3146
|
1 /* |
|
2 |
|
3 Copyright (C) 1996 John W. Eaton |
|
4 |
|
5 This file is part of Octave. |
|
6 |
|
7 Octave is free software; you can redistribute it and/or modify it |
|
8 under the terms of the GNU General Public License as published by the |
|
9 Free Software Foundation; either version 2, or (at your option) any |
|
10 later version. |
|
11 |
|
12 Octave is distributed in the hope that it will be useful, but WITHOUT |
|
13 ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or |
|
14 FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License |
|
15 for more details. |
|
16 |
|
17 You should have received a copy of the GNU General Public License |
|
18 along with Octave; see the file COPYING. If not, write to the Free |
|
19 Software Foundation, 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA. |
|
20 |
|
21 */ |
|
22 |
|
23 #ifdef HAVE_CONFIG_H |
|
24 #include <config.h> |
|
25 #endif |
|
26 |
|
27 #include "Range.h" |
3220
|
28 #include "CColVector.h" |
|
29 #include "CMatrix.h" |
|
30 #include "dRowVector.h" |
3146
|
31 #include "dMatrix.h" |
|
32 #include "f77-fcn.h" |
|
33 #include "lo-error.h" |
3220
|
34 #include "lo-ieee.h" |
|
35 #include "lo-specfun.h" |
3146
|
36 #include "mx-inlines.cc" |
|
37 |
4064
|
38 #ifndef M_PI |
|
39 #define M_PI 3.14159265358979323846 |
|
40 #endif |
|
41 |
3146
|
42 extern "C" |
|
43 { |
3887
|
44 int F77_FUNC (zbesj, ZBESJ) (const double&, const double&, |
4062
|
45 const double&, const int&, const int&, |
|
46 double*, double*, int&, int&); |
3146
|
47 |
3887
|
48 int F77_FUNC (zbesy, ZBESY) (const double&, const double&, |
4062
|
49 const double&, const int&, const int&, |
|
50 double*, double*, int&, |
|
51 double*, double*, int&); |
3220
|
52 |
3887
|
53 int F77_FUNC (zbesi, ZBESI) (const double&, const double&, |
4062
|
54 const double&, const int&, const int&, |
|
55 double*, double*, int&, int&); |
3146
|
56 |
3887
|
57 int F77_FUNC (zbesk, ZBESK) (const double&, const double&, |
4062
|
58 const double&, const int&, const int&, |
|
59 double*, double*, int&, int&); |
3220
|
60 |
3887
|
61 int F77_FUNC (zbesh, ZBESH) (const double&, const double&, |
4062
|
62 const double&, const int&, const int&, |
|
63 const int&, double*, double*, int&, int&); |
3146
|
64 |
3887
|
65 int F77_FUNC (zairy, ZAIRY) (const double&, const double&, |
4062
|
66 const int&, const int&, |
|
67 double&, double&, int&, int&); |
3220
|
68 |
3887
|
69 int F77_FUNC (zbiry, ZBIRY) (const double&, const double&, |
4062
|
70 const int&, const int&, |
|
71 double&, double&, int&); |
3146
|
72 |
3887
|
73 int F77_FUNC (xdacosh, XDACOSH) (const double&, double&); |
3146
|
74 |
3887
|
75 int F77_FUNC (xdasinh, XDASINH) (const double&, double&); |
3146
|
76 |
3887
|
77 int F77_FUNC (xdatanh, XDATANH) (const double&, double&); |
3146
|
78 |
3887
|
79 int F77_FUNC (xderf, XDERF) (const double&, double&); |
3146
|
80 |
3887
|
81 int F77_FUNC (xderfc, XDERFC) (const double&, double&); |
3146
|
82 |
3887
|
83 int F77_FUNC (xdbetai, XDBETAI) (const double&, const double&, |
4062
|
84 const double&, double&); |
3146
|
85 |
3887
|
86 int F77_FUNC (xdgamma, XDGAMMA) (const double&, double&); |
3146
|
87 |
4004
|
88 int F77_FUNC (xgammainc, XGAMMAINC) (const double&, const double&, double&); |
3146
|
89 |
3887
|
90 int F77_FUNC (dlgams, DLGAMS) (const double&, double&, double&); |
3146
|
91 } |
|
92 |
|
93 #if !defined (HAVE_ACOSH) |
|
94 double |
|
95 acosh (double x) |
|
96 { |
|
97 double retval; |
4180
|
98 F77_FUNC (xdacosh, XDACOSH) (x, retval); |
3146
|
99 return retval; |
|
100 } |
|
101 #endif |
|
102 |
|
103 #if !defined (HAVE_ASINH) |
|
104 double |
|
105 asinh (double x) |
|
106 { |
|
107 double retval; |
4180
|
108 F77_FUNC (xdasinh, XDASINH) (x, retval); |
3146
|
109 return retval; |
|
110 } |
|
111 #endif |
|
112 |
|
113 #if !defined (HAVE_ATANH) |
|
114 double |
|
115 atanh (double x) |
|
116 { |
|
117 double retval; |
4180
|
118 F77_FUNC (xdatanh, XDATANH) (x, retval); |
3146
|
119 return retval; |
|
120 } |
|
121 #endif |
|
122 |
|
123 #if !defined (HAVE_ERF) |
|
124 double |
|
125 erf (double x) |
|
126 { |
|
127 double retval; |
4180
|
128 F77_FUNC (xderf, XDERF) (x, retval); |
3146
|
129 return retval; |
|
130 } |
|
131 #endif |
|
132 |
|
133 #if !defined (HAVE_ERFC) |
|
134 double |
|
135 erfc (double x) |
|
136 { |
|
137 double retval; |
4180
|
138 F77_FUNC (xderfc, XDERFC) (x, retval); |
3146
|
139 return retval; |
|
140 } |
|
141 #endif |
|
142 |
|
143 double |
3156
|
144 xgamma (double x) |
3146
|
145 { |
3156
|
146 double result; |
4180
|
147 F77_FUNC (xdgamma, XDGAMMA) (x, result); |
3156
|
148 return result; |
3146
|
149 } |
|
150 |
|
151 double |
3156
|
152 xlgamma (double x) |
3146
|
153 { |
3156
|
154 double result; |
3146
|
155 double sgngam; |
4180
|
156 F77_FUNC (dlgams, DLGAMS) (x, result, sgngam); |
3156
|
157 return result; |
3146
|
158 } |
|
159 |
3220
|
160 static inline Complex |
|
161 zbesj (const Complex& z, double alpha, int kode, int& ierr); |
|
162 |
|
163 static inline Complex |
|
164 zbesy (const Complex& z, double alpha, int kode, int& ierr); |
|
165 |
|
166 static inline Complex |
|
167 zbesi (const Complex& z, double alpha, int kode, int& ierr); |
|
168 |
|
169 static inline Complex |
|
170 zbesk (const Complex& z, double alpha, int kode, int& ierr); |
|
171 |
|
172 static inline Complex |
|
173 zbesh1 (const Complex& z, double alpha, int kode, int& ierr); |
|
174 |
|
175 static inline Complex |
|
176 zbesh2 (const Complex& z, double alpha, int kode, int& ierr); |
|
177 |
|
178 static inline Complex |
|
179 bessel_return_value (const Complex& val, int ierr) |
3146
|
180 { |
3220
|
181 static const Complex inf_val = Complex (octave_Inf, octave_Inf); |
|
182 static const Complex nan_val = Complex (octave_NaN, octave_NaN); |
|
183 |
|
184 Complex retval; |
|
185 |
|
186 switch (ierr) |
|
187 { |
|
188 case 0: |
|
189 case 3: |
|
190 retval = val; |
|
191 break; |
|
192 |
|
193 case 2: |
|
194 retval = inf_val; |
|
195 break; |
|
196 |
|
197 default: |
|
198 retval = nan_val; |
|
199 break; |
|
200 } |
|
201 |
3146
|
202 return retval; |
|
203 } |
|
204 |
3220
|
205 static inline Complex |
|
206 zbesj (const Complex& z, double alpha, int kode, int& ierr) |
3146
|
207 { |
3220
|
208 Complex retval; |
|
209 |
|
210 if (alpha >= 0.0) |
|
211 { |
|
212 double yr = 0.0; |
|
213 double yi = 0.0; |
|
214 |
|
215 int nz; |
|
216 |
|
217 double zr = z.real (); |
|
218 double zi = z.imag (); |
|
219 |
3887
|
220 F77_FUNC (zbesj, ZBESJ) (zr, zi, alpha, kode, 1, &yr, &yi, nz, ierr); |
3220
|
221 |
|
222 if (zi == 0.0 && zr > 0.0) |
|
223 yi = 0.0; |
|
224 |
|
225 retval = bessel_return_value (Complex (yr, yi), ierr); |
|
226 } |
|
227 else |
|
228 { |
|
229 alpha = -alpha; |
|
230 |
|
231 Complex tmp = cos (M_PI * alpha) * zbesj (z, alpha, kode, ierr); |
|
232 |
|
233 if (ierr == 0 || ierr == 3) |
|
234 { |
|
235 tmp -= sin (M_PI * alpha) * zbesy (z, alpha, kode, ierr); |
|
236 |
|
237 retval = bessel_return_value (tmp, ierr); |
|
238 } |
|
239 else |
|
240 retval = Complex (octave_NaN, octave_NaN); |
|
241 } |
|
242 |
3146
|
243 return retval; |
|
244 } |
|
245 |
3220
|
246 static inline Complex |
|
247 zbesy (const Complex& z, double alpha, int kode, int& ierr) |
3146
|
248 { |
3220
|
249 Complex retval; |
3146
|
250 |
|
251 if (alpha >= 0.0) |
|
252 { |
3220
|
253 double yr = 0.0; |
|
254 double yi = 0.0; |
|
255 |
|
256 int nz; |
|
257 |
|
258 double wr, wi; |
3146
|
259 |
3220
|
260 double zr = z.real (); |
|
261 double zi = z.imag (); |
|
262 |
|
263 ierr = 0; |
|
264 |
|
265 if (zr == 0.0 && zi == 0.0) |
3146
|
266 { |
3220
|
267 yr = -octave_Inf; |
|
268 yi = 0.0; |
|
269 } |
|
270 else |
|
271 { |
3887
|
272 F77_FUNC (zbesy, ZBESY) (zr, zi, alpha, kode, 1, &yr, &yi, nz, |
3220
|
273 &wr, &wi, ierr); |
|
274 |
|
275 if (zi == 0.0 && zr > 0.0) |
|
276 yi = 0.0; |
3146
|
277 } |
|
278 |
3220
|
279 return bessel_return_value (Complex (yr, yi), ierr); |
|
280 } |
|
281 else |
|
282 { |
|
283 alpha = -alpha; |
3146
|
284 |
3220
|
285 Complex tmp = cos (M_PI * alpha) * zbesy (z, alpha, kode, ierr); |
3146
|
286 |
3220
|
287 if (ierr == 0 || ierr == 3) |
3146
|
288 { |
3220
|
289 tmp += sin (M_PI * alpha) * zbesj (z, alpha, kode, ierr); |
|
290 |
|
291 retval = bessel_return_value (tmp, ierr); |
|
292 } |
|
293 else |
|
294 retval = Complex (octave_NaN, octave_NaN); |
|
295 } |
|
296 |
|
297 return retval; |
|
298 } |
|
299 |
|
300 static inline Complex |
|
301 zbesi (const Complex& z, double alpha, int kode, int& ierr) |
|
302 { |
|
303 Complex retval; |
3146
|
304 |
3220
|
305 if (alpha >= 0.0) |
|
306 { |
|
307 double yr = 0.0; |
|
308 double yi = 0.0; |
|
309 |
|
310 int nz; |
3146
|
311 |
3220
|
312 double zr = z.real (); |
|
313 double zi = z.imag (); |
|
314 |
3887
|
315 F77_FUNC (zbesi, ZBESI) (zr, zi, alpha, kode, 1, &yr, &yi, nz, ierr); |
3146
|
316 |
3220
|
317 if (zi == 0.0 && zr > 0.0) |
|
318 yi = 0.0; |
|
319 |
|
320 retval = bessel_return_value (Complex (yr, yi), ierr); |
3146
|
321 } |
|
322 else |
3220
|
323 { |
|
324 alpha = -alpha; |
|
325 |
|
326 Complex tmp = zbesi (z, alpha, kode, ierr); |
|
327 |
|
328 if (ierr == 0 || ierr == 3) |
|
329 { |
|
330 tmp += (2.0 / M_PI) * sin (M_PI * alpha) |
|
331 * zbesk (z, alpha, kode, ierr); |
|
332 |
|
333 retval = bessel_return_value (tmp, ierr); |
|
334 } |
|
335 else |
|
336 retval = Complex (octave_NaN, octave_NaN); |
|
337 } |
|
338 |
|
339 return retval; |
|
340 } |
|
341 |
|
342 static inline Complex |
|
343 zbesk (const Complex& z, double alpha, int kode, int& ierr) |
|
344 { |
|
345 Complex retval; |
|
346 |
|
347 if (alpha >= 0.0) |
|
348 { |
|
349 double yr = 0.0; |
|
350 double yi = 0.0; |
|
351 |
|
352 int nz; |
|
353 |
|
354 double zr = z.real (); |
|
355 double zi = z.imag (); |
|
356 |
|
357 ierr = 0; |
|
358 |
|
359 if (zr == 0.0 && zi == 0.0) |
|
360 { |
|
361 yr = octave_Inf; |
|
362 yi = 0.0; |
|
363 } |
|
364 else |
|
365 { |
3887
|
366 F77_FUNC (zbesk, ZBESK) (zr, zi, alpha, kode, 1, &yr, &yi, nz, ierr); |
3220
|
367 |
|
368 if (zi == 0.0 && zr > 0.0) |
|
369 yi = 0.0; |
|
370 } |
|
371 |
|
372 retval = bessel_return_value (Complex (yr, yi), ierr); |
|
373 } |
|
374 else |
|
375 { |
|
376 Complex tmp = zbesk (z, -alpha, kode, ierr); |
|
377 |
|
378 retval = bessel_return_value (tmp, ierr); |
|
379 } |
3146
|
380 |
|
381 return retval; |
|
382 } |
|
383 |
3220
|
384 static inline Complex |
|
385 zbesh1 (const Complex& z, double alpha, int kode, int& ierr) |
3146
|
386 { |
3220
|
387 Complex retval; |
3146
|
388 |
3220
|
389 if (alpha >= 0.0) |
3146
|
390 { |
3220
|
391 double yr = 0.0; |
|
392 double yi = 0.0; |
|
393 |
|
394 int nz; |
|
395 |
|
396 double zr = z.real (); |
|
397 double zi = z.imag (); |
3146
|
398 |
3887
|
399 F77_FUNC (zbesh, ZBESH) (zr, zi, alpha, kode, 1, 1, &yr, &yi, nz, ierr); |
3146
|
400 |
3220
|
401 retval = bessel_return_value (Complex (yr, yi), ierr); |
|
402 } |
|
403 else |
|
404 { |
|
405 alpha = -alpha; |
|
406 |
|
407 static const Complex eye = Complex (0.0, 1.0); |
3146
|
408 |
3220
|
409 Complex tmp = exp (M_PI * alpha * eye) * zbesh1 (z, alpha, kode, ierr); |
3146
|
410 |
3220
|
411 retval = bessel_return_value (tmp, ierr); |
|
412 } |
3146
|
413 |
3220
|
414 return retval; |
|
415 } |
3146
|
416 |
3220
|
417 static inline Complex |
|
418 zbesh2 (const Complex& z, double alpha, int kode, int& ierr) |
|
419 { |
|
420 Complex retval; |
3146
|
421 |
3220
|
422 if (alpha >= 0.0) |
|
423 { |
|
424 double yr = 0.0; |
|
425 double yi = 0.0; |
|
426 |
|
427 int nz; |
3146
|
428 |
3220
|
429 double zr = z.real (); |
|
430 double zi = z.imag (); |
3146
|
431 |
3887
|
432 F77_FUNC (zbesh, ZBESH) (zr, zi, alpha, kode, 2, 1, &yr, &yi, nz, ierr); |
3220
|
433 |
|
434 retval = bessel_return_value (Complex (yr, yi), ierr); |
3146
|
435 } |
|
436 else |
3220
|
437 { |
|
438 alpha = -alpha; |
|
439 |
|
440 static const Complex eye = Complex (0.0, 1.0); |
|
441 |
|
442 Complex tmp = exp (-M_PI * alpha * eye) * zbesh2 (z, alpha, kode, ierr); |
|
443 |
|
444 retval = bessel_return_value (tmp, ierr); |
|
445 } |
|
446 |
|
447 return retval; |
|
448 } |
|
449 |
|
450 typedef Complex (*fptr) (const Complex&, double, int, int&); |
|
451 |
|
452 static inline Complex |
|
453 do_bessel (fptr f, const char *, double alpha, const Complex& x, |
|
454 bool scaled, int& ierr) |
|
455 { |
|
456 Complex retval; |
|
457 |
|
458 retval = f (x, alpha, (scaled ? 2 : 1), ierr); |
|
459 |
|
460 return retval; |
|
461 } |
|
462 |
|
463 static inline ComplexMatrix |
|
464 do_bessel (fptr f, const char *, double alpha, const ComplexMatrix& x, |
|
465 bool scaled, Array2<int>& ierr) |
|
466 { |
|
467 int nr = x.rows (); |
|
468 int nc = x.cols (); |
|
469 |
|
470 ComplexMatrix retval (nr, nc); |
|
471 |
|
472 ierr.resize (nr, nc); |
|
473 |
|
474 for (int j = 0; j < nc; j++) |
|
475 for (int i = 0; i < nr; i++) |
|
476 retval(i,j) = f (x(i,j), alpha, (scaled ? 2 : 1), ierr(i,j)); |
|
477 |
|
478 return retval; |
|
479 } |
|
480 |
|
481 static inline ComplexMatrix |
|
482 do_bessel (fptr f, const char *, const Matrix& alpha, const Complex& x, |
|
483 bool scaled, Array2<int>& ierr) |
|
484 { |
|
485 int nr = alpha.rows (); |
|
486 int nc = alpha.cols (); |
|
487 |
|
488 ComplexMatrix retval (nr, nc); |
|
489 |
|
490 ierr.resize (nr, nc); |
|
491 |
|
492 for (int j = 0; j < nc; j++) |
|
493 for (int i = 0; i < nr; i++) |
|
494 retval(i,j) = f (x, alpha(i,j), (scaled ? 2 : 1), ierr(i,j)); |
3146
|
495 |
|
496 return retval; |
|
497 } |
|
498 |
3220
|
499 static inline ComplexMatrix |
|
500 do_bessel (fptr f, const char *fn, const Matrix& alpha, |
|
501 const ComplexMatrix& x, bool scaled, Array2<int>& ierr) |
3146
|
502 { |
3220
|
503 ComplexMatrix retval; |
|
504 |
|
505 int x_nr = x.rows (); |
|
506 int x_nc = x.cols (); |
|
507 |
|
508 int alpha_nr = alpha.rows (); |
|
509 int alpha_nc = alpha.cols (); |
|
510 |
|
511 if (x_nr == alpha_nr && x_nc == alpha_nc) |
|
512 { |
|
513 int nr = x_nr; |
|
514 int nc = x_nc; |
|
515 |
|
516 retval.resize (nr, nc); |
|
517 |
|
518 ierr.resize (nr, nc); |
|
519 |
|
520 for (int j = 0; j < nc; j++) |
|
521 for (int i = 0; i < nr; i++) |
|
522 retval(i,j) = f (x(i,j), alpha(i,j), (scaled ? 2 : 1), ierr(i,j)); |
|
523 } |
|
524 else |
|
525 (*current_liboctave_error_handler) |
|
526 ("%s: the sizes of alpha and x must conform", fn); |
|
527 |
|
528 return retval; |
3146
|
529 } |
|
530 |
3220
|
531 static inline ComplexMatrix |
|
532 do_bessel (fptr f, const char *, const RowVector& alpha, |
|
533 const ComplexColumnVector& x, bool scaled, Array2<int>& ierr) |
3146
|
534 { |
3220
|
535 int nr = x.length (); |
|
536 int nc = alpha.length (); |
|
537 |
|
538 ComplexMatrix retval (nr, nc); |
3146
|
539 |
3220
|
540 ierr.resize (nr, nc); |
|
541 |
|
542 for (int j = 0; j < nc; j++) |
|
543 for (int i = 0; i < nr; i++) |
|
544 retval(i,j) = f (x(i), alpha(j), (scaled ? 2 : 1), ierr(i,j)); |
|
545 |
|
546 return retval; |
3146
|
547 } |
|
548 |
3220
|
549 #define SS_BESSEL(name, fcn) \ |
|
550 Complex \ |
|
551 name (double alpha, const Complex& x, bool scaled, int& ierr) \ |
|
552 { \ |
|
553 return do_bessel (fcn, #name, alpha, x, scaled, ierr); \ |
|
554 } |
|
555 |
|
556 #define SM_BESSEL(name, fcn) \ |
|
557 ComplexMatrix \ |
|
558 name (double alpha, const ComplexMatrix& x, bool scaled, \ |
|
559 Array2<int>& ierr) \ |
|
560 { \ |
|
561 return do_bessel (fcn, #name, alpha, x, scaled, ierr); \ |
|
562 } |
|
563 |
|
564 #define MS_BESSEL(name, fcn) \ |
|
565 ComplexMatrix \ |
|
566 name (const Matrix& alpha, const Complex& x, bool scaled, \ |
|
567 Array2<int>& ierr) \ |
|
568 { \ |
|
569 return do_bessel (fcn, #name, alpha, x, scaled, ierr); \ |
|
570 } |
|
571 |
|
572 #define MM_BESSEL(name, fcn) \ |
|
573 ComplexMatrix \ |
|
574 name (const Matrix& alpha, const ComplexMatrix& x, bool scaled, \ |
|
575 Array2<int>& ierr) \ |
|
576 { \ |
|
577 return do_bessel (fcn, #name, alpha, x, scaled, ierr); \ |
|
578 } |
|
579 |
|
580 #define RC_BESSEL(name, fcn) \ |
|
581 ComplexMatrix \ |
|
582 name (const RowVector& alpha, const ComplexColumnVector& x, bool scaled, \ |
|
583 Array2<int>& ierr) \ |
|
584 { \ |
|
585 return do_bessel (fcn, #name, alpha, x, scaled, ierr); \ |
|
586 } |
|
587 |
|
588 #define ALL_BESSEL(name, fcn) \ |
|
589 SS_BESSEL (name, fcn) \ |
|
590 SM_BESSEL (name, fcn) \ |
|
591 MS_BESSEL (name, fcn) \ |
|
592 MM_BESSEL (name, fcn) \ |
|
593 RC_BESSEL (name, fcn) |
|
594 |
|
595 ALL_BESSEL (besselj, zbesj) |
|
596 ALL_BESSEL (bessely, zbesy) |
|
597 ALL_BESSEL (besseli, zbesi) |
|
598 ALL_BESSEL (besselk, zbesk) |
|
599 ALL_BESSEL (besselh1, zbesh1) |
|
600 ALL_BESSEL (besselh2, zbesh2) |
|
601 |
|
602 Complex |
|
603 airy (const Complex& z, bool deriv, bool scaled, int& ierr) |
3146
|
604 { |
3220
|
605 double ar = 0.0; |
|
606 double ai = 0.0; |
|
607 |
|
608 int nz; |
|
609 |
|
610 double zr = z.real (); |
|
611 double zi = z.imag (); |
3146
|
612 |
3220
|
613 int id = deriv ? 1 : 0; |
|
614 |
|
615 int kode = scaled ? 2 : 1; |
|
616 |
3887
|
617 F77_FUNC (zairy, ZAIRY) (zr, zi, id, kode, ar, ai, nz, ierr); |
3220
|
618 |
3225
|
619 if (zi == 0.0 && (! scaled || zr > 0.0)) |
|
620 ai = 0.0; |
|
621 |
3220
|
622 return bessel_return_value (Complex (ar, ai), ierr); |
3146
|
623 } |
|
624 |
3220
|
625 Complex |
|
626 biry (const Complex& z, bool deriv, bool scaled, int& ierr) |
3146
|
627 { |
3220
|
628 double ar = 0.0; |
|
629 double ai = 0.0; |
|
630 |
|
631 double zr = z.real (); |
|
632 double zi = z.imag (); |
|
633 |
|
634 int id = deriv ? 1 : 0; |
|
635 |
|
636 int kode = scaled ? 2 : 1; |
|
637 |
3887
|
638 F77_FUNC (zbiry, ZBIRY) (zr, zi, id, kode, ar, ai, ierr); |
3220
|
639 |
3225
|
640 if (zi == 0.0 && (! scaled || zr > 0.0)) |
|
641 ai = 0.0; |
|
642 |
3220
|
643 return bessel_return_value (Complex (ar, ai), ierr); |
3146
|
644 } |
|
645 |
3220
|
646 ComplexMatrix |
|
647 airy (const ComplexMatrix& z, bool deriv, bool scaled, Array2<int>& ierr) |
3146
|
648 { |
3220
|
649 int nr = z.rows (); |
|
650 int nc = z.cols (); |
|
651 |
|
652 ComplexMatrix retval (nr, nc); |
|
653 |
|
654 ierr.resize (nr, nc); |
|
655 |
|
656 for (int j = 0; j < nc; j++) |
|
657 for (int i = 0; i < nr; i++) |
|
658 retval(i,j) = airy (z(i,j), deriv, scaled, ierr(i,j)); |
|
659 |
|
660 return retval; |
3146
|
661 } |
|
662 |
3220
|
663 ComplexMatrix |
|
664 biry (const ComplexMatrix& z, bool deriv, bool scaled, Array2<int>& ierr) |
3146
|
665 { |
3220
|
666 int nr = z.rows (); |
|
667 int nc = z.cols (); |
|
668 |
|
669 ComplexMatrix retval (nr, nc); |
|
670 |
|
671 ierr.resize (nr, nc); |
|
672 |
|
673 for (int j = 0; j < nc; j++) |
|
674 for (int i = 0; i < nr; i++) |
|
675 retval(i,j) = biry (z(i,j), deriv, scaled, ierr(i,j)); |
|
676 |
|
677 return retval; |
3146
|
678 } |
|
679 |
|
680 static void |
|
681 gripe_betainc_nonconformant (int r1, int c1, int r2, int c2, int r3, |
|
682 int c3) |
|
683 { |
|
684 (*current_liboctave_error_handler) |
|
685 ("betainc: nonconformant arguments (x is %dx%d, a is %dx%d, b is %dx%d)", |
|
686 r1, c1, r2, c2, r3, c3); |
|
687 } |
|
688 |
|
689 double |
|
690 betainc (double x, double a, double b) |
|
691 { |
|
692 double retval; |
4180
|
693 F77_FUNC (xdbetai, XDBETAI) (x, a, b, retval); |
3146
|
694 return retval; |
|
695 } |
|
696 |
|
697 Matrix |
|
698 betainc (double x, double a, const Matrix& b) |
|
699 { |
|
700 int nr = b.rows (); |
|
701 int nc = b.cols (); |
|
702 |
|
703 Matrix retval (nr, nc); |
|
704 |
|
705 for (int j = 0; j < nc; j++) |
|
706 for (int i = 0; i < nr; i++) |
|
707 retval(i,j) = betainc (x, a, b(i,j)); |
|
708 |
|
709 return retval; |
|
710 } |
|
711 |
|
712 Matrix |
|
713 betainc (double x, const Matrix& a, double b) |
|
714 { |
|
715 int nr = a.rows (); |
|
716 int nc = a.cols (); |
|
717 |
|
718 Matrix retval (nr, nc); |
|
719 |
|
720 for (int j = 0; j < nc; j++) |
|
721 for (int i = 0; i < nr; i++) |
|
722 retval(i,j) = betainc (x, a(i,j), b); |
|
723 |
|
724 return retval; |
|
725 } |
|
726 |
|
727 Matrix |
|
728 betainc (double x, const Matrix& a, const Matrix& b) |
|
729 { |
|
730 Matrix retval; |
|
731 |
|
732 int a_nr = a.rows (); |
|
733 int a_nc = a.cols (); |
|
734 |
|
735 int b_nr = b.rows (); |
|
736 int b_nc = b.cols (); |
|
737 |
|
738 if (a_nr == b_nr && a_nc == b_nc) |
|
739 { |
|
740 retval.resize (a_nr, a_nc); |
|
741 |
|
742 for (int j = 0; j < a_nc; j++) |
|
743 for (int i = 0; i < a_nr; i++) |
|
744 retval(i,j) = betainc (x, a(i,j), b(i,j)); |
|
745 } |
|
746 else |
|
747 gripe_betainc_nonconformant (1, 1, a_nr, a_nc, b_nr, b_nc); |
|
748 |
|
749 return retval; |
|
750 } |
|
751 |
|
752 Matrix |
|
753 betainc (const Matrix& x, double a, double b) |
|
754 { |
|
755 int nr = x.rows (); |
|
756 int nc = x.cols (); |
|
757 |
|
758 Matrix retval (nr, nc); |
|
759 |
|
760 for (int j = 0; j < nc; j++) |
|
761 for (int i = 0; i < nr; i++) |
|
762 retval(i,j) = betainc (x(i,j), a, b); |
|
763 |
|
764 return retval; |
|
765 } |
|
766 |
|
767 Matrix |
|
768 betainc (const Matrix& x, double a, const Matrix& b) |
|
769 { |
|
770 Matrix retval; |
|
771 |
|
772 int nr = x.rows (); |
|
773 int nc = x.cols (); |
|
774 |
|
775 int b_nr = b.rows (); |
|
776 int b_nc = b.cols (); |
|
777 |
|
778 if (nr == b_nr && nc == b_nc) |
|
779 { |
|
780 retval.resize (nr, nc); |
|
781 |
|
782 for (int j = 0; j < nc; j++) |
|
783 for (int i = 0; i < nr; i++) |
|
784 retval(i,j) = betainc (x(i,j), a, b(i,j)); |
|
785 } |
|
786 else |
|
787 gripe_betainc_nonconformant (nr, nc, 1, 1, b_nr, b_nc); |
|
788 |
|
789 return retval; |
|
790 } |
|
791 |
|
792 Matrix |
|
793 betainc (const Matrix& x, const Matrix& a, double b) |
|
794 { |
|
795 Matrix retval; |
|
796 |
|
797 int nr = x.rows (); |
|
798 int nc = x.cols (); |
|
799 |
|
800 int a_nr = a.rows (); |
|
801 int a_nc = a.cols (); |
|
802 |
|
803 if (nr == a_nr && nc == a_nc) |
|
804 { |
|
805 retval.resize (nr, nc); |
|
806 |
|
807 for (int j = 0; j < nc; j++) |
|
808 for (int i = 0; i < nr; i++) |
|
809 retval(i,j) = betainc (x(i,j), a(i,j), b); |
|
810 } |
|
811 else |
|
812 gripe_betainc_nonconformant (nr, nc, a_nr, a_nc, 1, 1); |
|
813 |
|
814 return retval; |
|
815 } |
|
816 |
|
817 Matrix |
|
818 betainc (const Matrix& x, const Matrix& a, const Matrix& b) |
|
819 { |
|
820 Matrix retval; |
|
821 |
|
822 int nr = x.rows (); |
|
823 int nc = x.cols (); |
|
824 |
|
825 int a_nr = a.rows (); |
|
826 int a_nc = a.cols (); |
|
827 |
|
828 int b_nr = b.rows (); |
|
829 int b_nc = b.cols (); |
|
830 |
|
831 if (nr == a_nr && nr == b_nr && nc == a_nc && nc == b_nc) |
|
832 { |
|
833 retval.resize (nr, nc); |
|
834 |
|
835 for (int j = 0; j < nc; j++) |
|
836 for (int i = 0; i < nr; i++) |
|
837 retval(i,j) = betainc (x(i,j), a(i,j), b(i,j)); |
|
838 } |
|
839 else |
|
840 gripe_betainc_nonconformant (nr, nc, a_nr, a_nc, b_nr, b_nc); |
|
841 |
|
842 return retval; |
|
843 } |
|
844 |
3164
|
845 // XXX FIXME XXX -- there is still room for improvement here... |
|
846 |
3146
|
847 double |
4004
|
848 gammainc (double x, double a, bool& err) |
3146
|
849 { |
|
850 double retval; |
3164
|
851 |
4004
|
852 err = false; |
3164
|
853 |
4004
|
854 if (a < 0.0 || x < 0.0) |
|
855 { |
|
856 (*current_liboctave_error_handler) |
|
857 ("gammainc: A and X must be non-negative"); |
|
858 |
|
859 err = true; |
|
860 } |
|
861 else |
4180
|
862 F77_FUNC (xgammainc, XGAMMAINC) (a, x, retval); |
3164
|
863 |
3146
|
864 return retval; |
|
865 } |
|
866 |
|
867 Matrix |
|
868 gammainc (double x, const Matrix& a) |
|
869 { |
|
870 int nr = a.rows (); |
|
871 int nc = a.cols (); |
|
872 |
4004
|
873 Matrix result (nr, nc); |
|
874 Matrix retval; |
|
875 |
|
876 bool err; |
3146
|
877 |
|
878 for (int j = 0; j < nc; j++) |
|
879 for (int i = 0; i < nr; i++) |
4004
|
880 { |
|
881 result(i,j) = gammainc (x, a(i,j), err); |
|
882 |
|
883 if (err) |
|
884 goto done; |
|
885 } |
|
886 |
|
887 retval = result; |
|
888 |
|
889 done: |
3146
|
890 |
|
891 return retval; |
|
892 } |
|
893 |
|
894 Matrix |
|
895 gammainc (const Matrix& x, double a) |
|
896 { |
|
897 int nr = x.rows (); |
|
898 int nc = x.cols (); |
|
899 |
4004
|
900 Matrix result (nr, nc); |
|
901 Matrix retval; |
|
902 |
|
903 bool err; |
3146
|
904 |
|
905 for (int j = 0; j < nc; j++) |
|
906 for (int i = 0; i < nr; i++) |
4004
|
907 { |
|
908 result(i,j) = gammainc (x(i,j), a, err); |
|
909 |
|
910 if (err) |
|
911 goto done; |
|
912 } |
|
913 |
|
914 retval = result; |
|
915 |
|
916 done: |
3146
|
917 |
|
918 return retval; |
|
919 } |
|
920 |
|
921 Matrix |
|
922 gammainc (const Matrix& x, const Matrix& a) |
|
923 { |
4004
|
924 Matrix result; |
3146
|
925 Matrix retval; |
|
926 |
|
927 int nr = x.rows (); |
|
928 int nc = x.cols (); |
|
929 |
|
930 int a_nr = a.rows (); |
|
931 int a_nc = a.cols (); |
|
932 |
|
933 if (nr == a_nr && nc == a_nc) |
|
934 { |
4004
|
935 result.resize (nr, nc); |
|
936 |
|
937 bool err; |
3146
|
938 |
|
939 for (int j = 0; j < nc; j++) |
|
940 for (int i = 0; i < nr; i++) |
4004
|
941 { |
|
942 result(i,j) = gammainc (x(i,j), a(i,j), err); |
|
943 |
|
944 if (err) |
|
945 goto done; |
|
946 } |
|
947 |
|
948 retval = result; |
3146
|
949 } |
|
950 else |
|
951 (*current_liboctave_error_handler) |
|
952 ("gammainc: nonconformant arguments (arg 1 is %dx%d, arg 2 is %dx%d)", |
|
953 nr, nc, a_nr, a_nc); |
|
954 |
4004
|
955 done: |
|
956 |
3146
|
957 return retval; |
|
958 } |
|
959 |
|
960 /* |
|
961 ;;; Local Variables: *** |
|
962 ;;; mode: C++ *** |
|
963 ;;; End: *** |
|
964 */ |