11b248f14SClaudio Fontana /* 21b248f14SClaudio Fontana * x86 FPU, MMX/3DNow!/SSE/SSE2/SSE3/SSSE3/SSE4/PNI helpers 31b248f14SClaudio Fontana * 41b248f14SClaudio Fontana * Copyright (c) 2003 Fabrice Bellard 51b248f14SClaudio Fontana * 61b248f14SClaudio Fontana * This library is free software; you can redistribute it and/or 71b248f14SClaudio Fontana * modify it under the terms of the GNU Lesser General Public 81b248f14SClaudio Fontana * License as published by the Free Software Foundation; either 91b248f14SClaudio Fontana * version 2.1 of the License, or (at your option) any later version. 101b248f14SClaudio Fontana * 111b248f14SClaudio Fontana * This library is distributed in the hope that it will be useful, 121b248f14SClaudio Fontana * but WITHOUT ANY WARRANTY; without even the implied warranty of 131b248f14SClaudio Fontana * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU 141b248f14SClaudio Fontana * Lesser General Public License for more details. 151b248f14SClaudio Fontana * 161b248f14SClaudio Fontana * You should have received a copy of the GNU Lesser General Public 171b248f14SClaudio Fontana * License along with this library; if not, see <http://www.gnu.org/licenses/>. 181b248f14SClaudio Fontana */ 191b248f14SClaudio Fontana 201b248f14SClaudio Fontana #include "qemu/osdep.h" 211b248f14SClaudio Fontana #include <math.h> 221b248f14SClaudio Fontana #include "cpu.h" 231b248f14SClaudio Fontana #include "exec/helper-proto.h" 241b248f14SClaudio Fontana #include "fpu/softfloat.h" 251b248f14SClaudio Fontana #include "fpu/softfloat-macros.h" 26ed69e831SClaudio Fontana #include "helper-tcg.h" 271b248f14SClaudio Fontana 28ed69e831SClaudio Fontana /* float macros */ 29ed69e831SClaudio Fontana #define FT0 (env->ft0) 30ed69e831SClaudio Fontana #define ST0 (env->fpregs[env->fpstt].d) 31ed69e831SClaudio Fontana #define ST(n) (env->fpregs[(env->fpstt + (n)) & 7].d) 32ed69e831SClaudio Fontana #define ST1 ST(1) 33ed69e831SClaudio Fontana 341b248f14SClaudio Fontana #define FPU_RC_MASK 0xc00 351b248f14SClaudio Fontana #define FPU_RC_NEAR 0x000 361b248f14SClaudio Fontana #define FPU_RC_DOWN 0x400 371b248f14SClaudio Fontana #define FPU_RC_UP 0x800 381b248f14SClaudio Fontana #define FPU_RC_CHOP 0xc00 391b248f14SClaudio Fontana 401b248f14SClaudio Fontana #define MAXTAN 9223372036854775808.0 411b248f14SClaudio Fontana 421b248f14SClaudio Fontana /* the following deal with x86 long double-precision numbers */ 431b248f14SClaudio Fontana #define MAXEXPD 0x7fff 441b248f14SClaudio Fontana #define EXPBIAS 16383 451b248f14SClaudio Fontana #define EXPD(fp) (fp.l.upper & 0x7fff) 461b248f14SClaudio Fontana #define SIGND(fp) ((fp.l.upper) & 0x8000) 471b248f14SClaudio Fontana #define MANTD(fp) (fp.l.lower) 481b248f14SClaudio Fontana #define BIASEXPONENT(fp) fp.l.upper = (fp.l.upper & ~(0x7fff)) | EXPBIAS 491b248f14SClaudio Fontana 501b248f14SClaudio Fontana #define FPUS_IE (1 << 0) 511b248f14SClaudio Fontana #define FPUS_DE (1 << 1) 521b248f14SClaudio Fontana #define FPUS_ZE (1 << 2) 531b248f14SClaudio Fontana #define FPUS_OE (1 << 3) 541b248f14SClaudio Fontana #define FPUS_UE (1 << 4) 551b248f14SClaudio Fontana #define FPUS_PE (1 << 5) 561b248f14SClaudio Fontana #define FPUS_SF (1 << 6) 571b248f14SClaudio Fontana #define FPUS_SE (1 << 7) 581b248f14SClaudio Fontana #define FPUS_B (1 << 15) 591b248f14SClaudio Fontana 601b248f14SClaudio Fontana #define FPUC_EM 0x3f 611b248f14SClaudio Fontana 621b248f14SClaudio Fontana #define floatx80_lg2 make_floatx80(0x3ffd, 0x9a209a84fbcff799LL) 631b248f14SClaudio Fontana #define floatx80_lg2_d make_floatx80(0x3ffd, 0x9a209a84fbcff798LL) 641b248f14SClaudio Fontana #define floatx80_l2e make_floatx80(0x3fff, 0xb8aa3b295c17f0bcLL) 651b248f14SClaudio Fontana #define floatx80_l2e_d make_floatx80(0x3fff, 0xb8aa3b295c17f0bbLL) 661b248f14SClaudio Fontana #define floatx80_l2t make_floatx80(0x4000, 0xd49a784bcd1b8afeLL) 671b248f14SClaudio Fontana #define floatx80_l2t_u make_floatx80(0x4000, 0xd49a784bcd1b8affLL) 681b248f14SClaudio Fontana #define floatx80_ln2_d make_floatx80(0x3ffe, 0xb17217f7d1cf79abLL) 691b248f14SClaudio Fontana #define floatx80_pi_d make_floatx80(0x4000, 0xc90fdaa22168c234LL) 701b248f14SClaudio Fontana 711b248f14SClaudio Fontana static inline void fpush(CPUX86State *env) 721b248f14SClaudio Fontana { 731b248f14SClaudio Fontana env->fpstt = (env->fpstt - 1) & 7; 741b248f14SClaudio Fontana env->fptags[env->fpstt] = 0; /* validate stack entry */ 751b248f14SClaudio Fontana } 761b248f14SClaudio Fontana 771b248f14SClaudio Fontana static inline void fpop(CPUX86State *env) 781b248f14SClaudio Fontana { 791b248f14SClaudio Fontana env->fptags[env->fpstt] = 1; /* invalidate stack entry */ 801b248f14SClaudio Fontana env->fpstt = (env->fpstt + 1) & 7; 811b248f14SClaudio Fontana } 821b248f14SClaudio Fontana 83e3a69234SRichard Henderson static floatx80 do_fldt(CPUX86State *env, target_ulong ptr, uintptr_t retaddr) 841b248f14SClaudio Fontana { 851b248f14SClaudio Fontana CPU_LDoubleU temp; 861b248f14SClaudio Fontana 871b248f14SClaudio Fontana temp.l.lower = cpu_ldq_data_ra(env, ptr, retaddr); 881b248f14SClaudio Fontana temp.l.upper = cpu_lduw_data_ra(env, ptr + 8, retaddr); 891b248f14SClaudio Fontana return temp.d; 901b248f14SClaudio Fontana } 911b248f14SClaudio Fontana 92e3a69234SRichard Henderson static void do_fstt(CPUX86State *env, floatx80 f, target_ulong ptr, 931b248f14SClaudio Fontana uintptr_t retaddr) 941b248f14SClaudio Fontana { 951b248f14SClaudio Fontana CPU_LDoubleU temp; 961b248f14SClaudio Fontana 971b248f14SClaudio Fontana temp.d = f; 981b248f14SClaudio Fontana cpu_stq_data_ra(env, ptr, temp.l.lower, retaddr); 991b248f14SClaudio Fontana cpu_stw_data_ra(env, ptr + 8, temp.l.upper, retaddr); 1001b248f14SClaudio Fontana } 1011b248f14SClaudio Fontana 1021b248f14SClaudio Fontana /* x87 FPU helpers */ 1031b248f14SClaudio Fontana 1041b248f14SClaudio Fontana static inline double floatx80_to_double(CPUX86State *env, floatx80 a) 1051b248f14SClaudio Fontana { 1061b248f14SClaudio Fontana union { 1071b248f14SClaudio Fontana float64 f64; 1081b248f14SClaudio Fontana double d; 1091b248f14SClaudio Fontana } u; 1101b248f14SClaudio Fontana 1111b248f14SClaudio Fontana u.f64 = floatx80_to_float64(a, &env->fp_status); 1121b248f14SClaudio Fontana return u.d; 1131b248f14SClaudio Fontana } 1141b248f14SClaudio Fontana 1151b248f14SClaudio Fontana static inline floatx80 double_to_floatx80(CPUX86State *env, double a) 1161b248f14SClaudio Fontana { 1171b248f14SClaudio Fontana union { 1181b248f14SClaudio Fontana float64 f64; 1191b248f14SClaudio Fontana double d; 1201b248f14SClaudio Fontana } u; 1211b248f14SClaudio Fontana 1221b248f14SClaudio Fontana u.d = a; 1231b248f14SClaudio Fontana return float64_to_floatx80(u.f64, &env->fp_status); 1241b248f14SClaudio Fontana } 1251b248f14SClaudio Fontana 1261b248f14SClaudio Fontana static void fpu_set_exception(CPUX86State *env, int mask) 1271b248f14SClaudio Fontana { 1281b248f14SClaudio Fontana env->fpus |= mask; 1291b248f14SClaudio Fontana if (env->fpus & (~env->fpuc & FPUC_EM)) { 1301b248f14SClaudio Fontana env->fpus |= FPUS_SE | FPUS_B; 1311b248f14SClaudio Fontana } 1321b248f14SClaudio Fontana } 1331b248f14SClaudio Fontana 1341b248f14SClaudio Fontana static inline uint8_t save_exception_flags(CPUX86State *env) 1351b248f14SClaudio Fontana { 1361b248f14SClaudio Fontana uint8_t old_flags = get_float_exception_flags(&env->fp_status); 1371b248f14SClaudio Fontana set_float_exception_flags(0, &env->fp_status); 1381b248f14SClaudio Fontana return old_flags; 1391b248f14SClaudio Fontana } 1401b248f14SClaudio Fontana 1411b248f14SClaudio Fontana static void merge_exception_flags(CPUX86State *env, uint8_t old_flags) 1421b248f14SClaudio Fontana { 1431b248f14SClaudio Fontana uint8_t new_flags = get_float_exception_flags(&env->fp_status); 1441b248f14SClaudio Fontana float_raise(old_flags, &env->fp_status); 1451b248f14SClaudio Fontana fpu_set_exception(env, 1461b248f14SClaudio Fontana ((new_flags & float_flag_invalid ? FPUS_IE : 0) | 1471b248f14SClaudio Fontana (new_flags & float_flag_divbyzero ? FPUS_ZE : 0) | 1481b248f14SClaudio Fontana (new_flags & float_flag_overflow ? FPUS_OE : 0) | 1491b248f14SClaudio Fontana (new_flags & float_flag_underflow ? FPUS_UE : 0) | 1501b248f14SClaudio Fontana (new_flags & float_flag_inexact ? FPUS_PE : 0) | 1511b248f14SClaudio Fontana (new_flags & float_flag_input_denormal ? FPUS_DE : 0))); 1521b248f14SClaudio Fontana } 1531b248f14SClaudio Fontana 1541b248f14SClaudio Fontana static inline floatx80 helper_fdiv(CPUX86State *env, floatx80 a, floatx80 b) 1551b248f14SClaudio Fontana { 1561b248f14SClaudio Fontana uint8_t old_flags = save_exception_flags(env); 1571b248f14SClaudio Fontana floatx80 ret = floatx80_div(a, b, &env->fp_status); 1581b248f14SClaudio Fontana merge_exception_flags(env, old_flags); 1591b248f14SClaudio Fontana return ret; 1601b248f14SClaudio Fontana } 1611b248f14SClaudio Fontana 1621b248f14SClaudio Fontana static void fpu_raise_exception(CPUX86State *env, uintptr_t retaddr) 1631b248f14SClaudio Fontana { 1641b248f14SClaudio Fontana if (env->cr[0] & CR0_NE_MASK) { 1651b248f14SClaudio Fontana raise_exception_ra(env, EXCP10_COPR, retaddr); 1661b248f14SClaudio Fontana } 1671b248f14SClaudio Fontana #if !defined(CONFIG_USER_ONLY) 168*83a3d9c7SClaudio Fontana else { 169*83a3d9c7SClaudio Fontana fpu_check_raise_ferr_irq(env); 1701b248f14SClaudio Fontana } 1711b248f14SClaudio Fontana #endif 1721b248f14SClaudio Fontana } 1731b248f14SClaudio Fontana 1741b248f14SClaudio Fontana void helper_flds_FT0(CPUX86State *env, uint32_t val) 1751b248f14SClaudio Fontana { 1761b248f14SClaudio Fontana uint8_t old_flags = save_exception_flags(env); 1771b248f14SClaudio Fontana union { 1781b248f14SClaudio Fontana float32 f; 1791b248f14SClaudio Fontana uint32_t i; 1801b248f14SClaudio Fontana } u; 1811b248f14SClaudio Fontana 1821b248f14SClaudio Fontana u.i = val; 1831b248f14SClaudio Fontana FT0 = float32_to_floatx80(u.f, &env->fp_status); 1841b248f14SClaudio Fontana merge_exception_flags(env, old_flags); 1851b248f14SClaudio Fontana } 1861b248f14SClaudio Fontana 1871b248f14SClaudio Fontana void helper_fldl_FT0(CPUX86State *env, uint64_t val) 1881b248f14SClaudio Fontana { 1891b248f14SClaudio Fontana uint8_t old_flags = save_exception_flags(env); 1901b248f14SClaudio Fontana union { 1911b248f14SClaudio Fontana float64 f; 1921b248f14SClaudio Fontana uint64_t i; 1931b248f14SClaudio Fontana } u; 1941b248f14SClaudio Fontana 1951b248f14SClaudio Fontana u.i = val; 1961b248f14SClaudio Fontana FT0 = float64_to_floatx80(u.f, &env->fp_status); 1971b248f14SClaudio Fontana merge_exception_flags(env, old_flags); 1981b248f14SClaudio Fontana } 1991b248f14SClaudio Fontana 2001b248f14SClaudio Fontana void helper_fildl_FT0(CPUX86State *env, int32_t val) 2011b248f14SClaudio Fontana { 2021b248f14SClaudio Fontana FT0 = int32_to_floatx80(val, &env->fp_status); 2031b248f14SClaudio Fontana } 2041b248f14SClaudio Fontana 2051b248f14SClaudio Fontana void helper_flds_ST0(CPUX86State *env, uint32_t val) 2061b248f14SClaudio Fontana { 2071b248f14SClaudio Fontana uint8_t old_flags = save_exception_flags(env); 2081b248f14SClaudio Fontana int new_fpstt; 2091b248f14SClaudio Fontana union { 2101b248f14SClaudio Fontana float32 f; 2111b248f14SClaudio Fontana uint32_t i; 2121b248f14SClaudio Fontana } u; 2131b248f14SClaudio Fontana 2141b248f14SClaudio Fontana new_fpstt = (env->fpstt - 1) & 7; 2151b248f14SClaudio Fontana u.i = val; 2161b248f14SClaudio Fontana env->fpregs[new_fpstt].d = float32_to_floatx80(u.f, &env->fp_status); 2171b248f14SClaudio Fontana env->fpstt = new_fpstt; 2181b248f14SClaudio Fontana env->fptags[new_fpstt] = 0; /* validate stack entry */ 2191b248f14SClaudio Fontana merge_exception_flags(env, old_flags); 2201b248f14SClaudio Fontana } 2211b248f14SClaudio Fontana 2221b248f14SClaudio Fontana void helper_fldl_ST0(CPUX86State *env, uint64_t val) 2231b248f14SClaudio Fontana { 2241b248f14SClaudio Fontana uint8_t old_flags = save_exception_flags(env); 2251b248f14SClaudio Fontana int new_fpstt; 2261b248f14SClaudio Fontana union { 2271b248f14SClaudio Fontana float64 f; 2281b248f14SClaudio Fontana uint64_t i; 2291b248f14SClaudio Fontana } u; 2301b248f14SClaudio Fontana 2311b248f14SClaudio Fontana new_fpstt = (env->fpstt - 1) & 7; 2321b248f14SClaudio Fontana u.i = val; 2331b248f14SClaudio Fontana env->fpregs[new_fpstt].d = float64_to_floatx80(u.f, &env->fp_status); 2341b248f14SClaudio Fontana env->fpstt = new_fpstt; 2351b248f14SClaudio Fontana env->fptags[new_fpstt] = 0; /* validate stack entry */ 2361b248f14SClaudio Fontana merge_exception_flags(env, old_flags); 2371b248f14SClaudio Fontana } 2381b248f14SClaudio Fontana 2391b248f14SClaudio Fontana void helper_fildl_ST0(CPUX86State *env, int32_t val) 2401b248f14SClaudio Fontana { 2411b248f14SClaudio Fontana int new_fpstt; 2421b248f14SClaudio Fontana 2431b248f14SClaudio Fontana new_fpstt = (env->fpstt - 1) & 7; 2441b248f14SClaudio Fontana env->fpregs[new_fpstt].d = int32_to_floatx80(val, &env->fp_status); 2451b248f14SClaudio Fontana env->fpstt = new_fpstt; 2461b248f14SClaudio Fontana env->fptags[new_fpstt] = 0; /* validate stack entry */ 2471b248f14SClaudio Fontana } 2481b248f14SClaudio Fontana 2491b248f14SClaudio Fontana void helper_fildll_ST0(CPUX86State *env, int64_t val) 2501b248f14SClaudio Fontana { 2511b248f14SClaudio Fontana int new_fpstt; 2521b248f14SClaudio Fontana 2531b248f14SClaudio Fontana new_fpstt = (env->fpstt - 1) & 7; 2541b248f14SClaudio Fontana env->fpregs[new_fpstt].d = int64_to_floatx80(val, &env->fp_status); 2551b248f14SClaudio Fontana env->fpstt = new_fpstt; 2561b248f14SClaudio Fontana env->fptags[new_fpstt] = 0; /* validate stack entry */ 2571b248f14SClaudio Fontana } 2581b248f14SClaudio Fontana 2591b248f14SClaudio Fontana uint32_t helper_fsts_ST0(CPUX86State *env) 2601b248f14SClaudio Fontana { 2611b248f14SClaudio Fontana uint8_t old_flags = save_exception_flags(env); 2621b248f14SClaudio Fontana union { 2631b248f14SClaudio Fontana float32 f; 2641b248f14SClaudio Fontana uint32_t i; 2651b248f14SClaudio Fontana } u; 2661b248f14SClaudio Fontana 2671b248f14SClaudio Fontana u.f = floatx80_to_float32(ST0, &env->fp_status); 2681b248f14SClaudio Fontana merge_exception_flags(env, old_flags); 2691b248f14SClaudio Fontana return u.i; 2701b248f14SClaudio Fontana } 2711b248f14SClaudio Fontana 2721b248f14SClaudio Fontana uint64_t helper_fstl_ST0(CPUX86State *env) 2731b248f14SClaudio Fontana { 2741b248f14SClaudio Fontana uint8_t old_flags = save_exception_flags(env); 2751b248f14SClaudio Fontana union { 2761b248f14SClaudio Fontana float64 f; 2771b248f14SClaudio Fontana uint64_t i; 2781b248f14SClaudio Fontana } u; 2791b248f14SClaudio Fontana 2801b248f14SClaudio Fontana u.f = floatx80_to_float64(ST0, &env->fp_status); 2811b248f14SClaudio Fontana merge_exception_flags(env, old_flags); 2821b248f14SClaudio Fontana return u.i; 2831b248f14SClaudio Fontana } 2841b248f14SClaudio Fontana 2851b248f14SClaudio Fontana int32_t helper_fist_ST0(CPUX86State *env) 2861b248f14SClaudio Fontana { 2871b248f14SClaudio Fontana uint8_t old_flags = save_exception_flags(env); 2881b248f14SClaudio Fontana int32_t val; 2891b248f14SClaudio Fontana 2901b248f14SClaudio Fontana val = floatx80_to_int32(ST0, &env->fp_status); 2911b248f14SClaudio Fontana if (val != (int16_t)val) { 2921b248f14SClaudio Fontana set_float_exception_flags(float_flag_invalid, &env->fp_status); 2931b248f14SClaudio Fontana val = -32768; 2941b248f14SClaudio Fontana } 2951b248f14SClaudio Fontana merge_exception_flags(env, old_flags); 2961b248f14SClaudio Fontana return val; 2971b248f14SClaudio Fontana } 2981b248f14SClaudio Fontana 2991b248f14SClaudio Fontana int32_t helper_fistl_ST0(CPUX86State *env) 3001b248f14SClaudio Fontana { 3011b248f14SClaudio Fontana uint8_t old_flags = save_exception_flags(env); 3021b248f14SClaudio Fontana int32_t val; 3031b248f14SClaudio Fontana 3041b248f14SClaudio Fontana val = floatx80_to_int32(ST0, &env->fp_status); 3051b248f14SClaudio Fontana if (get_float_exception_flags(&env->fp_status) & float_flag_invalid) { 3061b248f14SClaudio Fontana val = 0x80000000; 3071b248f14SClaudio Fontana } 3081b248f14SClaudio Fontana merge_exception_flags(env, old_flags); 3091b248f14SClaudio Fontana return val; 3101b248f14SClaudio Fontana } 3111b248f14SClaudio Fontana 3121b248f14SClaudio Fontana int64_t helper_fistll_ST0(CPUX86State *env) 3131b248f14SClaudio Fontana { 3141b248f14SClaudio Fontana uint8_t old_flags = save_exception_flags(env); 3151b248f14SClaudio Fontana int64_t val; 3161b248f14SClaudio Fontana 3171b248f14SClaudio Fontana val = floatx80_to_int64(ST0, &env->fp_status); 3181b248f14SClaudio Fontana if (get_float_exception_flags(&env->fp_status) & float_flag_invalid) { 3191b248f14SClaudio Fontana val = 0x8000000000000000ULL; 3201b248f14SClaudio Fontana } 3211b248f14SClaudio Fontana merge_exception_flags(env, old_flags); 3221b248f14SClaudio Fontana return val; 3231b248f14SClaudio Fontana } 3241b248f14SClaudio Fontana 3251b248f14SClaudio Fontana int32_t helper_fistt_ST0(CPUX86State *env) 3261b248f14SClaudio Fontana { 3271b248f14SClaudio Fontana uint8_t old_flags = save_exception_flags(env); 3281b248f14SClaudio Fontana int32_t val; 3291b248f14SClaudio Fontana 3301b248f14SClaudio Fontana val = floatx80_to_int32_round_to_zero(ST0, &env->fp_status); 3311b248f14SClaudio Fontana if (val != (int16_t)val) { 3321b248f14SClaudio Fontana set_float_exception_flags(float_flag_invalid, &env->fp_status); 3331b248f14SClaudio Fontana val = -32768; 3341b248f14SClaudio Fontana } 3351b248f14SClaudio Fontana merge_exception_flags(env, old_flags); 3361b248f14SClaudio Fontana return val; 3371b248f14SClaudio Fontana } 3381b248f14SClaudio Fontana 3391b248f14SClaudio Fontana int32_t helper_fisttl_ST0(CPUX86State *env) 3401b248f14SClaudio Fontana { 3411b248f14SClaudio Fontana uint8_t old_flags = save_exception_flags(env); 3421b248f14SClaudio Fontana int32_t val; 3431b248f14SClaudio Fontana 3441b248f14SClaudio Fontana val = floatx80_to_int32_round_to_zero(ST0, &env->fp_status); 3451b248f14SClaudio Fontana if (get_float_exception_flags(&env->fp_status) & float_flag_invalid) { 3461b248f14SClaudio Fontana val = 0x80000000; 3471b248f14SClaudio Fontana } 3481b248f14SClaudio Fontana merge_exception_flags(env, old_flags); 3491b248f14SClaudio Fontana return val; 3501b248f14SClaudio Fontana } 3511b248f14SClaudio Fontana 3521b248f14SClaudio Fontana int64_t helper_fisttll_ST0(CPUX86State *env) 3531b248f14SClaudio Fontana { 3541b248f14SClaudio Fontana uint8_t old_flags = save_exception_flags(env); 3551b248f14SClaudio Fontana int64_t val; 3561b248f14SClaudio Fontana 3571b248f14SClaudio Fontana val = floatx80_to_int64_round_to_zero(ST0, &env->fp_status); 3581b248f14SClaudio Fontana if (get_float_exception_flags(&env->fp_status) & float_flag_invalid) { 3591b248f14SClaudio Fontana val = 0x8000000000000000ULL; 3601b248f14SClaudio Fontana } 3611b248f14SClaudio Fontana merge_exception_flags(env, old_flags); 3621b248f14SClaudio Fontana return val; 3631b248f14SClaudio Fontana } 3641b248f14SClaudio Fontana 3651b248f14SClaudio Fontana void helper_fldt_ST0(CPUX86State *env, target_ulong ptr) 3661b248f14SClaudio Fontana { 3671b248f14SClaudio Fontana int new_fpstt; 3681b248f14SClaudio Fontana 3691b248f14SClaudio Fontana new_fpstt = (env->fpstt - 1) & 7; 370e3a69234SRichard Henderson env->fpregs[new_fpstt].d = do_fldt(env, ptr, GETPC()); 3711b248f14SClaudio Fontana env->fpstt = new_fpstt; 3721b248f14SClaudio Fontana env->fptags[new_fpstt] = 0; /* validate stack entry */ 3731b248f14SClaudio Fontana } 3741b248f14SClaudio Fontana 3751b248f14SClaudio Fontana void helper_fstt_ST0(CPUX86State *env, target_ulong ptr) 3761b248f14SClaudio Fontana { 377e3a69234SRichard Henderson do_fstt(env, ST0, ptr, GETPC()); 3781b248f14SClaudio Fontana } 3791b248f14SClaudio Fontana 3801b248f14SClaudio Fontana void helper_fpush(CPUX86State *env) 3811b248f14SClaudio Fontana { 3821b248f14SClaudio Fontana fpush(env); 3831b248f14SClaudio Fontana } 3841b248f14SClaudio Fontana 3851b248f14SClaudio Fontana void helper_fpop(CPUX86State *env) 3861b248f14SClaudio Fontana { 3871b248f14SClaudio Fontana fpop(env); 3881b248f14SClaudio Fontana } 3891b248f14SClaudio Fontana 3901b248f14SClaudio Fontana void helper_fdecstp(CPUX86State *env) 3911b248f14SClaudio Fontana { 3921b248f14SClaudio Fontana env->fpstt = (env->fpstt - 1) & 7; 3931b248f14SClaudio Fontana env->fpus &= ~0x4700; 3941b248f14SClaudio Fontana } 3951b248f14SClaudio Fontana 3961b248f14SClaudio Fontana void helper_fincstp(CPUX86State *env) 3971b248f14SClaudio Fontana { 3981b248f14SClaudio Fontana env->fpstt = (env->fpstt + 1) & 7; 3991b248f14SClaudio Fontana env->fpus &= ~0x4700; 4001b248f14SClaudio Fontana } 4011b248f14SClaudio Fontana 4021b248f14SClaudio Fontana /* FPU move */ 4031b248f14SClaudio Fontana 4041b248f14SClaudio Fontana void helper_ffree_STN(CPUX86State *env, int st_index) 4051b248f14SClaudio Fontana { 4061b248f14SClaudio Fontana env->fptags[(env->fpstt + st_index) & 7] = 1; 4071b248f14SClaudio Fontana } 4081b248f14SClaudio Fontana 4091b248f14SClaudio Fontana void helper_fmov_ST0_FT0(CPUX86State *env) 4101b248f14SClaudio Fontana { 4111b248f14SClaudio Fontana ST0 = FT0; 4121b248f14SClaudio Fontana } 4131b248f14SClaudio Fontana 4141b248f14SClaudio Fontana void helper_fmov_FT0_STN(CPUX86State *env, int st_index) 4151b248f14SClaudio Fontana { 4161b248f14SClaudio Fontana FT0 = ST(st_index); 4171b248f14SClaudio Fontana } 4181b248f14SClaudio Fontana 4191b248f14SClaudio Fontana void helper_fmov_ST0_STN(CPUX86State *env, int st_index) 4201b248f14SClaudio Fontana { 4211b248f14SClaudio Fontana ST0 = ST(st_index); 4221b248f14SClaudio Fontana } 4231b248f14SClaudio Fontana 4241b248f14SClaudio Fontana void helper_fmov_STN_ST0(CPUX86State *env, int st_index) 4251b248f14SClaudio Fontana { 4261b248f14SClaudio Fontana ST(st_index) = ST0; 4271b248f14SClaudio Fontana } 4281b248f14SClaudio Fontana 4291b248f14SClaudio Fontana void helper_fxchg_ST0_STN(CPUX86State *env, int st_index) 4301b248f14SClaudio Fontana { 4311b248f14SClaudio Fontana floatx80 tmp; 4321b248f14SClaudio Fontana 4331b248f14SClaudio Fontana tmp = ST(st_index); 4341b248f14SClaudio Fontana ST(st_index) = ST0; 4351b248f14SClaudio Fontana ST0 = tmp; 4361b248f14SClaudio Fontana } 4371b248f14SClaudio Fontana 4381b248f14SClaudio Fontana /* FPU operations */ 4391b248f14SClaudio Fontana 4401b248f14SClaudio Fontana static const int fcom_ccval[4] = {0x0100, 0x4000, 0x0000, 0x4500}; 4411b248f14SClaudio Fontana 4421b248f14SClaudio Fontana void helper_fcom_ST0_FT0(CPUX86State *env) 4431b248f14SClaudio Fontana { 4441b248f14SClaudio Fontana uint8_t old_flags = save_exception_flags(env); 4451b248f14SClaudio Fontana FloatRelation ret; 4461b248f14SClaudio Fontana 4471b248f14SClaudio Fontana ret = floatx80_compare(ST0, FT0, &env->fp_status); 4481b248f14SClaudio Fontana env->fpus = (env->fpus & ~0x4500) | fcom_ccval[ret + 1]; 4491b248f14SClaudio Fontana merge_exception_flags(env, old_flags); 4501b248f14SClaudio Fontana } 4511b248f14SClaudio Fontana 4521b248f14SClaudio Fontana void helper_fucom_ST0_FT0(CPUX86State *env) 4531b248f14SClaudio Fontana { 4541b248f14SClaudio Fontana uint8_t old_flags = save_exception_flags(env); 4551b248f14SClaudio Fontana FloatRelation ret; 4561b248f14SClaudio Fontana 4571b248f14SClaudio Fontana ret = floatx80_compare_quiet(ST0, FT0, &env->fp_status); 4581b248f14SClaudio Fontana env->fpus = (env->fpus & ~0x4500) | fcom_ccval[ret + 1]; 4591b248f14SClaudio Fontana merge_exception_flags(env, old_flags); 4601b248f14SClaudio Fontana } 4611b248f14SClaudio Fontana 4621b248f14SClaudio Fontana static const int fcomi_ccval[4] = {CC_C, CC_Z, 0, CC_Z | CC_P | CC_C}; 4631b248f14SClaudio Fontana 4641b248f14SClaudio Fontana void helper_fcomi_ST0_FT0(CPUX86State *env) 4651b248f14SClaudio Fontana { 4661b248f14SClaudio Fontana uint8_t old_flags = save_exception_flags(env); 4671b248f14SClaudio Fontana int eflags; 4681b248f14SClaudio Fontana FloatRelation ret; 4691b248f14SClaudio Fontana 4701b248f14SClaudio Fontana ret = floatx80_compare(ST0, FT0, &env->fp_status); 4711b248f14SClaudio Fontana eflags = cpu_cc_compute_all(env, CC_OP); 4721b248f14SClaudio Fontana eflags = (eflags & ~(CC_Z | CC_P | CC_C)) | fcomi_ccval[ret + 1]; 4731b248f14SClaudio Fontana CC_SRC = eflags; 4741b248f14SClaudio Fontana merge_exception_flags(env, old_flags); 4751b248f14SClaudio Fontana } 4761b248f14SClaudio Fontana 4771b248f14SClaudio Fontana void helper_fucomi_ST0_FT0(CPUX86State *env) 4781b248f14SClaudio Fontana { 4791b248f14SClaudio Fontana uint8_t old_flags = save_exception_flags(env); 4801b248f14SClaudio Fontana int eflags; 4811b248f14SClaudio Fontana FloatRelation ret; 4821b248f14SClaudio Fontana 4831b248f14SClaudio Fontana ret = floatx80_compare_quiet(ST0, FT0, &env->fp_status); 4841b248f14SClaudio Fontana eflags = cpu_cc_compute_all(env, CC_OP); 4851b248f14SClaudio Fontana eflags = (eflags & ~(CC_Z | CC_P | CC_C)) | fcomi_ccval[ret + 1]; 4861b248f14SClaudio Fontana CC_SRC = eflags; 4871b248f14SClaudio Fontana merge_exception_flags(env, old_flags); 4881b248f14SClaudio Fontana } 4891b248f14SClaudio Fontana 4901b248f14SClaudio Fontana void helper_fadd_ST0_FT0(CPUX86State *env) 4911b248f14SClaudio Fontana { 4921b248f14SClaudio Fontana uint8_t old_flags = save_exception_flags(env); 4931b248f14SClaudio Fontana ST0 = floatx80_add(ST0, FT0, &env->fp_status); 4941b248f14SClaudio Fontana merge_exception_flags(env, old_flags); 4951b248f14SClaudio Fontana } 4961b248f14SClaudio Fontana 4971b248f14SClaudio Fontana void helper_fmul_ST0_FT0(CPUX86State *env) 4981b248f14SClaudio Fontana { 4991b248f14SClaudio Fontana uint8_t old_flags = save_exception_flags(env); 5001b248f14SClaudio Fontana ST0 = floatx80_mul(ST0, FT0, &env->fp_status); 5011b248f14SClaudio Fontana merge_exception_flags(env, old_flags); 5021b248f14SClaudio Fontana } 5031b248f14SClaudio Fontana 5041b248f14SClaudio Fontana void helper_fsub_ST0_FT0(CPUX86State *env) 5051b248f14SClaudio Fontana { 5061b248f14SClaudio Fontana uint8_t old_flags = save_exception_flags(env); 5071b248f14SClaudio Fontana ST0 = floatx80_sub(ST0, FT0, &env->fp_status); 5081b248f14SClaudio Fontana merge_exception_flags(env, old_flags); 5091b248f14SClaudio Fontana } 5101b248f14SClaudio Fontana 5111b248f14SClaudio Fontana void helper_fsubr_ST0_FT0(CPUX86State *env) 5121b248f14SClaudio Fontana { 5131b248f14SClaudio Fontana uint8_t old_flags = save_exception_flags(env); 5141b248f14SClaudio Fontana ST0 = floatx80_sub(FT0, ST0, &env->fp_status); 5151b248f14SClaudio Fontana merge_exception_flags(env, old_flags); 5161b248f14SClaudio Fontana } 5171b248f14SClaudio Fontana 5181b248f14SClaudio Fontana void helper_fdiv_ST0_FT0(CPUX86State *env) 5191b248f14SClaudio Fontana { 5201b248f14SClaudio Fontana ST0 = helper_fdiv(env, ST0, FT0); 5211b248f14SClaudio Fontana } 5221b248f14SClaudio Fontana 5231b248f14SClaudio Fontana void helper_fdivr_ST0_FT0(CPUX86State *env) 5241b248f14SClaudio Fontana { 5251b248f14SClaudio Fontana ST0 = helper_fdiv(env, FT0, ST0); 5261b248f14SClaudio Fontana } 5271b248f14SClaudio Fontana 5281b248f14SClaudio Fontana /* fp operations between STN and ST0 */ 5291b248f14SClaudio Fontana 5301b248f14SClaudio Fontana void helper_fadd_STN_ST0(CPUX86State *env, int st_index) 5311b248f14SClaudio Fontana { 5321b248f14SClaudio Fontana uint8_t old_flags = save_exception_flags(env); 5331b248f14SClaudio Fontana ST(st_index) = floatx80_add(ST(st_index), ST0, &env->fp_status); 5341b248f14SClaudio Fontana merge_exception_flags(env, old_flags); 5351b248f14SClaudio Fontana } 5361b248f14SClaudio Fontana 5371b248f14SClaudio Fontana void helper_fmul_STN_ST0(CPUX86State *env, int st_index) 5381b248f14SClaudio Fontana { 5391b248f14SClaudio Fontana uint8_t old_flags = save_exception_flags(env); 5401b248f14SClaudio Fontana ST(st_index) = floatx80_mul(ST(st_index), ST0, &env->fp_status); 5411b248f14SClaudio Fontana merge_exception_flags(env, old_flags); 5421b248f14SClaudio Fontana } 5431b248f14SClaudio Fontana 5441b248f14SClaudio Fontana void helper_fsub_STN_ST0(CPUX86State *env, int st_index) 5451b248f14SClaudio Fontana { 5461b248f14SClaudio Fontana uint8_t old_flags = save_exception_flags(env); 5471b248f14SClaudio Fontana ST(st_index) = floatx80_sub(ST(st_index), ST0, &env->fp_status); 5481b248f14SClaudio Fontana merge_exception_flags(env, old_flags); 5491b248f14SClaudio Fontana } 5501b248f14SClaudio Fontana 5511b248f14SClaudio Fontana void helper_fsubr_STN_ST0(CPUX86State *env, int st_index) 5521b248f14SClaudio Fontana { 5531b248f14SClaudio Fontana uint8_t old_flags = save_exception_flags(env); 5541b248f14SClaudio Fontana ST(st_index) = floatx80_sub(ST0, ST(st_index), &env->fp_status); 5551b248f14SClaudio Fontana merge_exception_flags(env, old_flags); 5561b248f14SClaudio Fontana } 5571b248f14SClaudio Fontana 5581b248f14SClaudio Fontana void helper_fdiv_STN_ST0(CPUX86State *env, int st_index) 5591b248f14SClaudio Fontana { 5601b248f14SClaudio Fontana floatx80 *p; 5611b248f14SClaudio Fontana 5621b248f14SClaudio Fontana p = &ST(st_index); 5631b248f14SClaudio Fontana *p = helper_fdiv(env, *p, ST0); 5641b248f14SClaudio Fontana } 5651b248f14SClaudio Fontana 5661b248f14SClaudio Fontana void helper_fdivr_STN_ST0(CPUX86State *env, int st_index) 5671b248f14SClaudio Fontana { 5681b248f14SClaudio Fontana floatx80 *p; 5691b248f14SClaudio Fontana 5701b248f14SClaudio Fontana p = &ST(st_index); 5711b248f14SClaudio Fontana *p = helper_fdiv(env, ST0, *p); 5721b248f14SClaudio Fontana } 5731b248f14SClaudio Fontana 5741b248f14SClaudio Fontana /* misc FPU operations */ 5751b248f14SClaudio Fontana void helper_fchs_ST0(CPUX86State *env) 5761b248f14SClaudio Fontana { 5771b248f14SClaudio Fontana ST0 = floatx80_chs(ST0); 5781b248f14SClaudio Fontana } 5791b248f14SClaudio Fontana 5801b248f14SClaudio Fontana void helper_fabs_ST0(CPUX86State *env) 5811b248f14SClaudio Fontana { 5821b248f14SClaudio Fontana ST0 = floatx80_abs(ST0); 5831b248f14SClaudio Fontana } 5841b248f14SClaudio Fontana 5851b248f14SClaudio Fontana void helper_fld1_ST0(CPUX86State *env) 5861b248f14SClaudio Fontana { 5871b248f14SClaudio Fontana ST0 = floatx80_one; 5881b248f14SClaudio Fontana } 5891b248f14SClaudio Fontana 5901b248f14SClaudio Fontana void helper_fldl2t_ST0(CPUX86State *env) 5911b248f14SClaudio Fontana { 5921b248f14SClaudio Fontana switch (env->fpuc & FPU_RC_MASK) { 5931b248f14SClaudio Fontana case FPU_RC_UP: 5941b248f14SClaudio Fontana ST0 = floatx80_l2t_u; 5951b248f14SClaudio Fontana break; 5961b248f14SClaudio Fontana default: 5971b248f14SClaudio Fontana ST0 = floatx80_l2t; 5981b248f14SClaudio Fontana break; 5991b248f14SClaudio Fontana } 6001b248f14SClaudio Fontana } 6011b248f14SClaudio Fontana 6021b248f14SClaudio Fontana void helper_fldl2e_ST0(CPUX86State *env) 6031b248f14SClaudio Fontana { 6041b248f14SClaudio Fontana switch (env->fpuc & FPU_RC_MASK) { 6051b248f14SClaudio Fontana case FPU_RC_DOWN: 6061b248f14SClaudio Fontana case FPU_RC_CHOP: 6071b248f14SClaudio Fontana ST0 = floatx80_l2e_d; 6081b248f14SClaudio Fontana break; 6091b248f14SClaudio Fontana default: 6101b248f14SClaudio Fontana ST0 = floatx80_l2e; 6111b248f14SClaudio Fontana break; 6121b248f14SClaudio Fontana } 6131b248f14SClaudio Fontana } 6141b248f14SClaudio Fontana 6151b248f14SClaudio Fontana void helper_fldpi_ST0(CPUX86State *env) 6161b248f14SClaudio Fontana { 6171b248f14SClaudio Fontana switch (env->fpuc & FPU_RC_MASK) { 6181b248f14SClaudio Fontana case FPU_RC_DOWN: 6191b248f14SClaudio Fontana case FPU_RC_CHOP: 6201b248f14SClaudio Fontana ST0 = floatx80_pi_d; 6211b248f14SClaudio Fontana break; 6221b248f14SClaudio Fontana default: 6231b248f14SClaudio Fontana ST0 = floatx80_pi; 6241b248f14SClaudio Fontana break; 6251b248f14SClaudio Fontana } 6261b248f14SClaudio Fontana } 6271b248f14SClaudio Fontana 6281b248f14SClaudio Fontana void helper_fldlg2_ST0(CPUX86State *env) 6291b248f14SClaudio Fontana { 6301b248f14SClaudio Fontana switch (env->fpuc & FPU_RC_MASK) { 6311b248f14SClaudio Fontana case FPU_RC_DOWN: 6321b248f14SClaudio Fontana case FPU_RC_CHOP: 6331b248f14SClaudio Fontana ST0 = floatx80_lg2_d; 6341b248f14SClaudio Fontana break; 6351b248f14SClaudio Fontana default: 6361b248f14SClaudio Fontana ST0 = floatx80_lg2; 6371b248f14SClaudio Fontana break; 6381b248f14SClaudio Fontana } 6391b248f14SClaudio Fontana } 6401b248f14SClaudio Fontana 6411b248f14SClaudio Fontana void helper_fldln2_ST0(CPUX86State *env) 6421b248f14SClaudio Fontana { 6431b248f14SClaudio Fontana switch (env->fpuc & FPU_RC_MASK) { 6441b248f14SClaudio Fontana case FPU_RC_DOWN: 6451b248f14SClaudio Fontana case FPU_RC_CHOP: 6461b248f14SClaudio Fontana ST0 = floatx80_ln2_d; 6471b248f14SClaudio Fontana break; 6481b248f14SClaudio Fontana default: 6491b248f14SClaudio Fontana ST0 = floatx80_ln2; 6501b248f14SClaudio Fontana break; 6511b248f14SClaudio Fontana } 6521b248f14SClaudio Fontana } 6531b248f14SClaudio Fontana 6541b248f14SClaudio Fontana void helper_fldz_ST0(CPUX86State *env) 6551b248f14SClaudio Fontana { 6561b248f14SClaudio Fontana ST0 = floatx80_zero; 6571b248f14SClaudio Fontana } 6581b248f14SClaudio Fontana 6591b248f14SClaudio Fontana void helper_fldz_FT0(CPUX86State *env) 6601b248f14SClaudio Fontana { 6611b248f14SClaudio Fontana FT0 = floatx80_zero; 6621b248f14SClaudio Fontana } 6631b248f14SClaudio Fontana 6641b248f14SClaudio Fontana uint32_t helper_fnstsw(CPUX86State *env) 6651b248f14SClaudio Fontana { 6661b248f14SClaudio Fontana return (env->fpus & ~0x3800) | (env->fpstt & 0x7) << 11; 6671b248f14SClaudio Fontana } 6681b248f14SClaudio Fontana 6691b248f14SClaudio Fontana uint32_t helper_fnstcw(CPUX86State *env) 6701b248f14SClaudio Fontana { 6711b248f14SClaudio Fontana return env->fpuc; 6721b248f14SClaudio Fontana } 6731b248f14SClaudio Fontana 6741b248f14SClaudio Fontana void update_fp_status(CPUX86State *env) 6751b248f14SClaudio Fontana { 6761b248f14SClaudio Fontana int rnd_type; 6771b248f14SClaudio Fontana 6781b248f14SClaudio Fontana /* set rounding mode */ 6791b248f14SClaudio Fontana switch (env->fpuc & FPU_RC_MASK) { 6801b248f14SClaudio Fontana default: 6811b248f14SClaudio Fontana case FPU_RC_NEAR: 6821b248f14SClaudio Fontana rnd_type = float_round_nearest_even; 6831b248f14SClaudio Fontana break; 6841b248f14SClaudio Fontana case FPU_RC_DOWN: 6851b248f14SClaudio Fontana rnd_type = float_round_down; 6861b248f14SClaudio Fontana break; 6871b248f14SClaudio Fontana case FPU_RC_UP: 6881b248f14SClaudio Fontana rnd_type = float_round_up; 6891b248f14SClaudio Fontana break; 6901b248f14SClaudio Fontana case FPU_RC_CHOP: 6911b248f14SClaudio Fontana rnd_type = float_round_to_zero; 6921b248f14SClaudio Fontana break; 6931b248f14SClaudio Fontana } 6941b248f14SClaudio Fontana set_float_rounding_mode(rnd_type, &env->fp_status); 6951b248f14SClaudio Fontana switch ((env->fpuc >> 8) & 3) { 6961b248f14SClaudio Fontana case 0: 6971b248f14SClaudio Fontana rnd_type = 32; 6981b248f14SClaudio Fontana break; 6991b248f14SClaudio Fontana case 2: 7001b248f14SClaudio Fontana rnd_type = 64; 7011b248f14SClaudio Fontana break; 7021b248f14SClaudio Fontana case 3: 7031b248f14SClaudio Fontana default: 7041b248f14SClaudio Fontana rnd_type = 80; 7051b248f14SClaudio Fontana break; 7061b248f14SClaudio Fontana } 7071b248f14SClaudio Fontana set_floatx80_rounding_precision(rnd_type, &env->fp_status); 7081b248f14SClaudio Fontana } 7091b248f14SClaudio Fontana 7101b248f14SClaudio Fontana void helper_fldcw(CPUX86State *env, uint32_t val) 7111b248f14SClaudio Fontana { 7121b248f14SClaudio Fontana cpu_set_fpuc(env, val); 7131b248f14SClaudio Fontana } 7141b248f14SClaudio Fontana 7151b248f14SClaudio Fontana void helper_fclex(CPUX86State *env) 7161b248f14SClaudio Fontana { 7171b248f14SClaudio Fontana env->fpus &= 0x7f00; 7181b248f14SClaudio Fontana } 7191b248f14SClaudio Fontana 7201b248f14SClaudio Fontana void helper_fwait(CPUX86State *env) 7211b248f14SClaudio Fontana { 7221b248f14SClaudio Fontana if (env->fpus & FPUS_SE) { 7231b248f14SClaudio Fontana fpu_raise_exception(env, GETPC()); 7241b248f14SClaudio Fontana } 7251b248f14SClaudio Fontana } 7261b248f14SClaudio Fontana 7271b248f14SClaudio Fontana void helper_fninit(CPUX86State *env) 7281b248f14SClaudio Fontana { 7291b248f14SClaudio Fontana env->fpus = 0; 7301b248f14SClaudio Fontana env->fpstt = 0; 7311b248f14SClaudio Fontana cpu_set_fpuc(env, 0x37f); 7321b248f14SClaudio Fontana env->fptags[0] = 1; 7331b248f14SClaudio Fontana env->fptags[1] = 1; 7341b248f14SClaudio Fontana env->fptags[2] = 1; 7351b248f14SClaudio Fontana env->fptags[3] = 1; 7361b248f14SClaudio Fontana env->fptags[4] = 1; 7371b248f14SClaudio Fontana env->fptags[5] = 1; 7381b248f14SClaudio Fontana env->fptags[6] = 1; 7391b248f14SClaudio Fontana env->fptags[7] = 1; 7401b248f14SClaudio Fontana } 7411b248f14SClaudio Fontana 7421b248f14SClaudio Fontana /* BCD ops */ 7431b248f14SClaudio Fontana 7441b248f14SClaudio Fontana void helper_fbld_ST0(CPUX86State *env, target_ulong ptr) 7451b248f14SClaudio Fontana { 7461b248f14SClaudio Fontana floatx80 tmp; 7471b248f14SClaudio Fontana uint64_t val; 7481b248f14SClaudio Fontana unsigned int v; 7491b248f14SClaudio Fontana int i; 7501b248f14SClaudio Fontana 7511b248f14SClaudio Fontana val = 0; 7521b248f14SClaudio Fontana for (i = 8; i >= 0; i--) { 7531b248f14SClaudio Fontana v = cpu_ldub_data_ra(env, ptr + i, GETPC()); 7541b248f14SClaudio Fontana val = (val * 100) + ((v >> 4) * 10) + (v & 0xf); 7551b248f14SClaudio Fontana } 7561b248f14SClaudio Fontana tmp = int64_to_floatx80(val, &env->fp_status); 7571b248f14SClaudio Fontana if (cpu_ldub_data_ra(env, ptr + 9, GETPC()) & 0x80) { 7581b248f14SClaudio Fontana tmp = floatx80_chs(tmp); 7591b248f14SClaudio Fontana } 7601b248f14SClaudio Fontana fpush(env); 7611b248f14SClaudio Fontana ST0 = tmp; 7621b248f14SClaudio Fontana } 7631b248f14SClaudio Fontana 7641b248f14SClaudio Fontana void helper_fbst_ST0(CPUX86State *env, target_ulong ptr) 7651b248f14SClaudio Fontana { 7661b248f14SClaudio Fontana uint8_t old_flags = save_exception_flags(env); 7671b248f14SClaudio Fontana int v; 7681b248f14SClaudio Fontana target_ulong mem_ref, mem_end; 7691b248f14SClaudio Fontana int64_t val; 7701b248f14SClaudio Fontana CPU_LDoubleU temp; 7711b248f14SClaudio Fontana 7721b248f14SClaudio Fontana temp.d = ST0; 7731b248f14SClaudio Fontana 7741b248f14SClaudio Fontana val = floatx80_to_int64(ST0, &env->fp_status); 7751b248f14SClaudio Fontana mem_ref = ptr; 7761b248f14SClaudio Fontana if (val >= 1000000000000000000LL || val <= -1000000000000000000LL) { 7771b248f14SClaudio Fontana set_float_exception_flags(float_flag_invalid, &env->fp_status); 7781b248f14SClaudio Fontana while (mem_ref < ptr + 7) { 7791b248f14SClaudio Fontana cpu_stb_data_ra(env, mem_ref++, 0, GETPC()); 7801b248f14SClaudio Fontana } 7811b248f14SClaudio Fontana cpu_stb_data_ra(env, mem_ref++, 0xc0, GETPC()); 7821b248f14SClaudio Fontana cpu_stb_data_ra(env, mem_ref++, 0xff, GETPC()); 7831b248f14SClaudio Fontana cpu_stb_data_ra(env, mem_ref++, 0xff, GETPC()); 7841b248f14SClaudio Fontana merge_exception_flags(env, old_flags); 7851b248f14SClaudio Fontana return; 7861b248f14SClaudio Fontana } 7871b248f14SClaudio Fontana mem_end = mem_ref + 9; 7881b248f14SClaudio Fontana if (SIGND(temp)) { 7891b248f14SClaudio Fontana cpu_stb_data_ra(env, mem_end, 0x80, GETPC()); 7901b248f14SClaudio Fontana val = -val; 7911b248f14SClaudio Fontana } else { 7921b248f14SClaudio Fontana cpu_stb_data_ra(env, mem_end, 0x00, GETPC()); 7931b248f14SClaudio Fontana } 7941b248f14SClaudio Fontana while (mem_ref < mem_end) { 7951b248f14SClaudio Fontana if (val == 0) { 7961b248f14SClaudio Fontana break; 7971b248f14SClaudio Fontana } 7981b248f14SClaudio Fontana v = val % 100; 7991b248f14SClaudio Fontana val = val / 100; 8001b248f14SClaudio Fontana v = ((v / 10) << 4) | (v % 10); 8011b248f14SClaudio Fontana cpu_stb_data_ra(env, mem_ref++, v, GETPC()); 8021b248f14SClaudio Fontana } 8031b248f14SClaudio Fontana while (mem_ref < mem_end) { 8041b248f14SClaudio Fontana cpu_stb_data_ra(env, mem_ref++, 0, GETPC()); 8051b248f14SClaudio Fontana } 8061b248f14SClaudio Fontana merge_exception_flags(env, old_flags); 8071b248f14SClaudio Fontana } 8081b248f14SClaudio Fontana 8091b248f14SClaudio Fontana /* 128-bit significand of log(2). */ 8101b248f14SClaudio Fontana #define ln2_sig_high 0xb17217f7d1cf79abULL 8111b248f14SClaudio Fontana #define ln2_sig_low 0xc9e3b39803f2f6afULL 8121b248f14SClaudio Fontana 8131b248f14SClaudio Fontana /* 8141b248f14SClaudio Fontana * Polynomial coefficients for an approximation to (2^x - 1) / x, on 8151b248f14SClaudio Fontana * the interval [-1/64, 1/64]. 8161b248f14SClaudio Fontana */ 8171b248f14SClaudio Fontana #define f2xm1_coeff_0 make_floatx80(0x3ffe, 0xb17217f7d1cf79acULL) 8181b248f14SClaudio Fontana #define f2xm1_coeff_0_low make_floatx80(0xbfbc, 0xd87edabf495b3762ULL) 8191b248f14SClaudio Fontana #define f2xm1_coeff_1 make_floatx80(0x3ffc, 0xf5fdeffc162c7543ULL) 8201b248f14SClaudio Fontana #define f2xm1_coeff_2 make_floatx80(0x3ffa, 0xe35846b82505fcc7ULL) 8211b248f14SClaudio Fontana #define f2xm1_coeff_3 make_floatx80(0x3ff8, 0x9d955b7dd273b899ULL) 8221b248f14SClaudio Fontana #define f2xm1_coeff_4 make_floatx80(0x3ff5, 0xaec3ff3c4ef4ac0cULL) 8231b248f14SClaudio Fontana #define f2xm1_coeff_5 make_floatx80(0x3ff2, 0xa184897c3a7f0de9ULL) 8241b248f14SClaudio Fontana #define f2xm1_coeff_6 make_floatx80(0x3fee, 0xffe634d0ec30d504ULL) 8251b248f14SClaudio Fontana #define f2xm1_coeff_7 make_floatx80(0x3feb, 0xb160111d2db515e4ULL) 8261b248f14SClaudio Fontana 8271b248f14SClaudio Fontana struct f2xm1_data { 8281b248f14SClaudio Fontana /* 8291b248f14SClaudio Fontana * A value very close to a multiple of 1/32, such that 2^t and 2^t - 1 8301b248f14SClaudio Fontana * are very close to exact floatx80 values. 8311b248f14SClaudio Fontana */ 8321b248f14SClaudio Fontana floatx80 t; 8331b248f14SClaudio Fontana /* The value of 2^t. */ 8341b248f14SClaudio Fontana floatx80 exp2; 8351b248f14SClaudio Fontana /* The value of 2^t - 1. */ 8361b248f14SClaudio Fontana floatx80 exp2m1; 8371b248f14SClaudio Fontana }; 8381b248f14SClaudio Fontana 8391b248f14SClaudio Fontana static const struct f2xm1_data f2xm1_table[65] = { 8401b248f14SClaudio Fontana { make_floatx80_init(0xbfff, 0x8000000000000000ULL), 8411b248f14SClaudio Fontana make_floatx80_init(0x3ffe, 0x8000000000000000ULL), 8421b248f14SClaudio Fontana make_floatx80_init(0xbffe, 0x8000000000000000ULL) }, 8431b248f14SClaudio Fontana { make_floatx80_init(0xbffe, 0xf800000000002e7eULL), 8441b248f14SClaudio Fontana make_floatx80_init(0x3ffe, 0x82cd8698ac2b9160ULL), 8451b248f14SClaudio Fontana make_floatx80_init(0xbffd, 0xfa64f2cea7a8dd40ULL) }, 8461b248f14SClaudio Fontana { make_floatx80_init(0xbffe, 0xefffffffffffe960ULL), 8471b248f14SClaudio Fontana make_floatx80_init(0x3ffe, 0x85aac367cc488345ULL), 8481b248f14SClaudio Fontana make_floatx80_init(0xbffd, 0xf4aa7930676ef976ULL) }, 8491b248f14SClaudio Fontana { make_floatx80_init(0xbffe, 0xe800000000006f10ULL), 8501b248f14SClaudio Fontana make_floatx80_init(0x3ffe, 0x88980e8092da5c14ULL), 8511b248f14SClaudio Fontana make_floatx80_init(0xbffd, 0xeecfe2feda4b47d8ULL) }, 8521b248f14SClaudio Fontana { make_floatx80_init(0xbffe, 0xe000000000008a45ULL), 8531b248f14SClaudio Fontana make_floatx80_init(0x3ffe, 0x8b95c1e3ea8ba2a5ULL), 8541b248f14SClaudio Fontana make_floatx80_init(0xbffd, 0xe8d47c382ae8bab6ULL) }, 8551b248f14SClaudio Fontana { make_floatx80_init(0xbffe, 0xd7ffffffffff8a9eULL), 8561b248f14SClaudio Fontana make_floatx80_init(0x3ffe, 0x8ea4398b45cd8116ULL), 8571b248f14SClaudio Fontana make_floatx80_init(0xbffd, 0xe2b78ce97464fdd4ULL) }, 8581b248f14SClaudio Fontana { make_floatx80_init(0xbffe, 0xd0000000000019a0ULL), 8591b248f14SClaudio Fontana make_floatx80_init(0x3ffe, 0x91c3d373ab11b919ULL), 8601b248f14SClaudio Fontana make_floatx80_init(0xbffd, 0xdc785918a9dc8dceULL) }, 8611b248f14SClaudio Fontana { make_floatx80_init(0xbffe, 0xc7ffffffffff14dfULL), 8621b248f14SClaudio Fontana make_floatx80_init(0x3ffe, 0x94f4efa8fef76836ULL), 8631b248f14SClaudio Fontana make_floatx80_init(0xbffd, 0xd61620ae02112f94ULL) }, 8641b248f14SClaudio Fontana { make_floatx80_init(0xbffe, 0xc000000000006530ULL), 8651b248f14SClaudio Fontana make_floatx80_init(0x3ffe, 0x9837f0518db87fbbULL), 8661b248f14SClaudio Fontana make_floatx80_init(0xbffd, 0xcf901f5ce48f008aULL) }, 8671b248f14SClaudio Fontana { make_floatx80_init(0xbffe, 0xb7ffffffffff1723ULL), 8681b248f14SClaudio Fontana make_floatx80_init(0x3ffe, 0x9b8d39b9d54eb74cULL), 8691b248f14SClaudio Fontana make_floatx80_init(0xbffd, 0xc8e58c8c55629168ULL) }, 8701b248f14SClaudio Fontana { make_floatx80_init(0xbffe, 0xb00000000000b5e1ULL), 8711b248f14SClaudio Fontana make_floatx80_init(0x3ffe, 0x9ef5326091a0c366ULL), 8721b248f14SClaudio Fontana make_floatx80_init(0xbffd, 0xc2159b3edcbe7934ULL) }, 8731b248f14SClaudio Fontana { make_floatx80_init(0xbffe, 0xa800000000006f8aULL), 8741b248f14SClaudio Fontana make_floatx80_init(0x3ffe, 0xa27043030c49370aULL), 8751b248f14SClaudio Fontana make_floatx80_init(0xbffd, 0xbb1f79f9e76d91ecULL) }, 8761b248f14SClaudio Fontana { make_floatx80_init(0xbffe, 0x9fffffffffff816aULL), 8771b248f14SClaudio Fontana make_floatx80_init(0x3ffe, 0xa5fed6a9b15171cfULL), 8781b248f14SClaudio Fontana make_floatx80_init(0xbffd, 0xb40252ac9d5d1c62ULL) }, 8791b248f14SClaudio Fontana { make_floatx80_init(0xbffe, 0x97ffffffffffb621ULL), 8801b248f14SClaudio Fontana make_floatx80_init(0x3ffe, 0xa9a15ab4ea7c30e6ULL), 8811b248f14SClaudio Fontana make_floatx80_init(0xbffd, 0xacbd4a962b079e34ULL) }, 8821b248f14SClaudio Fontana { make_floatx80_init(0xbffe, 0x8fffffffffff162bULL), 8831b248f14SClaudio Fontana make_floatx80_init(0x3ffe, 0xad583eea42a1b886ULL), 8841b248f14SClaudio Fontana make_floatx80_init(0xbffd, 0xa54f822b7abc8ef4ULL) }, 8851b248f14SClaudio Fontana { make_floatx80_init(0xbffe, 0x87ffffffffff4d34ULL), 8861b248f14SClaudio Fontana make_floatx80_init(0x3ffe, 0xb123f581d2ac7b51ULL), 8871b248f14SClaudio Fontana make_floatx80_init(0xbffd, 0x9db814fc5aa7095eULL) }, 8881b248f14SClaudio Fontana { make_floatx80_init(0xbffe, 0x800000000000227dULL), 8891b248f14SClaudio Fontana make_floatx80_init(0x3ffe, 0xb504f333f9de539dULL), 8901b248f14SClaudio Fontana make_floatx80_init(0xbffd, 0x95f619980c4358c6ULL) }, 8911b248f14SClaudio Fontana { make_floatx80_init(0xbffd, 0xefffffffffff3978ULL), 8921b248f14SClaudio Fontana make_floatx80_init(0x3ffe, 0xb8fbaf4762fbd0a1ULL), 8931b248f14SClaudio Fontana make_floatx80_init(0xbffd, 0x8e08a1713a085ebeULL) }, 8941b248f14SClaudio Fontana { make_floatx80_init(0xbffd, 0xe00000000000df81ULL), 8951b248f14SClaudio Fontana make_floatx80_init(0x3ffe, 0xbd08a39f580bfd8cULL), 8961b248f14SClaudio Fontana make_floatx80_init(0xbffd, 0x85eeb8c14fe804e8ULL) }, 8971b248f14SClaudio Fontana { make_floatx80_init(0xbffd, 0xd00000000000bccfULL), 8981b248f14SClaudio Fontana make_floatx80_init(0x3ffe, 0xc12c4cca667062f6ULL), 8991b248f14SClaudio Fontana make_floatx80_init(0xbffc, 0xfb4eccd6663e7428ULL) }, 9001b248f14SClaudio Fontana { make_floatx80_init(0xbffd, 0xc00000000000eff0ULL), 9011b248f14SClaudio Fontana make_floatx80_init(0x3ffe, 0xc5672a1155069abeULL), 9021b248f14SClaudio Fontana make_floatx80_init(0xbffc, 0xea6357baabe59508ULL) }, 9031b248f14SClaudio Fontana { make_floatx80_init(0xbffd, 0xb000000000000fe6ULL), 9041b248f14SClaudio Fontana make_floatx80_init(0x3ffe, 0xc9b9bd866e2f234bULL), 9051b248f14SClaudio Fontana make_floatx80_init(0xbffc, 0xd91909e6474372d4ULL) }, 9061b248f14SClaudio Fontana { make_floatx80_init(0xbffd, 0x9fffffffffff2172ULL), 9071b248f14SClaudio Fontana make_floatx80_init(0x3ffe, 0xce248c151f84bf00ULL), 9081b248f14SClaudio Fontana make_floatx80_init(0xbffc, 0xc76dcfab81ed0400ULL) }, 9091b248f14SClaudio Fontana { make_floatx80_init(0xbffd, 0x8fffffffffffafffULL), 9101b248f14SClaudio Fontana make_floatx80_init(0x3ffe, 0xd2a81d91f12afb2bULL), 9111b248f14SClaudio Fontana make_floatx80_init(0xbffc, 0xb55f89b83b541354ULL) }, 9121b248f14SClaudio Fontana { make_floatx80_init(0xbffc, 0xffffffffffff81a3ULL), 9131b248f14SClaudio Fontana make_floatx80_init(0x3ffe, 0xd744fccad69d7d5eULL), 9141b248f14SClaudio Fontana make_floatx80_init(0xbffc, 0xa2ec0cd4a58a0a88ULL) }, 9151b248f14SClaudio Fontana { make_floatx80_init(0xbffc, 0xdfffffffffff1568ULL), 9161b248f14SClaudio Fontana make_floatx80_init(0x3ffe, 0xdbfbb797daf25a44ULL), 9171b248f14SClaudio Fontana make_floatx80_init(0xbffc, 0x901121a0943696f0ULL) }, 9181b248f14SClaudio Fontana { make_floatx80_init(0xbffc, 0xbfffffffffff68daULL), 9191b248f14SClaudio Fontana make_floatx80_init(0x3ffe, 0xe0ccdeec2a94f811ULL), 9201b248f14SClaudio Fontana make_floatx80_init(0xbffb, 0xf999089eab583f78ULL) }, 9211b248f14SClaudio Fontana { make_floatx80_init(0xbffc, 0x9fffffffffff4690ULL), 9221b248f14SClaudio Fontana make_floatx80_init(0x3ffe, 0xe5b906e77c83657eULL), 9231b248f14SClaudio Fontana make_floatx80_init(0xbffb, 0xd237c8c41be4d410ULL) }, 9241b248f14SClaudio Fontana { make_floatx80_init(0xbffb, 0xffffffffffff8aeeULL), 9251b248f14SClaudio Fontana make_floatx80_init(0x3ffe, 0xeac0c6e7dd24427cULL), 9261b248f14SClaudio Fontana make_floatx80_init(0xbffb, 0xa9f9c8c116ddec20ULL) }, 9271b248f14SClaudio Fontana { make_floatx80_init(0xbffb, 0xbfffffffffff2d18ULL), 9281b248f14SClaudio Fontana make_floatx80_init(0x3ffe, 0xefe4b99bdcdb06ebULL), 9291b248f14SClaudio Fontana make_floatx80_init(0xbffb, 0x80da33211927c8a8ULL) }, 9301b248f14SClaudio Fontana { make_floatx80_init(0xbffa, 0xffffffffffff8ccbULL), 9311b248f14SClaudio Fontana make_floatx80_init(0x3ffe, 0xf5257d152486d0f4ULL), 9321b248f14SClaudio Fontana make_floatx80_init(0xbffa, 0xada82eadb792f0c0ULL) }, 9331b248f14SClaudio Fontana { make_floatx80_init(0xbff9, 0xffffffffffff11feULL), 9341b248f14SClaudio Fontana make_floatx80_init(0x3ffe, 0xfa83b2db722a0846ULL), 9351b248f14SClaudio Fontana make_floatx80_init(0xbff9, 0xaf89a491babef740ULL) }, 9361b248f14SClaudio Fontana { floatx80_zero_init, 9371b248f14SClaudio Fontana make_floatx80_init(0x3fff, 0x8000000000000000ULL), 9381b248f14SClaudio Fontana floatx80_zero_init }, 9391b248f14SClaudio Fontana { make_floatx80_init(0x3ff9, 0xffffffffffff2680ULL), 9401b248f14SClaudio Fontana make_floatx80_init(0x3fff, 0x82cd8698ac2b9f6fULL), 9411b248f14SClaudio Fontana make_floatx80_init(0x3ff9, 0xb361a62b0ae7dbc0ULL) }, 9421b248f14SClaudio Fontana { make_floatx80_init(0x3ffb, 0x800000000000b500ULL), 9431b248f14SClaudio Fontana make_floatx80_init(0x3fff, 0x85aac367cc488345ULL), 9441b248f14SClaudio Fontana make_floatx80_init(0x3ffa, 0xb5586cf9891068a0ULL) }, 9451b248f14SClaudio Fontana { make_floatx80_init(0x3ffb, 0xbfffffffffff4b67ULL), 9461b248f14SClaudio Fontana make_floatx80_init(0x3fff, 0x88980e8092da7cceULL), 9471b248f14SClaudio Fontana make_floatx80_init(0x3ffb, 0x8980e8092da7cce0ULL) }, 9481b248f14SClaudio Fontana { make_floatx80_init(0x3ffb, 0xffffffffffffff57ULL), 9491b248f14SClaudio Fontana make_floatx80_init(0x3fff, 0x8b95c1e3ea8bd6dfULL), 9501b248f14SClaudio Fontana make_floatx80_init(0x3ffb, 0xb95c1e3ea8bd6df0ULL) }, 9511b248f14SClaudio Fontana { make_floatx80_init(0x3ffc, 0x9fffffffffff811fULL), 9521b248f14SClaudio Fontana make_floatx80_init(0x3fff, 0x8ea4398b45cd4780ULL), 9531b248f14SClaudio Fontana make_floatx80_init(0x3ffb, 0xea4398b45cd47800ULL) }, 9541b248f14SClaudio Fontana { make_floatx80_init(0x3ffc, 0xbfffffffffff9980ULL), 9551b248f14SClaudio Fontana make_floatx80_init(0x3fff, 0x91c3d373ab11b919ULL), 9561b248f14SClaudio Fontana make_floatx80_init(0x3ffc, 0x8e1e9b9d588dc8c8ULL) }, 9571b248f14SClaudio Fontana { make_floatx80_init(0x3ffc, 0xdffffffffffff631ULL), 9581b248f14SClaudio Fontana make_floatx80_init(0x3fff, 0x94f4efa8fef70864ULL), 9591b248f14SClaudio Fontana make_floatx80_init(0x3ffc, 0xa7a77d47f7b84320ULL) }, 9601b248f14SClaudio Fontana { make_floatx80_init(0x3ffc, 0xffffffffffff2499ULL), 9611b248f14SClaudio Fontana make_floatx80_init(0x3fff, 0x9837f0518db892d4ULL), 9621b248f14SClaudio Fontana make_floatx80_init(0x3ffc, 0xc1bf828c6dc496a0ULL) }, 9631b248f14SClaudio Fontana { make_floatx80_init(0x3ffd, 0x8fffffffffff80fbULL), 9641b248f14SClaudio Fontana make_floatx80_init(0x3fff, 0x9b8d39b9d54e3a79ULL), 9651b248f14SClaudio Fontana make_floatx80_init(0x3ffc, 0xdc69cdceaa71d3c8ULL) }, 9661b248f14SClaudio Fontana { make_floatx80_init(0x3ffd, 0x9fffffffffffbc23ULL), 9671b248f14SClaudio Fontana make_floatx80_init(0x3fff, 0x9ef5326091a10313ULL), 9681b248f14SClaudio Fontana make_floatx80_init(0x3ffc, 0xf7a993048d081898ULL) }, 9691b248f14SClaudio Fontana { make_floatx80_init(0x3ffd, 0xafffffffffff20ecULL), 9701b248f14SClaudio Fontana make_floatx80_init(0x3fff, 0xa27043030c49370aULL), 9711b248f14SClaudio Fontana make_floatx80_init(0x3ffd, 0x89c10c0c3124dc28ULL) }, 9721b248f14SClaudio Fontana { make_floatx80_init(0x3ffd, 0xc00000000000fd2cULL), 9731b248f14SClaudio Fontana make_floatx80_init(0x3fff, 0xa5fed6a9b15171cfULL), 9741b248f14SClaudio Fontana make_floatx80_init(0x3ffd, 0x97fb5aa6c545c73cULL) }, 9751b248f14SClaudio Fontana { make_floatx80_init(0x3ffd, 0xd0000000000093beULL), 9761b248f14SClaudio Fontana make_floatx80_init(0x3fff, 0xa9a15ab4ea7c30e6ULL), 9771b248f14SClaudio Fontana make_floatx80_init(0x3ffd, 0xa6856ad3a9f0c398ULL) }, 9781b248f14SClaudio Fontana { make_floatx80_init(0x3ffd, 0xe00000000000c2aeULL), 9791b248f14SClaudio Fontana make_floatx80_init(0x3fff, 0xad583eea42a17876ULL), 9801b248f14SClaudio Fontana make_floatx80_init(0x3ffd, 0xb560fba90a85e1d8ULL) }, 9811b248f14SClaudio Fontana { make_floatx80_init(0x3ffd, 0xefffffffffff1e3fULL), 9821b248f14SClaudio Fontana make_floatx80_init(0x3fff, 0xb123f581d2abef6cULL), 9831b248f14SClaudio Fontana make_floatx80_init(0x3ffd, 0xc48fd6074aafbdb0ULL) }, 9841b248f14SClaudio Fontana { make_floatx80_init(0x3ffd, 0xffffffffffff1c23ULL), 9851b248f14SClaudio Fontana make_floatx80_init(0x3fff, 0xb504f333f9de2cadULL), 9861b248f14SClaudio Fontana make_floatx80_init(0x3ffd, 0xd413cccfe778b2b4ULL) }, 9871b248f14SClaudio Fontana { make_floatx80_init(0x3ffe, 0x8800000000006344ULL), 9881b248f14SClaudio Fontana make_floatx80_init(0x3fff, 0xb8fbaf4762fbd0a1ULL), 9891b248f14SClaudio Fontana make_floatx80_init(0x3ffd, 0xe3eebd1d8bef4284ULL) }, 9901b248f14SClaudio Fontana { make_floatx80_init(0x3ffe, 0x9000000000005d67ULL), 9911b248f14SClaudio Fontana make_floatx80_init(0x3fff, 0xbd08a39f580c668dULL), 9921b248f14SClaudio Fontana make_floatx80_init(0x3ffd, 0xf4228e7d60319a34ULL) }, 9931b248f14SClaudio Fontana { make_floatx80_init(0x3ffe, 0x9800000000009127ULL), 9941b248f14SClaudio Fontana make_floatx80_init(0x3fff, 0xc12c4cca6670e042ULL), 9951b248f14SClaudio Fontana make_floatx80_init(0x3ffe, 0x82589994cce1c084ULL) }, 9961b248f14SClaudio Fontana { make_floatx80_init(0x3ffe, 0x9fffffffffff06f9ULL), 9971b248f14SClaudio Fontana make_floatx80_init(0x3fff, 0xc5672a11550655c3ULL), 9981b248f14SClaudio Fontana make_floatx80_init(0x3ffe, 0x8ace5422aa0cab86ULL) }, 9991b248f14SClaudio Fontana { make_floatx80_init(0x3ffe, 0xa7fffffffffff80dULL), 10001b248f14SClaudio Fontana make_floatx80_init(0x3fff, 0xc9b9bd866e2f234bULL), 10011b248f14SClaudio Fontana make_floatx80_init(0x3ffe, 0x93737b0cdc5e4696ULL) }, 10021b248f14SClaudio Fontana { make_floatx80_init(0x3ffe, 0xafffffffffff1470ULL), 10031b248f14SClaudio Fontana make_floatx80_init(0x3fff, 0xce248c151f83fd69ULL), 10041b248f14SClaudio Fontana make_floatx80_init(0x3ffe, 0x9c49182a3f07fad2ULL) }, 10051b248f14SClaudio Fontana { make_floatx80_init(0x3ffe, 0xb800000000000e0aULL), 10061b248f14SClaudio Fontana make_floatx80_init(0x3fff, 0xd2a81d91f12aec5cULL), 10071b248f14SClaudio Fontana make_floatx80_init(0x3ffe, 0xa5503b23e255d8b8ULL) }, 10081b248f14SClaudio Fontana { make_floatx80_init(0x3ffe, 0xc00000000000b7faULL), 10091b248f14SClaudio Fontana make_floatx80_init(0x3fff, 0xd744fccad69dd630ULL), 10101b248f14SClaudio Fontana make_floatx80_init(0x3ffe, 0xae89f995ad3bac60ULL) }, 10111b248f14SClaudio Fontana { make_floatx80_init(0x3ffe, 0xc800000000003aa6ULL), 10121b248f14SClaudio Fontana make_floatx80_init(0x3fff, 0xdbfbb797daf25a44ULL), 10131b248f14SClaudio Fontana make_floatx80_init(0x3ffe, 0xb7f76f2fb5e4b488ULL) }, 10141b248f14SClaudio Fontana { make_floatx80_init(0x3ffe, 0xd00000000000a6aeULL), 10151b248f14SClaudio Fontana make_floatx80_init(0x3fff, 0xe0ccdeec2a954685ULL), 10161b248f14SClaudio Fontana make_floatx80_init(0x3ffe, 0xc199bdd8552a8d0aULL) }, 10171b248f14SClaudio Fontana { make_floatx80_init(0x3ffe, 0xd800000000004165ULL), 10181b248f14SClaudio Fontana make_floatx80_init(0x3fff, 0xe5b906e77c837155ULL), 10191b248f14SClaudio Fontana make_floatx80_init(0x3ffe, 0xcb720dcef906e2aaULL) }, 10201b248f14SClaudio Fontana { make_floatx80_init(0x3ffe, 0xe00000000000582cULL), 10211b248f14SClaudio Fontana make_floatx80_init(0x3fff, 0xeac0c6e7dd24713aULL), 10221b248f14SClaudio Fontana make_floatx80_init(0x3ffe, 0xd5818dcfba48e274ULL) }, 10231b248f14SClaudio Fontana { make_floatx80_init(0x3ffe, 0xe800000000001a5dULL), 10241b248f14SClaudio Fontana make_floatx80_init(0x3fff, 0xefe4b99bdcdb06ebULL), 10251b248f14SClaudio Fontana make_floatx80_init(0x3ffe, 0xdfc97337b9b60dd6ULL) }, 10261b248f14SClaudio Fontana { make_floatx80_init(0x3ffe, 0xefffffffffffc1efULL), 10271b248f14SClaudio Fontana make_floatx80_init(0x3fff, 0xf5257d152486a2faULL), 10281b248f14SClaudio Fontana make_floatx80_init(0x3ffe, 0xea4afa2a490d45f4ULL) }, 10291b248f14SClaudio Fontana { make_floatx80_init(0x3ffe, 0xf800000000001069ULL), 10301b248f14SClaudio Fontana make_floatx80_init(0x3fff, 0xfa83b2db722a0e5cULL), 10311b248f14SClaudio Fontana make_floatx80_init(0x3ffe, 0xf50765b6e4541cb8ULL) }, 10321b248f14SClaudio Fontana { make_floatx80_init(0x3fff, 0x8000000000000000ULL), 10331b248f14SClaudio Fontana make_floatx80_init(0x4000, 0x8000000000000000ULL), 10341b248f14SClaudio Fontana make_floatx80_init(0x3fff, 0x8000000000000000ULL) }, 10351b248f14SClaudio Fontana }; 10361b248f14SClaudio Fontana 10371b248f14SClaudio Fontana void helper_f2xm1(CPUX86State *env) 10381b248f14SClaudio Fontana { 10391b248f14SClaudio Fontana uint8_t old_flags = save_exception_flags(env); 10401b248f14SClaudio Fontana uint64_t sig = extractFloatx80Frac(ST0); 10411b248f14SClaudio Fontana int32_t exp = extractFloatx80Exp(ST0); 10421b248f14SClaudio Fontana bool sign = extractFloatx80Sign(ST0); 10431b248f14SClaudio Fontana 10441b248f14SClaudio Fontana if (floatx80_invalid_encoding(ST0)) { 10451b248f14SClaudio Fontana float_raise(float_flag_invalid, &env->fp_status); 10461b248f14SClaudio Fontana ST0 = floatx80_default_nan(&env->fp_status); 10471b248f14SClaudio Fontana } else if (floatx80_is_any_nan(ST0)) { 10481b248f14SClaudio Fontana if (floatx80_is_signaling_nan(ST0, &env->fp_status)) { 10491b248f14SClaudio Fontana float_raise(float_flag_invalid, &env->fp_status); 10501b248f14SClaudio Fontana ST0 = floatx80_silence_nan(ST0, &env->fp_status); 10511b248f14SClaudio Fontana } 10521b248f14SClaudio Fontana } else if (exp > 0x3fff || 10531b248f14SClaudio Fontana (exp == 0x3fff && sig != (0x8000000000000000ULL))) { 10541b248f14SClaudio Fontana /* Out of range for the instruction, treat as invalid. */ 10551b248f14SClaudio Fontana float_raise(float_flag_invalid, &env->fp_status); 10561b248f14SClaudio Fontana ST0 = floatx80_default_nan(&env->fp_status); 10571b248f14SClaudio Fontana } else if (exp == 0x3fff) { 10581b248f14SClaudio Fontana /* Argument 1 or -1, exact result 1 or -0.5. */ 10591b248f14SClaudio Fontana if (sign) { 10601b248f14SClaudio Fontana ST0 = make_floatx80(0xbffe, 0x8000000000000000ULL); 10611b248f14SClaudio Fontana } 10621b248f14SClaudio Fontana } else if (exp < 0x3fb0) { 10631b248f14SClaudio Fontana if (!floatx80_is_zero(ST0)) { 10641b248f14SClaudio Fontana /* 10651b248f14SClaudio Fontana * Multiplying the argument by an extra-precision version 10661b248f14SClaudio Fontana * of log(2) is sufficiently precise. Zero arguments are 10671b248f14SClaudio Fontana * returned unchanged. 10681b248f14SClaudio Fontana */ 10691b248f14SClaudio Fontana uint64_t sig0, sig1, sig2; 10701b248f14SClaudio Fontana if (exp == 0) { 10711b248f14SClaudio Fontana normalizeFloatx80Subnormal(sig, &exp, &sig); 10721b248f14SClaudio Fontana } 10731b248f14SClaudio Fontana mul128By64To192(ln2_sig_high, ln2_sig_low, sig, &sig0, &sig1, 10741b248f14SClaudio Fontana &sig2); 10751b248f14SClaudio Fontana /* This result is inexact. */ 10761b248f14SClaudio Fontana sig1 |= 1; 10771b248f14SClaudio Fontana ST0 = normalizeRoundAndPackFloatx80(80, sign, exp, sig0, sig1, 10781b248f14SClaudio Fontana &env->fp_status); 10791b248f14SClaudio Fontana } 10801b248f14SClaudio Fontana } else { 10811b248f14SClaudio Fontana floatx80 tmp, y, accum; 10821b248f14SClaudio Fontana bool asign, bsign; 10831b248f14SClaudio Fontana int32_t n, aexp, bexp; 10841b248f14SClaudio Fontana uint64_t asig0, asig1, asig2, bsig0, bsig1; 10851b248f14SClaudio Fontana FloatRoundMode save_mode = env->fp_status.float_rounding_mode; 10861b248f14SClaudio Fontana signed char save_prec = env->fp_status.floatx80_rounding_precision; 10871b248f14SClaudio Fontana env->fp_status.float_rounding_mode = float_round_nearest_even; 10881b248f14SClaudio Fontana env->fp_status.floatx80_rounding_precision = 80; 10891b248f14SClaudio Fontana 10901b248f14SClaudio Fontana /* Find the nearest multiple of 1/32 to the argument. */ 10911b248f14SClaudio Fontana tmp = floatx80_scalbn(ST0, 5, &env->fp_status); 10921b248f14SClaudio Fontana n = 32 + floatx80_to_int32(tmp, &env->fp_status); 10931b248f14SClaudio Fontana y = floatx80_sub(ST0, f2xm1_table[n].t, &env->fp_status); 10941b248f14SClaudio Fontana 10951b248f14SClaudio Fontana if (floatx80_is_zero(y)) { 10961b248f14SClaudio Fontana /* 10971b248f14SClaudio Fontana * Use the value of 2^t - 1 from the table, to avoid 10981b248f14SClaudio Fontana * needing to special-case zero as a result of 10991b248f14SClaudio Fontana * multiplication below. 11001b248f14SClaudio Fontana */ 11011b248f14SClaudio Fontana ST0 = f2xm1_table[n].t; 11021b248f14SClaudio Fontana set_float_exception_flags(float_flag_inexact, &env->fp_status); 11031b248f14SClaudio Fontana env->fp_status.float_rounding_mode = save_mode; 11041b248f14SClaudio Fontana } else { 11051b248f14SClaudio Fontana /* 11061b248f14SClaudio Fontana * Compute the lower parts of a polynomial expansion for 11071b248f14SClaudio Fontana * (2^y - 1) / y. 11081b248f14SClaudio Fontana */ 11091b248f14SClaudio Fontana accum = floatx80_mul(f2xm1_coeff_7, y, &env->fp_status); 11101b248f14SClaudio Fontana accum = floatx80_add(f2xm1_coeff_6, accum, &env->fp_status); 11111b248f14SClaudio Fontana accum = floatx80_mul(accum, y, &env->fp_status); 11121b248f14SClaudio Fontana accum = floatx80_add(f2xm1_coeff_5, accum, &env->fp_status); 11131b248f14SClaudio Fontana accum = floatx80_mul(accum, y, &env->fp_status); 11141b248f14SClaudio Fontana accum = floatx80_add(f2xm1_coeff_4, accum, &env->fp_status); 11151b248f14SClaudio Fontana accum = floatx80_mul(accum, y, &env->fp_status); 11161b248f14SClaudio Fontana accum = floatx80_add(f2xm1_coeff_3, accum, &env->fp_status); 11171b248f14SClaudio Fontana accum = floatx80_mul(accum, y, &env->fp_status); 11181b248f14SClaudio Fontana accum = floatx80_add(f2xm1_coeff_2, accum, &env->fp_status); 11191b248f14SClaudio Fontana accum = floatx80_mul(accum, y, &env->fp_status); 11201b248f14SClaudio Fontana accum = floatx80_add(f2xm1_coeff_1, accum, &env->fp_status); 11211b248f14SClaudio Fontana accum = floatx80_mul(accum, y, &env->fp_status); 11221b248f14SClaudio Fontana accum = floatx80_add(f2xm1_coeff_0_low, accum, &env->fp_status); 11231b248f14SClaudio Fontana 11241b248f14SClaudio Fontana /* 11251b248f14SClaudio Fontana * The full polynomial expansion is f2xm1_coeff_0 + accum 11261b248f14SClaudio Fontana * (where accum has much lower magnitude, and so, in 11271b248f14SClaudio Fontana * particular, carry out of the addition is not possible). 11281b248f14SClaudio Fontana * (This expansion is only accurate to about 70 bits, not 11291b248f14SClaudio Fontana * 128 bits.) 11301b248f14SClaudio Fontana */ 11311b248f14SClaudio Fontana aexp = extractFloatx80Exp(f2xm1_coeff_0); 11321b248f14SClaudio Fontana asign = extractFloatx80Sign(f2xm1_coeff_0); 11331b248f14SClaudio Fontana shift128RightJamming(extractFloatx80Frac(accum), 0, 11341b248f14SClaudio Fontana aexp - extractFloatx80Exp(accum), 11351b248f14SClaudio Fontana &asig0, &asig1); 11361b248f14SClaudio Fontana bsig0 = extractFloatx80Frac(f2xm1_coeff_0); 11371b248f14SClaudio Fontana bsig1 = 0; 11381b248f14SClaudio Fontana if (asign == extractFloatx80Sign(accum)) { 11391b248f14SClaudio Fontana add128(bsig0, bsig1, asig0, asig1, &asig0, &asig1); 11401b248f14SClaudio Fontana } else { 11411b248f14SClaudio Fontana sub128(bsig0, bsig1, asig0, asig1, &asig0, &asig1); 11421b248f14SClaudio Fontana } 11431b248f14SClaudio Fontana /* And thus compute an approximation to 2^y - 1. */ 11441b248f14SClaudio Fontana mul128By64To192(asig0, asig1, extractFloatx80Frac(y), 11451b248f14SClaudio Fontana &asig0, &asig1, &asig2); 11461b248f14SClaudio Fontana aexp += extractFloatx80Exp(y) - 0x3ffe; 11471b248f14SClaudio Fontana asign ^= extractFloatx80Sign(y); 11481b248f14SClaudio Fontana if (n != 32) { 11491b248f14SClaudio Fontana /* 11501b248f14SClaudio Fontana * Multiply this by the precomputed value of 2^t and 11511b248f14SClaudio Fontana * add that of 2^t - 1. 11521b248f14SClaudio Fontana */ 11531b248f14SClaudio Fontana mul128By64To192(asig0, asig1, 11541b248f14SClaudio Fontana extractFloatx80Frac(f2xm1_table[n].exp2), 11551b248f14SClaudio Fontana &asig0, &asig1, &asig2); 11561b248f14SClaudio Fontana aexp += extractFloatx80Exp(f2xm1_table[n].exp2) - 0x3ffe; 11571b248f14SClaudio Fontana bexp = extractFloatx80Exp(f2xm1_table[n].exp2m1); 11581b248f14SClaudio Fontana bsig0 = extractFloatx80Frac(f2xm1_table[n].exp2m1); 11591b248f14SClaudio Fontana bsig1 = 0; 11601b248f14SClaudio Fontana if (bexp < aexp) { 11611b248f14SClaudio Fontana shift128RightJamming(bsig0, bsig1, aexp - bexp, 11621b248f14SClaudio Fontana &bsig0, &bsig1); 11631b248f14SClaudio Fontana } else if (aexp < bexp) { 11641b248f14SClaudio Fontana shift128RightJamming(asig0, asig1, bexp - aexp, 11651b248f14SClaudio Fontana &asig0, &asig1); 11661b248f14SClaudio Fontana aexp = bexp; 11671b248f14SClaudio Fontana } 11681b248f14SClaudio Fontana /* The sign of 2^t - 1 is always that of the result. */ 11691b248f14SClaudio Fontana bsign = extractFloatx80Sign(f2xm1_table[n].exp2m1); 11701b248f14SClaudio Fontana if (asign == bsign) { 11711b248f14SClaudio Fontana /* Avoid possible carry out of the addition. */ 11721b248f14SClaudio Fontana shift128RightJamming(asig0, asig1, 1, 11731b248f14SClaudio Fontana &asig0, &asig1); 11741b248f14SClaudio Fontana shift128RightJamming(bsig0, bsig1, 1, 11751b248f14SClaudio Fontana &bsig0, &bsig1); 11761b248f14SClaudio Fontana ++aexp; 11771b248f14SClaudio Fontana add128(asig0, asig1, bsig0, bsig1, &asig0, &asig1); 11781b248f14SClaudio Fontana } else { 11791b248f14SClaudio Fontana sub128(bsig0, bsig1, asig0, asig1, &asig0, &asig1); 11801b248f14SClaudio Fontana asign = bsign; 11811b248f14SClaudio Fontana } 11821b248f14SClaudio Fontana } 11831b248f14SClaudio Fontana env->fp_status.float_rounding_mode = save_mode; 11841b248f14SClaudio Fontana /* This result is inexact. */ 11851b248f14SClaudio Fontana asig1 |= 1; 11861b248f14SClaudio Fontana ST0 = normalizeRoundAndPackFloatx80(80, asign, aexp, asig0, asig1, 11871b248f14SClaudio Fontana &env->fp_status); 11881b248f14SClaudio Fontana } 11891b248f14SClaudio Fontana 11901b248f14SClaudio Fontana env->fp_status.floatx80_rounding_precision = save_prec; 11911b248f14SClaudio Fontana } 11921b248f14SClaudio Fontana merge_exception_flags(env, old_flags); 11931b248f14SClaudio Fontana } 11941b248f14SClaudio Fontana 11951b248f14SClaudio Fontana void helper_fptan(CPUX86State *env) 11961b248f14SClaudio Fontana { 11971b248f14SClaudio Fontana double fptemp = floatx80_to_double(env, ST0); 11981b248f14SClaudio Fontana 11991b248f14SClaudio Fontana if ((fptemp > MAXTAN) || (fptemp < -MAXTAN)) { 12001b248f14SClaudio Fontana env->fpus |= 0x400; 12011b248f14SClaudio Fontana } else { 12021b248f14SClaudio Fontana fptemp = tan(fptemp); 12031b248f14SClaudio Fontana ST0 = double_to_floatx80(env, fptemp); 12041b248f14SClaudio Fontana fpush(env); 12051b248f14SClaudio Fontana ST0 = floatx80_one; 12061b248f14SClaudio Fontana env->fpus &= ~0x400; /* C2 <-- 0 */ 12071b248f14SClaudio Fontana /* the above code is for |arg| < 2**52 only */ 12081b248f14SClaudio Fontana } 12091b248f14SClaudio Fontana } 12101b248f14SClaudio Fontana 12111b248f14SClaudio Fontana /* Values of pi/4, pi/2, 3pi/4 and pi, with 128-bit precision. */ 12121b248f14SClaudio Fontana #define pi_4_exp 0x3ffe 12131b248f14SClaudio Fontana #define pi_4_sig_high 0xc90fdaa22168c234ULL 12141b248f14SClaudio Fontana #define pi_4_sig_low 0xc4c6628b80dc1cd1ULL 12151b248f14SClaudio Fontana #define pi_2_exp 0x3fff 12161b248f14SClaudio Fontana #define pi_2_sig_high 0xc90fdaa22168c234ULL 12171b248f14SClaudio Fontana #define pi_2_sig_low 0xc4c6628b80dc1cd1ULL 12181b248f14SClaudio Fontana #define pi_34_exp 0x4000 12191b248f14SClaudio Fontana #define pi_34_sig_high 0x96cbe3f9990e91a7ULL 12201b248f14SClaudio Fontana #define pi_34_sig_low 0x9394c9e8a0a5159dULL 12211b248f14SClaudio Fontana #define pi_exp 0x4000 12221b248f14SClaudio Fontana #define pi_sig_high 0xc90fdaa22168c234ULL 12231b248f14SClaudio Fontana #define pi_sig_low 0xc4c6628b80dc1cd1ULL 12241b248f14SClaudio Fontana 12251b248f14SClaudio Fontana /* 12261b248f14SClaudio Fontana * Polynomial coefficients for an approximation to atan(x), with only 12271b248f14SClaudio Fontana * odd powers of x used, for x in the interval [-1/16, 1/16]. (Unlike 12281b248f14SClaudio Fontana * for some other approximations, no low part is needed for the first 12291b248f14SClaudio Fontana * coefficient here to achieve a sufficiently accurate result, because 12301b248f14SClaudio Fontana * the coefficient in this minimax approximation is very close to 12311b248f14SClaudio Fontana * exactly 1.) 12321b248f14SClaudio Fontana */ 12331b248f14SClaudio Fontana #define fpatan_coeff_0 make_floatx80(0x3fff, 0x8000000000000000ULL) 12341b248f14SClaudio Fontana #define fpatan_coeff_1 make_floatx80(0xbffd, 0xaaaaaaaaaaaaaa43ULL) 12351b248f14SClaudio Fontana #define fpatan_coeff_2 make_floatx80(0x3ffc, 0xccccccccccbfe4f8ULL) 12361b248f14SClaudio Fontana #define fpatan_coeff_3 make_floatx80(0xbffc, 0x92492491fbab2e66ULL) 12371b248f14SClaudio Fontana #define fpatan_coeff_4 make_floatx80(0x3ffb, 0xe38e372881ea1e0bULL) 12381b248f14SClaudio Fontana #define fpatan_coeff_5 make_floatx80(0xbffb, 0xba2c0104bbdd0615ULL) 12391b248f14SClaudio Fontana #define fpatan_coeff_6 make_floatx80(0x3ffb, 0x9baf7ebf898b42efULL) 12401b248f14SClaudio Fontana 12411b248f14SClaudio Fontana struct fpatan_data { 12421b248f14SClaudio Fontana /* High and low parts of atan(x). */ 12431b248f14SClaudio Fontana floatx80 atan_high, atan_low; 12441b248f14SClaudio Fontana }; 12451b248f14SClaudio Fontana 12461b248f14SClaudio Fontana static const struct fpatan_data fpatan_table[9] = { 12471b248f14SClaudio Fontana { floatx80_zero_init, 12481b248f14SClaudio Fontana floatx80_zero_init }, 12491b248f14SClaudio Fontana { make_floatx80_init(0x3ffb, 0xfeadd4d5617b6e33ULL), 12501b248f14SClaudio Fontana make_floatx80_init(0xbfb9, 0xdda19d8305ddc420ULL) }, 12511b248f14SClaudio Fontana { make_floatx80_init(0x3ffc, 0xfadbafc96406eb15ULL), 12521b248f14SClaudio Fontana make_floatx80_init(0x3fbb, 0xdb8f3debef442fccULL) }, 12531b248f14SClaudio Fontana { make_floatx80_init(0x3ffd, 0xb7b0ca0f26f78474ULL), 12541b248f14SClaudio Fontana make_floatx80_init(0xbfbc, 0xeab9bdba460376faULL) }, 12551b248f14SClaudio Fontana { make_floatx80_init(0x3ffd, 0xed63382b0dda7b45ULL), 12561b248f14SClaudio Fontana make_floatx80_init(0x3fbc, 0xdfc88bd978751a06ULL) }, 12571b248f14SClaudio Fontana { make_floatx80_init(0x3ffe, 0x8f005d5ef7f59f9bULL), 12581b248f14SClaudio Fontana make_floatx80_init(0x3fbd, 0xb906bc2ccb886e90ULL) }, 12591b248f14SClaudio Fontana { make_floatx80_init(0x3ffe, 0xa4bc7d1934f70924ULL), 12601b248f14SClaudio Fontana make_floatx80_init(0x3fbb, 0xcd43f9522bed64f8ULL) }, 12611b248f14SClaudio Fontana { make_floatx80_init(0x3ffe, 0xb8053e2bc2319e74ULL), 12621b248f14SClaudio Fontana make_floatx80_init(0xbfbc, 0xd3496ab7bd6eef0cULL) }, 12631b248f14SClaudio Fontana { make_floatx80_init(0x3ffe, 0xc90fdaa22168c235ULL), 12641b248f14SClaudio Fontana make_floatx80_init(0xbfbc, 0xece675d1fc8f8cbcULL) }, 12651b248f14SClaudio Fontana }; 12661b248f14SClaudio Fontana 12671b248f14SClaudio Fontana void helper_fpatan(CPUX86State *env) 12681b248f14SClaudio Fontana { 12691b248f14SClaudio Fontana uint8_t old_flags = save_exception_flags(env); 12701b248f14SClaudio Fontana uint64_t arg0_sig = extractFloatx80Frac(ST0); 12711b248f14SClaudio Fontana int32_t arg0_exp = extractFloatx80Exp(ST0); 12721b248f14SClaudio Fontana bool arg0_sign = extractFloatx80Sign(ST0); 12731b248f14SClaudio Fontana uint64_t arg1_sig = extractFloatx80Frac(ST1); 12741b248f14SClaudio Fontana int32_t arg1_exp = extractFloatx80Exp(ST1); 12751b248f14SClaudio Fontana bool arg1_sign = extractFloatx80Sign(ST1); 12761b248f14SClaudio Fontana 12771b248f14SClaudio Fontana if (floatx80_is_signaling_nan(ST0, &env->fp_status)) { 12781b248f14SClaudio Fontana float_raise(float_flag_invalid, &env->fp_status); 12791b248f14SClaudio Fontana ST1 = floatx80_silence_nan(ST0, &env->fp_status); 12801b248f14SClaudio Fontana } else if (floatx80_is_signaling_nan(ST1, &env->fp_status)) { 12811b248f14SClaudio Fontana float_raise(float_flag_invalid, &env->fp_status); 12821b248f14SClaudio Fontana ST1 = floatx80_silence_nan(ST1, &env->fp_status); 12831b248f14SClaudio Fontana } else if (floatx80_invalid_encoding(ST0) || 12841b248f14SClaudio Fontana floatx80_invalid_encoding(ST1)) { 12851b248f14SClaudio Fontana float_raise(float_flag_invalid, &env->fp_status); 12861b248f14SClaudio Fontana ST1 = floatx80_default_nan(&env->fp_status); 12871b248f14SClaudio Fontana } else if (floatx80_is_any_nan(ST0)) { 12881b248f14SClaudio Fontana ST1 = ST0; 12891b248f14SClaudio Fontana } else if (floatx80_is_any_nan(ST1)) { 12901b248f14SClaudio Fontana /* Pass this NaN through. */ 12911b248f14SClaudio Fontana } else if (floatx80_is_zero(ST1) && !arg0_sign) { 12921b248f14SClaudio Fontana /* Pass this zero through. */ 12931b248f14SClaudio Fontana } else if (((floatx80_is_infinity(ST0) && !floatx80_is_infinity(ST1)) || 12941b248f14SClaudio Fontana arg0_exp - arg1_exp >= 80) && 12951b248f14SClaudio Fontana !arg0_sign) { 12961b248f14SClaudio Fontana /* 12971b248f14SClaudio Fontana * Dividing ST1 by ST0 gives the correct result up to 12981b248f14SClaudio Fontana * rounding, and avoids spurious underflow exceptions that 12991b248f14SClaudio Fontana * might result from passing some small values through the 13001b248f14SClaudio Fontana * polynomial approximation, but if a finite nonzero result of 13011b248f14SClaudio Fontana * division is exact, the result of fpatan is still inexact 13021b248f14SClaudio Fontana * (and underflowing where appropriate). 13031b248f14SClaudio Fontana */ 13041b248f14SClaudio Fontana signed char save_prec = env->fp_status.floatx80_rounding_precision; 13051b248f14SClaudio Fontana env->fp_status.floatx80_rounding_precision = 80; 13061b248f14SClaudio Fontana ST1 = floatx80_div(ST1, ST0, &env->fp_status); 13071b248f14SClaudio Fontana env->fp_status.floatx80_rounding_precision = save_prec; 13081b248f14SClaudio Fontana if (!floatx80_is_zero(ST1) && 13091b248f14SClaudio Fontana !(get_float_exception_flags(&env->fp_status) & 13101b248f14SClaudio Fontana float_flag_inexact)) { 13111b248f14SClaudio Fontana /* 13121b248f14SClaudio Fontana * The mathematical result is very slightly closer to zero 13131b248f14SClaudio Fontana * than this exact result. Round a value with the 13141b248f14SClaudio Fontana * significand adjusted accordingly to get the correct 13151b248f14SClaudio Fontana * exceptions, and possibly an adjusted result depending 13161b248f14SClaudio Fontana * on the rounding mode. 13171b248f14SClaudio Fontana */ 13181b248f14SClaudio Fontana uint64_t sig = extractFloatx80Frac(ST1); 13191b248f14SClaudio Fontana int32_t exp = extractFloatx80Exp(ST1); 13201b248f14SClaudio Fontana bool sign = extractFloatx80Sign(ST1); 13211b248f14SClaudio Fontana if (exp == 0) { 13221b248f14SClaudio Fontana normalizeFloatx80Subnormal(sig, &exp, &sig); 13231b248f14SClaudio Fontana } 13241b248f14SClaudio Fontana ST1 = normalizeRoundAndPackFloatx80(80, sign, exp, sig - 1, 13251b248f14SClaudio Fontana -1, &env->fp_status); 13261b248f14SClaudio Fontana } 13271b248f14SClaudio Fontana } else { 13281b248f14SClaudio Fontana /* The result is inexact. */ 13291b248f14SClaudio Fontana bool rsign = arg1_sign; 13301b248f14SClaudio Fontana int32_t rexp; 13311b248f14SClaudio Fontana uint64_t rsig0, rsig1; 13321b248f14SClaudio Fontana if (floatx80_is_zero(ST1)) { 13331b248f14SClaudio Fontana /* 13341b248f14SClaudio Fontana * ST0 is negative. The result is pi with the sign of 13351b248f14SClaudio Fontana * ST1. 13361b248f14SClaudio Fontana */ 13371b248f14SClaudio Fontana rexp = pi_exp; 13381b248f14SClaudio Fontana rsig0 = pi_sig_high; 13391b248f14SClaudio Fontana rsig1 = pi_sig_low; 13401b248f14SClaudio Fontana } else if (floatx80_is_infinity(ST1)) { 13411b248f14SClaudio Fontana if (floatx80_is_infinity(ST0)) { 13421b248f14SClaudio Fontana if (arg0_sign) { 13431b248f14SClaudio Fontana rexp = pi_34_exp; 13441b248f14SClaudio Fontana rsig0 = pi_34_sig_high; 13451b248f14SClaudio Fontana rsig1 = pi_34_sig_low; 13461b248f14SClaudio Fontana } else { 13471b248f14SClaudio Fontana rexp = pi_4_exp; 13481b248f14SClaudio Fontana rsig0 = pi_4_sig_high; 13491b248f14SClaudio Fontana rsig1 = pi_4_sig_low; 13501b248f14SClaudio Fontana } 13511b248f14SClaudio Fontana } else { 13521b248f14SClaudio Fontana rexp = pi_2_exp; 13531b248f14SClaudio Fontana rsig0 = pi_2_sig_high; 13541b248f14SClaudio Fontana rsig1 = pi_2_sig_low; 13551b248f14SClaudio Fontana } 13561b248f14SClaudio Fontana } else if (floatx80_is_zero(ST0) || arg1_exp - arg0_exp >= 80) { 13571b248f14SClaudio Fontana rexp = pi_2_exp; 13581b248f14SClaudio Fontana rsig0 = pi_2_sig_high; 13591b248f14SClaudio Fontana rsig1 = pi_2_sig_low; 13601b248f14SClaudio Fontana } else if (floatx80_is_infinity(ST0) || arg0_exp - arg1_exp >= 80) { 13611b248f14SClaudio Fontana /* ST0 is negative. */ 13621b248f14SClaudio Fontana rexp = pi_exp; 13631b248f14SClaudio Fontana rsig0 = pi_sig_high; 13641b248f14SClaudio Fontana rsig1 = pi_sig_low; 13651b248f14SClaudio Fontana } else { 13661b248f14SClaudio Fontana /* 13671b248f14SClaudio Fontana * ST0 and ST1 are finite, nonzero and with exponents not 13681b248f14SClaudio Fontana * too far apart. 13691b248f14SClaudio Fontana */ 13701b248f14SClaudio Fontana int32_t adj_exp, num_exp, den_exp, xexp, yexp, n, texp, zexp, aexp; 13711b248f14SClaudio Fontana int32_t azexp, axexp; 13721b248f14SClaudio Fontana bool adj_sub, ysign, zsign; 13731b248f14SClaudio Fontana uint64_t adj_sig0, adj_sig1, num_sig, den_sig, xsig0, xsig1; 13741b248f14SClaudio Fontana uint64_t msig0, msig1, msig2, remsig0, remsig1, remsig2; 13751b248f14SClaudio Fontana uint64_t ysig0, ysig1, tsig, zsig0, zsig1, asig0, asig1; 13761b248f14SClaudio Fontana uint64_t azsig0, azsig1; 13771b248f14SClaudio Fontana uint64_t azsig2, azsig3, axsig0, axsig1; 13781b248f14SClaudio Fontana floatx80 x8; 13791b248f14SClaudio Fontana FloatRoundMode save_mode = env->fp_status.float_rounding_mode; 13801b248f14SClaudio Fontana signed char save_prec = env->fp_status.floatx80_rounding_precision; 13811b248f14SClaudio Fontana env->fp_status.float_rounding_mode = float_round_nearest_even; 13821b248f14SClaudio Fontana env->fp_status.floatx80_rounding_precision = 80; 13831b248f14SClaudio Fontana 13841b248f14SClaudio Fontana if (arg0_exp == 0) { 13851b248f14SClaudio Fontana normalizeFloatx80Subnormal(arg0_sig, &arg0_exp, &arg0_sig); 13861b248f14SClaudio Fontana } 13871b248f14SClaudio Fontana if (arg1_exp == 0) { 13881b248f14SClaudio Fontana normalizeFloatx80Subnormal(arg1_sig, &arg1_exp, &arg1_sig); 13891b248f14SClaudio Fontana } 13901b248f14SClaudio Fontana if (arg0_exp > arg1_exp || 13911b248f14SClaudio Fontana (arg0_exp == arg1_exp && arg0_sig >= arg1_sig)) { 13921b248f14SClaudio Fontana /* Work with abs(ST1) / abs(ST0). */ 13931b248f14SClaudio Fontana num_exp = arg1_exp; 13941b248f14SClaudio Fontana num_sig = arg1_sig; 13951b248f14SClaudio Fontana den_exp = arg0_exp; 13961b248f14SClaudio Fontana den_sig = arg0_sig; 13971b248f14SClaudio Fontana if (arg0_sign) { 13981b248f14SClaudio Fontana /* The result is subtracted from pi. */ 13991b248f14SClaudio Fontana adj_exp = pi_exp; 14001b248f14SClaudio Fontana adj_sig0 = pi_sig_high; 14011b248f14SClaudio Fontana adj_sig1 = pi_sig_low; 14021b248f14SClaudio Fontana adj_sub = true; 14031b248f14SClaudio Fontana } else { 14041b248f14SClaudio Fontana /* The result is used as-is. */ 14051b248f14SClaudio Fontana adj_exp = 0; 14061b248f14SClaudio Fontana adj_sig0 = 0; 14071b248f14SClaudio Fontana adj_sig1 = 0; 14081b248f14SClaudio Fontana adj_sub = false; 14091b248f14SClaudio Fontana } 14101b248f14SClaudio Fontana } else { 14111b248f14SClaudio Fontana /* Work with abs(ST0) / abs(ST1). */ 14121b248f14SClaudio Fontana num_exp = arg0_exp; 14131b248f14SClaudio Fontana num_sig = arg0_sig; 14141b248f14SClaudio Fontana den_exp = arg1_exp; 14151b248f14SClaudio Fontana den_sig = arg1_sig; 14161b248f14SClaudio Fontana /* The result is added to or subtracted from pi/2. */ 14171b248f14SClaudio Fontana adj_exp = pi_2_exp; 14181b248f14SClaudio Fontana adj_sig0 = pi_2_sig_high; 14191b248f14SClaudio Fontana adj_sig1 = pi_2_sig_low; 14201b248f14SClaudio Fontana adj_sub = !arg0_sign; 14211b248f14SClaudio Fontana } 14221b248f14SClaudio Fontana 14231b248f14SClaudio Fontana /* 14241b248f14SClaudio Fontana * Compute x = num/den, where 0 < x <= 1 and x is not too 14251b248f14SClaudio Fontana * small. 14261b248f14SClaudio Fontana */ 14271b248f14SClaudio Fontana xexp = num_exp - den_exp + 0x3ffe; 14281b248f14SClaudio Fontana remsig0 = num_sig; 14291b248f14SClaudio Fontana remsig1 = 0; 14301b248f14SClaudio Fontana if (den_sig <= remsig0) { 14311b248f14SClaudio Fontana shift128Right(remsig0, remsig1, 1, &remsig0, &remsig1); 14321b248f14SClaudio Fontana ++xexp; 14331b248f14SClaudio Fontana } 14341b248f14SClaudio Fontana xsig0 = estimateDiv128To64(remsig0, remsig1, den_sig); 14351b248f14SClaudio Fontana mul64To128(den_sig, xsig0, &msig0, &msig1); 14361b248f14SClaudio Fontana sub128(remsig0, remsig1, msig0, msig1, &remsig0, &remsig1); 14371b248f14SClaudio Fontana while ((int64_t) remsig0 < 0) { 14381b248f14SClaudio Fontana --xsig0; 14391b248f14SClaudio Fontana add128(remsig0, remsig1, 0, den_sig, &remsig0, &remsig1); 14401b248f14SClaudio Fontana } 14411b248f14SClaudio Fontana xsig1 = estimateDiv128To64(remsig1, 0, den_sig); 14421b248f14SClaudio Fontana /* 14431b248f14SClaudio Fontana * No need to correct any estimation error in xsig1; even 14441b248f14SClaudio Fontana * with such error, it is accurate enough. 14451b248f14SClaudio Fontana */ 14461b248f14SClaudio Fontana 14471b248f14SClaudio Fontana /* 14481b248f14SClaudio Fontana * Split x as x = t + y, where t = n/8 is the nearest 14491b248f14SClaudio Fontana * multiple of 1/8 to x. 14501b248f14SClaudio Fontana */ 14511b248f14SClaudio Fontana x8 = normalizeRoundAndPackFloatx80(80, false, xexp + 3, xsig0, 14521b248f14SClaudio Fontana xsig1, &env->fp_status); 14531b248f14SClaudio Fontana n = floatx80_to_int32(x8, &env->fp_status); 14541b248f14SClaudio Fontana if (n == 0) { 14551b248f14SClaudio Fontana ysign = false; 14561b248f14SClaudio Fontana yexp = xexp; 14571b248f14SClaudio Fontana ysig0 = xsig0; 14581b248f14SClaudio Fontana ysig1 = xsig1; 14591b248f14SClaudio Fontana texp = 0; 14601b248f14SClaudio Fontana tsig = 0; 14611b248f14SClaudio Fontana } else { 14621b248f14SClaudio Fontana int shift = clz32(n) + 32; 14631b248f14SClaudio Fontana texp = 0x403b - shift; 14641b248f14SClaudio Fontana tsig = n; 14651b248f14SClaudio Fontana tsig <<= shift; 14661b248f14SClaudio Fontana if (texp == xexp) { 14671b248f14SClaudio Fontana sub128(xsig0, xsig1, tsig, 0, &ysig0, &ysig1); 14681b248f14SClaudio Fontana if ((int64_t) ysig0 >= 0) { 14691b248f14SClaudio Fontana ysign = false; 14701b248f14SClaudio Fontana if (ysig0 == 0) { 14711b248f14SClaudio Fontana if (ysig1 == 0) { 14721b248f14SClaudio Fontana yexp = 0; 14731b248f14SClaudio Fontana } else { 14741b248f14SClaudio Fontana shift = clz64(ysig1) + 64; 14751b248f14SClaudio Fontana yexp = xexp - shift; 14761b248f14SClaudio Fontana shift128Left(ysig0, ysig1, shift, 14771b248f14SClaudio Fontana &ysig0, &ysig1); 14781b248f14SClaudio Fontana } 14791b248f14SClaudio Fontana } else { 14801b248f14SClaudio Fontana shift = clz64(ysig0); 14811b248f14SClaudio Fontana yexp = xexp - shift; 14821b248f14SClaudio Fontana shift128Left(ysig0, ysig1, shift, &ysig0, &ysig1); 14831b248f14SClaudio Fontana } 14841b248f14SClaudio Fontana } else { 14851b248f14SClaudio Fontana ysign = true; 14861b248f14SClaudio Fontana sub128(0, 0, ysig0, ysig1, &ysig0, &ysig1); 14871b248f14SClaudio Fontana if (ysig0 == 0) { 14881b248f14SClaudio Fontana shift = clz64(ysig1) + 64; 14891b248f14SClaudio Fontana } else { 14901b248f14SClaudio Fontana shift = clz64(ysig0); 14911b248f14SClaudio Fontana } 14921b248f14SClaudio Fontana yexp = xexp - shift; 14931b248f14SClaudio Fontana shift128Left(ysig0, ysig1, shift, &ysig0, &ysig1); 14941b248f14SClaudio Fontana } 14951b248f14SClaudio Fontana } else { 14961b248f14SClaudio Fontana /* 14971b248f14SClaudio Fontana * t's exponent must be greater than x's because t 14981b248f14SClaudio Fontana * is positive and the nearest multiple of 1/8 to 14991b248f14SClaudio Fontana * x, and if x has a greater exponent, the power 15001b248f14SClaudio Fontana * of 2 with that exponent is also a multiple of 15011b248f14SClaudio Fontana * 1/8. 15021b248f14SClaudio Fontana */ 15031b248f14SClaudio Fontana uint64_t usig0, usig1; 15041b248f14SClaudio Fontana shift128RightJamming(xsig0, xsig1, texp - xexp, 15051b248f14SClaudio Fontana &usig0, &usig1); 15061b248f14SClaudio Fontana ysign = true; 15071b248f14SClaudio Fontana sub128(tsig, 0, usig0, usig1, &ysig0, &ysig1); 15081b248f14SClaudio Fontana if (ysig0 == 0) { 15091b248f14SClaudio Fontana shift = clz64(ysig1) + 64; 15101b248f14SClaudio Fontana } else { 15111b248f14SClaudio Fontana shift = clz64(ysig0); 15121b248f14SClaudio Fontana } 15131b248f14SClaudio Fontana yexp = texp - shift; 15141b248f14SClaudio Fontana shift128Left(ysig0, ysig1, shift, &ysig0, &ysig1); 15151b248f14SClaudio Fontana } 15161b248f14SClaudio Fontana } 15171b248f14SClaudio Fontana 15181b248f14SClaudio Fontana /* 15191b248f14SClaudio Fontana * Compute z = y/(1+tx), so arctan(x) = arctan(t) + 15201b248f14SClaudio Fontana * arctan(z). 15211b248f14SClaudio Fontana */ 15221b248f14SClaudio Fontana zsign = ysign; 15231b248f14SClaudio Fontana if (texp == 0 || yexp == 0) { 15241b248f14SClaudio Fontana zexp = yexp; 15251b248f14SClaudio Fontana zsig0 = ysig0; 15261b248f14SClaudio Fontana zsig1 = ysig1; 15271b248f14SClaudio Fontana } else { 15281b248f14SClaudio Fontana /* 15291b248f14SClaudio Fontana * t <= 1, x <= 1 and if both are 1 then y is 0, so tx < 1. 15301b248f14SClaudio Fontana */ 15311b248f14SClaudio Fontana int32_t dexp = texp + xexp - 0x3ffe; 15321b248f14SClaudio Fontana uint64_t dsig0, dsig1, dsig2; 15331b248f14SClaudio Fontana mul128By64To192(xsig0, xsig1, tsig, &dsig0, &dsig1, &dsig2); 15341b248f14SClaudio Fontana /* 15351b248f14SClaudio Fontana * dexp <= 0x3fff (and if equal, dsig0 has a leading 0 15361b248f14SClaudio Fontana * bit). Add 1 to produce the denominator 1+tx. 15371b248f14SClaudio Fontana */ 15381b248f14SClaudio Fontana shift128RightJamming(dsig0, dsig1, 0x3fff - dexp, 15391b248f14SClaudio Fontana &dsig0, &dsig1); 15401b248f14SClaudio Fontana dsig0 |= 0x8000000000000000ULL; 15411b248f14SClaudio Fontana zexp = yexp - 1; 15421b248f14SClaudio Fontana remsig0 = ysig0; 15431b248f14SClaudio Fontana remsig1 = ysig1; 15441b248f14SClaudio Fontana remsig2 = 0; 15451b248f14SClaudio Fontana if (dsig0 <= remsig0) { 15461b248f14SClaudio Fontana shift128Right(remsig0, remsig1, 1, &remsig0, &remsig1); 15471b248f14SClaudio Fontana ++zexp; 15481b248f14SClaudio Fontana } 15491b248f14SClaudio Fontana zsig0 = estimateDiv128To64(remsig0, remsig1, dsig0); 15501b248f14SClaudio Fontana mul128By64To192(dsig0, dsig1, zsig0, &msig0, &msig1, &msig2); 15511b248f14SClaudio Fontana sub192(remsig0, remsig1, remsig2, msig0, msig1, msig2, 15521b248f14SClaudio Fontana &remsig0, &remsig1, &remsig2); 15531b248f14SClaudio Fontana while ((int64_t) remsig0 < 0) { 15541b248f14SClaudio Fontana --zsig0; 15551b248f14SClaudio Fontana add192(remsig0, remsig1, remsig2, 0, dsig0, dsig1, 15561b248f14SClaudio Fontana &remsig0, &remsig1, &remsig2); 15571b248f14SClaudio Fontana } 15581b248f14SClaudio Fontana zsig1 = estimateDiv128To64(remsig1, remsig2, dsig0); 15591b248f14SClaudio Fontana /* No need to correct any estimation error in zsig1. */ 15601b248f14SClaudio Fontana } 15611b248f14SClaudio Fontana 15621b248f14SClaudio Fontana if (zexp == 0) { 15631b248f14SClaudio Fontana azexp = 0; 15641b248f14SClaudio Fontana azsig0 = 0; 15651b248f14SClaudio Fontana azsig1 = 0; 15661b248f14SClaudio Fontana } else { 15671b248f14SClaudio Fontana floatx80 z2, accum; 15681b248f14SClaudio Fontana uint64_t z2sig0, z2sig1, z2sig2, z2sig3; 15691b248f14SClaudio Fontana /* Compute z^2. */ 15701b248f14SClaudio Fontana mul128To256(zsig0, zsig1, zsig0, zsig1, 15711b248f14SClaudio Fontana &z2sig0, &z2sig1, &z2sig2, &z2sig3); 15721b248f14SClaudio Fontana z2 = normalizeRoundAndPackFloatx80(80, false, 15731b248f14SClaudio Fontana zexp + zexp - 0x3ffe, 15741b248f14SClaudio Fontana z2sig0, z2sig1, 15751b248f14SClaudio Fontana &env->fp_status); 15761b248f14SClaudio Fontana 15771b248f14SClaudio Fontana /* Compute the lower parts of the polynomial expansion. */ 15781b248f14SClaudio Fontana accum = floatx80_mul(fpatan_coeff_6, z2, &env->fp_status); 15791b248f14SClaudio Fontana accum = floatx80_add(fpatan_coeff_5, accum, &env->fp_status); 15801b248f14SClaudio Fontana accum = floatx80_mul(accum, z2, &env->fp_status); 15811b248f14SClaudio Fontana accum = floatx80_add(fpatan_coeff_4, accum, &env->fp_status); 15821b248f14SClaudio Fontana accum = floatx80_mul(accum, z2, &env->fp_status); 15831b248f14SClaudio Fontana accum = floatx80_add(fpatan_coeff_3, accum, &env->fp_status); 15841b248f14SClaudio Fontana accum = floatx80_mul(accum, z2, &env->fp_status); 15851b248f14SClaudio Fontana accum = floatx80_add(fpatan_coeff_2, accum, &env->fp_status); 15861b248f14SClaudio Fontana accum = floatx80_mul(accum, z2, &env->fp_status); 15871b248f14SClaudio Fontana accum = floatx80_add(fpatan_coeff_1, accum, &env->fp_status); 15881b248f14SClaudio Fontana accum = floatx80_mul(accum, z2, &env->fp_status); 15891b248f14SClaudio Fontana 15901b248f14SClaudio Fontana /* 15911b248f14SClaudio Fontana * The full polynomial expansion is z*(fpatan_coeff_0 + accum). 15921b248f14SClaudio Fontana * fpatan_coeff_0 is 1, and accum is negative and much smaller. 15931b248f14SClaudio Fontana */ 15941b248f14SClaudio Fontana aexp = extractFloatx80Exp(fpatan_coeff_0); 15951b248f14SClaudio Fontana shift128RightJamming(extractFloatx80Frac(accum), 0, 15961b248f14SClaudio Fontana aexp - extractFloatx80Exp(accum), 15971b248f14SClaudio Fontana &asig0, &asig1); 15981b248f14SClaudio Fontana sub128(extractFloatx80Frac(fpatan_coeff_0), 0, asig0, asig1, 15991b248f14SClaudio Fontana &asig0, &asig1); 16001b248f14SClaudio Fontana /* Multiply by z to compute arctan(z). */ 16011b248f14SClaudio Fontana azexp = aexp + zexp - 0x3ffe; 16021b248f14SClaudio Fontana mul128To256(asig0, asig1, zsig0, zsig1, &azsig0, &azsig1, 16031b248f14SClaudio Fontana &azsig2, &azsig3); 16041b248f14SClaudio Fontana } 16051b248f14SClaudio Fontana 16061b248f14SClaudio Fontana /* Add arctan(t) (positive or zero) and arctan(z) (sign zsign). */ 16071b248f14SClaudio Fontana if (texp == 0) { 16081b248f14SClaudio Fontana /* z is positive. */ 16091b248f14SClaudio Fontana axexp = azexp; 16101b248f14SClaudio Fontana axsig0 = azsig0; 16111b248f14SClaudio Fontana axsig1 = azsig1; 16121b248f14SClaudio Fontana } else { 16131b248f14SClaudio Fontana bool low_sign = extractFloatx80Sign(fpatan_table[n].atan_low); 16141b248f14SClaudio Fontana int32_t low_exp = extractFloatx80Exp(fpatan_table[n].atan_low); 16151b248f14SClaudio Fontana uint64_t low_sig0 = 16161b248f14SClaudio Fontana extractFloatx80Frac(fpatan_table[n].atan_low); 16171b248f14SClaudio Fontana uint64_t low_sig1 = 0; 16181b248f14SClaudio Fontana axexp = extractFloatx80Exp(fpatan_table[n].atan_high); 16191b248f14SClaudio Fontana axsig0 = extractFloatx80Frac(fpatan_table[n].atan_high); 16201b248f14SClaudio Fontana axsig1 = 0; 16211b248f14SClaudio Fontana shift128RightJamming(low_sig0, low_sig1, axexp - low_exp, 16221b248f14SClaudio Fontana &low_sig0, &low_sig1); 16231b248f14SClaudio Fontana if (low_sign) { 16241b248f14SClaudio Fontana sub128(axsig0, axsig1, low_sig0, low_sig1, 16251b248f14SClaudio Fontana &axsig0, &axsig1); 16261b248f14SClaudio Fontana } else { 16271b248f14SClaudio Fontana add128(axsig0, axsig1, low_sig0, low_sig1, 16281b248f14SClaudio Fontana &axsig0, &axsig1); 16291b248f14SClaudio Fontana } 16301b248f14SClaudio Fontana if (azexp >= axexp) { 16311b248f14SClaudio Fontana shift128RightJamming(axsig0, axsig1, azexp - axexp + 1, 16321b248f14SClaudio Fontana &axsig0, &axsig1); 16331b248f14SClaudio Fontana axexp = azexp + 1; 16341b248f14SClaudio Fontana shift128RightJamming(azsig0, azsig1, 1, 16351b248f14SClaudio Fontana &azsig0, &azsig1); 16361b248f14SClaudio Fontana } else { 16371b248f14SClaudio Fontana shift128RightJamming(axsig0, axsig1, 1, 16381b248f14SClaudio Fontana &axsig0, &axsig1); 16391b248f14SClaudio Fontana shift128RightJamming(azsig0, azsig1, axexp - azexp + 1, 16401b248f14SClaudio Fontana &azsig0, &azsig1); 16411b248f14SClaudio Fontana ++axexp; 16421b248f14SClaudio Fontana } 16431b248f14SClaudio Fontana if (zsign) { 16441b248f14SClaudio Fontana sub128(axsig0, axsig1, azsig0, azsig1, 16451b248f14SClaudio Fontana &axsig0, &axsig1); 16461b248f14SClaudio Fontana } else { 16471b248f14SClaudio Fontana add128(axsig0, axsig1, azsig0, azsig1, 16481b248f14SClaudio Fontana &axsig0, &axsig1); 16491b248f14SClaudio Fontana } 16501b248f14SClaudio Fontana } 16511b248f14SClaudio Fontana 16521b248f14SClaudio Fontana if (adj_exp == 0) { 16531b248f14SClaudio Fontana rexp = axexp; 16541b248f14SClaudio Fontana rsig0 = axsig0; 16551b248f14SClaudio Fontana rsig1 = axsig1; 16561b248f14SClaudio Fontana } else { 16571b248f14SClaudio Fontana /* 16581b248f14SClaudio Fontana * Add or subtract arctan(x) (exponent axexp, 16591b248f14SClaudio Fontana * significand axsig0 and axsig1, positive, not 16601b248f14SClaudio Fontana * necessarily normalized) to the number given by 16611b248f14SClaudio Fontana * adj_exp, adj_sig0 and adj_sig1, according to 16621b248f14SClaudio Fontana * adj_sub. 16631b248f14SClaudio Fontana */ 16641b248f14SClaudio Fontana if (adj_exp >= axexp) { 16651b248f14SClaudio Fontana shift128RightJamming(axsig0, axsig1, adj_exp - axexp + 1, 16661b248f14SClaudio Fontana &axsig0, &axsig1); 16671b248f14SClaudio Fontana rexp = adj_exp + 1; 16681b248f14SClaudio Fontana shift128RightJamming(adj_sig0, adj_sig1, 1, 16691b248f14SClaudio Fontana &adj_sig0, &adj_sig1); 16701b248f14SClaudio Fontana } else { 16711b248f14SClaudio Fontana shift128RightJamming(axsig0, axsig1, 1, 16721b248f14SClaudio Fontana &axsig0, &axsig1); 16731b248f14SClaudio Fontana shift128RightJamming(adj_sig0, adj_sig1, 16741b248f14SClaudio Fontana axexp - adj_exp + 1, 16751b248f14SClaudio Fontana &adj_sig0, &adj_sig1); 16761b248f14SClaudio Fontana rexp = axexp + 1; 16771b248f14SClaudio Fontana } 16781b248f14SClaudio Fontana if (adj_sub) { 16791b248f14SClaudio Fontana sub128(adj_sig0, adj_sig1, axsig0, axsig1, 16801b248f14SClaudio Fontana &rsig0, &rsig1); 16811b248f14SClaudio Fontana } else { 16821b248f14SClaudio Fontana add128(adj_sig0, adj_sig1, axsig0, axsig1, 16831b248f14SClaudio Fontana &rsig0, &rsig1); 16841b248f14SClaudio Fontana } 16851b248f14SClaudio Fontana } 16861b248f14SClaudio Fontana 16871b248f14SClaudio Fontana env->fp_status.float_rounding_mode = save_mode; 16881b248f14SClaudio Fontana env->fp_status.floatx80_rounding_precision = save_prec; 16891b248f14SClaudio Fontana } 16901b248f14SClaudio Fontana /* This result is inexact. */ 16911b248f14SClaudio Fontana rsig1 |= 1; 16921b248f14SClaudio Fontana ST1 = normalizeRoundAndPackFloatx80(80, rsign, rexp, 16931b248f14SClaudio Fontana rsig0, rsig1, &env->fp_status); 16941b248f14SClaudio Fontana } 16951b248f14SClaudio Fontana 16961b248f14SClaudio Fontana fpop(env); 16971b248f14SClaudio Fontana merge_exception_flags(env, old_flags); 16981b248f14SClaudio Fontana } 16991b248f14SClaudio Fontana 17001b248f14SClaudio Fontana void helper_fxtract(CPUX86State *env) 17011b248f14SClaudio Fontana { 17021b248f14SClaudio Fontana uint8_t old_flags = save_exception_flags(env); 17031b248f14SClaudio Fontana CPU_LDoubleU temp; 17041b248f14SClaudio Fontana 17051b248f14SClaudio Fontana temp.d = ST0; 17061b248f14SClaudio Fontana 17071b248f14SClaudio Fontana if (floatx80_is_zero(ST0)) { 17081b248f14SClaudio Fontana /* Easy way to generate -inf and raising division by 0 exception */ 17091b248f14SClaudio Fontana ST0 = floatx80_div(floatx80_chs(floatx80_one), floatx80_zero, 17101b248f14SClaudio Fontana &env->fp_status); 17111b248f14SClaudio Fontana fpush(env); 17121b248f14SClaudio Fontana ST0 = temp.d; 17131b248f14SClaudio Fontana } else if (floatx80_invalid_encoding(ST0)) { 17141b248f14SClaudio Fontana float_raise(float_flag_invalid, &env->fp_status); 17151b248f14SClaudio Fontana ST0 = floatx80_default_nan(&env->fp_status); 17161b248f14SClaudio Fontana fpush(env); 17171b248f14SClaudio Fontana ST0 = ST1; 17181b248f14SClaudio Fontana } else if (floatx80_is_any_nan(ST0)) { 17191b248f14SClaudio Fontana if (floatx80_is_signaling_nan(ST0, &env->fp_status)) { 17201b248f14SClaudio Fontana float_raise(float_flag_invalid, &env->fp_status); 17211b248f14SClaudio Fontana ST0 = floatx80_silence_nan(ST0, &env->fp_status); 17221b248f14SClaudio Fontana } 17231b248f14SClaudio Fontana fpush(env); 17241b248f14SClaudio Fontana ST0 = ST1; 17251b248f14SClaudio Fontana } else if (floatx80_is_infinity(ST0)) { 17261b248f14SClaudio Fontana fpush(env); 17271b248f14SClaudio Fontana ST0 = ST1; 17281b248f14SClaudio Fontana ST1 = floatx80_infinity; 17291b248f14SClaudio Fontana } else { 17301b248f14SClaudio Fontana int expdif; 17311b248f14SClaudio Fontana 17321b248f14SClaudio Fontana if (EXPD(temp) == 0) { 17331b248f14SClaudio Fontana int shift = clz64(temp.l.lower); 17341b248f14SClaudio Fontana temp.l.lower <<= shift; 17351b248f14SClaudio Fontana expdif = 1 - EXPBIAS - shift; 17361b248f14SClaudio Fontana float_raise(float_flag_input_denormal, &env->fp_status); 17371b248f14SClaudio Fontana } else { 17381b248f14SClaudio Fontana expdif = EXPD(temp) - EXPBIAS; 17391b248f14SClaudio Fontana } 17401b248f14SClaudio Fontana /* DP exponent bias */ 17411b248f14SClaudio Fontana ST0 = int32_to_floatx80(expdif, &env->fp_status); 17421b248f14SClaudio Fontana fpush(env); 17431b248f14SClaudio Fontana BIASEXPONENT(temp); 17441b248f14SClaudio Fontana ST0 = temp.d; 17451b248f14SClaudio Fontana } 17461b248f14SClaudio Fontana merge_exception_flags(env, old_flags); 17471b248f14SClaudio Fontana } 17481b248f14SClaudio Fontana 17491b248f14SClaudio Fontana static void helper_fprem_common(CPUX86State *env, bool mod) 17501b248f14SClaudio Fontana { 17511b248f14SClaudio Fontana uint8_t old_flags = save_exception_flags(env); 17521b248f14SClaudio Fontana uint64_t quotient; 17531b248f14SClaudio Fontana CPU_LDoubleU temp0, temp1; 17541b248f14SClaudio Fontana int exp0, exp1, expdiff; 17551b248f14SClaudio Fontana 17561b248f14SClaudio Fontana temp0.d = ST0; 17571b248f14SClaudio Fontana temp1.d = ST1; 17581b248f14SClaudio Fontana exp0 = EXPD(temp0); 17591b248f14SClaudio Fontana exp1 = EXPD(temp1); 17601b248f14SClaudio Fontana 17611b248f14SClaudio Fontana env->fpus &= ~0x4700; /* (C3,C2,C1,C0) <-- 0000 */ 17621b248f14SClaudio Fontana if (floatx80_is_zero(ST0) || floatx80_is_zero(ST1) || 17631b248f14SClaudio Fontana exp0 == 0x7fff || exp1 == 0x7fff || 17641b248f14SClaudio Fontana floatx80_invalid_encoding(ST0) || floatx80_invalid_encoding(ST1)) { 17651b248f14SClaudio Fontana ST0 = floatx80_modrem(ST0, ST1, mod, "ient, &env->fp_status); 17661b248f14SClaudio Fontana } else { 17671b248f14SClaudio Fontana if (exp0 == 0) { 17681b248f14SClaudio Fontana exp0 = 1 - clz64(temp0.l.lower); 17691b248f14SClaudio Fontana } 17701b248f14SClaudio Fontana if (exp1 == 0) { 17711b248f14SClaudio Fontana exp1 = 1 - clz64(temp1.l.lower); 17721b248f14SClaudio Fontana } 17731b248f14SClaudio Fontana expdiff = exp0 - exp1; 17741b248f14SClaudio Fontana if (expdiff < 64) { 17751b248f14SClaudio Fontana ST0 = floatx80_modrem(ST0, ST1, mod, "ient, &env->fp_status); 17761b248f14SClaudio Fontana env->fpus |= (quotient & 0x4) << (8 - 2); /* (C0) <-- q2 */ 17771b248f14SClaudio Fontana env->fpus |= (quotient & 0x2) << (14 - 1); /* (C3) <-- q1 */ 17781b248f14SClaudio Fontana env->fpus |= (quotient & 0x1) << (9 - 0); /* (C1) <-- q0 */ 17791b248f14SClaudio Fontana } else { 17801b248f14SClaudio Fontana /* 17811b248f14SClaudio Fontana * Partial remainder. This choice of how many bits to 17821b248f14SClaudio Fontana * process at once is specified in AMD instruction set 17831b248f14SClaudio Fontana * manuals, and empirically is followed by Intel 17841b248f14SClaudio Fontana * processors as well; it ensures that the final remainder 17851b248f14SClaudio Fontana * operation in a loop does produce the correct low three 17861b248f14SClaudio Fontana * bits of the quotient. AMD manuals specify that the 17871b248f14SClaudio Fontana * flags other than C2 are cleared, and empirically Intel 17881b248f14SClaudio Fontana * processors clear them as well. 17891b248f14SClaudio Fontana */ 17901b248f14SClaudio Fontana int n = 32 + (expdiff % 32); 17911b248f14SClaudio Fontana temp1.d = floatx80_scalbn(temp1.d, expdiff - n, &env->fp_status); 17921b248f14SClaudio Fontana ST0 = floatx80_mod(ST0, temp1.d, &env->fp_status); 17931b248f14SClaudio Fontana env->fpus |= 0x400; /* C2 <-- 1 */ 17941b248f14SClaudio Fontana } 17951b248f14SClaudio Fontana } 17961b248f14SClaudio Fontana merge_exception_flags(env, old_flags); 17971b248f14SClaudio Fontana } 17981b248f14SClaudio Fontana 17991b248f14SClaudio Fontana void helper_fprem1(CPUX86State *env) 18001b248f14SClaudio Fontana { 18011b248f14SClaudio Fontana helper_fprem_common(env, false); 18021b248f14SClaudio Fontana } 18031b248f14SClaudio Fontana 18041b248f14SClaudio Fontana void helper_fprem(CPUX86State *env) 18051b248f14SClaudio Fontana { 18061b248f14SClaudio Fontana helper_fprem_common(env, true); 18071b248f14SClaudio Fontana } 18081b248f14SClaudio Fontana 18091b248f14SClaudio Fontana /* 128-bit significand of log2(e). */ 18101b248f14SClaudio Fontana #define log2_e_sig_high 0xb8aa3b295c17f0bbULL 18111b248f14SClaudio Fontana #define log2_e_sig_low 0xbe87fed0691d3e89ULL 18121b248f14SClaudio Fontana 18131b248f14SClaudio Fontana /* 18141b248f14SClaudio Fontana * Polynomial coefficients for an approximation to log2((1+x)/(1-x)), 18151b248f14SClaudio Fontana * with only odd powers of x used, for x in the interval [2*sqrt(2)-3, 18161b248f14SClaudio Fontana * 3-2*sqrt(2)], which corresponds to logarithms of numbers in the 18171b248f14SClaudio Fontana * interval [sqrt(2)/2, sqrt(2)]. 18181b248f14SClaudio Fontana */ 18191b248f14SClaudio Fontana #define fyl2x_coeff_0 make_floatx80(0x4000, 0xb8aa3b295c17f0bcULL) 18201b248f14SClaudio Fontana #define fyl2x_coeff_0_low make_floatx80(0xbfbf, 0x834972fe2d7bab1bULL) 18211b248f14SClaudio Fontana #define fyl2x_coeff_1 make_floatx80(0x3ffe, 0xf6384ee1d01febb8ULL) 18221b248f14SClaudio Fontana #define fyl2x_coeff_2 make_floatx80(0x3ffe, 0x93bb62877cdfa2e3ULL) 18231b248f14SClaudio Fontana #define fyl2x_coeff_3 make_floatx80(0x3ffd, 0xd30bb153d808f269ULL) 18241b248f14SClaudio Fontana #define fyl2x_coeff_4 make_floatx80(0x3ffd, 0xa42589eaf451499eULL) 18251b248f14SClaudio Fontana #define fyl2x_coeff_5 make_floatx80(0x3ffd, 0x864d42c0f8f17517ULL) 18261b248f14SClaudio Fontana #define fyl2x_coeff_6 make_floatx80(0x3ffc, 0xe3476578adf26272ULL) 18271b248f14SClaudio Fontana #define fyl2x_coeff_7 make_floatx80(0x3ffc, 0xc506c5f874e6d80fULL) 18281b248f14SClaudio Fontana #define fyl2x_coeff_8 make_floatx80(0x3ffc, 0xac5cf50cc57d6372ULL) 18291b248f14SClaudio Fontana #define fyl2x_coeff_9 make_floatx80(0x3ffc, 0xb1ed0066d971a103ULL) 18301b248f14SClaudio Fontana 18311b248f14SClaudio Fontana /* 18321b248f14SClaudio Fontana * Compute an approximation of log2(1+arg), where 1+arg is in the 18331b248f14SClaudio Fontana * interval [sqrt(2)/2, sqrt(2)]. It is assumed that when this 18341b248f14SClaudio Fontana * function is called, rounding precision is set to 80 and the 18351b248f14SClaudio Fontana * round-to-nearest mode is in effect. arg must not be exactly zero, 18361b248f14SClaudio Fontana * and must not be so close to zero that underflow might occur. 18371b248f14SClaudio Fontana */ 18381b248f14SClaudio Fontana static void helper_fyl2x_common(CPUX86State *env, floatx80 arg, int32_t *exp, 18391b248f14SClaudio Fontana uint64_t *sig0, uint64_t *sig1) 18401b248f14SClaudio Fontana { 18411b248f14SClaudio Fontana uint64_t arg0_sig = extractFloatx80Frac(arg); 18421b248f14SClaudio Fontana int32_t arg0_exp = extractFloatx80Exp(arg); 18431b248f14SClaudio Fontana bool arg0_sign = extractFloatx80Sign(arg); 18441b248f14SClaudio Fontana bool asign; 18451b248f14SClaudio Fontana int32_t dexp, texp, aexp; 18461b248f14SClaudio Fontana uint64_t dsig0, dsig1, tsig0, tsig1, rsig0, rsig1, rsig2; 18471b248f14SClaudio Fontana uint64_t msig0, msig1, msig2, t2sig0, t2sig1, t2sig2, t2sig3; 18481b248f14SClaudio Fontana uint64_t asig0, asig1, asig2, asig3, bsig0, bsig1; 18491b248f14SClaudio Fontana floatx80 t2, accum; 18501b248f14SClaudio Fontana 18511b248f14SClaudio Fontana /* 18521b248f14SClaudio Fontana * Compute an approximation of arg/(2+arg), with extra precision, 18531b248f14SClaudio Fontana * as the argument to a polynomial approximation. The extra 18541b248f14SClaudio Fontana * precision is only needed for the first term of the 18551b248f14SClaudio Fontana * approximation, with subsequent terms being significantly 18561b248f14SClaudio Fontana * smaller; the approximation only uses odd exponents, and the 18571b248f14SClaudio Fontana * square of arg/(2+arg) is at most 17-12*sqrt(2) = 0.029.... 18581b248f14SClaudio Fontana */ 18591b248f14SClaudio Fontana if (arg0_sign) { 18601b248f14SClaudio Fontana dexp = 0x3fff; 18611b248f14SClaudio Fontana shift128RightJamming(arg0_sig, 0, dexp - arg0_exp, &dsig0, &dsig1); 18621b248f14SClaudio Fontana sub128(0, 0, dsig0, dsig1, &dsig0, &dsig1); 18631b248f14SClaudio Fontana } else { 18641b248f14SClaudio Fontana dexp = 0x4000; 18651b248f14SClaudio Fontana shift128RightJamming(arg0_sig, 0, dexp - arg0_exp, &dsig0, &dsig1); 18661b248f14SClaudio Fontana dsig0 |= 0x8000000000000000ULL; 18671b248f14SClaudio Fontana } 18681b248f14SClaudio Fontana texp = arg0_exp - dexp + 0x3ffe; 18691b248f14SClaudio Fontana rsig0 = arg0_sig; 18701b248f14SClaudio Fontana rsig1 = 0; 18711b248f14SClaudio Fontana rsig2 = 0; 18721b248f14SClaudio Fontana if (dsig0 <= rsig0) { 18731b248f14SClaudio Fontana shift128Right(rsig0, rsig1, 1, &rsig0, &rsig1); 18741b248f14SClaudio Fontana ++texp; 18751b248f14SClaudio Fontana } 18761b248f14SClaudio Fontana tsig0 = estimateDiv128To64(rsig0, rsig1, dsig0); 18771b248f14SClaudio Fontana mul128By64To192(dsig0, dsig1, tsig0, &msig0, &msig1, &msig2); 18781b248f14SClaudio Fontana sub192(rsig0, rsig1, rsig2, msig0, msig1, msig2, 18791b248f14SClaudio Fontana &rsig0, &rsig1, &rsig2); 18801b248f14SClaudio Fontana while ((int64_t) rsig0 < 0) { 18811b248f14SClaudio Fontana --tsig0; 18821b248f14SClaudio Fontana add192(rsig0, rsig1, rsig2, 0, dsig0, dsig1, 18831b248f14SClaudio Fontana &rsig0, &rsig1, &rsig2); 18841b248f14SClaudio Fontana } 18851b248f14SClaudio Fontana tsig1 = estimateDiv128To64(rsig1, rsig2, dsig0); 18861b248f14SClaudio Fontana /* 18871b248f14SClaudio Fontana * No need to correct any estimation error in tsig1; even with 18881b248f14SClaudio Fontana * such error, it is accurate enough. Now compute the square of 18891b248f14SClaudio Fontana * that approximation. 18901b248f14SClaudio Fontana */ 18911b248f14SClaudio Fontana mul128To256(tsig0, tsig1, tsig0, tsig1, 18921b248f14SClaudio Fontana &t2sig0, &t2sig1, &t2sig2, &t2sig3); 18931b248f14SClaudio Fontana t2 = normalizeRoundAndPackFloatx80(80, false, texp + texp - 0x3ffe, 18941b248f14SClaudio Fontana t2sig0, t2sig1, &env->fp_status); 18951b248f14SClaudio Fontana 18961b248f14SClaudio Fontana /* Compute the lower parts of the polynomial expansion. */ 18971b248f14SClaudio Fontana accum = floatx80_mul(fyl2x_coeff_9, t2, &env->fp_status); 18981b248f14SClaudio Fontana accum = floatx80_add(fyl2x_coeff_8, accum, &env->fp_status); 18991b248f14SClaudio Fontana accum = floatx80_mul(accum, t2, &env->fp_status); 19001b248f14SClaudio Fontana accum = floatx80_add(fyl2x_coeff_7, accum, &env->fp_status); 19011b248f14SClaudio Fontana accum = floatx80_mul(accum, t2, &env->fp_status); 19021b248f14SClaudio Fontana accum = floatx80_add(fyl2x_coeff_6, accum, &env->fp_status); 19031b248f14SClaudio Fontana accum = floatx80_mul(accum, t2, &env->fp_status); 19041b248f14SClaudio Fontana accum = floatx80_add(fyl2x_coeff_5, accum, &env->fp_status); 19051b248f14SClaudio Fontana accum = floatx80_mul(accum, t2, &env->fp_status); 19061b248f14SClaudio Fontana accum = floatx80_add(fyl2x_coeff_4, accum, &env->fp_status); 19071b248f14SClaudio Fontana accum = floatx80_mul(accum, t2, &env->fp_status); 19081b248f14SClaudio Fontana accum = floatx80_add(fyl2x_coeff_3, accum, &env->fp_status); 19091b248f14SClaudio Fontana accum = floatx80_mul(accum, t2, &env->fp_status); 19101b248f14SClaudio Fontana accum = floatx80_add(fyl2x_coeff_2, accum, &env->fp_status); 19111b248f14SClaudio Fontana accum = floatx80_mul(accum, t2, &env->fp_status); 19121b248f14SClaudio Fontana accum = floatx80_add(fyl2x_coeff_1, accum, &env->fp_status); 19131b248f14SClaudio Fontana accum = floatx80_mul(accum, t2, &env->fp_status); 19141b248f14SClaudio Fontana accum = floatx80_add(fyl2x_coeff_0_low, accum, &env->fp_status); 19151b248f14SClaudio Fontana 19161b248f14SClaudio Fontana /* 19171b248f14SClaudio Fontana * The full polynomial expansion is fyl2x_coeff_0 + accum (where 19181b248f14SClaudio Fontana * accum has much lower magnitude, and so, in particular, carry 19191b248f14SClaudio Fontana * out of the addition is not possible), multiplied by t. (This 19201b248f14SClaudio Fontana * expansion is only accurate to about 70 bits, not 128 bits.) 19211b248f14SClaudio Fontana */ 19221b248f14SClaudio Fontana aexp = extractFloatx80Exp(fyl2x_coeff_0); 19231b248f14SClaudio Fontana asign = extractFloatx80Sign(fyl2x_coeff_0); 19241b248f14SClaudio Fontana shift128RightJamming(extractFloatx80Frac(accum), 0, 19251b248f14SClaudio Fontana aexp - extractFloatx80Exp(accum), 19261b248f14SClaudio Fontana &asig0, &asig1); 19271b248f14SClaudio Fontana bsig0 = extractFloatx80Frac(fyl2x_coeff_0); 19281b248f14SClaudio Fontana bsig1 = 0; 19291b248f14SClaudio Fontana if (asign == extractFloatx80Sign(accum)) { 19301b248f14SClaudio Fontana add128(bsig0, bsig1, asig0, asig1, &asig0, &asig1); 19311b248f14SClaudio Fontana } else { 19321b248f14SClaudio Fontana sub128(bsig0, bsig1, asig0, asig1, &asig0, &asig1); 19331b248f14SClaudio Fontana } 19341b248f14SClaudio Fontana /* Multiply by t to compute the required result. */ 19351b248f14SClaudio Fontana mul128To256(asig0, asig1, tsig0, tsig1, 19361b248f14SClaudio Fontana &asig0, &asig1, &asig2, &asig3); 19371b248f14SClaudio Fontana aexp += texp - 0x3ffe; 19381b248f14SClaudio Fontana *exp = aexp; 19391b248f14SClaudio Fontana *sig0 = asig0; 19401b248f14SClaudio Fontana *sig1 = asig1; 19411b248f14SClaudio Fontana } 19421b248f14SClaudio Fontana 19431b248f14SClaudio Fontana void helper_fyl2xp1(CPUX86State *env) 19441b248f14SClaudio Fontana { 19451b248f14SClaudio Fontana uint8_t old_flags = save_exception_flags(env); 19461b248f14SClaudio Fontana uint64_t arg0_sig = extractFloatx80Frac(ST0); 19471b248f14SClaudio Fontana int32_t arg0_exp = extractFloatx80Exp(ST0); 19481b248f14SClaudio Fontana bool arg0_sign = extractFloatx80Sign(ST0); 19491b248f14SClaudio Fontana uint64_t arg1_sig = extractFloatx80Frac(ST1); 19501b248f14SClaudio Fontana int32_t arg1_exp = extractFloatx80Exp(ST1); 19511b248f14SClaudio Fontana bool arg1_sign = extractFloatx80Sign(ST1); 19521b248f14SClaudio Fontana 19531b248f14SClaudio Fontana if (floatx80_is_signaling_nan(ST0, &env->fp_status)) { 19541b248f14SClaudio Fontana float_raise(float_flag_invalid, &env->fp_status); 19551b248f14SClaudio Fontana ST1 = floatx80_silence_nan(ST0, &env->fp_status); 19561b248f14SClaudio Fontana } else if (floatx80_is_signaling_nan(ST1, &env->fp_status)) { 19571b248f14SClaudio Fontana float_raise(float_flag_invalid, &env->fp_status); 19581b248f14SClaudio Fontana ST1 = floatx80_silence_nan(ST1, &env->fp_status); 19591b248f14SClaudio Fontana } else if (floatx80_invalid_encoding(ST0) || 19601b248f14SClaudio Fontana floatx80_invalid_encoding(ST1)) { 19611b248f14SClaudio Fontana float_raise(float_flag_invalid, &env->fp_status); 19621b248f14SClaudio Fontana ST1 = floatx80_default_nan(&env->fp_status); 19631b248f14SClaudio Fontana } else if (floatx80_is_any_nan(ST0)) { 19641b248f14SClaudio Fontana ST1 = ST0; 19651b248f14SClaudio Fontana } else if (floatx80_is_any_nan(ST1)) { 19661b248f14SClaudio Fontana /* Pass this NaN through. */ 19671b248f14SClaudio Fontana } else if (arg0_exp > 0x3ffd || 19681b248f14SClaudio Fontana (arg0_exp == 0x3ffd && arg0_sig > (arg0_sign ? 19691b248f14SClaudio Fontana 0x95f619980c4336f7ULL : 19701b248f14SClaudio Fontana 0xd413cccfe7799211ULL))) { 19711b248f14SClaudio Fontana /* 19721b248f14SClaudio Fontana * Out of range for the instruction (ST0 must have absolute 19731b248f14SClaudio Fontana * value less than 1 - sqrt(2)/2 = 0.292..., according to 19741b248f14SClaudio Fontana * Intel manuals; AMD manuals allow a range from sqrt(2)/2 - 1 19751b248f14SClaudio Fontana * to sqrt(2) - 1, which we allow here), treat as invalid. 19761b248f14SClaudio Fontana */ 19771b248f14SClaudio Fontana float_raise(float_flag_invalid, &env->fp_status); 19781b248f14SClaudio Fontana ST1 = floatx80_default_nan(&env->fp_status); 19791b248f14SClaudio Fontana } else if (floatx80_is_zero(ST0) || floatx80_is_zero(ST1) || 19801b248f14SClaudio Fontana arg1_exp == 0x7fff) { 19811b248f14SClaudio Fontana /* 19821b248f14SClaudio Fontana * One argument is zero, or multiplying by infinity; correct 19831b248f14SClaudio Fontana * result is exact and can be obtained by multiplying the 19841b248f14SClaudio Fontana * arguments. 19851b248f14SClaudio Fontana */ 19861b248f14SClaudio Fontana ST1 = floatx80_mul(ST0, ST1, &env->fp_status); 19871b248f14SClaudio Fontana } else if (arg0_exp < 0x3fb0) { 19881b248f14SClaudio Fontana /* 19891b248f14SClaudio Fontana * Multiplying both arguments and an extra-precision version 19901b248f14SClaudio Fontana * of log2(e) is sufficiently precise. 19911b248f14SClaudio Fontana */ 19921b248f14SClaudio Fontana uint64_t sig0, sig1, sig2; 19931b248f14SClaudio Fontana int32_t exp; 19941b248f14SClaudio Fontana if (arg0_exp == 0) { 19951b248f14SClaudio Fontana normalizeFloatx80Subnormal(arg0_sig, &arg0_exp, &arg0_sig); 19961b248f14SClaudio Fontana } 19971b248f14SClaudio Fontana if (arg1_exp == 0) { 19981b248f14SClaudio Fontana normalizeFloatx80Subnormal(arg1_sig, &arg1_exp, &arg1_sig); 19991b248f14SClaudio Fontana } 20001b248f14SClaudio Fontana mul128By64To192(log2_e_sig_high, log2_e_sig_low, arg0_sig, 20011b248f14SClaudio Fontana &sig0, &sig1, &sig2); 20021b248f14SClaudio Fontana exp = arg0_exp + 1; 20031b248f14SClaudio Fontana mul128By64To192(sig0, sig1, arg1_sig, &sig0, &sig1, &sig2); 20041b248f14SClaudio Fontana exp += arg1_exp - 0x3ffe; 20051b248f14SClaudio Fontana /* This result is inexact. */ 20061b248f14SClaudio Fontana sig1 |= 1; 20071b248f14SClaudio Fontana ST1 = normalizeRoundAndPackFloatx80(80, arg0_sign ^ arg1_sign, exp, 20081b248f14SClaudio Fontana sig0, sig1, &env->fp_status); 20091b248f14SClaudio Fontana } else { 20101b248f14SClaudio Fontana int32_t aexp; 20111b248f14SClaudio Fontana uint64_t asig0, asig1, asig2; 20121b248f14SClaudio Fontana FloatRoundMode save_mode = env->fp_status.float_rounding_mode; 20131b248f14SClaudio Fontana signed char save_prec = env->fp_status.floatx80_rounding_precision; 20141b248f14SClaudio Fontana env->fp_status.float_rounding_mode = float_round_nearest_even; 20151b248f14SClaudio Fontana env->fp_status.floatx80_rounding_precision = 80; 20161b248f14SClaudio Fontana 20171b248f14SClaudio Fontana helper_fyl2x_common(env, ST0, &aexp, &asig0, &asig1); 20181b248f14SClaudio Fontana /* 20191b248f14SClaudio Fontana * Multiply by the second argument to compute the required 20201b248f14SClaudio Fontana * result. 20211b248f14SClaudio Fontana */ 20221b248f14SClaudio Fontana if (arg1_exp == 0) { 20231b248f14SClaudio Fontana normalizeFloatx80Subnormal(arg1_sig, &arg1_exp, &arg1_sig); 20241b248f14SClaudio Fontana } 20251b248f14SClaudio Fontana mul128By64To192(asig0, asig1, arg1_sig, &asig0, &asig1, &asig2); 20261b248f14SClaudio Fontana aexp += arg1_exp - 0x3ffe; 20271b248f14SClaudio Fontana /* This result is inexact. */ 20281b248f14SClaudio Fontana asig1 |= 1; 20291b248f14SClaudio Fontana env->fp_status.float_rounding_mode = save_mode; 20301b248f14SClaudio Fontana ST1 = normalizeRoundAndPackFloatx80(80, arg0_sign ^ arg1_sign, aexp, 20311b248f14SClaudio Fontana asig0, asig1, &env->fp_status); 20321b248f14SClaudio Fontana env->fp_status.floatx80_rounding_precision = save_prec; 20331b248f14SClaudio Fontana } 20341b248f14SClaudio Fontana fpop(env); 20351b248f14SClaudio Fontana merge_exception_flags(env, old_flags); 20361b248f14SClaudio Fontana } 20371b248f14SClaudio Fontana 20381b248f14SClaudio Fontana void helper_fyl2x(CPUX86State *env) 20391b248f14SClaudio Fontana { 20401b248f14SClaudio Fontana uint8_t old_flags = save_exception_flags(env); 20411b248f14SClaudio Fontana uint64_t arg0_sig = extractFloatx80Frac(ST0); 20421b248f14SClaudio Fontana int32_t arg0_exp = extractFloatx80Exp(ST0); 20431b248f14SClaudio Fontana bool arg0_sign = extractFloatx80Sign(ST0); 20441b248f14SClaudio Fontana uint64_t arg1_sig = extractFloatx80Frac(ST1); 20451b248f14SClaudio Fontana int32_t arg1_exp = extractFloatx80Exp(ST1); 20461b248f14SClaudio Fontana bool arg1_sign = extractFloatx80Sign(ST1); 20471b248f14SClaudio Fontana 20481b248f14SClaudio Fontana if (floatx80_is_signaling_nan(ST0, &env->fp_status)) { 20491b248f14SClaudio Fontana float_raise(float_flag_invalid, &env->fp_status); 20501b248f14SClaudio Fontana ST1 = floatx80_silence_nan(ST0, &env->fp_status); 20511b248f14SClaudio Fontana } else if (floatx80_is_signaling_nan(ST1, &env->fp_status)) { 20521b248f14SClaudio Fontana float_raise(float_flag_invalid, &env->fp_status); 20531b248f14SClaudio Fontana ST1 = floatx80_silence_nan(ST1, &env->fp_status); 20541b248f14SClaudio Fontana } else if (floatx80_invalid_encoding(ST0) || 20551b248f14SClaudio Fontana floatx80_invalid_encoding(ST1)) { 20561b248f14SClaudio Fontana float_raise(float_flag_invalid, &env->fp_status); 20571b248f14SClaudio Fontana ST1 = floatx80_default_nan(&env->fp_status); 20581b248f14SClaudio Fontana } else if (floatx80_is_any_nan(ST0)) { 20591b248f14SClaudio Fontana ST1 = ST0; 20601b248f14SClaudio Fontana } else if (floatx80_is_any_nan(ST1)) { 20611b248f14SClaudio Fontana /* Pass this NaN through. */ 20621b248f14SClaudio Fontana } else if (arg0_sign && !floatx80_is_zero(ST0)) { 20631b248f14SClaudio Fontana float_raise(float_flag_invalid, &env->fp_status); 20641b248f14SClaudio Fontana ST1 = floatx80_default_nan(&env->fp_status); 20651b248f14SClaudio Fontana } else if (floatx80_is_infinity(ST1)) { 20661b248f14SClaudio Fontana FloatRelation cmp = floatx80_compare(ST0, floatx80_one, 20671b248f14SClaudio Fontana &env->fp_status); 20681b248f14SClaudio Fontana switch (cmp) { 20691b248f14SClaudio Fontana case float_relation_less: 20701b248f14SClaudio Fontana ST1 = floatx80_chs(ST1); 20711b248f14SClaudio Fontana break; 20721b248f14SClaudio Fontana case float_relation_greater: 20731b248f14SClaudio Fontana /* Result is infinity of the same sign as ST1. */ 20741b248f14SClaudio Fontana break; 20751b248f14SClaudio Fontana default: 20761b248f14SClaudio Fontana float_raise(float_flag_invalid, &env->fp_status); 20771b248f14SClaudio Fontana ST1 = floatx80_default_nan(&env->fp_status); 20781b248f14SClaudio Fontana break; 20791b248f14SClaudio Fontana } 20801b248f14SClaudio Fontana } else if (floatx80_is_infinity(ST0)) { 20811b248f14SClaudio Fontana if (floatx80_is_zero(ST1)) { 20821b248f14SClaudio Fontana float_raise(float_flag_invalid, &env->fp_status); 20831b248f14SClaudio Fontana ST1 = floatx80_default_nan(&env->fp_status); 20841b248f14SClaudio Fontana } else if (arg1_sign) { 20851b248f14SClaudio Fontana ST1 = floatx80_chs(ST0); 20861b248f14SClaudio Fontana } else { 20871b248f14SClaudio Fontana ST1 = ST0; 20881b248f14SClaudio Fontana } 20891b248f14SClaudio Fontana } else if (floatx80_is_zero(ST0)) { 20901b248f14SClaudio Fontana if (floatx80_is_zero(ST1)) { 20911b248f14SClaudio Fontana float_raise(float_flag_invalid, &env->fp_status); 20921b248f14SClaudio Fontana ST1 = floatx80_default_nan(&env->fp_status); 20931b248f14SClaudio Fontana } else { 20941b248f14SClaudio Fontana /* Result is infinity with opposite sign to ST1. */ 20951b248f14SClaudio Fontana float_raise(float_flag_divbyzero, &env->fp_status); 20961b248f14SClaudio Fontana ST1 = make_floatx80(arg1_sign ? 0x7fff : 0xffff, 20971b248f14SClaudio Fontana 0x8000000000000000ULL); 20981b248f14SClaudio Fontana } 20991b248f14SClaudio Fontana } else if (floatx80_is_zero(ST1)) { 21001b248f14SClaudio Fontana if (floatx80_lt(ST0, floatx80_one, &env->fp_status)) { 21011b248f14SClaudio Fontana ST1 = floatx80_chs(ST1); 21021b248f14SClaudio Fontana } 21031b248f14SClaudio Fontana /* Otherwise, ST1 is already the correct result. */ 21041b248f14SClaudio Fontana } else if (floatx80_eq(ST0, floatx80_one, &env->fp_status)) { 21051b248f14SClaudio Fontana if (arg1_sign) { 21061b248f14SClaudio Fontana ST1 = floatx80_chs(floatx80_zero); 21071b248f14SClaudio Fontana } else { 21081b248f14SClaudio Fontana ST1 = floatx80_zero; 21091b248f14SClaudio Fontana } 21101b248f14SClaudio Fontana } else { 21111b248f14SClaudio Fontana int32_t int_exp; 21121b248f14SClaudio Fontana floatx80 arg0_m1; 21131b248f14SClaudio Fontana FloatRoundMode save_mode = env->fp_status.float_rounding_mode; 21141b248f14SClaudio Fontana signed char save_prec = env->fp_status.floatx80_rounding_precision; 21151b248f14SClaudio Fontana env->fp_status.float_rounding_mode = float_round_nearest_even; 21161b248f14SClaudio Fontana env->fp_status.floatx80_rounding_precision = 80; 21171b248f14SClaudio Fontana 21181b248f14SClaudio Fontana if (arg0_exp == 0) { 21191b248f14SClaudio Fontana normalizeFloatx80Subnormal(arg0_sig, &arg0_exp, &arg0_sig); 21201b248f14SClaudio Fontana } 21211b248f14SClaudio Fontana if (arg1_exp == 0) { 21221b248f14SClaudio Fontana normalizeFloatx80Subnormal(arg1_sig, &arg1_exp, &arg1_sig); 21231b248f14SClaudio Fontana } 21241b248f14SClaudio Fontana int_exp = arg0_exp - 0x3fff; 21251b248f14SClaudio Fontana if (arg0_sig > 0xb504f333f9de6484ULL) { 21261b248f14SClaudio Fontana ++int_exp; 21271b248f14SClaudio Fontana } 21281b248f14SClaudio Fontana arg0_m1 = floatx80_sub(floatx80_scalbn(ST0, -int_exp, 21291b248f14SClaudio Fontana &env->fp_status), 21301b248f14SClaudio Fontana floatx80_one, &env->fp_status); 21311b248f14SClaudio Fontana if (floatx80_is_zero(arg0_m1)) { 21321b248f14SClaudio Fontana /* Exact power of 2; multiply by ST1. */ 21331b248f14SClaudio Fontana env->fp_status.float_rounding_mode = save_mode; 21341b248f14SClaudio Fontana ST1 = floatx80_mul(int32_to_floatx80(int_exp, &env->fp_status), 21351b248f14SClaudio Fontana ST1, &env->fp_status); 21361b248f14SClaudio Fontana } else { 21371b248f14SClaudio Fontana bool asign = extractFloatx80Sign(arg0_m1); 21381b248f14SClaudio Fontana int32_t aexp; 21391b248f14SClaudio Fontana uint64_t asig0, asig1, asig2; 21401b248f14SClaudio Fontana helper_fyl2x_common(env, arg0_m1, &aexp, &asig0, &asig1); 21411b248f14SClaudio Fontana if (int_exp != 0) { 21421b248f14SClaudio Fontana bool isign = (int_exp < 0); 21431b248f14SClaudio Fontana int32_t iexp; 21441b248f14SClaudio Fontana uint64_t isig; 21451b248f14SClaudio Fontana int shift; 21461b248f14SClaudio Fontana int_exp = isign ? -int_exp : int_exp; 21471b248f14SClaudio Fontana shift = clz32(int_exp) + 32; 21481b248f14SClaudio Fontana isig = int_exp; 21491b248f14SClaudio Fontana isig <<= shift; 21501b248f14SClaudio Fontana iexp = 0x403e - shift; 21511b248f14SClaudio Fontana shift128RightJamming(asig0, asig1, iexp - aexp, 21521b248f14SClaudio Fontana &asig0, &asig1); 21531b248f14SClaudio Fontana if (asign == isign) { 21541b248f14SClaudio Fontana add128(isig, 0, asig0, asig1, &asig0, &asig1); 21551b248f14SClaudio Fontana } else { 21561b248f14SClaudio Fontana sub128(isig, 0, asig0, asig1, &asig0, &asig1); 21571b248f14SClaudio Fontana } 21581b248f14SClaudio Fontana aexp = iexp; 21591b248f14SClaudio Fontana asign = isign; 21601b248f14SClaudio Fontana } 21611b248f14SClaudio Fontana /* 21621b248f14SClaudio Fontana * Multiply by the second argument to compute the required 21631b248f14SClaudio Fontana * result. 21641b248f14SClaudio Fontana */ 21651b248f14SClaudio Fontana if (arg1_exp == 0) { 21661b248f14SClaudio Fontana normalizeFloatx80Subnormal(arg1_sig, &arg1_exp, &arg1_sig); 21671b248f14SClaudio Fontana } 21681b248f14SClaudio Fontana mul128By64To192(asig0, asig1, arg1_sig, &asig0, &asig1, &asig2); 21691b248f14SClaudio Fontana aexp += arg1_exp - 0x3ffe; 21701b248f14SClaudio Fontana /* This result is inexact. */ 21711b248f14SClaudio Fontana asig1 |= 1; 21721b248f14SClaudio Fontana env->fp_status.float_rounding_mode = save_mode; 21731b248f14SClaudio Fontana ST1 = normalizeRoundAndPackFloatx80(80, asign ^ arg1_sign, aexp, 21741b248f14SClaudio Fontana asig0, asig1, &env->fp_status); 21751b248f14SClaudio Fontana } 21761b248f14SClaudio Fontana 21771b248f14SClaudio Fontana env->fp_status.floatx80_rounding_precision = save_prec; 21781b248f14SClaudio Fontana } 21791b248f14SClaudio Fontana fpop(env); 21801b248f14SClaudio Fontana merge_exception_flags(env, old_flags); 21811b248f14SClaudio Fontana } 21821b248f14SClaudio Fontana 21831b248f14SClaudio Fontana void helper_fsqrt(CPUX86State *env) 21841b248f14SClaudio Fontana { 21851b248f14SClaudio Fontana uint8_t old_flags = save_exception_flags(env); 21861b248f14SClaudio Fontana if (floatx80_is_neg(ST0)) { 21871b248f14SClaudio Fontana env->fpus &= ~0x4700; /* (C3,C2,C1,C0) <-- 0000 */ 21881b248f14SClaudio Fontana env->fpus |= 0x400; 21891b248f14SClaudio Fontana } 21901b248f14SClaudio Fontana ST0 = floatx80_sqrt(ST0, &env->fp_status); 21911b248f14SClaudio Fontana merge_exception_flags(env, old_flags); 21921b248f14SClaudio Fontana } 21931b248f14SClaudio Fontana 21941b248f14SClaudio Fontana void helper_fsincos(CPUX86State *env) 21951b248f14SClaudio Fontana { 21961b248f14SClaudio Fontana double fptemp = floatx80_to_double(env, ST0); 21971b248f14SClaudio Fontana 21981b248f14SClaudio Fontana if ((fptemp > MAXTAN) || (fptemp < -MAXTAN)) { 21991b248f14SClaudio Fontana env->fpus |= 0x400; 22001b248f14SClaudio Fontana } else { 22011b248f14SClaudio Fontana ST0 = double_to_floatx80(env, sin(fptemp)); 22021b248f14SClaudio Fontana fpush(env); 22031b248f14SClaudio Fontana ST0 = double_to_floatx80(env, cos(fptemp)); 22041b248f14SClaudio Fontana env->fpus &= ~0x400; /* C2 <-- 0 */ 22051b248f14SClaudio Fontana /* the above code is for |arg| < 2**63 only */ 22061b248f14SClaudio Fontana } 22071b248f14SClaudio Fontana } 22081b248f14SClaudio Fontana 22091b248f14SClaudio Fontana void helper_frndint(CPUX86State *env) 22101b248f14SClaudio Fontana { 22111b248f14SClaudio Fontana uint8_t old_flags = save_exception_flags(env); 22121b248f14SClaudio Fontana ST0 = floatx80_round_to_int(ST0, &env->fp_status); 22131b248f14SClaudio Fontana merge_exception_flags(env, old_flags); 22141b248f14SClaudio Fontana } 22151b248f14SClaudio Fontana 22161b248f14SClaudio Fontana void helper_fscale(CPUX86State *env) 22171b248f14SClaudio Fontana { 22181b248f14SClaudio Fontana uint8_t old_flags = save_exception_flags(env); 22191b248f14SClaudio Fontana if (floatx80_invalid_encoding(ST1) || floatx80_invalid_encoding(ST0)) { 22201b248f14SClaudio Fontana float_raise(float_flag_invalid, &env->fp_status); 22211b248f14SClaudio Fontana ST0 = floatx80_default_nan(&env->fp_status); 22221b248f14SClaudio Fontana } else if (floatx80_is_any_nan(ST1)) { 22231b248f14SClaudio Fontana if (floatx80_is_signaling_nan(ST0, &env->fp_status)) { 22241b248f14SClaudio Fontana float_raise(float_flag_invalid, &env->fp_status); 22251b248f14SClaudio Fontana } 22261b248f14SClaudio Fontana ST0 = ST1; 22271b248f14SClaudio Fontana if (floatx80_is_signaling_nan(ST0, &env->fp_status)) { 22281b248f14SClaudio Fontana float_raise(float_flag_invalid, &env->fp_status); 22291b248f14SClaudio Fontana ST0 = floatx80_silence_nan(ST0, &env->fp_status); 22301b248f14SClaudio Fontana } 22311b248f14SClaudio Fontana } else if (floatx80_is_infinity(ST1) && 22321b248f14SClaudio Fontana !floatx80_invalid_encoding(ST0) && 22331b248f14SClaudio Fontana !floatx80_is_any_nan(ST0)) { 22341b248f14SClaudio Fontana if (floatx80_is_neg(ST1)) { 22351b248f14SClaudio Fontana if (floatx80_is_infinity(ST0)) { 22361b248f14SClaudio Fontana float_raise(float_flag_invalid, &env->fp_status); 22371b248f14SClaudio Fontana ST0 = floatx80_default_nan(&env->fp_status); 22381b248f14SClaudio Fontana } else { 22391b248f14SClaudio Fontana ST0 = (floatx80_is_neg(ST0) ? 22401b248f14SClaudio Fontana floatx80_chs(floatx80_zero) : 22411b248f14SClaudio Fontana floatx80_zero); 22421b248f14SClaudio Fontana } 22431b248f14SClaudio Fontana } else { 22441b248f14SClaudio Fontana if (floatx80_is_zero(ST0)) { 22451b248f14SClaudio Fontana float_raise(float_flag_invalid, &env->fp_status); 22461b248f14SClaudio Fontana ST0 = floatx80_default_nan(&env->fp_status); 22471b248f14SClaudio Fontana } else { 22481b248f14SClaudio Fontana ST0 = (floatx80_is_neg(ST0) ? 22491b248f14SClaudio Fontana floatx80_chs(floatx80_infinity) : 22501b248f14SClaudio Fontana floatx80_infinity); 22511b248f14SClaudio Fontana } 22521b248f14SClaudio Fontana } 22531b248f14SClaudio Fontana } else { 22541b248f14SClaudio Fontana int n; 22551b248f14SClaudio Fontana signed char save = env->fp_status.floatx80_rounding_precision; 22561b248f14SClaudio Fontana uint8_t save_flags = get_float_exception_flags(&env->fp_status); 22571b248f14SClaudio Fontana set_float_exception_flags(0, &env->fp_status); 22581b248f14SClaudio Fontana n = floatx80_to_int32_round_to_zero(ST1, &env->fp_status); 22591b248f14SClaudio Fontana set_float_exception_flags(save_flags, &env->fp_status); 22601b248f14SClaudio Fontana env->fp_status.floatx80_rounding_precision = 80; 22611b248f14SClaudio Fontana ST0 = floatx80_scalbn(ST0, n, &env->fp_status); 22621b248f14SClaudio Fontana env->fp_status.floatx80_rounding_precision = save; 22631b248f14SClaudio Fontana } 22641b248f14SClaudio Fontana merge_exception_flags(env, old_flags); 22651b248f14SClaudio Fontana } 22661b248f14SClaudio Fontana 22671b248f14SClaudio Fontana void helper_fsin(CPUX86State *env) 22681b248f14SClaudio Fontana { 22691b248f14SClaudio Fontana double fptemp = floatx80_to_double(env, ST0); 22701b248f14SClaudio Fontana 22711b248f14SClaudio Fontana if ((fptemp > MAXTAN) || (fptemp < -MAXTAN)) { 22721b248f14SClaudio Fontana env->fpus |= 0x400; 22731b248f14SClaudio Fontana } else { 22741b248f14SClaudio Fontana ST0 = double_to_floatx80(env, sin(fptemp)); 22751b248f14SClaudio Fontana env->fpus &= ~0x400; /* C2 <-- 0 */ 22761b248f14SClaudio Fontana /* the above code is for |arg| < 2**53 only */ 22771b248f14SClaudio Fontana } 22781b248f14SClaudio Fontana } 22791b248f14SClaudio Fontana 22801b248f14SClaudio Fontana void helper_fcos(CPUX86State *env) 22811b248f14SClaudio Fontana { 22821b248f14SClaudio Fontana double fptemp = floatx80_to_double(env, ST0); 22831b248f14SClaudio Fontana 22841b248f14SClaudio Fontana if ((fptemp > MAXTAN) || (fptemp < -MAXTAN)) { 22851b248f14SClaudio Fontana env->fpus |= 0x400; 22861b248f14SClaudio Fontana } else { 22871b248f14SClaudio Fontana ST0 = double_to_floatx80(env, cos(fptemp)); 22881b248f14SClaudio Fontana env->fpus &= ~0x400; /* C2 <-- 0 */ 22891b248f14SClaudio Fontana /* the above code is for |arg| < 2**63 only */ 22901b248f14SClaudio Fontana } 22911b248f14SClaudio Fontana } 22921b248f14SClaudio Fontana 22931b248f14SClaudio Fontana void helper_fxam_ST0(CPUX86State *env) 22941b248f14SClaudio Fontana { 22951b248f14SClaudio Fontana CPU_LDoubleU temp; 22961b248f14SClaudio Fontana int expdif; 22971b248f14SClaudio Fontana 22981b248f14SClaudio Fontana temp.d = ST0; 22991b248f14SClaudio Fontana 23001b248f14SClaudio Fontana env->fpus &= ~0x4700; /* (C3,C2,C1,C0) <-- 0000 */ 23011b248f14SClaudio Fontana if (SIGND(temp)) { 23021b248f14SClaudio Fontana env->fpus |= 0x200; /* C1 <-- 1 */ 23031b248f14SClaudio Fontana } 23041b248f14SClaudio Fontana 23051b248f14SClaudio Fontana if (env->fptags[env->fpstt]) { 23061b248f14SClaudio Fontana env->fpus |= 0x4100; /* Empty */ 23071b248f14SClaudio Fontana return; 23081b248f14SClaudio Fontana } 23091b248f14SClaudio Fontana 23101b248f14SClaudio Fontana expdif = EXPD(temp); 23111b248f14SClaudio Fontana if (expdif == MAXEXPD) { 23121b248f14SClaudio Fontana if (MANTD(temp) == 0x8000000000000000ULL) { 23131b248f14SClaudio Fontana env->fpus |= 0x500; /* Infinity */ 23141b248f14SClaudio Fontana } else if (MANTD(temp) & 0x8000000000000000ULL) { 23151b248f14SClaudio Fontana env->fpus |= 0x100; /* NaN */ 23161b248f14SClaudio Fontana } 23171b248f14SClaudio Fontana } else if (expdif == 0) { 23181b248f14SClaudio Fontana if (MANTD(temp) == 0) { 23191b248f14SClaudio Fontana env->fpus |= 0x4000; /* Zero */ 23201b248f14SClaudio Fontana } else { 23211b248f14SClaudio Fontana env->fpus |= 0x4400; /* Denormal */ 23221b248f14SClaudio Fontana } 23231b248f14SClaudio Fontana } else if (MANTD(temp) & 0x8000000000000000ULL) { 23241b248f14SClaudio Fontana env->fpus |= 0x400; 23251b248f14SClaudio Fontana } 23261b248f14SClaudio Fontana } 23271b248f14SClaudio Fontana 23281b248f14SClaudio Fontana static void do_fstenv(CPUX86State *env, target_ulong ptr, int data32, 23291b248f14SClaudio Fontana uintptr_t retaddr) 23301b248f14SClaudio Fontana { 23311b248f14SClaudio Fontana int fpus, fptag, exp, i; 23321b248f14SClaudio Fontana uint64_t mant; 23331b248f14SClaudio Fontana CPU_LDoubleU tmp; 23341b248f14SClaudio Fontana 23351b248f14SClaudio Fontana fpus = (env->fpus & ~0x3800) | (env->fpstt & 0x7) << 11; 23361b248f14SClaudio Fontana fptag = 0; 23371b248f14SClaudio Fontana for (i = 7; i >= 0; i--) { 23381b248f14SClaudio Fontana fptag <<= 2; 23391b248f14SClaudio Fontana if (env->fptags[i]) { 23401b248f14SClaudio Fontana fptag |= 3; 23411b248f14SClaudio Fontana } else { 23421b248f14SClaudio Fontana tmp.d = env->fpregs[i].d; 23431b248f14SClaudio Fontana exp = EXPD(tmp); 23441b248f14SClaudio Fontana mant = MANTD(tmp); 23451b248f14SClaudio Fontana if (exp == 0 && mant == 0) { 23461b248f14SClaudio Fontana /* zero */ 23471b248f14SClaudio Fontana fptag |= 1; 23481b248f14SClaudio Fontana } else if (exp == 0 || exp == MAXEXPD 23491b248f14SClaudio Fontana || (mant & (1LL << 63)) == 0) { 23501b248f14SClaudio Fontana /* NaNs, infinity, denormal */ 23511b248f14SClaudio Fontana fptag |= 2; 23521b248f14SClaudio Fontana } 23531b248f14SClaudio Fontana } 23541b248f14SClaudio Fontana } 23551b248f14SClaudio Fontana if (data32) { 23561b248f14SClaudio Fontana /* 32 bit */ 23571b248f14SClaudio Fontana cpu_stl_data_ra(env, ptr, env->fpuc, retaddr); 23581b248f14SClaudio Fontana cpu_stl_data_ra(env, ptr + 4, fpus, retaddr); 23591b248f14SClaudio Fontana cpu_stl_data_ra(env, ptr + 8, fptag, retaddr); 23601b248f14SClaudio Fontana cpu_stl_data_ra(env, ptr + 12, 0, retaddr); /* fpip */ 23611b248f14SClaudio Fontana cpu_stl_data_ra(env, ptr + 16, 0, retaddr); /* fpcs */ 23621b248f14SClaudio Fontana cpu_stl_data_ra(env, ptr + 20, 0, retaddr); /* fpoo */ 23631b248f14SClaudio Fontana cpu_stl_data_ra(env, ptr + 24, 0, retaddr); /* fpos */ 23641b248f14SClaudio Fontana } else { 23651b248f14SClaudio Fontana /* 16 bit */ 23661b248f14SClaudio Fontana cpu_stw_data_ra(env, ptr, env->fpuc, retaddr); 23671b248f14SClaudio Fontana cpu_stw_data_ra(env, ptr + 2, fpus, retaddr); 23681b248f14SClaudio Fontana cpu_stw_data_ra(env, ptr + 4, fptag, retaddr); 23691b248f14SClaudio Fontana cpu_stw_data_ra(env, ptr + 6, 0, retaddr); 23701b248f14SClaudio Fontana cpu_stw_data_ra(env, ptr + 8, 0, retaddr); 23711b248f14SClaudio Fontana cpu_stw_data_ra(env, ptr + 10, 0, retaddr); 23721b248f14SClaudio Fontana cpu_stw_data_ra(env, ptr + 12, 0, retaddr); 23731b248f14SClaudio Fontana } 23741b248f14SClaudio Fontana } 23751b248f14SClaudio Fontana 23761b248f14SClaudio Fontana void helper_fstenv(CPUX86State *env, target_ulong ptr, int data32) 23771b248f14SClaudio Fontana { 23781b248f14SClaudio Fontana do_fstenv(env, ptr, data32, GETPC()); 23791b248f14SClaudio Fontana } 23801b248f14SClaudio Fontana 23811b248f14SClaudio Fontana static void cpu_set_fpus(CPUX86State *env, uint16_t fpus) 23821b248f14SClaudio Fontana { 23831b248f14SClaudio Fontana env->fpstt = (fpus >> 11) & 7; 23841b248f14SClaudio Fontana env->fpus = fpus & ~0x3800 & ~FPUS_B; 23851b248f14SClaudio Fontana env->fpus |= env->fpus & FPUS_SE ? FPUS_B : 0; 23861b248f14SClaudio Fontana #if !defined(CONFIG_USER_ONLY) 23871b248f14SClaudio Fontana if (!(env->fpus & FPUS_SE)) { 23881b248f14SClaudio Fontana /* 23891b248f14SClaudio Fontana * Here the processor deasserts FERR#; in response, the chipset deasserts 23901b248f14SClaudio Fontana * IGNNE#. 23911b248f14SClaudio Fontana */ 23921b248f14SClaudio Fontana cpu_clear_ignne(); 23931b248f14SClaudio Fontana } 23941b248f14SClaudio Fontana #endif 23951b248f14SClaudio Fontana } 23961b248f14SClaudio Fontana 23971b248f14SClaudio Fontana static void do_fldenv(CPUX86State *env, target_ulong ptr, int data32, 23981b248f14SClaudio Fontana uintptr_t retaddr) 23991b248f14SClaudio Fontana { 24001b248f14SClaudio Fontana int i, fpus, fptag; 24011b248f14SClaudio Fontana 24021b248f14SClaudio Fontana if (data32) { 24031b248f14SClaudio Fontana cpu_set_fpuc(env, cpu_lduw_data_ra(env, ptr, retaddr)); 24041b248f14SClaudio Fontana fpus = cpu_lduw_data_ra(env, ptr + 4, retaddr); 24051b248f14SClaudio Fontana fptag = cpu_lduw_data_ra(env, ptr + 8, retaddr); 24061b248f14SClaudio Fontana } else { 24071b248f14SClaudio Fontana cpu_set_fpuc(env, cpu_lduw_data_ra(env, ptr, retaddr)); 24081b248f14SClaudio Fontana fpus = cpu_lduw_data_ra(env, ptr + 2, retaddr); 24091b248f14SClaudio Fontana fptag = cpu_lduw_data_ra(env, ptr + 4, retaddr); 24101b248f14SClaudio Fontana } 24111b248f14SClaudio Fontana cpu_set_fpus(env, fpus); 24121b248f14SClaudio Fontana for (i = 0; i < 8; i++) { 24131b248f14SClaudio Fontana env->fptags[i] = ((fptag & 3) == 3); 24141b248f14SClaudio Fontana fptag >>= 2; 24151b248f14SClaudio Fontana } 24161b248f14SClaudio Fontana } 24171b248f14SClaudio Fontana 24181b248f14SClaudio Fontana void helper_fldenv(CPUX86State *env, target_ulong ptr, int data32) 24191b248f14SClaudio Fontana { 24201b248f14SClaudio Fontana do_fldenv(env, ptr, data32, GETPC()); 24211b248f14SClaudio Fontana } 24221b248f14SClaudio Fontana 24230ac2b197SRichard Henderson static void do_fsave(CPUX86State *env, target_ulong ptr, int data32, 24240ac2b197SRichard Henderson uintptr_t retaddr) 24251b248f14SClaudio Fontana { 24261b248f14SClaudio Fontana floatx80 tmp; 24271b248f14SClaudio Fontana int i; 24281b248f14SClaudio Fontana 24290ac2b197SRichard Henderson do_fstenv(env, ptr, data32, retaddr); 24301b248f14SClaudio Fontana 24311b248f14SClaudio Fontana ptr += (14 << data32); 24321b248f14SClaudio Fontana for (i = 0; i < 8; i++) { 24331b248f14SClaudio Fontana tmp = ST(i); 24340ac2b197SRichard Henderson do_fstt(env, tmp, ptr, retaddr); 24351b248f14SClaudio Fontana ptr += 10; 24361b248f14SClaudio Fontana } 24371b248f14SClaudio Fontana 24381b248f14SClaudio Fontana /* fninit */ 24391b248f14SClaudio Fontana env->fpus = 0; 24401b248f14SClaudio Fontana env->fpstt = 0; 24411b248f14SClaudio Fontana cpu_set_fpuc(env, 0x37f); 24421b248f14SClaudio Fontana env->fptags[0] = 1; 24431b248f14SClaudio Fontana env->fptags[1] = 1; 24441b248f14SClaudio Fontana env->fptags[2] = 1; 24451b248f14SClaudio Fontana env->fptags[3] = 1; 24461b248f14SClaudio Fontana env->fptags[4] = 1; 24471b248f14SClaudio Fontana env->fptags[5] = 1; 24481b248f14SClaudio Fontana env->fptags[6] = 1; 24491b248f14SClaudio Fontana env->fptags[7] = 1; 24501b248f14SClaudio Fontana } 24511b248f14SClaudio Fontana 24520ac2b197SRichard Henderson void helper_fsave(CPUX86State *env, target_ulong ptr, int data32) 24530ac2b197SRichard Henderson { 24540ac2b197SRichard Henderson do_fsave(env, ptr, data32, GETPC()); 24550ac2b197SRichard Henderson } 24560ac2b197SRichard Henderson 24570ac2b197SRichard Henderson static void do_frstor(CPUX86State *env, target_ulong ptr, int data32, 24580ac2b197SRichard Henderson uintptr_t retaddr) 24591b248f14SClaudio Fontana { 24601b248f14SClaudio Fontana floatx80 tmp; 24611b248f14SClaudio Fontana int i; 24621b248f14SClaudio Fontana 24630ac2b197SRichard Henderson do_fldenv(env, ptr, data32, retaddr); 24641b248f14SClaudio Fontana ptr += (14 << data32); 24651b248f14SClaudio Fontana 24661b248f14SClaudio Fontana for (i = 0; i < 8; i++) { 24670ac2b197SRichard Henderson tmp = do_fldt(env, ptr, retaddr); 24681b248f14SClaudio Fontana ST(i) = tmp; 24691b248f14SClaudio Fontana ptr += 10; 24701b248f14SClaudio Fontana } 24711b248f14SClaudio Fontana } 24721b248f14SClaudio Fontana 24730ac2b197SRichard Henderson void helper_frstor(CPUX86State *env, target_ulong ptr, int data32) 24740ac2b197SRichard Henderson { 24750ac2b197SRichard Henderson do_frstor(env, ptr, data32, GETPC()); 24760ac2b197SRichard Henderson } 24770ac2b197SRichard Henderson 24781b248f14SClaudio Fontana #if defined(CONFIG_USER_ONLY) 24791b248f14SClaudio Fontana void cpu_x86_fsave(CPUX86State *env, target_ulong ptr, int data32) 24801b248f14SClaudio Fontana { 24810ac2b197SRichard Henderson do_fsave(env, ptr, data32, 0); 24821b248f14SClaudio Fontana } 24831b248f14SClaudio Fontana 24841b248f14SClaudio Fontana void cpu_x86_frstor(CPUX86State *env, target_ulong ptr, int data32) 24851b248f14SClaudio Fontana { 24860ac2b197SRichard Henderson do_frstor(env, ptr, data32, 0); 24871b248f14SClaudio Fontana } 24881b248f14SClaudio Fontana #endif 24891b248f14SClaudio Fontana 24901b248f14SClaudio Fontana #define XO(X) offsetof(X86XSaveArea, X) 24911b248f14SClaudio Fontana 24921b248f14SClaudio Fontana static void do_xsave_fpu(CPUX86State *env, target_ulong ptr, uintptr_t ra) 24931b248f14SClaudio Fontana { 24941b248f14SClaudio Fontana int fpus, fptag, i; 24951b248f14SClaudio Fontana target_ulong addr; 24961b248f14SClaudio Fontana 24971b248f14SClaudio Fontana fpus = (env->fpus & ~0x3800) | (env->fpstt & 0x7) << 11; 24981b248f14SClaudio Fontana fptag = 0; 24991b248f14SClaudio Fontana for (i = 0; i < 8; i++) { 25001b248f14SClaudio Fontana fptag |= (env->fptags[i] << i); 25011b248f14SClaudio Fontana } 25021b248f14SClaudio Fontana 25031b248f14SClaudio Fontana cpu_stw_data_ra(env, ptr + XO(legacy.fcw), env->fpuc, ra); 25041b248f14SClaudio Fontana cpu_stw_data_ra(env, ptr + XO(legacy.fsw), fpus, ra); 25051b248f14SClaudio Fontana cpu_stw_data_ra(env, ptr + XO(legacy.ftw), fptag ^ 0xff, ra); 25061b248f14SClaudio Fontana 25071b248f14SClaudio Fontana /* In 32-bit mode this is eip, sel, dp, sel. 25081b248f14SClaudio Fontana In 64-bit mode this is rip, rdp. 25091b248f14SClaudio Fontana But in either case we don't write actual data, just zeros. */ 25101b248f14SClaudio Fontana cpu_stq_data_ra(env, ptr + XO(legacy.fpip), 0, ra); /* eip+sel; rip */ 25111b248f14SClaudio Fontana cpu_stq_data_ra(env, ptr + XO(legacy.fpdp), 0, ra); /* edp+sel; rdp */ 25121b248f14SClaudio Fontana 25131b248f14SClaudio Fontana addr = ptr + XO(legacy.fpregs); 25141b248f14SClaudio Fontana for (i = 0; i < 8; i++) { 25151b248f14SClaudio Fontana floatx80 tmp = ST(i); 2516e3a69234SRichard Henderson do_fstt(env, tmp, addr, ra); 25171b248f14SClaudio Fontana addr += 16; 25181b248f14SClaudio Fontana } 25191b248f14SClaudio Fontana } 25201b248f14SClaudio Fontana 25211b248f14SClaudio Fontana static void do_xsave_mxcsr(CPUX86State *env, target_ulong ptr, uintptr_t ra) 25221b248f14SClaudio Fontana { 25231b248f14SClaudio Fontana update_mxcsr_from_sse_status(env); 25241b248f14SClaudio Fontana cpu_stl_data_ra(env, ptr + XO(legacy.mxcsr), env->mxcsr, ra); 25251b248f14SClaudio Fontana cpu_stl_data_ra(env, ptr + XO(legacy.mxcsr_mask), 0x0000ffff, ra); 25261b248f14SClaudio Fontana } 25271b248f14SClaudio Fontana 25281b248f14SClaudio Fontana static void do_xsave_sse(CPUX86State *env, target_ulong ptr, uintptr_t ra) 25291b248f14SClaudio Fontana { 25301b248f14SClaudio Fontana int i, nb_xmm_regs; 25311b248f14SClaudio Fontana target_ulong addr; 25321b248f14SClaudio Fontana 25331b248f14SClaudio Fontana if (env->hflags & HF_CS64_MASK) { 25341b248f14SClaudio Fontana nb_xmm_regs = 16; 25351b248f14SClaudio Fontana } else { 25361b248f14SClaudio Fontana nb_xmm_regs = 8; 25371b248f14SClaudio Fontana } 25381b248f14SClaudio Fontana 25391b248f14SClaudio Fontana addr = ptr + XO(legacy.xmm_regs); 25401b248f14SClaudio Fontana for (i = 0; i < nb_xmm_regs; i++) { 25411b248f14SClaudio Fontana cpu_stq_data_ra(env, addr, env->xmm_regs[i].ZMM_Q(0), ra); 25421b248f14SClaudio Fontana cpu_stq_data_ra(env, addr + 8, env->xmm_regs[i].ZMM_Q(1), ra); 25431b248f14SClaudio Fontana addr += 16; 25441b248f14SClaudio Fontana } 25451b248f14SClaudio Fontana } 25461b248f14SClaudio Fontana 25471b248f14SClaudio Fontana static void do_xsave_bndregs(CPUX86State *env, target_ulong ptr, uintptr_t ra) 25481b248f14SClaudio Fontana { 25491b248f14SClaudio Fontana target_ulong addr = ptr + offsetof(XSaveBNDREG, bnd_regs); 25501b248f14SClaudio Fontana int i; 25511b248f14SClaudio Fontana 25521b248f14SClaudio Fontana for (i = 0; i < 4; i++, addr += 16) { 25531b248f14SClaudio Fontana cpu_stq_data_ra(env, addr, env->bnd_regs[i].lb, ra); 25541b248f14SClaudio Fontana cpu_stq_data_ra(env, addr + 8, env->bnd_regs[i].ub, ra); 25551b248f14SClaudio Fontana } 25561b248f14SClaudio Fontana } 25571b248f14SClaudio Fontana 25581b248f14SClaudio Fontana static void do_xsave_bndcsr(CPUX86State *env, target_ulong ptr, uintptr_t ra) 25591b248f14SClaudio Fontana { 25601b248f14SClaudio Fontana cpu_stq_data_ra(env, ptr + offsetof(XSaveBNDCSR, bndcsr.cfgu), 25611b248f14SClaudio Fontana env->bndcs_regs.cfgu, ra); 25621b248f14SClaudio Fontana cpu_stq_data_ra(env, ptr + offsetof(XSaveBNDCSR, bndcsr.sts), 25631b248f14SClaudio Fontana env->bndcs_regs.sts, ra); 25641b248f14SClaudio Fontana } 25651b248f14SClaudio Fontana 25661b248f14SClaudio Fontana static void do_xsave_pkru(CPUX86State *env, target_ulong ptr, uintptr_t ra) 25671b248f14SClaudio Fontana { 25681b248f14SClaudio Fontana cpu_stq_data_ra(env, ptr, env->pkru, ra); 25691b248f14SClaudio Fontana } 25701b248f14SClaudio Fontana 25710ac2b197SRichard Henderson static void do_fxsave(CPUX86State *env, target_ulong ptr, uintptr_t ra) 25721b248f14SClaudio Fontana { 25731b248f14SClaudio Fontana /* The operand must be 16 byte aligned */ 25741b248f14SClaudio Fontana if (ptr & 0xf) { 25751b248f14SClaudio Fontana raise_exception_ra(env, EXCP0D_GPF, ra); 25761b248f14SClaudio Fontana } 25771b248f14SClaudio Fontana 25781b248f14SClaudio Fontana do_xsave_fpu(env, ptr, ra); 25791b248f14SClaudio Fontana 25801b248f14SClaudio Fontana if (env->cr[4] & CR4_OSFXSR_MASK) { 25811b248f14SClaudio Fontana do_xsave_mxcsr(env, ptr, ra); 25821b248f14SClaudio Fontana /* Fast FXSAVE leaves out the XMM registers */ 25831b248f14SClaudio Fontana if (!(env->efer & MSR_EFER_FFXSR) 25841b248f14SClaudio Fontana || (env->hflags & HF_CPL_MASK) 25851b248f14SClaudio Fontana || !(env->hflags & HF_LMA_MASK)) { 25861b248f14SClaudio Fontana do_xsave_sse(env, ptr, ra); 25871b248f14SClaudio Fontana } 25881b248f14SClaudio Fontana } 25891b248f14SClaudio Fontana } 25901b248f14SClaudio Fontana 25910ac2b197SRichard Henderson void helper_fxsave(CPUX86State *env, target_ulong ptr) 25920ac2b197SRichard Henderson { 25930ac2b197SRichard Henderson do_fxsave(env, ptr, GETPC()); 25940ac2b197SRichard Henderson } 25950ac2b197SRichard Henderson 25961b248f14SClaudio Fontana static uint64_t get_xinuse(CPUX86State *env) 25971b248f14SClaudio Fontana { 25981b248f14SClaudio Fontana uint64_t inuse = -1; 25991b248f14SClaudio Fontana 26001b248f14SClaudio Fontana /* For the most part, we don't track XINUSE. We could calculate it 26011b248f14SClaudio Fontana here for all components, but it's probably less work to simply 26021b248f14SClaudio Fontana indicate in use. That said, the state of BNDREGS is important 26031b248f14SClaudio Fontana enough to track in HFLAGS, so we might as well use that here. */ 26041b248f14SClaudio Fontana if ((env->hflags & HF_MPX_IU_MASK) == 0) { 26051b248f14SClaudio Fontana inuse &= ~XSTATE_BNDREGS_MASK; 26061b248f14SClaudio Fontana } 26071b248f14SClaudio Fontana return inuse; 26081b248f14SClaudio Fontana } 26091b248f14SClaudio Fontana 26101b248f14SClaudio Fontana static void do_xsave(CPUX86State *env, target_ulong ptr, uint64_t rfbm, 26111b248f14SClaudio Fontana uint64_t inuse, uint64_t opt, uintptr_t ra) 26121b248f14SClaudio Fontana { 26131b248f14SClaudio Fontana uint64_t old_bv, new_bv; 26141b248f14SClaudio Fontana 26151b248f14SClaudio Fontana /* The OS must have enabled XSAVE. */ 26161b248f14SClaudio Fontana if (!(env->cr[4] & CR4_OSXSAVE_MASK)) { 26171b248f14SClaudio Fontana raise_exception_ra(env, EXCP06_ILLOP, ra); 26181b248f14SClaudio Fontana } 26191b248f14SClaudio Fontana 26201b248f14SClaudio Fontana /* The operand must be 64 byte aligned. */ 26211b248f14SClaudio Fontana if (ptr & 63) { 26221b248f14SClaudio Fontana raise_exception_ra(env, EXCP0D_GPF, ra); 26231b248f14SClaudio Fontana } 26241b248f14SClaudio Fontana 26251b248f14SClaudio Fontana /* Never save anything not enabled by XCR0. */ 26261b248f14SClaudio Fontana rfbm &= env->xcr0; 26271b248f14SClaudio Fontana opt &= rfbm; 26281b248f14SClaudio Fontana 26291b248f14SClaudio Fontana if (opt & XSTATE_FP_MASK) { 26301b248f14SClaudio Fontana do_xsave_fpu(env, ptr, ra); 26311b248f14SClaudio Fontana } 26321b248f14SClaudio Fontana if (rfbm & XSTATE_SSE_MASK) { 26331b248f14SClaudio Fontana /* Note that saving MXCSR is not suppressed by XSAVEOPT. */ 26341b248f14SClaudio Fontana do_xsave_mxcsr(env, ptr, ra); 26351b248f14SClaudio Fontana } 26361b248f14SClaudio Fontana if (opt & XSTATE_SSE_MASK) { 26371b248f14SClaudio Fontana do_xsave_sse(env, ptr, ra); 26381b248f14SClaudio Fontana } 26391b248f14SClaudio Fontana if (opt & XSTATE_BNDREGS_MASK) { 26401b248f14SClaudio Fontana do_xsave_bndregs(env, ptr + XO(bndreg_state), ra); 26411b248f14SClaudio Fontana } 26421b248f14SClaudio Fontana if (opt & XSTATE_BNDCSR_MASK) { 26431b248f14SClaudio Fontana do_xsave_bndcsr(env, ptr + XO(bndcsr_state), ra); 26441b248f14SClaudio Fontana } 26451b248f14SClaudio Fontana if (opt & XSTATE_PKRU_MASK) { 26461b248f14SClaudio Fontana do_xsave_pkru(env, ptr + XO(pkru_state), ra); 26471b248f14SClaudio Fontana } 26481b248f14SClaudio Fontana 26491b248f14SClaudio Fontana /* Update the XSTATE_BV field. */ 26501b248f14SClaudio Fontana old_bv = cpu_ldq_data_ra(env, ptr + XO(header.xstate_bv), ra); 26511b248f14SClaudio Fontana new_bv = (old_bv & ~rfbm) | (inuse & rfbm); 26521b248f14SClaudio Fontana cpu_stq_data_ra(env, ptr + XO(header.xstate_bv), new_bv, ra); 26531b248f14SClaudio Fontana } 26541b248f14SClaudio Fontana 26551b248f14SClaudio Fontana void helper_xsave(CPUX86State *env, target_ulong ptr, uint64_t rfbm) 26561b248f14SClaudio Fontana { 26571b248f14SClaudio Fontana do_xsave(env, ptr, rfbm, get_xinuse(env), -1, GETPC()); 26581b248f14SClaudio Fontana } 26591b248f14SClaudio Fontana 26601b248f14SClaudio Fontana void helper_xsaveopt(CPUX86State *env, target_ulong ptr, uint64_t rfbm) 26611b248f14SClaudio Fontana { 26621b248f14SClaudio Fontana uint64_t inuse = get_xinuse(env); 26631b248f14SClaudio Fontana do_xsave(env, ptr, rfbm, inuse, inuse, GETPC()); 26641b248f14SClaudio Fontana } 26651b248f14SClaudio Fontana 26661b248f14SClaudio Fontana static void do_xrstor_fpu(CPUX86State *env, target_ulong ptr, uintptr_t ra) 26671b248f14SClaudio Fontana { 26681b248f14SClaudio Fontana int i, fpuc, fpus, fptag; 26691b248f14SClaudio Fontana target_ulong addr; 26701b248f14SClaudio Fontana 26711b248f14SClaudio Fontana fpuc = cpu_lduw_data_ra(env, ptr + XO(legacy.fcw), ra); 26721b248f14SClaudio Fontana fpus = cpu_lduw_data_ra(env, ptr + XO(legacy.fsw), ra); 26731b248f14SClaudio Fontana fptag = cpu_lduw_data_ra(env, ptr + XO(legacy.ftw), ra); 26741b248f14SClaudio Fontana cpu_set_fpuc(env, fpuc); 26751b248f14SClaudio Fontana cpu_set_fpus(env, fpus); 26761b248f14SClaudio Fontana fptag ^= 0xff; 26771b248f14SClaudio Fontana for (i = 0; i < 8; i++) { 26781b248f14SClaudio Fontana env->fptags[i] = ((fptag >> i) & 1); 26791b248f14SClaudio Fontana } 26801b248f14SClaudio Fontana 26811b248f14SClaudio Fontana addr = ptr + XO(legacy.fpregs); 26821b248f14SClaudio Fontana for (i = 0; i < 8; i++) { 2683e3a69234SRichard Henderson floatx80 tmp = do_fldt(env, addr, ra); 26841b248f14SClaudio Fontana ST(i) = tmp; 26851b248f14SClaudio Fontana addr += 16; 26861b248f14SClaudio Fontana } 26871b248f14SClaudio Fontana } 26881b248f14SClaudio Fontana 26891b248f14SClaudio Fontana static void do_xrstor_mxcsr(CPUX86State *env, target_ulong ptr, uintptr_t ra) 26901b248f14SClaudio Fontana { 26911b248f14SClaudio Fontana cpu_set_mxcsr(env, cpu_ldl_data_ra(env, ptr + XO(legacy.mxcsr), ra)); 26921b248f14SClaudio Fontana } 26931b248f14SClaudio Fontana 26941b248f14SClaudio Fontana static void do_xrstor_sse(CPUX86State *env, target_ulong ptr, uintptr_t ra) 26951b248f14SClaudio Fontana { 26961b248f14SClaudio Fontana int i, nb_xmm_regs; 26971b248f14SClaudio Fontana target_ulong addr; 26981b248f14SClaudio Fontana 26991b248f14SClaudio Fontana if (env->hflags & HF_CS64_MASK) { 27001b248f14SClaudio Fontana nb_xmm_regs = 16; 27011b248f14SClaudio Fontana } else { 27021b248f14SClaudio Fontana nb_xmm_regs = 8; 27031b248f14SClaudio Fontana } 27041b248f14SClaudio Fontana 27051b248f14SClaudio Fontana addr = ptr + XO(legacy.xmm_regs); 27061b248f14SClaudio Fontana for (i = 0; i < nb_xmm_regs; i++) { 27071b248f14SClaudio Fontana env->xmm_regs[i].ZMM_Q(0) = cpu_ldq_data_ra(env, addr, ra); 27081b248f14SClaudio Fontana env->xmm_regs[i].ZMM_Q(1) = cpu_ldq_data_ra(env, addr + 8, ra); 27091b248f14SClaudio Fontana addr += 16; 27101b248f14SClaudio Fontana } 27111b248f14SClaudio Fontana } 27121b248f14SClaudio Fontana 27131b248f14SClaudio Fontana static void do_xrstor_bndregs(CPUX86State *env, target_ulong ptr, uintptr_t ra) 27141b248f14SClaudio Fontana { 27151b248f14SClaudio Fontana target_ulong addr = ptr + offsetof(XSaveBNDREG, bnd_regs); 27161b248f14SClaudio Fontana int i; 27171b248f14SClaudio Fontana 27181b248f14SClaudio Fontana for (i = 0; i < 4; i++, addr += 16) { 27191b248f14SClaudio Fontana env->bnd_regs[i].lb = cpu_ldq_data_ra(env, addr, ra); 27201b248f14SClaudio Fontana env->bnd_regs[i].ub = cpu_ldq_data_ra(env, addr + 8, ra); 27211b248f14SClaudio Fontana } 27221b248f14SClaudio Fontana } 27231b248f14SClaudio Fontana 27241b248f14SClaudio Fontana static void do_xrstor_bndcsr(CPUX86State *env, target_ulong ptr, uintptr_t ra) 27251b248f14SClaudio Fontana { 27261b248f14SClaudio Fontana /* FIXME: Extend highest implemented bit of linear address. */ 27271b248f14SClaudio Fontana env->bndcs_regs.cfgu 27281b248f14SClaudio Fontana = cpu_ldq_data_ra(env, ptr + offsetof(XSaveBNDCSR, bndcsr.cfgu), ra); 27291b248f14SClaudio Fontana env->bndcs_regs.sts 27301b248f14SClaudio Fontana = cpu_ldq_data_ra(env, ptr + offsetof(XSaveBNDCSR, bndcsr.sts), ra); 27311b248f14SClaudio Fontana } 27321b248f14SClaudio Fontana 27331b248f14SClaudio Fontana static void do_xrstor_pkru(CPUX86State *env, target_ulong ptr, uintptr_t ra) 27341b248f14SClaudio Fontana { 27351b248f14SClaudio Fontana env->pkru = cpu_ldq_data_ra(env, ptr, ra); 27361b248f14SClaudio Fontana } 27371b248f14SClaudio Fontana 27380ac2b197SRichard Henderson static void do_fxrstor(CPUX86State *env, target_ulong ptr, uintptr_t ra) 27391b248f14SClaudio Fontana { 27401b248f14SClaudio Fontana /* The operand must be 16 byte aligned */ 27411b248f14SClaudio Fontana if (ptr & 0xf) { 27421b248f14SClaudio Fontana raise_exception_ra(env, EXCP0D_GPF, ra); 27431b248f14SClaudio Fontana } 27441b248f14SClaudio Fontana 27451b248f14SClaudio Fontana do_xrstor_fpu(env, ptr, ra); 27461b248f14SClaudio Fontana 27471b248f14SClaudio Fontana if (env->cr[4] & CR4_OSFXSR_MASK) { 27481b248f14SClaudio Fontana do_xrstor_mxcsr(env, ptr, ra); 27491b248f14SClaudio Fontana /* Fast FXRSTOR leaves out the XMM registers */ 27501b248f14SClaudio Fontana if (!(env->efer & MSR_EFER_FFXSR) 27511b248f14SClaudio Fontana || (env->hflags & HF_CPL_MASK) 27521b248f14SClaudio Fontana || !(env->hflags & HF_LMA_MASK)) { 27531b248f14SClaudio Fontana do_xrstor_sse(env, ptr, ra); 27541b248f14SClaudio Fontana } 27551b248f14SClaudio Fontana } 27561b248f14SClaudio Fontana } 27571b248f14SClaudio Fontana 27580ac2b197SRichard Henderson void helper_fxrstor(CPUX86State *env, target_ulong ptr) 27590ac2b197SRichard Henderson { 27600ac2b197SRichard Henderson do_fxrstor(env, ptr, GETPC()); 27610ac2b197SRichard Henderson } 27620ac2b197SRichard Henderson 27631b248f14SClaudio Fontana #if defined(CONFIG_USER_ONLY) 27641b248f14SClaudio Fontana void cpu_x86_fxsave(CPUX86State *env, target_ulong ptr) 27651b248f14SClaudio Fontana { 27660ac2b197SRichard Henderson do_fxsave(env, ptr, 0); 27671b248f14SClaudio Fontana } 27681b248f14SClaudio Fontana 27691b248f14SClaudio Fontana void cpu_x86_fxrstor(CPUX86State *env, target_ulong ptr) 27701b248f14SClaudio Fontana { 27710ac2b197SRichard Henderson do_fxrstor(env, ptr, 0); 27721b248f14SClaudio Fontana } 27731b248f14SClaudio Fontana #endif 27741b248f14SClaudio Fontana 27751b248f14SClaudio Fontana void helper_xrstor(CPUX86State *env, target_ulong ptr, uint64_t rfbm) 27761b248f14SClaudio Fontana { 27771b248f14SClaudio Fontana uintptr_t ra = GETPC(); 27781b248f14SClaudio Fontana uint64_t xstate_bv, xcomp_bv, reserve0; 27791b248f14SClaudio Fontana 27801b248f14SClaudio Fontana rfbm &= env->xcr0; 27811b248f14SClaudio Fontana 27821b248f14SClaudio Fontana /* The OS must have enabled XSAVE. */ 27831b248f14SClaudio Fontana if (!(env->cr[4] & CR4_OSXSAVE_MASK)) { 27841b248f14SClaudio Fontana raise_exception_ra(env, EXCP06_ILLOP, ra); 27851b248f14SClaudio Fontana } 27861b248f14SClaudio Fontana 27871b248f14SClaudio Fontana /* The operand must be 64 byte aligned. */ 27881b248f14SClaudio Fontana if (ptr & 63) { 27891b248f14SClaudio Fontana raise_exception_ra(env, EXCP0D_GPF, ra); 27901b248f14SClaudio Fontana } 27911b248f14SClaudio Fontana 27921b248f14SClaudio Fontana xstate_bv = cpu_ldq_data_ra(env, ptr + XO(header.xstate_bv), ra); 27931b248f14SClaudio Fontana 27941b248f14SClaudio Fontana if ((int64_t)xstate_bv < 0) { 27951b248f14SClaudio Fontana /* FIXME: Compact form. */ 27961b248f14SClaudio Fontana raise_exception_ra(env, EXCP0D_GPF, ra); 27971b248f14SClaudio Fontana } 27981b248f14SClaudio Fontana 27991b248f14SClaudio Fontana /* Standard form. */ 28001b248f14SClaudio Fontana 28011b248f14SClaudio Fontana /* The XSTATE_BV field must not set bits not present in XCR0. */ 28021b248f14SClaudio Fontana if (xstate_bv & ~env->xcr0) { 28031b248f14SClaudio Fontana raise_exception_ra(env, EXCP0D_GPF, ra); 28041b248f14SClaudio Fontana } 28051b248f14SClaudio Fontana 28061b248f14SClaudio Fontana /* The XCOMP_BV field must be zero. Note that, as of the April 2016 28071b248f14SClaudio Fontana revision, the description of the XSAVE Header (Vol 1, Sec 13.4.2) 28081b248f14SClaudio Fontana describes only XCOMP_BV, but the description of the standard form 28091b248f14SClaudio Fontana of XRSTOR (Vol 1, Sec 13.8.1) checks bytes 23:8 for zero, which 28101b248f14SClaudio Fontana includes the next 64-bit field. */ 28111b248f14SClaudio Fontana xcomp_bv = cpu_ldq_data_ra(env, ptr + XO(header.xcomp_bv), ra); 28121b248f14SClaudio Fontana reserve0 = cpu_ldq_data_ra(env, ptr + XO(header.reserve0), ra); 28131b248f14SClaudio Fontana if (xcomp_bv || reserve0) { 28141b248f14SClaudio Fontana raise_exception_ra(env, EXCP0D_GPF, ra); 28151b248f14SClaudio Fontana } 28161b248f14SClaudio Fontana 28171b248f14SClaudio Fontana if (rfbm & XSTATE_FP_MASK) { 28181b248f14SClaudio Fontana if (xstate_bv & XSTATE_FP_MASK) { 28191b248f14SClaudio Fontana do_xrstor_fpu(env, ptr, ra); 28201b248f14SClaudio Fontana } else { 28211b248f14SClaudio Fontana helper_fninit(env); 28221b248f14SClaudio Fontana memset(env->fpregs, 0, sizeof(env->fpregs)); 28231b248f14SClaudio Fontana } 28241b248f14SClaudio Fontana } 28251b248f14SClaudio Fontana if (rfbm & XSTATE_SSE_MASK) { 28261b248f14SClaudio Fontana /* Note that the standard form of XRSTOR loads MXCSR from memory 28271b248f14SClaudio Fontana whether or not the XSTATE_BV bit is set. */ 28281b248f14SClaudio Fontana do_xrstor_mxcsr(env, ptr, ra); 28291b248f14SClaudio Fontana if (xstate_bv & XSTATE_SSE_MASK) { 28301b248f14SClaudio Fontana do_xrstor_sse(env, ptr, ra); 28311b248f14SClaudio Fontana } else { 28321b248f14SClaudio Fontana /* ??? When AVX is implemented, we may have to be more 28331b248f14SClaudio Fontana selective in the clearing. */ 28341b248f14SClaudio Fontana memset(env->xmm_regs, 0, sizeof(env->xmm_regs)); 28351b248f14SClaudio Fontana } 28361b248f14SClaudio Fontana } 28371b248f14SClaudio Fontana if (rfbm & XSTATE_BNDREGS_MASK) { 28381b248f14SClaudio Fontana if (xstate_bv & XSTATE_BNDREGS_MASK) { 28391b248f14SClaudio Fontana do_xrstor_bndregs(env, ptr + XO(bndreg_state), ra); 28401b248f14SClaudio Fontana env->hflags |= HF_MPX_IU_MASK; 28411b248f14SClaudio Fontana } else { 28421b248f14SClaudio Fontana memset(env->bnd_regs, 0, sizeof(env->bnd_regs)); 28431b248f14SClaudio Fontana env->hflags &= ~HF_MPX_IU_MASK; 28441b248f14SClaudio Fontana } 28451b248f14SClaudio Fontana } 28461b248f14SClaudio Fontana if (rfbm & XSTATE_BNDCSR_MASK) { 28471b248f14SClaudio Fontana if (xstate_bv & XSTATE_BNDCSR_MASK) { 28481b248f14SClaudio Fontana do_xrstor_bndcsr(env, ptr + XO(bndcsr_state), ra); 28491b248f14SClaudio Fontana } else { 28501b248f14SClaudio Fontana memset(&env->bndcs_regs, 0, sizeof(env->bndcs_regs)); 28511b248f14SClaudio Fontana } 28521b248f14SClaudio Fontana cpu_sync_bndcs_hflags(env); 28531b248f14SClaudio Fontana } 28541b248f14SClaudio Fontana if (rfbm & XSTATE_PKRU_MASK) { 28551b248f14SClaudio Fontana uint64_t old_pkru = env->pkru; 28561b248f14SClaudio Fontana if (xstate_bv & XSTATE_PKRU_MASK) { 28571b248f14SClaudio Fontana do_xrstor_pkru(env, ptr + XO(pkru_state), ra); 28581b248f14SClaudio Fontana } else { 28591b248f14SClaudio Fontana env->pkru = 0; 28601b248f14SClaudio Fontana } 28611b248f14SClaudio Fontana if (env->pkru != old_pkru) { 28621b248f14SClaudio Fontana CPUState *cs = env_cpu(env); 28631b248f14SClaudio Fontana tlb_flush(cs); 28641b248f14SClaudio Fontana } 28651b248f14SClaudio Fontana } 28661b248f14SClaudio Fontana } 28671b248f14SClaudio Fontana 28681b248f14SClaudio Fontana #undef XO 28691b248f14SClaudio Fontana 28701b248f14SClaudio Fontana uint64_t helper_xgetbv(CPUX86State *env, uint32_t ecx) 28711b248f14SClaudio Fontana { 28721b248f14SClaudio Fontana /* The OS must have enabled XSAVE. */ 28731b248f14SClaudio Fontana if (!(env->cr[4] & CR4_OSXSAVE_MASK)) { 28741b248f14SClaudio Fontana raise_exception_ra(env, EXCP06_ILLOP, GETPC()); 28751b248f14SClaudio Fontana } 28761b248f14SClaudio Fontana 28771b248f14SClaudio Fontana switch (ecx) { 28781b248f14SClaudio Fontana case 0: 28791b248f14SClaudio Fontana return env->xcr0; 28801b248f14SClaudio Fontana case 1: 28811b248f14SClaudio Fontana if (env->features[FEAT_XSAVE] & CPUID_XSAVE_XGETBV1) { 28821b248f14SClaudio Fontana return env->xcr0 & get_xinuse(env); 28831b248f14SClaudio Fontana } 28841b248f14SClaudio Fontana break; 28851b248f14SClaudio Fontana } 28861b248f14SClaudio Fontana raise_exception_ra(env, EXCP0D_GPF, GETPC()); 28871b248f14SClaudio Fontana } 28881b248f14SClaudio Fontana 28891b248f14SClaudio Fontana void helper_xsetbv(CPUX86State *env, uint32_t ecx, uint64_t mask) 28901b248f14SClaudio Fontana { 28911b248f14SClaudio Fontana uint32_t dummy, ena_lo, ena_hi; 28921b248f14SClaudio Fontana uint64_t ena; 28931b248f14SClaudio Fontana 28941b248f14SClaudio Fontana /* The OS must have enabled XSAVE. */ 28951b248f14SClaudio Fontana if (!(env->cr[4] & CR4_OSXSAVE_MASK)) { 28961b248f14SClaudio Fontana raise_exception_ra(env, EXCP06_ILLOP, GETPC()); 28971b248f14SClaudio Fontana } 28981b248f14SClaudio Fontana 28991b248f14SClaudio Fontana /* Only XCR0 is defined at present; the FPU may not be disabled. */ 29001b248f14SClaudio Fontana if (ecx != 0 || (mask & XSTATE_FP_MASK) == 0) { 29011b248f14SClaudio Fontana goto do_gpf; 29021b248f14SClaudio Fontana } 29031b248f14SClaudio Fontana 29041b248f14SClaudio Fontana /* Disallow enabling unimplemented features. */ 29051b248f14SClaudio Fontana cpu_x86_cpuid(env, 0x0d, 0, &ena_lo, &dummy, &dummy, &ena_hi); 29061b248f14SClaudio Fontana ena = ((uint64_t)ena_hi << 32) | ena_lo; 29071b248f14SClaudio Fontana if (mask & ~ena) { 29081b248f14SClaudio Fontana goto do_gpf; 29091b248f14SClaudio Fontana } 29101b248f14SClaudio Fontana 29111b248f14SClaudio Fontana /* Disallow enabling only half of MPX. */ 29121b248f14SClaudio Fontana if ((mask ^ (mask * (XSTATE_BNDCSR_MASK / XSTATE_BNDREGS_MASK))) 29131b248f14SClaudio Fontana & XSTATE_BNDCSR_MASK) { 29141b248f14SClaudio Fontana goto do_gpf; 29151b248f14SClaudio Fontana } 29161b248f14SClaudio Fontana 29171b248f14SClaudio Fontana env->xcr0 = mask; 29181b248f14SClaudio Fontana cpu_sync_bndcs_hflags(env); 29191b248f14SClaudio Fontana return; 29201b248f14SClaudio Fontana 29211b248f14SClaudio Fontana do_gpf: 29221b248f14SClaudio Fontana raise_exception_ra(env, EXCP0D_GPF, GETPC()); 29231b248f14SClaudio Fontana } 29241b248f14SClaudio Fontana 29251b248f14SClaudio Fontana /* MMX/SSE */ 29261b248f14SClaudio Fontana /* XXX: optimize by storing fptt and fptags in the static cpu state */ 29271b248f14SClaudio Fontana 29281b248f14SClaudio Fontana #define SSE_DAZ 0x0040 29291b248f14SClaudio Fontana #define SSE_RC_MASK 0x6000 29301b248f14SClaudio Fontana #define SSE_RC_NEAR 0x0000 29311b248f14SClaudio Fontana #define SSE_RC_DOWN 0x2000 29321b248f14SClaudio Fontana #define SSE_RC_UP 0x4000 29331b248f14SClaudio Fontana #define SSE_RC_CHOP 0x6000 29341b248f14SClaudio Fontana #define SSE_FZ 0x8000 29351b248f14SClaudio Fontana 29361b248f14SClaudio Fontana void update_mxcsr_status(CPUX86State *env) 29371b248f14SClaudio Fontana { 29381b248f14SClaudio Fontana uint32_t mxcsr = env->mxcsr; 29391b248f14SClaudio Fontana int rnd_type; 29401b248f14SClaudio Fontana 29411b248f14SClaudio Fontana /* set rounding mode */ 29421b248f14SClaudio Fontana switch (mxcsr & SSE_RC_MASK) { 29431b248f14SClaudio Fontana default: 29441b248f14SClaudio Fontana case SSE_RC_NEAR: 29451b248f14SClaudio Fontana rnd_type = float_round_nearest_even; 29461b248f14SClaudio Fontana break; 29471b248f14SClaudio Fontana case SSE_RC_DOWN: 29481b248f14SClaudio Fontana rnd_type = float_round_down; 29491b248f14SClaudio Fontana break; 29501b248f14SClaudio Fontana case SSE_RC_UP: 29511b248f14SClaudio Fontana rnd_type = float_round_up; 29521b248f14SClaudio Fontana break; 29531b248f14SClaudio Fontana case SSE_RC_CHOP: 29541b248f14SClaudio Fontana rnd_type = float_round_to_zero; 29551b248f14SClaudio Fontana break; 29561b248f14SClaudio Fontana } 29571b248f14SClaudio Fontana set_float_rounding_mode(rnd_type, &env->sse_status); 29581b248f14SClaudio Fontana 29591b248f14SClaudio Fontana /* Set exception flags. */ 29601b248f14SClaudio Fontana set_float_exception_flags((mxcsr & FPUS_IE ? float_flag_invalid : 0) | 29611b248f14SClaudio Fontana (mxcsr & FPUS_ZE ? float_flag_divbyzero : 0) | 29621b248f14SClaudio Fontana (mxcsr & FPUS_OE ? float_flag_overflow : 0) | 29631b248f14SClaudio Fontana (mxcsr & FPUS_UE ? float_flag_underflow : 0) | 29641b248f14SClaudio Fontana (mxcsr & FPUS_PE ? float_flag_inexact : 0), 29651b248f14SClaudio Fontana &env->sse_status); 29661b248f14SClaudio Fontana 29671b248f14SClaudio Fontana /* set denormals are zero */ 29681b248f14SClaudio Fontana set_flush_inputs_to_zero((mxcsr & SSE_DAZ) ? 1 : 0, &env->sse_status); 29691b248f14SClaudio Fontana 29701b248f14SClaudio Fontana /* set flush to zero */ 29711b248f14SClaudio Fontana set_flush_to_zero((mxcsr & SSE_FZ) ? 1 : 0, &env->sse_status); 29721b248f14SClaudio Fontana } 29731b248f14SClaudio Fontana 29741b248f14SClaudio Fontana void update_mxcsr_from_sse_status(CPUX86State *env) 29751b248f14SClaudio Fontana { 29761b248f14SClaudio Fontana uint8_t flags = get_float_exception_flags(&env->sse_status); 29771b248f14SClaudio Fontana /* 29781b248f14SClaudio Fontana * The MXCSR denormal flag has opposite semantics to 29791b248f14SClaudio Fontana * float_flag_input_denormal (the softfloat code sets that flag 29801b248f14SClaudio Fontana * only when flushing input denormals to zero, but SSE sets it 29811b248f14SClaudio Fontana * only when not flushing them to zero), so is not converted 29821b248f14SClaudio Fontana * here. 29831b248f14SClaudio Fontana */ 29841b248f14SClaudio Fontana env->mxcsr |= ((flags & float_flag_invalid ? FPUS_IE : 0) | 29851b248f14SClaudio Fontana (flags & float_flag_divbyzero ? FPUS_ZE : 0) | 29861b248f14SClaudio Fontana (flags & float_flag_overflow ? FPUS_OE : 0) | 29871b248f14SClaudio Fontana (flags & float_flag_underflow ? FPUS_UE : 0) | 29881b248f14SClaudio Fontana (flags & float_flag_inexact ? FPUS_PE : 0) | 29891b248f14SClaudio Fontana (flags & float_flag_output_denormal ? FPUS_UE | FPUS_PE : 29901b248f14SClaudio Fontana 0)); 29911b248f14SClaudio Fontana } 29921b248f14SClaudio Fontana 29931b248f14SClaudio Fontana void helper_update_mxcsr(CPUX86State *env) 29941b248f14SClaudio Fontana { 29951b248f14SClaudio Fontana update_mxcsr_from_sse_status(env); 29961b248f14SClaudio Fontana } 29971b248f14SClaudio Fontana 29981b248f14SClaudio Fontana void helper_ldmxcsr(CPUX86State *env, uint32_t val) 29991b248f14SClaudio Fontana { 30001b248f14SClaudio Fontana cpu_set_mxcsr(env, val); 30011b248f14SClaudio Fontana } 30021b248f14SClaudio Fontana 30031b248f14SClaudio Fontana void helper_enter_mmx(CPUX86State *env) 30041b248f14SClaudio Fontana { 30051b248f14SClaudio Fontana env->fpstt = 0; 30061b248f14SClaudio Fontana *(uint32_t *)(env->fptags) = 0; 30071b248f14SClaudio Fontana *(uint32_t *)(env->fptags + 4) = 0; 30081b248f14SClaudio Fontana } 30091b248f14SClaudio Fontana 30101b248f14SClaudio Fontana void helper_emms(CPUX86State *env) 30111b248f14SClaudio Fontana { 30121b248f14SClaudio Fontana /* set to empty state */ 30131b248f14SClaudio Fontana *(uint32_t *)(env->fptags) = 0x01010101; 30141b248f14SClaudio Fontana *(uint32_t *)(env->fptags + 4) = 0x01010101; 30151b248f14SClaudio Fontana } 30161b248f14SClaudio Fontana 30171b248f14SClaudio Fontana /* XXX: suppress */ 30181b248f14SClaudio Fontana void helper_movq(CPUX86State *env, void *d, void *s) 30191b248f14SClaudio Fontana { 30201b248f14SClaudio Fontana *(uint64_t *)d = *(uint64_t *)s; 30211b248f14SClaudio Fontana } 30221b248f14SClaudio Fontana 30231b248f14SClaudio Fontana #define SHIFT 0 30241b248f14SClaudio Fontana #include "ops_sse.h" 30251b248f14SClaudio Fontana 30261b248f14SClaudio Fontana #define SHIFT 1 30271b248f14SClaudio Fontana #include "ops_sse.h" 3028