4 * The contents of this file are subject to the terms of the
5 * Common Development and Distribution License (the "License").
6 * You may not use this file except in compliance with the License.
8 * You can obtain a copy of the license at usr/src/OPENSOLARIS.LICENSE
9 * or http://www.opensolaris.org/os/licensing.
10 * See the License for the specific language governing permissions
11 * and limitations under the License.
13 * When distributing Covered Code, include this CDDL HEADER in each
14 * file and include the License file at usr/src/OPENSOLARIS.LICENSE.
15 * If applicable, add the following below this CDDL HEADER, with the
16 * fields enclosed by brackets "[]" replaced with your own identifying
17 * information: Portions Copyright [yyyy] [name of copyright owner]
22 * Copyright 2011 Nexenta Systems, Inc. All rights reserved.
25 * Copyright 2005 Sun Microsystems, Inc. All rights reserved.
26 * Use is subject to license terms.
29 #pragma weak __j0f = j0f
30 #pragma weak __j1f = j1f
31 #pragma weak __jnf = jnf
32 #pragma weak __y0f = y0f
33 #pragma weak __y1f = y1f
34 #pragma weak __ynf = ynf
39 #if defined(__i386) && !defined(__amd64)
40 extern int __swapRP(int);
47 static const double C
[] = {
56 0.5641895835477562869480794515607725858441, /* 1/sqrt(pi) */
57 0.636619772367581343075535053490057448, /* 2/pi */
73 static const double Cj0y0
[] = {
74 0.4861344183386052721391238447e5
, /* pr */
75 0.1377662549407112278133438945e6
,
76 0.1222466364088289731869114004e6
,
77 0.4107070084315176135583353374e5
,
78 0.5026073801860637125889039915e4
,
79 0.1783193659125479654541542419e3
,
80 0.88010344055383421691677564e0
,
81 0.4861344183386052721414037058e5
, /* ps */
82 0.1378196632630384670477582699e6
,
83 0.1223967185341006542748936787e6
,
84 0.4120150243795353639995862617e5
,
85 0.5068271181053546392490184353e4
,
86 0.1829817905472769960535671664e3
,
88 -0.1731210995701068539185611951e3
, /* qr */
89 -0.5522559165936166961235240613e3
,
90 -0.5604935606637346590614529613e3
,
91 -0.2200430300226009379477365011e3
,
92 -0.323869355375648849771296746e2
,
93 -0.14294979207907956223499258e1
,
94 -0.834690374102384988158918e-2,
95 0.1107975037248683865326709645e5
, /* qs */
96 0.3544581680627082674651471873e5
,
97 0.3619118937918394132179019059e5
,
98 0.1439895563565398007471485822e5
,
99 0.2190277023344363955930226234e4
,
100 0.106695157020407986137501682e3
,
106 #define qr (Cj0y0+14)
107 #define qs (Cj0y0+21)
109 static const double Cj0
[] = {
110 -2.500000000000003622131880894830476755537e-0001, /* r0 */
111 1.095597547334830263234433855932375353303e-0002,
112 -1.819734750463320921799187258987098087697e-0004,
113 9.977001946806131657544212501069893930846e-0007,
115 1.867609810662950169966782360588199673741e-0002,
116 1.590389206181565490878430827706972074208e-0004,
117 6.520867386742583632375520147714499522721e-0007,
118 9.999999999999999942156495584397047660949e-0001, /* r1 */
119 -2.389887722731319130476839836908143731281e-0001,
120 1.293359476138939027791270393439493640570e-0002,
121 -2.770985642343140122168852400228563364082e-0004,
122 2.905241575772067678086738389169625218912e-0006,
123 -1.636846356264052597969042009265043251279e-0008,
124 5.072306160724884775085431059052611737827e-0011,
125 -8.187060730684066824228914775146536139112e-0014,
126 5.422219326959949863954297860723723423842e-0017,
128 1.101122772686807702762104741932076228349e-0002,
129 6.140169310641649223411427764669143978228e-0005,
130 2.292035877515152097976946119293215705250e-0007,
131 6.356910426504644334558832036362219583789e-0010,
132 1.366626326900219555045096999553948891401e-0012,
133 2.280399586866739522891837985560481180088e-0015,
134 2.801559820648939665270492520004836611187e-0018,
135 2.073101088320349159764410261466350732968e-0021,
143 static const double Cy0
[] = {
144 -7.380429510868722526754723020704317641941e-0002, /* u0 */
145 1.772607102684869924301459663049874294814e-0001,
146 -1.524370666542713828604078090970799356306e-0002,
147 4.650819100693891757143771557629924591915e-0004,
148 -7.125768872339528975036316108718239946022e-0006,
149 6.411017001656104598327565004771515257146e-0008,
150 -3.694275157433032553021246812379258781665e-0010,
151 1.434364544206266624252820889648445263842e-0012,
152 -3.852064731859936455895036286874139896861e-0015,
153 7.182052899726138381739945881914874579696e-0018,
154 -9.060556574619677567323741194079797987200e-0021,
155 7.124435467408860515265552217131230511455e-0024,
156 -2.709726774636397615328813121715432044771e-0027,
158 4.678678931512549002587702477349214886475e-0003,
159 9.486828955529948534822800829497565178985e-0006,
160 1.001495929158861646659010844136682454906e-0008,
161 4.725338116256021660204443235685358593611e-0012,
167 static const double Cj1y1
[] = {
168 -0.4435757816794127857114720794e7
, /* pr0 */
169 -0.9942246505077641195658377899e7
,
170 -0.6603373248364939109255245434e7
,
171 -0.1523529351181137383255105722e7
,
172 -0.1098240554345934672737413139e6
,
173 -0.1611616644324610116477412898e4
,
174 -0.4435757816794127856828016962e7
, /* ps0 */
175 -0.9934124389934585658967556309e7
,
176 -0.6585339479723087072826915069e7
,
177 -0.1511809506634160881644546358e7
,
178 -0.1072638599110382011903063867e6
,
179 -0.1455009440190496182453565068e4
,
180 0.3322091340985722351859704442e5
, /* qr0 */
181 0.8514516067533570196555001171e5
,
182 0.6617883658127083517939992166e5
,
183 0.1849426287322386679652009819e5
,
184 0.1706375429020768002061283546e4
,
185 0.3526513384663603218592175580e2
,
186 0.7087128194102874357377502472e6
, /* qs0 */
187 0.1819458042243997298924553839e7
,
188 0.1419460669603720892855755253e7
,
189 0.4002944358226697511708610813e6
,
190 0.3789022974577220264142952256e5
,
191 0.8638367769604990967475517183e3
,
195 #define ps0 (Cj1y1+6)
196 #define qr0 (Cj1y1+12)
197 #define qs0 (Cj1y1+18)
199 static const double Cj1
[] = {
200 -6.250000000000002203053200981413218949548e-0002, /* a0 */
201 1.600998455640072901321605101981501263762e-0003,
202 -1.963888815948313758552511884390162864930e-0005,
203 8.263917341093549759781339713418201620998e-0008,
205 1.605069137643004242395356851797873766927e-0002,
206 1.149454623251299996428500249509098499383e-0004,
207 3.849701673735260970379681807910852327825e-0007,
208 4.999999999999999995517408894340485471724e-0001,
209 -6.003825028120475684835384519945468075423e-0002,
210 2.301719899263321828388344461995355419832e-0003,
211 -4.208494869238892934859525221654040304068e-0005,
212 4.377745135188837783031540029700282443388e-0007,
213 -2.854106755678624335145364226735677754179e-0009,
214 1.234002865443952024332943901323798413689e-0011,
215 -3.645498437039791058951273508838177134310e-0014,
216 7.404320596071797459925377103787837414422e-0017,
217 -1.009457448277522275262808398517024439084e-0019,
218 8.520158355824819796968771418801019930585e-0023,
219 -3.458159926081163274483854614601091361424e-0026,
221 4.923499437590484879081138588998986303306e-0003,
222 1.054389489212184156499666953501976688452e-0005,
223 1.180768373106166527048240364872043816050e-0008,
224 5.942665743476099355323245707680648588540e-0012,
232 static const double Cy1
[] = {
233 -1.960570906462389461018983259589655961560e-0001, /* c0 */
234 4.931824118350661953459180060007970291139e-0002,
235 -1.626975871565393656845930125424683008677e-0003,
236 1.359657517926394132692884168082224258360e-0005,
238 2.565807214838390835108224713630901653793e-0002,
239 3.374175208978404268650522752520906231508e-0004,
240 2.840368571306070719539936935220728843177e-0006,
241 1.396387402048998277638900944415752207592e-0008,
242 -1.960570906462389473336339614647555351626e-0001, /* c1 */
243 5.336268030335074494231369159933012844735e-0002,
244 -2.684137504382748094149184541866332033280e-0003,
245 5.737671618979185736981543498580051903060e-0005,
246 -6.642696350686335339171171785557663224892e-0007,
247 4.692417922568160354012347591960362101664e-0009,
248 -2.161728635907789319335231338621412258355e-0011,
249 6.727353419738316107197644431844194668702e-0014,
250 -1.427502986803861372125234355906790573422e-0016,
251 2.020392498726806769468143219616642940371e-0019,
252 -1.761371948595104156753045457888272716340e-0022,
253 7.352828391941157905175042420249225115816e-0026,
255 5.029187436727947764916247076102283399442e-0003,
256 1.102693095808242775074856548927801750627e-0005,
257 1.268035774543174837829534603830227216291e-0008,
258 6.579416271766610825192542295821308730206e-0012,
267 /* core of j0f computation; assumes fx is finite */
271 double x
, z
, s
, c
, ss
, cc
, r
, t
, p0
, q0
;
274 ix
= *(int *)&fx
& ~0x80000000;
275 x
= fabs((double)fx
);
276 if (ix
> 0x41000000) {
277 /* x > 8; see comments in j0.c */
280 if (signbit(s
) != signbit(c
)) {
282 cc
= -cos(x
+ x
) / ss
;
285 ss
= -cos(x
+ x
) / cc
;
287 if (ix
> 0x501502f9) {
294 p0
= (pr
[0] + z
* (pr
[1] + z
* (pr
[2] + z
* (pr
[3] +
295 z
* (pr
[4] + z
* (pr
[5] + z
* pr
[6])))))) /
296 (ps
[0] + z
* (ps
[1] + z
* (ps
[2] + z
* (ps
[3] +
297 z
* (ps
[4] + z
* (ps
[5] + z
))))));
298 q0
= ((qr
[0] + z
* (qr
[1] + z
* (qr
[2] + z
* (qr
[3] +
299 z
* (qr
[4] + z
* (qr
[5] + z
* qr
[6])))))) /
300 (qs
[0] + z
* (qs
[1] + z
* (qs
[2] + z
* (qs
[3] +
301 z
* (qs
[4] + z
* (qs
[5] + z
))))))) * t
;
303 return (isqrtpi
* (p0
* cc
- q0
* ss
) / sqrt(x
));
305 if (ix
<= 0x3727c5ac) {
307 if (ix
<= 0x219392ef) /* x <= 1.0e-18 */
309 return (one
- x
* x
* quarter
);
312 if (ix
<= 0x3fa3d70a) {
314 r
= r0
[0] + z
* (r0
[1] + z
* (r0
[2] + z
* r0
[3]));
315 s
= s0
[0] + z
* (s0
[1] + z
* (s0
[2] + z
* s0
[3]));
316 return (one
+ z
* (r
/ s
));
320 for (i
= 7; i
>= 0; i
--) {
332 #if defined(__i386) && !defined(__amd64)
336 ix
= *(int *)&fx
& ~0x80000000;
337 if (ix
>= 0x7f800000) { /* nan or inf */
343 #if defined(__i386) && !defined(__amd64)
344 rp
= __swapRP(fp_extended
);
346 f
= (float)__k_j0f(fx
);
347 #if defined(__i386) && !defined(__amd64)
348 if (rp
!= fp_extended
)
354 /* core of y0f computation; assumes fx is finite and positive */
358 double x
, z
, s
, c
, ss
, cc
, t
, p0
, q0
, u
, v
;
363 if (ix
> 0x41000000) {
364 /* x > 8; see comments in j0.c */
367 if (signbit(s
) != signbit(c
)) {
369 cc
= -cos(x
+ x
) / ss
;
372 ss
= -cos(x
+ x
) / cc
;
374 if (ix
> 0x501502f9) {
381 p0
= (pr
[0] + z
* (pr
[1] + z
* (pr
[2] + z
* (pr
[3] +
382 z
* (pr
[4] + z
* (pr
[5] + z
* pr
[6])))))) /
383 (ps
[0] + z
* (ps
[1] + z
* (ps
[2] + z
* (ps
[3] +
384 z
* (ps
[4] + z
* (ps
[5] + z
))))));
385 q0
= ((qr
[0] + z
* (qr
[1] + z
* (qr
[2] + z
* (qr
[3] +
386 z
* (qr
[4] + z
* (qr
[5] + z
* qr
[6])))))) /
387 (qs
[0] + z
* (qs
[1] + z
* (qs
[2] + z
* (qs
[3] +
388 z
* (qs
[4] + z
* (qs
[5] + z
))))))) * t
;
390 return (isqrtpi
* (p0
* ss
+ q0
* cc
) / sqrt(x
));
392 if (ix
<= 0x219392ef) /* x <= 1.0e-18 */
393 return (u0
[0] + tpi
* log(x
));
396 for (i
= 11; i
>= 0; i
--)
398 v
= v0
[0] + z
* (v0
[1] + z
* (v0
[2] + z
* (v0
[3] + z
* v0
[4])));
399 return (u
/ v
+ tpi
* (__k_j0f(fx
) * log(x
)));
407 #if defined(__i386) && !defined(__amd64)
412 if ((ix
& ~0x80000000) > 0x7f800000) /* nan */
414 if (ix
<= 0) { /* zero or negative */
416 return (-onef
/ zerof
);
417 return (zerof
/ zerof
);
419 if (ix
== 0x7f800000) /* +inf */
422 #if defined(__i386) && !defined(__amd64)
423 rp
= __swapRP(fp_extended
);
425 f
= (float)__k_y0f(fx
);
426 #if defined(__i386) && !defined(__amd64)
427 if (rp
!= fp_extended
)
433 /* core of j1f computation; assumes fx is finite */
437 double x
, z
, s
, c
, ss
, cc
, r
, t
, p1
, q1
;
441 sgn
= (unsigned)ix
>> 31;
443 x
= fabs((double)fx
);
444 if (ix
> 0x41000000) {
445 /* x > 8; see comments in j1.c */
448 if (signbit(s
) != signbit(c
)) {
450 ss
= cos(x
+ x
) / cc
;
453 cc
= cos(x
+ x
) / ss
;
455 if (ix
> 0x501502f9) {
462 p1
= (pr0
[0] + z
* (pr0
[1] + z
* (pr0
[2] + z
*
463 (pr0
[3] + z
* (pr0
[4] + z
* pr0
[5]))))) /
464 (ps0
[0] + z
* (ps0
[1] + z
* (ps0
[2] + z
*
465 (ps0
[3] + z
* (ps0
[4] + z
* (ps0
[5] + z
))))));
466 q1
= ((qr0
[0] + z
* (qr0
[1] + z
* (qr0
[2] + z
*
467 (qr0
[3] + z
* (qr0
[4] + z
* qr0
[5]))))) /
468 (qs0
[0] + z
* (qs0
[1] + z
* (qs0
[2] + z
*
469 (qs0
[3] + z
* (qs0
[4] + z
* (qs0
[5] + z
))))))) * t
;
471 t
= isqrtpi
* (p1
* cc
- q1
* ss
) / sqrt(x
);
472 return ((sgn
)? -t
: t
);
474 if (ix
<= 0x3727c5ac) {
476 if (ix
<= 0x219392ef) /* x <= 1.0e-18 */
479 t
= x
* (half
+ neighth
* x
* x
);
480 return ((sgn
)? -t
: t
);
483 if (ix
< 0x3fa3d70a) {
485 r
= a0
[0] + z
* (a0
[1] + z
* (a0
[2] + z
* a0
[3]));
486 s
= b0
[0] + z
* (b0
[1] + z
* (b0
[2] + z
* b0
[3]));
487 t
= x
* half
+ x
* (z
* (r
/ s
));
490 for (i
= 10; i
>= 0; i
--)
492 s
= b1
[0] + z
* (b1
[1] + z
* (b1
[2] + z
* (b1
[3] + z
* b1
[4])));
495 return ((sgn
)? -t
: t
);
503 #if defined(__i386) && !defined(__amd64)
507 ix
= *(int *)&fx
& ~0x80000000;
508 if (ix
>= 0x7f800000) /* nan or inf */
511 #if defined(__i386) && !defined(__amd64)
512 rp
= __swapRP(fp_extended
);
514 f
= (float)__k_j1f(fx
);
515 #if defined(__i386) && !defined(__amd64)
516 if (rp
!= fp_extended
)
522 /* core of y1f computation; assumes fx is finite and positive */
526 double x
, z
, s
, c
, ss
, cc
, u
, v
, p1
, q1
, t
;
531 if (ix
> 0x41000000) {
532 /* x > 8; see comments in j1.c */
535 if (signbit(s
) != signbit(c
)) {
537 ss
= cos(x
+ x
) / cc
;
540 cc
= cos(x
+ x
) / ss
;
542 if (ix
> 0x501502f9) {
549 p1
= (pr0
[0] + z
* (pr0
[1] + z
* (pr0
[2] + z
*
550 (pr0
[3] + z
* (pr0
[4] + z
* pr0
[5]))))) /
551 (ps0
[0] + z
* (ps0
[1] + z
* (ps0
[2] + z
*
552 (ps0
[3] + z
* (ps0
[4] + z
* (ps0
[5] + z
))))));
553 q1
= ((qr0
[0] + z
* (qr0
[1] + z
* (qr0
[2] + z
*
554 (qr0
[3] + z
* (qr0
[4] + z
* qr0
[5]))))) /
555 (qs0
[0] + z
* (qs0
[1] + z
* (qs0
[2] + z
*
556 (qs0
[3] + z
* (qs0
[4] + z
* (qs0
[5] + z
))))))) * t
;
558 return (isqrtpi
* (p1
* ss
+ q1
* cc
) / sqrt(x
));
560 if (ix
<= 0x219392ef) /* x <= 1.0e-18 */
563 if (ix
< 0x3fa3d70a) {
565 u
= c0
[0] + z
* (c0
[1] + z
* (c0
[2] + z
* c0
[3]));
566 v
= d0
[0] + z
* (d0
[1] + z
* (d0
[2] + z
* (d0
[3] + z
* d0
[4])));
569 for (i
= 10; i
>= 0; i
--)
571 v
= d1
[0] + z
* (d1
[1] + z
* (d1
[2] + z
* (d1
[3] + z
* d1
[4])));
573 return (x
* (u
/ v
) + tpi
* (__k_j1f(fx
) * log(x
) - one
/ x
));
581 #if defined(__i386) && !defined(__amd64)
586 if ((ix
& ~0x80000000) > 0x7f800000) /* nan */
588 if (ix
<= 0) { /* zero or negative */
590 return (-onef
/ zerof
);
591 return (zerof
/ zerof
);
593 if (ix
== 0x7f800000) /* +inf */
596 #if defined(__i386) && !defined(__amd64)
597 rp
= __swapRP(fp_extended
);
599 f
= (float)__k_y1f(fx
);
600 #if defined(__i386) && !defined(__amd64)
601 if (rp
!= fp_extended
)
610 double a
, b
, temp
, x
, z
, w
, t
, q0
, q1
, h
;
612 int i
, ix
, sgn
, m
, k
;
613 #if defined(__i386) && !defined(__amd64)
627 sgn
= (n
& 1)? ((unsigned)ix
>> 31) : 0;
629 if (ix
>= 0x7f800000) { /* nan or inf */
632 return ((sgn
)? -zerof
: zerof
);
635 return ((sgn
)? -zerof
: zerof
);
637 #if defined(__i386) && !defined(__amd64)
638 rp
= __swapRP(fp_extended
);
642 if ((double)n
<= x
) {
643 /* safe to use J(n+1,x) = 2n/x * J(n,x) - J(n-1,x) */
646 for (i
= 1; i
< n
; i
++) {
648 b
= b
* ((double)(i
+ i
) / x
) - a
;
652 #if defined(__i386) && !defined(__amd64)
653 if (rp
!= fp_extended
)
656 return ((sgn
)? -f
: f
);
658 if (ix
< 0x3089705f) {
659 /* x < 1.0e-9; use J(n,x) = 1/n! * (x / 2)^n */
661 n
= 6; /* result underflows to zero for n >= 6 */
664 for (i
= 2; i
<= n
; i
++) {
671 * Use the backward recurrence:
674 * J(n,x)/J(n-1,x) = ---- - ------ - ------ .....
677 * Let w = 2n/x and h = 2/x. Then the above quotient
678 * is equal to the continued fraction:
680 * = -----------------------
682 * w - -----------------
687 * To determine how many terms are needed, run the
692 * Q(k) = (w+k*h)*Q(k-1) - Q(k-2).
694 * Then when Q(k) > 1e4, k is large enough for single
697 /* XXX NOT DONE - rework this */
713 for (i
= (n
+ k
) << 1; i
>= m
; i
-= 2)
714 t
= one
/ ((double)i
/ x
- t
);
718 * estimate log((2/x)^n*n!) = n*log(2/x)+n*ln(n)
719 * hence, if n*(log(2n/x)) > ...
720 * single 8.8722839355e+01
721 * double 7.09782712893383973096e+02
722 * then recurrent value may overflow and the result is
723 * likely underflow to zero
726 temp
*= log((two
/ x
) * temp
);
727 if (temp
< 7.09782712893383973096e+02) {
728 for (i
= n
- 1; i
> 0; i
--) {
730 b
= b
* ((double)(i
+ i
) / x
) - a
;
734 for (i
= n
- 1; i
> 0; i
--) {
736 b
= b
* ((double)(i
+ i
) / x
) - a
;
745 b
= (t
* __k_j0f(fx
) / b
);
748 #if defined(__i386) && !defined(__amd64)
749 if (rp
!= fp_extended
)
752 return ((sgn
)? -f
: f
);
758 double a
, b
, temp
, x
;
761 #if defined(__i386) && !defined(__amd64)
774 return ((sign
)? -y1f(fx
) : y1f(fx
));
777 if ((ix
& ~0x80000000) > 0x7f800000) /* nan */
779 if (ix
<= 0) { /* zero or negative */
781 return (-onef
/ zerof
);
782 return (zerof
/ zerof
);
784 if (ix
== 0x7f800000) /* +inf */
787 #if defined(__i386) && !defined(__amd64)
788 rp
= __swapRP(fp_extended
);
793 for (i
= 1; i
< n
; i
++) {
795 b
*= (double)(i
+ i
) / x
;
802 #if defined(__i386) && !defined(__amd64)
803 if (rp
!= fp_extended
)
806 return ((sign
)? -f
: f
);