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Obsolete matherr, _LIB_VERSION, libieee.a.
[thirdparty/glibc.git] / math / w_jnl_compat.c
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1/* w_jnl.c -- long double version of w_jn.c.
2 * Conversion to long double by Ulrich Drepper,
3 * Cygnus Support, drepper@cygnus.com.
4 */
5
6/*
7 * ====================================================
8 * Copyright (C) 1993 by Sun Microsystems, Inc. All rights reserved.
9 *
10 * Developed at SunPro, a Sun Microsystems, Inc. business.
11 * Permission to use, copy, modify, and distribute this
12 * software is freely granted, provided that this notice
13 * is preserved.
14 * ====================================================
15 */
16
17#if defined(LIBM_SCCS) && !defined(lint)
18static char rcsid[] = "$NetBSD: $";
19#endif
20
21/*
22 * wrapper jn(int n, double x), yn(int n, double x)
23 * floating point Bessel's function of the 1st and 2nd kind
24 * of order n
25 *
26 * Special cases:
27 * y0(0)=y1(0)=yn(n,0) = -inf with division by zero signal;
28 * y0(-ve)=y1(-ve)=yn(n,-ve) are NaN with invalid signal.
29 * Note 2. About jn(n,x), yn(n,x)
30 * For n=0, j0(x) is called,
31 * for n=1, j1(x) is called,
32 * for n<x, forward recursion us used starting
33 * from values of j0(x) and j1(x).
34 * for n>x, a continued fraction approximation to
35 * j(n,x)/j(n-1,x) is evaluated and then backward
36 * recursion is used starting from a supposed value
37 * for j(n,x). The resulting value of j(0,x) is
38 * compared with the actual value to correct the
39 * supposed value of j(n,x).
40 *
41 * yn(n,x) is similar in all respects, except
42 * that forward recursion is used for all
43 * values of n>1.
44 *
45 */
46
9d13fb24 47#include <math.h>
9277c064 48#include <math_private.h>
813378e9 49#include <math-svid-compat.h>
ee188d55 50
8db21882 51long double __jnl(int n, long double x) /* wrapper jnl */
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52{
53#ifdef _IEEE_LIBM
54 return __ieee754_jnl(n,x);
55#else
56 long double z;
57 z = __ieee754_jnl(n,x);
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58 if (_LIB_VERSION == _IEEE_
59 || _LIB_VERSION == _POSIX_
d81f90cc 60 || isnan(x))
c36e1d23 61 return z;
ee188d55 62 if(fabsl(x)>X_TLOSS) {
41bf21a1 63 return __kernel_standard_l((double)n,x,238); /* jn(|x|>X_TLOSS,n) */
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64 } else
65 return z;
66#endif
67}
c6251f03 68weak_alias (__jnl, jnl)
ee188d55 69
8db21882 70long double __ynl(int n, long double x) /* wrapper ynl */
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71{
72#ifdef _IEEE_LIBM
73 return __ieee754_ynl(n,x);
74#else
75 long double z;
76 z = __ieee754_ynl(n,x);
d81f90cc 77 if(_LIB_VERSION == _IEEE_ || isnan(x) ) return z;
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78 if(x <= 0.0){
79 if(x==0.0)
80 /* d= -one/(x-x); */
41bf21a1 81 return __kernel_standard_l((double)n,x,212);
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82 else
83 /* d = zero/(x-x); */
41bf21a1 84 return __kernel_standard_l((double)n,x,213);
ee188d55 85 }
c36e1d23 86 if(x>X_TLOSS && _LIB_VERSION != _POSIX_) {
41bf21a1 87 return __kernel_standard_l((double)n,x,239); /* yn(x>X_TLOSS,n) */
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88 } else
89 return z;
90#endif
91}
c6251f03 92weak_alias (__ynl, ynl)