Updates for ccosh[f] and csinh[f]
* lib/msun/src/s_ccosh.c:
. Update Copyright years.
. sin() and cos() are needed at the same time, so use sincos() to
compute values. This does argument reduction once instead of twice.
. Replace '* 0.5' with '/ 2'. This reduces diff with s_ccoshf.c.
. For (LDBL_MANT_DIG == 53), add weak references for ccoshl and ccosl.
* lib/msun/src/s_ccoshf.c:
. Update Copyright years.
. sin() and cos() are needed at the same time, so use sincos() to
compute values. This does argument reduction once instead of twice.
. Replace '* 0.5F' with '/ 2'. This reduces diff with s_ccoshf.c.
* lib/msun/src/s_csinh.c:
. Update Copyright years.
. sin() and cos() are needed at the same time, so use sincos() to
compute values. This does argument reduction once instead of twice.
. Replace '* 0.5' with '/ 2'. This reduces diff with s_csinhf.c.
. For (LDBL_MANT_DIG == 53), add weak references for csinhl and csinl.
* lib/msun/src/s_csinhf.c:
. Update Copyright years.
. sin() and cos() are needed at the same time, so use sincos() to
compute values. This does argument reduction once instead of twice.
. Replace '* 0.5F' with '/ 2'. This reduces diff with s_ccoshf.c.
PR: 288740
MFC after: 1 week
This commit is contained in:
committed by
Dimitry Andric
parent
53b77089e5
commit
a1d051bc87
+16
-7
@@ -1,7 +1,7 @@
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/*-
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* SPDX-License-Identifier: BSD-2-Clause
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*
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* Copyright (c) 2005 Bruce D. Evans and Steven G. Kargl
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* Copyright (c) 2005-2025 Bruce D. Evans and Steven G. Kargl
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* All rights reserved.
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*
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* Redistribution and use in source and binary forms, with or without
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@@ -48,7 +48,7 @@ static const double huge = 0x1p1023;
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double complex
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ccosh(double complex z)
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{
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double x, y, h;
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double c, h, s, x, y;
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int32_t hx, hy, ix, iy, lx, ly;
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x = creal(z);
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@@ -64,14 +64,16 @@ ccosh(double complex z)
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if (ix < 0x7ff00000 && iy < 0x7ff00000) {
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if ((iy | ly) == 0)
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return (CMPLX(cosh(x), x * y));
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sincos(y, &s, &c);
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if (ix < 0x40360000) /* |x| < 22: normal case */
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return (CMPLX(cosh(x) * cos(y), sinh(x) * sin(y)));
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return (CMPLX(cosh(x) * c, sinh(x) * s));
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/* |x| >= 22, so cosh(x) ~= exp(|x|) */
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if (ix < 0x40862e42) {
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/* x < 710: exp(|x|) won't overflow */
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h = exp(fabs(x)) * 0.5;
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return (CMPLX(h * cos(y), copysign(h, x) * sin(y)));
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h = exp(fabs(x)) / 2;
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return (CMPLX(h * c, copysign(h, x) * s));
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} else if (ix < 0x4096bbaa) {
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/* x < 1455: scale to avoid overflow */
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z = __ldexp_cexp(CMPLX(fabs(x), y), -1);
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@@ -79,7 +81,7 @@ ccosh(double complex z)
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} else {
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/* x >= 1455: the result always overflows */
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h = huge * x;
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return (CMPLX(h * h * cos(y), h * sin(y)));
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return (CMPLX(h * h * c, h * s));
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}
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}
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@@ -129,7 +131,9 @@ ccosh(double complex z)
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if (ix == 0x7ff00000 && lx == 0) {
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if (iy >= 0x7ff00000)
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return (CMPLX(INFINITY, x * (y - y)));
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return (CMPLX(INFINITY * cos(y), x * sin(y)));
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sincos(y, &s, &c);
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return (CMPLX(INFINITY * c, x * s));
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}
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/*
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@@ -154,3 +158,8 @@ ccos(double complex z)
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/* ccos(z) = ccosh(I * z) */
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return (ccosh(CMPLX(-cimag(z), creal(z))));
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}
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#if (LDBL_MANT_DIG == 53)
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__weak_reference(ccosh, ccoshl);
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__weak_reference(ccos, ccosl);
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#endif
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+11
-7
@@ -1,7 +1,7 @@
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/*-
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* SPDX-License-Identifier: BSD-2-Clause
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*
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* Copyright (c) 2005 Bruce D. Evans and Steven G. Kargl
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* Copyright (c) 2005-2025 Bruce D. Evans and Steven G. Kargl
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* All rights reserved.
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*
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* Redistribution and use in source and binary forms, with or without
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@@ -40,7 +40,7 @@ static const float huge = 0x1p127;
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float complex
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ccoshf(float complex z)
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{
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float x, y, h;
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float c, h, s, x, y;
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int32_t hx, hy, ix, iy;
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x = crealf(z);
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@@ -55,14 +55,16 @@ ccoshf(float complex z)
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if (ix < 0x7f800000 && iy < 0x7f800000) {
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if (iy == 0)
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return (CMPLXF(coshf(x), x * y));
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sincosf(y, &s, &c);
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if (ix < 0x41100000) /* |x| < 9: normal case */
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return (CMPLXF(coshf(x) * cosf(y), sinhf(x) * sinf(y)));
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return (CMPLXF(coshf(x) * c, sinhf(x) * s));
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/* |x| >= 9, so cosh(x) ~= exp(|x|) */
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if (ix < 0x42b17218) {
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/* x < 88.7: expf(|x|) won't overflow */
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h = expf(fabsf(x)) * 0.5F;
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return (CMPLXF(h * cosf(y), copysignf(h, x) * sinf(y)));
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h = expf(fabsf(x)) / 2;
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return (CMPLXF(h * c, copysignf(h, x) * s));
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} else if (ix < 0x4340b1e7) {
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/* x < 192.7: scale to avoid overflow */
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z = __ldexp_cexpf(CMPLXF(fabsf(x), y), -1);
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@@ -70,7 +72,7 @@ ccoshf(float complex z)
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} else {
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/* x >= 192.7: the result always overflows */
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h = huge * x;
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return (CMPLXF(h * h * cosf(y), h * sinf(y)));
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return (CMPLXF(h * h * c, h * s));
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}
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}
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@@ -86,7 +88,9 @@ ccoshf(float complex z)
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if (ix == 0x7f800000) {
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if (iy >= 0x7f800000)
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return (CMPLXF(INFINITY, x * (y - y)));
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return (CMPLXF(INFINITY * cosf(y), x * sinf(y)));
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sincosf(y, &s, &c);
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return (CMPLXF(INFINITY * c, x * s));
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}
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return (CMPLXF(((long double)x * x) * (y - y),
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+16
-7
@@ -1,7 +1,7 @@
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/*-
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* SPDX-License-Identifier: BSD-2-Clause
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*
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* Copyright (c) 2005 Bruce D. Evans and Steven G. Kargl
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* Copyright (c) 2005-2025 Bruce D. Evans and Steven G. Kargl
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* All rights reserved.
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*
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* Redistribution and use in source and binary forms, with or without
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@@ -48,7 +48,7 @@ static const double huge = 0x1p1023;
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double complex
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csinh(double complex z)
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{
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double x, y, h;
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double c, h, s, x, y;
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int32_t hx, hy, ix, iy, lx, ly;
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x = creal(z);
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@@ -64,14 +64,16 @@ csinh(double complex z)
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if (ix < 0x7ff00000 && iy < 0x7ff00000) {
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if ((iy | ly) == 0)
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return (CMPLX(sinh(x), y));
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sincos(y, &s, &c);
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if (ix < 0x40360000) /* |x| < 22: normal case */
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return (CMPLX(sinh(x) * cos(y), cosh(x) * sin(y)));
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return (CMPLX(sinh(x) * c, cosh(x) * s));
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/* |x| >= 22, so cosh(x) ~= exp(|x|) */
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if (ix < 0x40862e42) {
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/* x < 710: exp(|x|) won't overflow */
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h = exp(fabs(x)) * 0.5;
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return (CMPLX(copysign(h, x) * cos(y), h * sin(y)));
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h = exp(fabs(x)) / 2;
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return (CMPLX(copysign(h, x) * c, h * s));
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} else if (ix < 0x4096bbaa) {
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/* x < 1455: scale to avoid overflow */
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z = __ldexp_cexp(CMPLX(fabs(x), y), -1);
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@@ -79,7 +81,7 @@ csinh(double complex z)
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} else {
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/* x >= 1455: the result always overflows */
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h = huge * x;
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return (CMPLX(h * cos(y), h * h * sin(y)));
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return (CMPLX(h * c, h * h * s));
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}
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}
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@@ -128,7 +130,9 @@ csinh(double complex z)
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if (ix == 0x7ff00000 && lx == 0) {
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if (iy >= 0x7ff00000)
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return (CMPLX(x, y - y));
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return (CMPLX(x * cos(y), INFINITY * sin(y)));
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sincos(y, &s, &c);
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return (CMPLX(x * c, INFINITY * s));
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}
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/*
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@@ -154,3 +158,8 @@ csin(double complex z)
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z = csinh(CMPLX(cimag(z), creal(z)));
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return (CMPLX(cimag(z), creal(z)));
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}
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#if (LDBL_MANT_DIG == 53)
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__weak_reference(csinh, csinhl);
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__weak_reference(csin, csinl);
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#endif
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+11
-7
@@ -1,7 +1,7 @@
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/*-
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* SPDX-License-Identifier: BSD-2-Clause
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*
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* Copyright (c) 2005 Bruce D. Evans and Steven G. Kargl
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* Copyright (c) 2005-2025 Bruce D. Evans and Steven G. Kargl
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* All rights reserved.
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*
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* Redistribution and use in source and binary forms, with or without
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@@ -40,7 +40,7 @@ static const float huge = 0x1p127;
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float complex
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csinhf(float complex z)
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{
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float x, y, h;
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float c, h, s, x, y;
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int32_t hx, hy, ix, iy;
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x = crealf(z);
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@@ -55,14 +55,16 @@ csinhf(float complex z)
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if (ix < 0x7f800000 && iy < 0x7f800000) {
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if (iy == 0)
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return (CMPLXF(sinhf(x), y));
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sincosf(y, &s, &c);
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if (ix < 0x41100000) /* |x| < 9: normal case */
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return (CMPLXF(sinhf(x) * cosf(y), coshf(x) * sinf(y)));
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return (CMPLXF(sinhf(x) * c, coshf(x) * s));
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/* |x| >= 9, so cosh(x) ~= exp(|x|) */
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if (ix < 0x42b17218) {
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/* x < 88.7: expf(|x|) won't overflow */
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h = expf(fabsf(x)) * 0.5F;
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return (CMPLXF(copysignf(h, x) * cosf(y), h * sinf(y)));
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h = expf(fabsf(x)) / 2;
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return (CMPLXF(copysignf(h, x) * c, h * s));
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} else if (ix < 0x4340b1e7) {
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/* x < 192.7: scale to avoid overflow */
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z = __ldexp_cexpf(CMPLXF(fabsf(x), y), -1);
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@@ -70,7 +72,7 @@ csinhf(float complex z)
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} else {
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/* x >= 192.7: the result always overflows */
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h = huge * x;
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return (CMPLXF(h * cosf(y), h * h * sinf(y)));
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return (CMPLXF(h * c, h * h * s));
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}
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}
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@@ -86,7 +88,9 @@ csinhf(float complex z)
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if (ix == 0x7f800000) {
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if (iy >= 0x7f800000)
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return (CMPLXF(x, y - y));
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return (CMPLXF(x * cosf(y), INFINITY * sinf(y)));
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sincosf(y, &s, &c);
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return (CMPLXF(x * c, INFINITY * s));
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}
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return (CMPLXF(((long double)x + x) * (y - y),
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