powc8.c
来自「开放源码的编译器open watcom 1.6.0版的源代码」· C语言 代码 · 共 75 行
C
75 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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* ========================================================================
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* Description: WHEN YOU FIGURE OUT WHAT THIS FILE DOES, PLEASE
* DESCRIBE IT HERE!
*
****************************************************************************/
#include "variety.h"
#include "cplx.h"
#include "mathcode.h"
_WMRTLINK complex _IF_C8Pow( single a, single b, single c, single d )
//===================================================================
{
// Return the real part of the result of taking one
// complex number to the power of another.
// ( a, b ) ** ( c, d ) = exp( ( c,d ) * log( a,b ) )
single u;
single v;
complex arg1;
complex arg2;
complex res;
if( ( a == 0 ) && ( b == 0 ) ) {
if( d == 0 ) {
if( c > 0 ) {
res.realpart = 0;
res.imagpart = 0;
return( res );
}
}
arg1.realpart = a;
arg1.imagpart = b;
arg2.realpart = c;
arg2.imagpart = d;
return( __zmath2err( FUNC_POW | M_DOMAIN | V_ZERO, &arg1, &arg2 ) );
} else {
u = LOG( a*a + b*b ) / 2;
v = ATAN2( b, a );
res.realpart = EXP( u*c - v*d );
res.imagpart = res.realpart;
u = u*d + v*c;
res.realpart *= COS( u );
res.imagpart *= SIN( u );
return( res );
}
}
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