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      1 /* @(#)e_rem_pio2.c 5.1 93/09/24 */
      2 /*
      3  * ====================================================
      4  * Copyright (C) 1993 by Sun Microsystems, Inc. All rights reserved.
      5  *
      6  * Developed at SunPro, a Sun Microsystems, Inc. business.
      7  * Permission to use, copy, modify, and distribute this
      8  * software is freely granted, provided that this notice
      9  * is preserved.
     10  * ====================================================
     11  */
     12 
     13 #include <sys/cdefs.h>
     14 #if defined(LIBM_SCCS) && !defined(lint)
     15 __RCSID("$NetBSD: e_rem_pio2.c,v 1.12 2022/08/24 13:51:19 christos Exp $");
     16 #endif
     17 
     18 /* __ieee754_rem_pio2(x,y)
     19  *
     20  * return the remainder of x rem pi/2 in y[0]+y[1]
     21  * use __kernel_rem_pio2()
     22  */
     23 
     24 #include "math.h"
     25 #include "math_private.h"
     26 
     27 static const int32_t npio2_hw[] = {
     28 0x3FF921FB, 0x400921FB, 0x4012D97C, 0x401921FB, 0x401F6A7A, 0x4022D97C,
     29 0x4025FDBB, 0x402921FB, 0x402C463A, 0x402F6A7A, 0x4031475C, 0x4032D97C,
     30 0x40346B9C, 0x4035FDBB, 0x40378FDB, 0x403921FB, 0x403AB41B, 0x403C463A,
     31 0x403DD85A, 0x403F6A7A, 0x40407E4C, 0x4041475C, 0x4042106C, 0x4042D97C,
     32 0x4043A28C, 0x40446B9C, 0x404534AC, 0x4045FDBB, 0x4046C6CB, 0x40478FDB,
     33 0x404858EB, 0x404921FB,
     34 };
     35 
     36 /*
     37  * invpio2:  53 bits of 2/pi
     38  * pio2_1:   first  33 bit of pi/2
     39  * pio2_1t:  pi/2 - pio2_1
     40  * pio2_2:   second 33 bit of pi/2
     41  * pio2_2t:  pi/2 - (pio2_1+pio2_2)
     42  * pio2_3:   third  33 bit of pi/2
     43  * pio2_3t:  pi/2 - (pio2_1+pio2_2+pio2_3)
     44  */
     45 
     46 static const double
     47 zero =  0.00000000000000000000e+00, /* 0x00000000, 0x00000000 */
     48 half =  5.00000000000000000000e-01, /* 0x3FE00000, 0x00000000 */
     49 two24 =  1.67772160000000000000e+07, /* 0x41700000, 0x00000000 */
     50 invpio2 =  6.36619772367581382433e-01, /* 0x3FE45F30, 0x6DC9C883 */
     51 pio2_1  =  1.57079632673412561417e+00, /* 0x3FF921FB, 0x54400000 */
     52 pio2_1t =  6.07710050650619224932e-11, /* 0x3DD0B461, 0x1A626331 */
     53 pio2_2  =  6.07710050630396597660e-11, /* 0x3DD0B461, 0x1A600000 */
     54 pio2_2t =  2.02226624879595063154e-21, /* 0x3BA3198A, 0x2E037073 */
     55 pio2_3  =  2.02226624871116645580e-21, /* 0x3BA3198A, 0x2E000000 */
     56 pio2_3t =  8.47842766036889956997e-32; /* 0x397B839A, 0x252049C1 */
     57 
     58 int32_t
     59 __ieee754_rem_pio2(double x, double *y)
     60 {
     61 	double z,w,t,r,fn;
     62 	double tx[3];
     63 	int32_t e0,i,j,nx,n,ix,hx;
     64 	u_int32_t low;
     65 
     66 	z = 0;
     67 	GET_HIGH_WORD(hx,x);		/* high word of x */
     68 	ix = hx&0x7fffffff;
     69 	if(ix<=0x3fe921fb)   /* |x| ~<= pi/4 , no need for reduction */
     70 	    {y[0] = x; y[1] = 0; return 0;}
     71 	if(ix<0x4002d97c) {  /* |x| < 3pi/4, special case with n=+-1 */
     72 	    if(hx>0) {
     73 		z = x - pio2_1;
     74 		if(ix!=0x3ff921fb) { 	/* 33+53 bit pi is good enough */
     75 		    y[0] = z - pio2_1t;
     76 		    y[1] = (z-y[0])-pio2_1t;
     77 		} else {		/* near pi/2, use 33+33+53 bit pi */
     78 		    z -= pio2_2;
     79 		    y[0] = z - pio2_2t;
     80 		    y[1] = (z-y[0])-pio2_2t;
     81 		}
     82 		return 1;
     83 	    } else {	/* negative x */
     84 		z = x + pio2_1;
     85 		if(ix!=0x3ff921fb) { 	/* 33+53 bit pi is good enough */
     86 		    y[0] = z + pio2_1t;
     87 		    y[1] = (z-y[0])+pio2_1t;
     88 		} else {		/* near pi/2, use 33+33+53 bit pi */
     89 		    z += pio2_2;
     90 		    y[0] = z + pio2_2t;
     91 		    y[1] = (z-y[0])+pio2_2t;
     92 		}
     93 		return -1;
     94 	    }
     95 	}
     96 	if(ix<=0x413921fb) { /* |x| ~<= 2^19*(pi/2), medium size */
     97 	    t  = fabs(x);
     98 	    n  = (int32_t) (t*invpio2+half);
     99 	    fn = (double)n;
    100 	    r  = t-fn*pio2_1;
    101 	    w  = fn*pio2_1t;	/* 1st round good to 85 bit */
    102 	    if(n<32&&ix!=npio2_hw[n-1]) {
    103 		y[0] = r-w;	/* quick check no cancellation */
    104 	    } else {
    105 	        u_int32_t high;
    106 	        j  = ix>>20;
    107 	        y[0] = r-w;
    108 		GET_HIGH_WORD(high,y[0]);
    109 	        i = j-((high>>20)&0x7ff);
    110 	        if(i>16) {  /* 2nd iteration needed, good to 118 */
    111 		    t  = r;
    112 		    w  = fn*pio2_2;
    113 		    r  = t-w;
    114 		    w  = fn*pio2_2t-((t-r)-w);
    115 		    y[0] = r-w;
    116 		    GET_HIGH_WORD(high,y[0]);
    117 		    i = j-((high>>20)&0x7ff);
    118 		    if(i>49)  {	/* 3rd iteration need, 151 bits acc */
    119 		    	t  = r;	/* will cover all possible cases */
    120 		    	w  = fn*pio2_3;
    121 		    	r  = t-w;
    122 		    	w  = fn*pio2_3t-((t-r)-w);
    123 		    	y[0] = r-w;
    124 		    }
    125 		}
    126 	    }
    127 	    y[1] = (r-y[0])-w;
    128 	    if(hx<0) 	{y[0] = -y[0]; y[1] = -y[1]; return -n;}
    129 	    else	 return n;
    130 	}
    131     /*
    132      * all other (large) arguments
    133      */
    134 	if(ix>=0x7ff00000) {		/* x is inf or NaN */
    135 	    y[0]=y[1]=x-x; return 0;
    136 	}
    137     /* set z = scalbn(|x|,ilogb(x)-23) */
    138 	GET_LOW_WORD(low,x);
    139 	SET_LOW_WORD(z,low);
    140 	e0 	= (ix>>20)-1046;	/* e0 = ilogb(z)-23; */
    141 	SET_HIGH_WORD(z, ix - ((int32_t)(e0<<20)));
    142 	for(i=0;i<2;i++) {
    143 		tx[i] = (double)((int32_t)(z));
    144 		z     = (z-tx[i])*two24;
    145 	}
    146 	tx[2] = z;
    147 	nx = 3;
    148 	while(tx[nx-1]==zero) nx--;	/* skip zero term */
    149 	n  =  __kernel_rem_pio2(tx,y,e0,nx,2);
    150 	if(hx<0) {y[0] = -y[0]; y[1] = -y[1]; return -n;}
    151 	return n;
    152 }
    153