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[glibc/nacl-glibc.git] / sysdeps / ieee754 / flt-32 / e_j0f.c
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1 /* e_j0f.c -- float version of e_j0.c.
2 * Conversion to float by Ian Lance Taylor, Cygnus Support, ian@cygnus.com.
3 */
5 /*
6 * ====================================================
7 * Copyright (C) 1993 by Sun Microsystems, Inc. All rights reserved.
9 * Developed at SunPro, a Sun Microsystems, Inc. business.
10 * Permission to use, copy, modify, and distribute this
11 * software is freely granted, provided that this notice
12 * is preserved.
13 * ====================================================
16 #if defined(LIBM_SCCS) && !defined(lint)
17 static char rcsid[] = "$NetBSD: e_j0f.c,v 1.4 1995/05/10 20:45:25 jtc Exp $";
18 #endif
20 #include "math.h"
21 #include "math_private.h"
23 #ifdef __STDC__
24 static float pzerof(float), qzerof(float);
25 #else
26 static float pzerof(), qzerof();
27 #endif
29 #ifdef __STDC__
30 static const float
31 #else
32 static float
33 #endif
34 huge = 1e30,
35 one = 1.0,
36 invsqrtpi= 5.6418961287e-01, /* 0x3f106ebb */
37 tpi = 6.3661974669e-01, /* 0x3f22f983 */
38 /* R0/S0 on [0, 2.00] */
39 R02 = 1.5625000000e-02, /* 0x3c800000 */
40 R03 = -1.8997929874e-04, /* 0xb947352e */
41 R04 = 1.8295404516e-06, /* 0x35f58e88 */
42 R05 = -4.6183270541e-09, /* 0xb19eaf3c */
43 S01 = 1.5619102865e-02, /* 0x3c7fe744 */
44 S02 = 1.1692678527e-04, /* 0x38f53697 */
45 S03 = 5.1354652442e-07, /* 0x3509daa6 */
46 S04 = 1.1661400734e-09; /* 0x30a045e8 */
48 #ifdef __STDC__
49 static const float zero = 0.0;
50 #else
51 static float zero = 0.0;
52 #endif
54 #ifdef __STDC__
55 float __ieee754_j0f(float x)
56 #else
57 float __ieee754_j0f(x)
58 float x;
59 #endif
61 float z, s,c,ss,cc,r,u,v;
62 int32_t hx,ix;
64 GET_FLOAT_WORD(hx,x);
65 ix = hx&0x7fffffff;
66 if(ix>=0x7f800000) return one/(x*x);
67 x = fabsf(x);
68 if(ix >= 0x40000000) { /* |x| >= 2.0 */
69 __sincosf (x, &s, &c);
70 ss = s-c;
71 cc = s+c;
72 if(ix<0x7f000000) { /* make sure x+x not overflow */
73 z = -__cosf(x+x);
74 if ((s*c)<zero) cc = z/ss;
75 else ss = z/cc;
78 * j0(x) = 1/sqrt(pi) * (P(0,x)*cc - Q(0,x)*ss) / sqrt(x)
79 * y0(x) = 1/sqrt(pi) * (P(0,x)*ss + Q(0,x)*cc) / sqrt(x)
81 if(ix>0x48000000) z = (invsqrtpi*cc)/__ieee754_sqrtf(x);
82 else {
83 u = pzerof(x); v = qzerof(x);
84 z = invsqrtpi*(u*cc-v*ss)/__ieee754_sqrtf(x);
86 return z;
88 if(ix<0x39000000) { /* |x| < 2**-13 */
89 if(huge+x>one) { /* raise inexact if x != 0 */
90 if(ix<0x32000000) return one; /* |x|<2**-27 */
91 else return one - (float)0.25*x*x;
94 z = x*x;
95 r = z*(R02+z*(R03+z*(R04+z*R05)));
96 s = one+z*(S01+z*(S02+z*(S03+z*S04)));
97 if(ix < 0x3F800000) { /* |x| < 1.00 */
98 return one + z*((float)-0.25+(r/s));
99 } else {
100 u = (float)0.5*x;
101 return((one+u)*(one-u)+z*(r/s));
105 #ifdef __STDC__
106 static const float
107 #else
108 static float
109 #endif
110 u00 = -7.3804296553e-02, /* 0xbd9726b5 */
111 u01 = 1.7666645348e-01, /* 0x3e34e80d */
112 u02 = -1.3818567619e-02, /* 0xbc626746 */
113 u03 = 3.4745343146e-04, /* 0x39b62a69 */
114 u04 = -3.8140706238e-06, /* 0xb67ff53c */
115 u05 = 1.9559013964e-08, /* 0x32a802ba */
116 u06 = -3.9820518410e-11, /* 0xae2f21eb */
117 v01 = 1.2730483897e-02, /* 0x3c509385 */
118 v02 = 7.6006865129e-05, /* 0x389f65e0 */
119 v03 = 2.5915085189e-07, /* 0x348b216c */
120 v04 = 4.4111031494e-10; /* 0x2ff280c2 */
122 #ifdef __STDC__
123 float __ieee754_y0f(float x)
124 #else
125 float __ieee754_y0f(x)
126 float x;
127 #endif
129 float z, s,c,ss,cc,u,v;
130 int32_t hx,ix;
132 GET_FLOAT_WORD(hx,x);
133 ix = 0x7fffffff&hx;
134 /* Y0(NaN) is NaN, y0(-inf) is Nan, y0(inf) is 0, y0(0) is -inf. */
135 if(ix>=0x7f800000) return one/(x+x*x);
136 if(ix==0) return -HUGE_VALF+x; /* -inf and overflow exception. */
137 if(hx<0) return zero/(zero*x);
138 if(ix >= 0x40000000) { /* |x| >= 2.0 */
139 /* y0(x) = sqrt(2/(pi*x))*(p0(x)*sin(x0)+q0(x)*cos(x0))
140 * where x0 = x-pi/4
141 * Better formula:
142 * cos(x0) = cos(x)cos(pi/4)+sin(x)sin(pi/4)
143 * = 1/sqrt(2) * (sin(x) + cos(x))
144 * sin(x0) = sin(x)cos(3pi/4)-cos(x)sin(3pi/4)
145 * = 1/sqrt(2) * (sin(x) - cos(x))
146 * To avoid cancellation, use
147 * sin(x) +- cos(x) = -cos(2x)/(sin(x) -+ cos(x))
148 * to compute the worse one.
150 __sincosf (x, &s, &c);
151 ss = s-c;
152 cc = s+c;
154 * j0(x) = 1/sqrt(pi) * (P(0,x)*cc - Q(0,x)*ss) / sqrt(x)
155 * y0(x) = 1/sqrt(pi) * (P(0,x)*ss + Q(0,x)*cc) / sqrt(x)
157 if(ix<0x7f000000) { /* make sure x+x not overflow */
158 z = -__cosf(x+x);
159 if ((s*c)<zero) cc = z/ss;
160 else ss = z/cc;
162 if(ix>0x48000000) z = (invsqrtpi*ss)/__ieee754_sqrtf(x);
163 else {
164 u = pzerof(x); v = qzerof(x);
165 z = invsqrtpi*(u*ss+v*cc)/__ieee754_sqrtf(x);
167 return z;
169 if(ix<=0x32000000) { /* x < 2**-27 */
170 return(u00 + tpi*__ieee754_logf(x));
172 z = x*x;
173 u = u00+z*(u01+z*(u02+z*(u03+z*(u04+z*(u05+z*u06)))));
174 v = one+z*(v01+z*(v02+z*(v03+z*v04)));
175 return(u/v + tpi*(__ieee754_j0f(x)*__ieee754_logf(x)));
178 /* The asymptotic expansions of pzero is
179 * 1 - 9/128 s^2 + 11025/98304 s^4 - ..., where s = 1/x.
180 * For x >= 2, We approximate pzero by
181 * pzero(x) = 1 + (R/S)
182 * where R = pR0 + pR1*s^2 + pR2*s^4 + ... + pR5*s^10
183 * S = 1 + pS0*s^2 + ... + pS4*s^10
184 * and
185 * | pzero(x)-1-R/S | <= 2 ** ( -60.26)
187 #ifdef __STDC__
188 static const float pR8[6] = { /* for x in [inf, 8]=1/[0,0.125] */
189 #else
190 static float pR8[6] = { /* for x in [inf, 8]=1/[0,0.125] */
191 #endif
192 0.0000000000e+00, /* 0x00000000 */
193 -7.0312500000e-02, /* 0xbd900000 */
194 -8.0816707611e+00, /* 0xc1014e86 */
195 -2.5706311035e+02, /* 0xc3808814 */
196 -2.4852163086e+03, /* 0xc51b5376 */
197 -5.2530439453e+03, /* 0xc5a4285a */
199 #ifdef __STDC__
200 static const float pS8[5] = {
201 #else
202 static float pS8[5] = {
203 #endif
204 1.1653436279e+02, /* 0x42e91198 */
205 3.8337448730e+03, /* 0x456f9beb */
206 4.0597855469e+04, /* 0x471e95db */
207 1.1675296875e+05, /* 0x47e4087c */
208 4.7627726562e+04, /* 0x473a0bba */
210 #ifdef __STDC__
211 static const float pR5[6] = { /* for x in [8,4.5454]=1/[0.125,0.22001] */
212 #else
213 static float pR5[6] = { /* for x in [8,4.5454]=1/[0.125,0.22001] */
214 #endif
215 -1.1412546255e-11, /* 0xad48c58a */
216 -7.0312492549e-02, /* 0xbd8fffff */
217 -4.1596107483e+00, /* 0xc0851b88 */
218 -6.7674766541e+01, /* 0xc287597b */
219 -3.3123129272e+02, /* 0xc3a59d9b */
220 -3.4643338013e+02, /* 0xc3ad3779 */
222 #ifdef __STDC__
223 static const float pS5[5] = {
224 #else
225 static float pS5[5] = {
226 #endif
227 6.0753936768e+01, /* 0x42730408 */
228 1.0512523193e+03, /* 0x44836813 */
229 5.9789707031e+03, /* 0x45bad7c4 */
230 9.6254453125e+03, /* 0x461665c8 */
231 2.4060581055e+03, /* 0x451660ee */
234 #ifdef __STDC__
235 static const float pR3[6] = {/* for x in [4.547,2.8571]=1/[0.2199,0.35001] */
236 #else
237 static float pR3[6] = {/* for x in [4.547,2.8571]=1/[0.2199,0.35001] */
238 #endif
239 -2.5470459075e-09, /* 0xb12f081b */
240 -7.0311963558e-02, /* 0xbd8fffb8 */
241 -2.4090321064e+00, /* 0xc01a2d95 */
242 -2.1965976715e+01, /* 0xc1afba52 */
243 -5.8079170227e+01, /* 0xc2685112 */
244 -3.1447946548e+01, /* 0xc1fb9565 */
246 #ifdef __STDC__
247 static const float pS3[5] = {
248 #else
249 static float pS3[5] = {
250 #endif
251 3.5856033325e+01, /* 0x420f6c94 */
252 3.6151397705e+02, /* 0x43b4c1ca */
253 1.1936077881e+03, /* 0x44953373 */
254 1.1279968262e+03, /* 0x448cffe6 */
255 1.7358093262e+02, /* 0x432d94b8 */
258 #ifdef __STDC__
259 static const float pR2[6] = {/* for x in [2.8570,2]=1/[0.3499,0.5] */
260 #else
261 static float pR2[6] = {/* for x in [2.8570,2]=1/[0.3499,0.5] */
262 #endif
263 -8.8753431271e-08, /* 0xb3be98b7 */
264 -7.0303097367e-02, /* 0xbd8ffb12 */
265 -1.4507384300e+00, /* 0xbfb9b1cc */
266 -7.6356959343e+00, /* 0xc0f4579f */
267 -1.1193166733e+01, /* 0xc1331736 */
268 -3.2336456776e+00, /* 0xc04ef40d */
270 #ifdef __STDC__
271 static const float pS2[5] = {
272 #else
273 static float pS2[5] = {
274 #endif
275 2.2220300674e+01, /* 0x41b1c32d */
276 1.3620678711e+02, /* 0x430834f0 */
277 2.7047027588e+02, /* 0x43873c32 */
278 1.5387539673e+02, /* 0x4319e01a */
279 1.4657617569e+01, /* 0x416a859a */
282 #ifdef __STDC__
283 static float pzerof(float x)
284 #else
285 static float pzerof(x)
286 float x;
287 #endif
289 #ifdef __STDC__
290 const float *p,*q;
291 #else
292 float *p,*q;
293 #endif
294 float z,r,s;
295 int32_t ix;
296 GET_FLOAT_WORD(ix,x);
297 ix &= 0x7fffffff;
298 if(ix>=0x41000000) {p = pR8; q= pS8;}
299 else if(ix>=0x40f71c58){p = pR5; q= pS5;}
300 else if(ix>=0x4036db68){p = pR3; q= pS3;}
301 else if(ix>=0x40000000){p = pR2; q= pS2;}
302 z = one/(x*x);
303 r = p[0]+z*(p[1]+z*(p[2]+z*(p[3]+z*(p[4]+z*p[5]))));
304 s = one+z*(q[0]+z*(q[1]+z*(q[2]+z*(q[3]+z*q[4]))));
305 return one+ r/s;
309 /* For x >= 8, the asymptotic expansions of qzero is
310 * -1/8 s + 75/1024 s^3 - ..., where s = 1/x.
311 * We approximate pzero by
312 * qzero(x) = s*(-1.25 + (R/S))
313 * where R = qR0 + qR1*s^2 + qR2*s^4 + ... + qR5*s^10
314 * S = 1 + qS0*s^2 + ... + qS5*s^12
315 * and
316 * | qzero(x)/s +1.25-R/S | <= 2 ** ( -61.22)
318 #ifdef __STDC__
319 static const float qR8[6] = { /* for x in [inf, 8]=1/[0,0.125] */
320 #else
321 static float qR8[6] = { /* for x in [inf, 8]=1/[0,0.125] */
322 #endif
323 0.0000000000e+00, /* 0x00000000 */
324 7.3242187500e-02, /* 0x3d960000 */
325 1.1768206596e+01, /* 0x413c4a93 */
326 5.5767340088e+02, /* 0x440b6b19 */
327 8.8591972656e+03, /* 0x460a6cca */
328 3.7014625000e+04, /* 0x471096a0 */
330 #ifdef __STDC__
331 static const float qS8[6] = {
332 #else
333 static float qS8[6] = {
334 #endif
335 1.6377603149e+02, /* 0x4323c6aa */
336 8.0983447266e+03, /* 0x45fd12c2 */
337 1.4253829688e+05, /* 0x480b3293 */
338 8.0330925000e+05, /* 0x49441ed4 */
339 8.4050156250e+05, /* 0x494d3359 */
340 -3.4389928125e+05, /* 0xc8a7eb69 */
343 #ifdef __STDC__
344 static const float qR5[6] = { /* for x in [8,4.5454]=1/[0.125,0.22001] */
345 #else
346 static float qR5[6] = { /* for x in [8,4.5454]=1/[0.125,0.22001] */
347 #endif
348 1.8408595828e-11, /* 0x2da1ec79 */
349 7.3242180049e-02, /* 0x3d95ffff */
350 5.8356351852e+00, /* 0x40babd86 */
351 1.3511157227e+02, /* 0x43071c90 */
352 1.0272437744e+03, /* 0x448067cd */
353 1.9899779053e+03, /* 0x44f8bf4b */
355 #ifdef __STDC__
356 static const float qS5[6] = {
357 #else
358 static float qS5[6] = {
359 #endif
360 8.2776611328e+01, /* 0x42a58da0 */
361 2.0778142090e+03, /* 0x4501dd07 */
362 1.8847289062e+04, /* 0x46933e94 */
363 5.6751113281e+04, /* 0x475daf1d */
364 3.5976753906e+04, /* 0x470c88c1 */
365 -5.3543427734e+03, /* 0xc5a752be */
368 #ifdef __STDC__
369 static const float qR3[6] = {/* for x in [4.547,2.8571]=1/[0.2199,0.35001] */
370 #else
371 static float qR3[6] = {/* for x in [4.547,2.8571]=1/[0.2199,0.35001] */
372 #endif
373 4.3774099900e-09, /* 0x3196681b */
374 7.3241114616e-02, /* 0x3d95ff70 */
375 3.3442313671e+00, /* 0x405607e3 */
376 4.2621845245e+01, /* 0x422a7cc5 */
377 1.7080809021e+02, /* 0x432acedf */
378 1.6673394775e+02, /* 0x4326bbe4 */
380 #ifdef __STDC__
381 static const float qS3[6] = {
382 #else
383 static float qS3[6] = {
384 #endif
385 4.8758872986e+01, /* 0x42430916 */
386 7.0968920898e+02, /* 0x44316c1c */
387 3.7041481934e+03, /* 0x4567825f */
388 6.4604252930e+03, /* 0x45c9e367 */
389 2.5163337402e+03, /* 0x451d4557 */
390 -1.4924745178e+02, /* 0xc3153f59 */
393 #ifdef __STDC__
394 static const float qR2[6] = {/* for x in [2.8570,2]=1/[0.3499,0.5] */
395 #else
396 static float qR2[6] = {/* for x in [2.8570,2]=1/[0.3499,0.5] */
397 #endif
398 1.5044444979e-07, /* 0x342189db */
399 7.3223426938e-02, /* 0x3d95f62a */
400 1.9981917143e+00, /* 0x3fffc4bf */
401 1.4495602608e+01, /* 0x4167edfd */
402 3.1666231155e+01, /* 0x41fd5471 */
403 1.6252708435e+01, /* 0x4182058c */
405 #ifdef __STDC__
406 static const float qS2[6] = {
407 #else
408 static float qS2[6] = {
409 #endif
410 3.0365585327e+01, /* 0x41f2ecb8 */
411 2.6934811401e+02, /* 0x4386ac8f */
412 8.4478375244e+02, /* 0x44533229 */
413 8.8293585205e+02, /* 0x445cbbe5 */
414 2.1266638184e+02, /* 0x4354aa98 */
415 -5.3109550476e+00, /* 0xc0a9f358 */
418 #ifdef __STDC__
419 static float qzerof(float x)
420 #else
421 static float qzerof(x)
422 float x;
423 #endif
425 #ifdef __STDC__
426 const float *p,*q;
427 #else
428 float *p,*q;
429 #endif
430 float s,r,z;
431 int32_t ix;
432 GET_FLOAT_WORD(ix,x);
433 ix &= 0x7fffffff;
434 if(ix>=0x41000000) {p = qR8; q= qS8;}
435 else if(ix>=0x40f71c58){p = qR5; q= qS5;}
436 else if(ix>=0x4036db68){p = qR3; q= qS3;}
437 else if(ix>=0x40000000){p = qR2; q= qS2;}
438 z = one/(x*x);
439 r = p[0]+z*(p[1]+z*(p[2]+z*(p[3]+z*(p[4]+z*p[5]))));
440 s = one+z*(q[0]+z*(q[1]+z*(q[2]+z*(q[3]+z*(q[4]+z*q[5])))));
441 return (-(float).125 + r/s)/x;