/*- * SPDX-License-Identifier: BSD-2-Clause * * Copyright (c) 2026 Steven G. Kargl * All rights reserved. * * Redistribution and use in source and binary forms, with or without * modification, are permitted provided that the following conditions * are met: * 1. Redistributions of source code must retain the above copyright * notice unmodified, this list of conditions, and the following * disclaimer. * 2. Redistributions in binary form must reproduce the above copyright * notice, this list of conditions and the following disclaimer in the * documentation and/or other materials provided with the distribution. * * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT, * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. */ /* * src/s_asinpi.c for implemenation details. */ #ifdef __i386__ #include #endif #include #include "fpmath.h" #include "math.h" #include "math_private.h" #define _CC (0x1p32L + 1) #define _ROOT sqrtl volatile static const double tiny = 1.e-300; static const double half = 0.5, one = 1.; /* 1/pi split into the leading and trailing 53 bits. */ static const double invpihi = 3.1830988618379069e-01, invpilo = -1.9678676675182486e-17; /* * Prior to the leading multiplication by x^2, the rational approximation * has an absolute minimax error less than 1.36e-22 over the [0x1p-32,0.5] * domain (or log2(error) = -72.6). */ static inline long double __r(long double xs) { static const union IEEEl2bits R0u = LD80C(0xd94caf3dbdb01c38, -5, 5.30516476972984452564e-02L), R1u = LD80C(0x8d346599ebe3212a, -3, -1.37895190734499743665e-01L), R2u = LD80C(0x852c1751d7112655, -3, 1.30051006670116064731e-01L), R3u = LD80C(0xdb55697553742657, -5, -5.35482520546937456640e-02L), R4u = LD80C(0x931ba448fbd6e8c3, -7, 8.97875827280130762861e-03L), R5u = LD80C(0xdbbe8e80762881b0, -12, -4.19129108247665906395e-04L), S1u = LD80C(0xc3272074944c6389, 1, -3.04926310906120631911e+00L), S2u = LD80C(0xe390d58f48c1a96d, 1, 3.55571497910116337692e+00L), S3u = LD80C(0xfccb6664d1fbfc39, 0, -1.97495727465499715865e+00L), S4u = LD80C(0x86f4f140e3be416b, -1, 5.27175024358933283746e-01L), S5u = LD80C(0xf218070935962bdb, -5, -5.91049456446391222176e-02L), S6u = LD80C(0xec656d26215b624b, -10, 1.80355985054588957542e-03L); #define R0 (R0u.e) #define R1 (R1u.e) #define R2 (R2u.e) #define R3 (R3u.e) #define R4 (R4u.e) #define R5 (R5u.e) #define S1 (S1u.e) #define S2 (S2u.e) #define S3 (S3u.e) #define S4 (S4u.e) #define S5 (S5u.e) #define S6 (S6u.e) long double r, s; r = R0 + (R1 + (R2 + (R3 + (R4 + R5 * xs) * xs) * xs) * xs) * xs; s = 1 + (S1 + (S2 + (S3 + (S4 + (S5 + S6 * xs) * xs) * xs) * xs) * xs) * xs; return (xs * (r / s)); } #define GREATER(a) (ix == a && lx > 0x8000000000000000ull) #define LESSEQ(a) (ix == a && lx <= 0x8000000000000000ull) long double asinpil(long double x) { long double ax, hi, lo, xh, xl, y, zh, zl; uint64_t lx; uint16_t hx, ix; EXTRACT_LDBL80_WORDS(hx, lx, x); ix = hx & 0x7fff; if (ix >= 0x4000 || GREATER(0x3fff)) /* |x| > 1 */ return ((x - x) / (x - x)); ENTERI(); INSERT_LDBL80_WORDS(ax, ix, lx); if (ix < 0x3ffe || LESSEQ(0x3ffe)) { /* |x| <= 0.5 */ if (ix < 0x3fde) { /* |x| < 0x1p-33 */ if (ix < 0x002b) { /* |x| < 0x1p-16340 */ if ((ix | lx) == 0) RETURNI(x); /* Scale for near subnormal. */ ax *= 0x1p65; _XMUL(ax, 0, invpihi, invpilo, hi, lo); y = (hi + lo) * 0x1p-65; } else { _XMUL(ax, 0, invpihi, invpilo, hi, lo); y = hi + lo; } } else { y = __r(ax * ax); _XADD(invpihi, invpilo, y, 0, xh, xl); _XMUL(ax, 0, xh, xl, hi, lo); y = hi + lo; } } else if (ix < 0x3fff) { /* |x| < 1 */ y = 1 - ax; x = __r(y / 2); _XADD(invpihi, invpilo, x, 0, xh, xl); /* 1 / pi + r(t^2) */ _SQRT(2 * y, zh, zl); /* 2 * t */ _XMUL(xh, xl, zh, zl, hi, lo); _XADD(half, 0, -hi, -lo, y, x); } else /* |x| == 1 */ y = half; RETURNI((hx & 0x8000) ? -y : y); } /* * See src/s_asinpi.c for implementation details. */ long double acospil(long double x) { long double ax, hi, lo, xh, xl, y, zh, zl; uint64_t lx; uint16_t hx, ix; EXTRACT_LDBL80_WORDS(hx, lx, x); ix = hx & 0x7fff; if (ix >= 0x4000 || GREATER(0x3fff)) /* |x| > 1 */ return ((x - x) / (x - x)); ENTERI(); if (ix < 0x3ffe || LESSEQ(0x3ffe)) { /* |x| <= 0.5 */ if (ix < 0x3fe9) { /* |x| < 0x1p-22 */ y = ((ix | lx) == 0) ? half : (LESSEQ(0x3fbf) ? half - tiny : half - x * invpihi); } else { y = __r(x * x); _XADD(invpihi, invpilo, y, 0, xh, xl); _XMUL(x, 0, xh, xl, hi, lo); _XADD(half, 0, -hi, -lo, y, ax); } } else if (ix < 0x3fff) { /* |x| < 1 */ INSERT_LDBL80_WORDS(ax, ix, lx); y = 1 - ax; ax = __r(y / 2); _XADD(invpihi, invpilo, ax, 0, xh, xl); /* 1 / pi + r(t^2) */ _SQRT(2 * y, zh, zl); /* 2 * t */ _XMUL(xh, xl, zh, zl, hi, lo); if (hx & 0x8000) _XADD(one, 0, -hi, -lo, y, ax); else y = hi + lo; } else /* |x| == 1 */ y = half; RETURNI(y); }