)
7389937b029SLaurent Vivier {
7399937b029SLaurent Vivier     res->d = floatx80_tanh(val->d, &env->fp_status);
7409937b029SLaurent Vivier }
741eee6b892SLaurent Vivier 
742eee6b892SLaurent Vivier void HELPER(fsinh)(CPUM68KState *env, FPReg *res, FPReg *val)
743eee6b892SLaurent Vivier {
744eee6b892SLaurent Vivier     res->d = floatx80_sinh(val->d, &env->fp_status);
745eee6b892SLaurent Vivier }
74602f9124eSLaurent Vivier 
74702f9124eSLaurent Vivier void HELPER(fcosh)(CPUM68KState *env, FPReg *res, FPReg *val)
74802f9124eSLaurent Vivier {
74902f9124eSLaurent Vivier     res->d = floatx80_cosh(val->d, &env->fp_status);
75002f9124eSLaurent Vivier }
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