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			179 lines
		
	
	
		
			4.3 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
			
		
		
	
	
			179 lines
		
	
	
		
			4.3 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
/* Complex sine function for long double.
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   Copyright (C) 1997-2014 Free Software Foundation, Inc.
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   This file is part of the GNU C Library.
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   Contributed by Ulrich Drepper <drepper@cygnus.com>, 1997.
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   The GNU C Library is free software; you can redistribute it and/or
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   modify it under the terms of the GNU Lesser General Public
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   License as published by the Free Software Foundation; either
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   version 2.1 of the License, or (at your option) any later version.
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   The GNU C Library is distributed in the hope that it will be useful,
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   but WITHOUT ANY WARRANTY; without even the implied warranty of
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   MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the GNU
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   Lesser General Public License for more details.
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   You should have received a copy of the GNU Lesser General Public
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   License along with the GNU C Library; if not, see
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   <http://www.gnu.org/licenses/>.  */
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#include <complex.h>
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#include <fenv.h>
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#include <math.h>
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#include <math_private.h>
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#include <float.h>
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__complex__ long double
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__csinl (__complex__ long double x)
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{
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  __complex__ long double retval;
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  int negate = signbit (__real__ x);
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  int rcls = fpclassify (__real__ x);
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  int icls = fpclassify (__imag__ x);
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  __real__ x = fabsl (__real__ x);
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  if (__glibc_likely (icls >= FP_ZERO))
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    {
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      /* Imaginary part is finite.  */
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      if (__glibc_likely (rcls >= FP_ZERO))
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	{
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	  /* Real part is finite.  */
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	  const int t = (int) ((LDBL_MAX_EXP - 1) * M_LN2l);
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	  long double sinix, cosix;
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	  if (__glibc_likely (rcls != FP_SUBNORMAL))
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	    {
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	      __sincosl (__real__ x, &sinix, &cosix);
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	    }
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	  else
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	    {
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	      sinix = __real__ x;
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	      cosix = 1.0;
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	    }
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	  if (fabsl (__imag__ x) > t)
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	    {
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	      long double exp_t = __ieee754_expl (t);
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	      long double ix = fabsl (__imag__ x);
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	      if (signbit (__imag__ x))
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		cosix = -cosix;
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	      ix -= t;
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	      sinix *= exp_t / 2.0L;
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	      cosix *= exp_t / 2.0L;
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	      if (ix > t)
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		{
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		  ix -= t;
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		  sinix *= exp_t;
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		  cosix *= exp_t;
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		}
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	      if (ix > t)
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		{
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		  /* Overflow (original imaginary part of x > 3t).  */
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		  __real__ retval = LDBL_MAX * sinix;
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		  __imag__ retval = LDBL_MAX * cosix;
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		}
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	      else
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		{
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		  long double exp_val = __ieee754_expl (ix);
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		  __real__ retval = exp_val * sinix;
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		  __imag__ retval = exp_val * cosix;
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		}
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	    }
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	  else
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	    {
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	      __real__ retval = __ieee754_coshl (__imag__ x) * sinix;
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	      __imag__ retval = __ieee754_sinhl (__imag__ x) * cosix;
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	    }
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	  if (negate)
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	    __real__ retval = -__real__ retval;
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	  if (fabsl (__real__ retval) < LDBL_MIN)
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	    {
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	      volatile long double force_underflow
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		= __real__ retval * __real__ retval;
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	      (void) force_underflow;
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	    }
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	  if (fabsl (__imag__ retval) < LDBL_MIN)
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	    {
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	      volatile long double force_underflow
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		= __imag__ retval * __imag__ retval;
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	      (void) force_underflow;
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	    }
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	}
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      else
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	{
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	  if (icls == FP_ZERO)
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	    {
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	      /* Imaginary part is 0.0.  */
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	      __real__ retval = __nanl ("");
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	      __imag__ retval = __imag__ x;
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	      if (rcls == FP_INFINITE)
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		feraiseexcept (FE_INVALID);
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	    }
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	  else
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	    {
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	      __real__ retval = __nanl ("");
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	      __imag__ retval = __nanl ("");
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	      feraiseexcept (FE_INVALID);
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	    }
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	}
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    }
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  else if (icls == FP_INFINITE)
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    {
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      /* Imaginary part is infinite.  */
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      if (rcls == FP_ZERO)
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	{
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	  /* Real part is 0.0.  */
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	  __real__ retval = __copysignl (0.0, negate ? -1.0 : 1.0);
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	  __imag__ retval = __imag__ x;
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	}
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      else if (rcls > FP_ZERO)
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	{
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	  /* Real part is finite.  */
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	  long double sinix, cosix;
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	  if (__glibc_likely (rcls != FP_SUBNORMAL))
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	    {
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	      __sincosl (__real__ x, &sinix, &cosix);
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	    }
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	  else
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	    {
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	      sinix = __real__ x;
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	      cosix = 1.0;
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	    }
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	  __real__ retval = __copysignl (HUGE_VALL, sinix);
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	  __imag__ retval = __copysignl (HUGE_VALL, cosix);
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	  if (negate)
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	    __real__ retval = -__real__ retval;
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	  if (signbit (__imag__ x))
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	    __imag__ retval = -__imag__ retval;
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	}
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      else
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	{
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	  /* The addition raises the invalid exception.  */
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	  __real__ retval = __nanl ("");
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	  __imag__ retval = HUGE_VALL;
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	  if (rcls == FP_INFINITE)
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	    feraiseexcept (FE_INVALID);
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	}
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    }
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  else
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    {
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      if (rcls == FP_ZERO)
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	__real__ retval = __copysignl (0.0, negate ? -1.0 : 1.0);
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      else
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	__real__ retval = __nanl ("");
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      __imag__ retval = __nanl ("");
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    }
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  return retval;
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}
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weak_alias (__csinl, csinl)
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