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63551311 1/* Complex tangent function for double.
b168057a 2 Copyright (C) 1997-2015 Free Software Foundation, Inc.
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3 This file is part of the GNU C Library.
4 Contributed by Ulrich Drepper <drepper@cygnus.com>, 1997.
5
6 The GNU C Library is free software; you can redistribute it and/or
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7 modify it under the terms of the GNU Lesser General Public
8 License as published by the Free Software Foundation; either
9 version 2.1 of the License, or (at your option) any later version.
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10
11 The GNU C Library is distributed in the hope that it will be useful,
12 but WITHOUT ANY WARRANTY; without even the implied warranty of
13 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
41bdb6e2 14 Lesser General Public License for more details.
63551311 15
41bdb6e2 16 You should have received a copy of the GNU Lesser General Public
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17 License along with the GNU C Library; if not, see
18 <http://www.gnu.org/licenses/>. */
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19
20#include <complex.h>
04be94a8 21#include <fenv.h>
63551311 22#include <math.h>
9277c064 23#include <math_private.h>
bcc8d661 24#include <float.h>
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25
26__complex__ double
27__ctan (__complex__ double x)
28{
29 __complex__ double res;
30
a1ffb40e 31 if (__glibc_unlikely (!isfinite (__real__ x) || !isfinite (__imag__ x)))
63551311 32 {
7edb55ce 33 if (__isinf_ns (__imag__ x))
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34 {
35 __real__ res = __copysign (0.0, __real__ x);
36 __imag__ res = __copysign (1.0, __imag__ x);
37 }
38 else if (__real__ x == 0.0)
39 {
40 res = x;
41 }
42 else
43 {
44 __real__ res = __nan ("");
45 __imag__ res = __nan ("");
04be94a8 46
7edb55ce 47 if (__isinf_ns (__real__ x))
04be94a8 48 feraiseexcept (FE_INVALID);
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49 }
50 }
51 else
52 {
bcc8d661 53 double sinrx, cosrx;
7799b7b3 54 double den;
bcc8d661 55 const int t = (int) ((DBL_MAX_EXP - 1) * M_LN2 / 2);
6d3bf199 56 int rcls = fpclassify (__real__ x);
63551311 57
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58 /* tan(x+iy) = (sin(2x) + i*sinh(2y))/(cos(2x) + cosh(2y))
59 = (sin(x)*cos(x) + i*sinh(y)*cosh(y)/(cos(x)^2 + sinh(y)^2). */
7799b7b3 60
a1ffb40e 61 if (__glibc_likely (rcls != FP_SUBNORMAL))
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62 {
63 __sincos (__real__ x, &sinrx, &cosrx);
64 }
65 else
66 {
67 sinrx = __real__ x;
68 cosrx = 1.0;
69 }
7799b7b3 70
bcc8d661 71 if (fabs (__imag__ x) > t)
3b6c37d4 72 {
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73 /* Avoid intermediate overflow when the real part of the
74 result may be subnormal. Ignoring negligible terms, the
75 imaginary part is +/- 1, the real part is
76 sin(x)*cos(x)/sinh(y)^2 = 4*sin(x)*cos(x)/exp(2y). */
77 double exp_2t = __ieee754_exp (2 * t);
3b6c37d4 78
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79 __imag__ res = __copysign (1.0, __imag__ x);
80 __real__ res = 4 * sinrx * cosrx;
81 __imag__ x = fabs (__imag__ x);
82 __imag__ x -= t;
83 __real__ res /= exp_2t;
84 if (__imag__ x > t)
85 {
86 /* Underflow (original imaginary part of x has absolute
87 value > 2t). */
88 __real__ res /= exp_2t;
89 }
90 else
91 __real__ res /= __ieee754_exp (2 * __imag__ x);
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92 }
93 else
94 {
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95 double sinhix, coshix;
96 if (fabs (__imag__ x) > DBL_MIN)
97 {
98 sinhix = __ieee754_sinh (__imag__ x);
99 coshix = __ieee754_cosh (__imag__ x);
100 }
101 else
102 {
103 sinhix = __imag__ x;
104 coshix = 1.0;
105 }
bcc8d661 106
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107 if (fabs (sinhix) > fabs (cosrx) * DBL_EPSILON)
108 den = cosrx * cosrx + sinhix * sinhix;
109 else
110 den = cosrx * cosrx;
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111 __real__ res = sinrx * cosrx / den;
112 __imag__ res = sinhix * coshix / den;
3b6c37d4 113 }
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114 }
115
116 return res;
117}
118weak_alias (__ctan, ctan)
119#ifdef NO_LONG_DOUBLE
120strong_alias (__ctan, __ctanl)
121weak_alias (__ctan, ctanl)
122#endif