xref: /aosp_15_r20/external/musl/src/math/jnf.c (revision c9945492fdd68bbe62686c5b452b4dc1be3f8453)
1*c9945492SAndroid Build Coastguard Worker /* origin: FreeBSD /usr/src/lib/msun/src/e_jnf.c */
2*c9945492SAndroid Build Coastguard Worker /*
3*c9945492SAndroid Build Coastguard Worker  * Conversion to float by Ian Lance Taylor, Cygnus Support, [email protected].
4*c9945492SAndroid Build Coastguard Worker  */
5*c9945492SAndroid Build Coastguard Worker /*
6*c9945492SAndroid Build Coastguard Worker  * ====================================================
7*c9945492SAndroid Build Coastguard Worker  * Copyright (C) 1993 by Sun Microsystems, Inc. All rights reserved.
8*c9945492SAndroid Build Coastguard Worker  *
9*c9945492SAndroid Build Coastguard Worker  * Developed at SunPro, a Sun Microsystems, Inc. business.
10*c9945492SAndroid Build Coastguard Worker  * Permission to use, copy, modify, and distribute this
11*c9945492SAndroid Build Coastguard Worker  * software is freely granted, provided that this notice
12*c9945492SAndroid Build Coastguard Worker  * is preserved.
13*c9945492SAndroid Build Coastguard Worker  * ====================================================
14*c9945492SAndroid Build Coastguard Worker  */
15*c9945492SAndroid Build Coastguard Worker 
16*c9945492SAndroid Build Coastguard Worker #define _GNU_SOURCE
17*c9945492SAndroid Build Coastguard Worker #include "libm.h"
18*c9945492SAndroid Build Coastguard Worker 
jnf(int n,float x)19*c9945492SAndroid Build Coastguard Worker float jnf(int n, float x)
20*c9945492SAndroid Build Coastguard Worker {
21*c9945492SAndroid Build Coastguard Worker 	uint32_t ix;
22*c9945492SAndroid Build Coastguard Worker 	int nm1, sign, i;
23*c9945492SAndroid Build Coastguard Worker 	float a, b, temp;
24*c9945492SAndroid Build Coastguard Worker 
25*c9945492SAndroid Build Coastguard Worker 	GET_FLOAT_WORD(ix, x);
26*c9945492SAndroid Build Coastguard Worker 	sign = ix>>31;
27*c9945492SAndroid Build Coastguard Worker 	ix &= 0x7fffffff;
28*c9945492SAndroid Build Coastguard Worker 	if (ix > 0x7f800000) /* nan */
29*c9945492SAndroid Build Coastguard Worker 		return x;
30*c9945492SAndroid Build Coastguard Worker 
31*c9945492SAndroid Build Coastguard Worker 	/* J(-n,x) = J(n,-x), use |n|-1 to avoid overflow in -n */
32*c9945492SAndroid Build Coastguard Worker 	if (n == 0)
33*c9945492SAndroid Build Coastguard Worker 		return j0f(x);
34*c9945492SAndroid Build Coastguard Worker 	if (n < 0) {
35*c9945492SAndroid Build Coastguard Worker 		nm1 = -(n+1);
36*c9945492SAndroid Build Coastguard Worker 		x = -x;
37*c9945492SAndroid Build Coastguard Worker 		sign ^= 1;
38*c9945492SAndroid Build Coastguard Worker 	} else
39*c9945492SAndroid Build Coastguard Worker 		nm1 = n-1;
40*c9945492SAndroid Build Coastguard Worker 	if (nm1 == 0)
41*c9945492SAndroid Build Coastguard Worker 		return j1f(x);
42*c9945492SAndroid Build Coastguard Worker 
43*c9945492SAndroid Build Coastguard Worker 	sign &= n;  /* even n: 0, odd n: signbit(x) */
44*c9945492SAndroid Build Coastguard Worker 	x = fabsf(x);
45*c9945492SAndroid Build Coastguard Worker 	if (ix == 0 || ix == 0x7f800000)  /* if x is 0 or inf */
46*c9945492SAndroid Build Coastguard Worker 		b = 0.0f;
47*c9945492SAndroid Build Coastguard Worker 	else if (nm1 < x) {
48*c9945492SAndroid Build Coastguard Worker 		/* Safe to use J(n+1,x)=2n/x *J(n,x)-J(n-1,x) */
49*c9945492SAndroid Build Coastguard Worker 		a = j0f(x);
50*c9945492SAndroid Build Coastguard Worker 		b = j1f(x);
51*c9945492SAndroid Build Coastguard Worker 		for (i=0; i<nm1; ){
52*c9945492SAndroid Build Coastguard Worker 			i++;
53*c9945492SAndroid Build Coastguard Worker 			temp = b;
54*c9945492SAndroid Build Coastguard Worker 			b = b*(2.0f*i/x) - a;
55*c9945492SAndroid Build Coastguard Worker 			a = temp;
56*c9945492SAndroid Build Coastguard Worker 		}
57*c9945492SAndroid Build Coastguard Worker 	} else {
58*c9945492SAndroid Build Coastguard Worker 		if (ix < 0x35800000) { /* x < 2**-20 */
59*c9945492SAndroid Build Coastguard Worker 			/* x is tiny, return the first Taylor expansion of J(n,x)
60*c9945492SAndroid Build Coastguard Worker 			 * J(n,x) = 1/n!*(x/2)^n  - ...
61*c9945492SAndroid Build Coastguard Worker 			 */
62*c9945492SAndroid Build Coastguard Worker 			if (nm1 > 8)  /* underflow */
63*c9945492SAndroid Build Coastguard Worker 				nm1 = 8;
64*c9945492SAndroid Build Coastguard Worker 			temp = 0.5f * x;
65*c9945492SAndroid Build Coastguard Worker 			b = temp;
66*c9945492SAndroid Build Coastguard Worker 			a = 1.0f;
67*c9945492SAndroid Build Coastguard Worker 			for (i=2; i<=nm1+1; i++) {
68*c9945492SAndroid Build Coastguard Worker 				a *= (float)i;    /* a = n! */
69*c9945492SAndroid Build Coastguard Worker 				b *= temp;        /* b = (x/2)^n */
70*c9945492SAndroid Build Coastguard Worker 			}
71*c9945492SAndroid Build Coastguard Worker 			b = b/a;
72*c9945492SAndroid Build Coastguard Worker 		} else {
73*c9945492SAndroid Build Coastguard Worker 			/* use backward recurrence */
74*c9945492SAndroid Build Coastguard Worker 			/*                      x      x^2      x^2
75*c9945492SAndroid Build Coastguard Worker 			 *  J(n,x)/J(n-1,x) =  ----   ------   ------   .....
76*c9945492SAndroid Build Coastguard Worker 			 *                      2n  - 2(n+1) - 2(n+2)
77*c9945492SAndroid Build Coastguard Worker 			 *
78*c9945492SAndroid Build Coastguard Worker 			 *                      1      1        1
79*c9945492SAndroid Build Coastguard Worker 			 *  (for large x)   =  ----  ------   ------   .....
80*c9945492SAndroid Build Coastguard Worker 			 *                      2n   2(n+1)   2(n+2)
81*c9945492SAndroid Build Coastguard Worker 			 *                      -- - ------ - ------ -
82*c9945492SAndroid Build Coastguard Worker 			 *                       x     x         x
83*c9945492SAndroid Build Coastguard Worker 			 *
84*c9945492SAndroid Build Coastguard Worker 			 * Let w = 2n/x and h=2/x, then the above quotient
85*c9945492SAndroid Build Coastguard Worker 			 * is equal to the continued fraction:
86*c9945492SAndroid Build Coastguard Worker 			 *                  1
87*c9945492SAndroid Build Coastguard Worker 			 *      = -----------------------
88*c9945492SAndroid Build Coastguard Worker 			 *                     1
89*c9945492SAndroid Build Coastguard Worker 			 *         w - -----------------
90*c9945492SAndroid Build Coastguard Worker 			 *                        1
91*c9945492SAndroid Build Coastguard Worker 			 *              w+h - ---------
92*c9945492SAndroid Build Coastguard Worker 			 *                     w+2h - ...
93*c9945492SAndroid Build Coastguard Worker 			 *
94*c9945492SAndroid Build Coastguard Worker 			 * To determine how many terms needed, let
95*c9945492SAndroid Build Coastguard Worker 			 * Q(0) = w, Q(1) = w(w+h) - 1,
96*c9945492SAndroid Build Coastguard Worker 			 * Q(k) = (w+k*h)*Q(k-1) - Q(k-2),
97*c9945492SAndroid Build Coastguard Worker 			 * When Q(k) > 1e4      good for single
98*c9945492SAndroid Build Coastguard Worker 			 * When Q(k) > 1e9      good for double
99*c9945492SAndroid Build Coastguard Worker 			 * When Q(k) > 1e17     good for quadruple
100*c9945492SAndroid Build Coastguard Worker 			 */
101*c9945492SAndroid Build Coastguard Worker 			/* determine k */
102*c9945492SAndroid Build Coastguard Worker 			float t,q0,q1,w,h,z,tmp,nf;
103*c9945492SAndroid Build Coastguard Worker 			int k;
104*c9945492SAndroid Build Coastguard Worker 
105*c9945492SAndroid Build Coastguard Worker 			nf = nm1+1.0f;
106*c9945492SAndroid Build Coastguard Worker 			w = 2*nf/x;
107*c9945492SAndroid Build Coastguard Worker 			h = 2/x;
108*c9945492SAndroid Build Coastguard Worker 			z = w+h;
109*c9945492SAndroid Build Coastguard Worker 			q0 = w;
110*c9945492SAndroid Build Coastguard Worker 			q1 = w*z - 1.0f;
111*c9945492SAndroid Build Coastguard Worker 			k = 1;
112*c9945492SAndroid Build Coastguard Worker 			while (q1 < 1.0e4f) {
113*c9945492SAndroid Build Coastguard Worker 				k += 1;
114*c9945492SAndroid Build Coastguard Worker 				z += h;
115*c9945492SAndroid Build Coastguard Worker 				tmp = z*q1 - q0;
116*c9945492SAndroid Build Coastguard Worker 				q0 = q1;
117*c9945492SAndroid Build Coastguard Worker 				q1 = tmp;
118*c9945492SAndroid Build Coastguard Worker 			}
119*c9945492SAndroid Build Coastguard Worker 			for (t=0.0f, i=k; i>=0; i--)
120*c9945492SAndroid Build Coastguard Worker 				t = 1.0f/(2*(i+nf)/x-t);
121*c9945492SAndroid Build Coastguard Worker 			a = t;
122*c9945492SAndroid Build Coastguard Worker 			b = 1.0f;
123*c9945492SAndroid Build Coastguard Worker 			/*  estimate log((2/x)^n*n!) = n*log(2/x)+n*ln(n)
124*c9945492SAndroid Build Coastguard Worker 			 *  Hence, if n*(log(2n/x)) > ...
125*c9945492SAndroid Build Coastguard Worker 			 *  single 8.8722839355e+01
126*c9945492SAndroid Build Coastguard Worker 			 *  double 7.09782712893383973096e+02
127*c9945492SAndroid Build Coastguard Worker 			 *  long double 1.1356523406294143949491931077970765006170e+04
128*c9945492SAndroid Build Coastguard Worker 			 *  then recurrent value may overflow and the result is
129*c9945492SAndroid Build Coastguard Worker 			 *  likely underflow to zero
130*c9945492SAndroid Build Coastguard Worker 			 */
131*c9945492SAndroid Build Coastguard Worker 			tmp = nf*logf(fabsf(w));
132*c9945492SAndroid Build Coastguard Worker 			if (tmp < 88.721679688f) {
133*c9945492SAndroid Build Coastguard Worker 				for (i=nm1; i>0; i--) {
134*c9945492SAndroid Build Coastguard Worker 					temp = b;
135*c9945492SAndroid Build Coastguard Worker 					b = 2.0f*i*b/x - a;
136*c9945492SAndroid Build Coastguard Worker 					a = temp;
137*c9945492SAndroid Build Coastguard Worker 				}
138*c9945492SAndroid Build Coastguard Worker 			} else {
139*c9945492SAndroid Build Coastguard Worker 				for (i=nm1; i>0; i--){
140*c9945492SAndroid Build Coastguard Worker 					temp = b;
141*c9945492SAndroid Build Coastguard Worker 					b = 2.0f*i*b/x - a;
142*c9945492SAndroid Build Coastguard Worker 					a = temp;
143*c9945492SAndroid Build Coastguard Worker 					/* scale b to avoid spurious overflow */
144*c9945492SAndroid Build Coastguard Worker 					if (b > 0x1p60f) {
145*c9945492SAndroid Build Coastguard Worker 						a /= b;
146*c9945492SAndroid Build Coastguard Worker 						t /= b;
147*c9945492SAndroid Build Coastguard Worker 						b = 1.0f;
148*c9945492SAndroid Build Coastguard Worker 					}
149*c9945492SAndroid Build Coastguard Worker 				}
150*c9945492SAndroid Build Coastguard Worker 			}
151*c9945492SAndroid Build Coastguard Worker 			z = j0f(x);
152*c9945492SAndroid Build Coastguard Worker 			w = j1f(x);
153*c9945492SAndroid Build Coastguard Worker 			if (fabsf(z) >= fabsf(w))
154*c9945492SAndroid Build Coastguard Worker 				b = t*z/b;
155*c9945492SAndroid Build Coastguard Worker 			else
156*c9945492SAndroid Build Coastguard Worker 				b = t*w/a;
157*c9945492SAndroid Build Coastguard Worker 		}
158*c9945492SAndroid Build Coastguard Worker 	}
159*c9945492SAndroid Build Coastguard Worker 	return sign ? -b : b;
160*c9945492SAndroid Build Coastguard Worker }
161*c9945492SAndroid Build Coastguard Worker 
ynf(int n,float x)162*c9945492SAndroid Build Coastguard Worker float ynf(int n, float x)
163*c9945492SAndroid Build Coastguard Worker {
164*c9945492SAndroid Build Coastguard Worker 	uint32_t ix, ib;
165*c9945492SAndroid Build Coastguard Worker 	int nm1, sign, i;
166*c9945492SAndroid Build Coastguard Worker 	float a, b, temp;
167*c9945492SAndroid Build Coastguard Worker 
168*c9945492SAndroid Build Coastguard Worker 	GET_FLOAT_WORD(ix, x);
169*c9945492SAndroid Build Coastguard Worker 	sign = ix>>31;
170*c9945492SAndroid Build Coastguard Worker 	ix &= 0x7fffffff;
171*c9945492SAndroid Build Coastguard Worker 	if (ix > 0x7f800000) /* nan */
172*c9945492SAndroid Build Coastguard Worker 		return x;
173*c9945492SAndroid Build Coastguard Worker 	if (sign && ix != 0) /* x < 0 */
174*c9945492SAndroid Build Coastguard Worker 		return 0/0.0f;
175*c9945492SAndroid Build Coastguard Worker 	if (ix == 0x7f800000)
176*c9945492SAndroid Build Coastguard Worker 		return 0.0f;
177*c9945492SAndroid Build Coastguard Worker 
178*c9945492SAndroid Build Coastguard Worker 	if (n == 0)
179*c9945492SAndroid Build Coastguard Worker 		return y0f(x);
180*c9945492SAndroid Build Coastguard Worker 	if (n < 0) {
181*c9945492SAndroid Build Coastguard Worker 		nm1 = -(n+1);
182*c9945492SAndroid Build Coastguard Worker 		sign = n&1;
183*c9945492SAndroid Build Coastguard Worker 	} else {
184*c9945492SAndroid Build Coastguard Worker 		nm1 = n-1;
185*c9945492SAndroid Build Coastguard Worker 		sign = 0;
186*c9945492SAndroid Build Coastguard Worker 	}
187*c9945492SAndroid Build Coastguard Worker 	if (nm1 == 0)
188*c9945492SAndroid Build Coastguard Worker 		return sign ? -y1f(x) : y1f(x);
189*c9945492SAndroid Build Coastguard Worker 
190*c9945492SAndroid Build Coastguard Worker 	a = y0f(x);
191*c9945492SAndroid Build Coastguard Worker 	b = y1f(x);
192*c9945492SAndroid Build Coastguard Worker 	/* quit if b is -inf */
193*c9945492SAndroid Build Coastguard Worker 	GET_FLOAT_WORD(ib,b);
194*c9945492SAndroid Build Coastguard Worker 	for (i = 0; i < nm1 && ib != 0xff800000; ) {
195*c9945492SAndroid Build Coastguard Worker 		i++;
196*c9945492SAndroid Build Coastguard Worker 		temp = b;
197*c9945492SAndroid Build Coastguard Worker 		b = (2.0f*i/x)*b - a;
198*c9945492SAndroid Build Coastguard Worker 		GET_FLOAT_WORD(ib, b);
199*c9945492SAndroid Build Coastguard Worker 		a = temp;
200*c9945492SAndroid Build Coastguard Worker 	}
201*c9945492SAndroid Build Coastguard Worker 	return sign ? -b : b;
202*c9945492SAndroid Build Coastguard Worker }
203