atanh.cpp
来自「开放源码的编译器open watcom 1.6.0版的源代码」· C++ 代码 · 共 67 行
CPP
67 行
/****************************************************************************
*
* Open Watcom Project
*
* Portions Copyright (c) 1983-2002 Sybase, Inc. All Rights Reserved.
*
* ========================================================================
*
* This file contains Original Code and/or Modifications of Original
* Code as defined in and that are subject to the Sybase Open Watcom
* Public License version 1.0 (the 'License'). You may not use this file
* except in compliance with the License. BY USING THIS FILE YOU AGREE TO
* ALL TERMS AND CONDITIONS OF THE LICENSE. A copy of the License is
* provided with the Original Code and Modifications, and is also
* available at www.sybase.com/developer/opensource.
*
* The Original Code and all software distributed under the License are
* distributed on an 'AS IS' basis, WITHOUT WARRANTY OF ANY KIND, EITHER
* EXPRESS OR IMPLIED, AND SYBASE AND ALL CONTRIBUTORS HEREBY DISCLAIM
* ALL SUCH WARRANTIES, INCLUDING WITHOUT LIMITATION, ANY WARRANTIES OF
* MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE, QUIET ENJOYMENT OR
* NON-INFRINGEMENT. Please see the License for the specific language
* governing rights and limitations under the License.
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* ========================================================================
*
* Description: WHEN YOU FIGURE OUT WHAT THIS FILE DOES, PLEASE
* DESCRIBE IT HERE!
*
****************************************************************************/
#include "variety.h"
#include <complex.h>
#include "cplx.h"
_WPRTLINK Complex atanh( const Complex &z ) {
/******************************************/
// Hyperbolic arctangent of a complex number.
// From "Complex Variables and Applications" (pg. 63).
// atanh( z ) = log( (1 + z)/(1 - z) )/2
// = log( (1 + z.r + z.i*i)/(1 - z.r - z.i*i) )/2
//
// let a = z.r, b = z.i
// (1 + a + b*i) / ( 1 - a - b*i )
//
// or: 1+a +b*i 1-a +b*i 1 - a^2 - b^2 + 2*b*i
// ---------- * ---------- = -----------------------
// 1-a -b*i 1-a +b*i 1 - 2*a + a^2 + b^2
//
// Note: a*a + b*b == (a+b)*(a+b) - 2ab
//
// 1 - (a+b)^2 + 2*a*b + 2*b*i
// = -----------------------------
// 1 - 2*a + (a+b)^2 - 2*a*b
//
dcomplex value;
double apb2 = (z.real()+z.imag())*(z.real()+z.imag());
double _2ab = 2.0*z.real()*z.imag();
value = _IF_C16Div( 1.0 - apb2 + _2ab, 2.0*z.imag(),
1.0 - 2.0*z.real() + apb2 - _2ab, 0.0 );
value = _IF_CDLOG( value.realpart, value.imagpart );
return Complex( value.realpart / 2, value.imagpart / 2 );
}
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