POK
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00001 /* 00002 * POK header 00003 * 00004 * The following file is a part of the POK project. Any modification should 00005 * made according to the POK licence. You CANNOT use this file or a part of 00006 * this file is this part of a file for your own project 00007 * 00008 * For more information on the POK licence, please see our LICENCE FILE 00009 * 00010 * Please follow the coding guidelines described in doc/CODING_GUIDELINES 00011 * 00012 * Copyright (c) 2007-2009 POK team 00013 * 00014 * Created by julien on Fri Jan 30 14:41:34 2009 00015 */ 00016 00017 /* w_j1f.c -- float version of w_j1.c. 00018 * Conversion to float by Ian Lance Taylor, Cygnus Support, ian@cygnus.com. 00019 */ 00020 00021 /* 00022 * ==================================================== 00023 * Copyright (C) 1993 by Sun Microsystems, Inc. All rights reserved. 00024 * 00025 * Developed at SunPro, a Sun Microsystems, Inc. business. 00026 * Permission to use, copy, modify, and distribute this 00027 * software is freely granted, provided that this notice 00028 * is preserved. 00029 * ==================================================== 00030 */ 00031 00032 #ifdef POK_NEEDS_LIBMATH 00033 00034 /* 00035 * wrapper of j1f,y1f 00036 */ 00037 00038 #include <libm.h> 00039 #include "math_private.h" 00040 00041 float 00042 j1f(float x) /* wrapper j1f */ 00043 { 00044 #ifdef _IEEE_LIBM 00045 return __ieee754_j1f(x); 00046 #else 00047 float z; 00048 z = __ieee754_j1f(x); 00049 if(_LIB_VERSION == _IEEE_ || isnanf(x) ) return z; 00050 if(fabsf(x)>(float)X_TLOSS) { 00051 /* j1(|x|>X_TLOSS) */ 00052 return (float)__kernel_standard((double)x,(double)x,136); 00053 } else 00054 return z; 00055 #endif 00056 } 00057 00058 float 00059 y1f(float x) /* wrapper y1f */ 00060 { 00061 #ifdef _IEEE_LIBM 00062 return __ieee754_y1f(x); 00063 #else 00064 float z; 00065 z = __ieee754_y1f(x); 00066 if(_LIB_VERSION == _IEEE_ || isnanf(x) ) return z; 00067 if(x <= (float)0.0){ 00068 if(x==(float)0.0) 00069 /* d= -one/(x-x); */ 00070 return (float)__kernel_standard((double)x,(double)x,110); 00071 else 00072 /* d = zero/(x-x); */ 00073 return (float)__kernel_standard((double)x,(double)x,111); 00074 } 00075 if(x>(float)X_TLOSS) { 00076 /* y1(x>X_TLOSS) */ 00077 return (float)__kernel_standard((double)x,(double)x,137); 00078 } else 00079 return z; 00080 #endif 00081 } 00082 00083 #endif