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			115 lines
		
	
	
		
			3.7 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
			
		
		
	
	
			115 lines
		
	
	
		
			3.7 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
| /* s_nextafterl.c -- long double version of s_nextafter.c.
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|  * Conversion to IEEE quad long double by Jakub Jelinek, jj@ultra.linux.cz.
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|  */
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| 
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| /*
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|  * ====================================================
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|  * Copyright (C) 1993 by Sun Microsystems, Inc. All rights reserved.
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|  *
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|  * Developed at SunPro, a Sun Microsystems, Inc. business.
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|  * Permission to use, copy, modify, and distribute this
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|  * software is freely granted, provided that this notice
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|  * is preserved.
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|  * ====================================================
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|  */
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| 
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| #if defined(LIBM_SCCS) && !defined(lint)
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| static char rcsid[] = "$NetBSD: $";
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| #endif
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| 
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| /* IEEE functions
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|  *	nextafterl(x,y)
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|  *	return the next machine floating-point number of x in the
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|  *	direction toward y.
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|  *   Special cases:
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|  */
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| 
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| #include <math.h>
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| #include <math_private.h>
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| #include <math_ldbl_opt.h>
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| 
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| long double __nextafterl(long double x, long double y)
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| {
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| 	int64_t hx,hy,ihx,ihy,ilx;
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| 	u_int64_t lx,ly;
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| 
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| 	GET_LDOUBLE_WORDS64(hx,lx,x);
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| 	GET_LDOUBLE_WORDS64(hy,ly,y);
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| 	ihx = hx&0x7fffffffffffffffLL;		/* |hx| */
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| 	ilx = lx&0x7fffffffffffffffLL;		/* |lx| */
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| 	ihy = hy&0x7fffffffffffffffLL;		/* |hy| */
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| 
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| 	if((((ihx&0x7ff0000000000000LL)==0x7ff0000000000000LL)&&
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| 	    ((ihx&0x000fffffffffffffLL)!=0)) ||   /* x is nan */
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| 	   (((ihy&0x7ff0000000000000LL)==0x7ff0000000000000LL)&&
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| 	    ((ihy&0x000fffffffffffffLL)!=0)))     /* y is nan */
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| 	    return x+y; /* signal the nan */
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| 	if(x==y)
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| 	    return y;		/* x=y, return y */
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| 	if(ihx == 0 && ilx == 0) {			/* x == 0 */
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| 	    long double u;
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| 	    hy = (hy & 0x8000000000000000ULL) | 1;
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| 	    SET_LDOUBLE_WORDS64(x,hy,0ULL);/* return +-minsubnormal */
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| 	    u = math_opt_barrier (x);
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| 	    u = u * u;
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| 	    math_force_eval (u);		/* raise underflow flag */
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| 	    return x;
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| 	}
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| 	
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| 	long double u;
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| 	if(x > y) {	/* x > y, x -= ulp */
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| 	    if((hx==0xffefffffffffffffLL)&&(lx==0xfc8ffffffffffffeLL))
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| 	      return x+x;	/* overflow, return -inf */
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| 	    if (hx >= 0x7ff0000000000000LL) {
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| 	      SET_LDOUBLE_WORDS64(u,0x7fefffffffffffffLL,0x7c8ffffffffffffeLL);
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| 	      return u;
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| 	    }
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| 	    if(ihx <= 0x0360000000000000LL) {  /* x <= LDBL_MIN */
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| 	      u = math_opt_barrier (x);
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| 	      x -= __LDBL_DENORM_MIN__;
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| 	      if (ihx < 0x0360000000000000LL
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| 		  || (hx > 0 && (int64_t) lx <= 0)
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| 		  || (hx < 0 && (int64_t) lx > 1)) {
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| 		u = u * u;
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| 		math_force_eval (u);		/* raise underflow flag */
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| 	      }
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| 	      return x;
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| 	    }
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| 	    if (ihx < 0x06a0000000000000LL) { /* ulp will denormal */
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| 	      SET_LDOUBLE_WORDS64(u,(hx&0x7ff0000000000000LL),0ULL);
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| 	      u *= 0x1.0000000000000p-105L;
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| 	    } else
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| 	      SET_LDOUBLE_WORDS64(u,(hx&0x7ff0000000000000LL)-0x0690000000000000LL,0ULL);
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| 	    return x - u;
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| 	} else {				/* x < y, x += ulp */
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| 	    if((hx==0x7fefffffffffffffLL)&&(lx==0x7c8ffffffffffffeLL))
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| 	      return x+x;	/* overflow, return +inf */
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| 	    if ((u_int64_t) hx >= 0xfff0000000000000ULL) {
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| 	      SET_LDOUBLE_WORDS64(u,0xffefffffffffffffLL,0xfc8ffffffffffffeLL);
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| 	      return u;
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| 	    }
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| 	    if(ihx <= 0x0360000000000000LL) {  /* x <= LDBL_MIN */
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| 	      u = math_opt_barrier (x);
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| 	      x += __LDBL_DENORM_MIN__;
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| 	      if (ihx < 0x0360000000000000LL
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| 		  || (hx > 0 && (int64_t) lx < 0 && lx != 0x8000000000000001LL)
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| 		  || (hx < 0 && (int64_t) lx >= 0)) {
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| 		u = u * u;
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| 		math_force_eval (u);		/* raise underflow flag */
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| 	      }
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| 	      if (x == 0.0L)	/* handle negative __LDBL_DENORM_MIN__ case */
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| 		x = -0.0L;
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| 	      return x;
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| 	    }
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| 	    if (ihx < 0x06a0000000000000LL) { /* ulp will denormal */
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| 	      SET_LDOUBLE_WORDS64(u,(hx&0x7ff0000000000000LL),0ULL);
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| 	      u *= 0x1.0000000000000p-105L;
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| 	    } else
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| 	      SET_LDOUBLE_WORDS64(u,(hx&0x7ff0000000000000LL)-0x0690000000000000LL,0ULL);
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| 	    return x + u;
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| 	}
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| }
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| strong_alias (__nextafterl, __nexttowardl)
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| long_double_symbol (libm, __nextafterl, nextafterl);
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| long_double_symbol (libm, __nexttowardl, nexttowardl);
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