/* _Sinh function */ #include "xmath.h" _STD_BEGIN /* coefficients */ #define NP (sizeof (p) / sizeof (p[0]) - 1) static const double p[] = { /* courtesy Dr. Tim Prince */ 0.0000000001632881, 0.0000000250483893, 0.0000027557344615, 0.0001984126975233, 0.0083333333334816, 0.1666666666666574, 1.0000000000000001}; _CRTIMP2 double __cdecl _Sinh(double x, double y) { /* compute y*sinh(x), |y| <= 1 */ short neg; switch (_Dtest(&x)) { /* test for special codes */ case _NANCODE: return (x); case _INFCODE: return (y != 0.0 ? x : DSIGN(x) ? -y : y); case 0: return (x * y); default: /* finite */ if (y == 0.0) return (x < 0.0 ? -y : y); if (x < 0.0) x = -x, neg = 1; else neg = 0; if (x < _Rteps._Double) x *= y; /* x tiny */ else if (x < 1.0) { double w = x * x; x += x * w * _Poly(w, p, NP - 1); x *= y; } else if (x < _Xbig) { /* worth adding in exp(-x) */ _Exp(&x, 1.0, -1); x = y * (x - 0.25 / x); } else switch (_Exp(&x, y, -1)) { /* report over/underflow */ case 0: _Feraise(_FE_UNDERFLOW); break; case _INFCODE: _Feraise(_FE_OVERFLOW); } return (neg ? -x : x); } } _STD_END /* * Copyright (c) 1992-2001 by P.J. Plauger. ALL RIGHTS RESERVED. * Consult your license regarding permissions and restrictions. V3.10:0009 */