math.h revision 1.59 1 1.59 matt /* $NetBSD: math.h,v 1.59 2013/01/28 23:19:28 matt Exp $ */
2 1.10 cgd
3 1.1 cgd /*
4 1.6 jtc * ====================================================
5 1.6 jtc * Copyright (C) 1993 by Sun Microsystems, Inc. All rights reserved.
6 1.1 cgd *
7 1.6 jtc * Developed at SunPro, a Sun Microsystems, Inc. business.
8 1.6 jtc * Permission to use, copy, modify, and distribute this
9 1.38 junyoung * software is freely granted, provided that this notice
10 1.6 jtc * is preserved.
11 1.6 jtc * ====================================================
12 1.1 cgd */
13 1.1 cgd
14 1.6 jtc /*
15 1.10 cgd * @(#)fdlibm.h 5.1 93/09/24
16 1.6 jtc */
17 1.1 cgd
18 1.6 jtc #ifndef _MATH_H_
19 1.7 cgd #define _MATH_H_
20 1.1 cgd
21 1.21 kleink #include <sys/cdefs.h>
22 1.12 kleink #include <sys/featuretest.h>
23 1.24 simonb
24 1.24 simonb union __float_u {
25 1.24 simonb unsigned char __dummy[sizeof(float)];
26 1.24 simonb float __val;
27 1.24 simonb };
28 1.24 simonb
29 1.24 simonb union __double_u {
30 1.24 simonb unsigned char __dummy[sizeof(double)];
31 1.24 simonb double __val;
32 1.24 simonb };
33 1.24 simonb
34 1.26 thorpej union __long_double_u {
35 1.26 thorpej unsigned char __dummy[sizeof(long double)];
36 1.26 thorpej long double __val;
37 1.26 thorpej };
38 1.26 thorpej
39 1.26 thorpej #include <machine/math.h> /* may use __float_u, __double_u,
40 1.26 thorpej or __long_double_u */
41 1.12 kleink
42 1.29 kleink #ifdef __HAVE_LONG_DOUBLE
43 1.29 kleink #define __fpmacro_unary_floating(__name, __arg0) \
44 1.33 kleink /* LINTED */ \
45 1.29 kleink ((sizeof (__arg0) == sizeof (float)) \
46 1.29 kleink ? __ ## __name ## f (__arg0) \
47 1.29 kleink : (sizeof (__arg0) == sizeof (double)) \
48 1.29 kleink ? __ ## __name ## d (__arg0) \
49 1.29 kleink : __ ## __name ## l (__arg0))
50 1.29 kleink #else
51 1.29 kleink #define __fpmacro_unary_floating(__name, __arg0) \
52 1.33 kleink /* LINTED */ \
53 1.29 kleink ((sizeof (__arg0) == sizeof (float)) \
54 1.29 kleink ? __ ## __name ## f (__arg0) \
55 1.29 kleink : __ ## __name ## d (__arg0))
56 1.30 uwe #endif /* __HAVE_LONG_DOUBLE */
57 1.29 kleink
58 1.1 cgd /*
59 1.6 jtc * ANSI/POSIX
60 1.6 jtc */
61 1.28 kleink /* 7.12#3 HUGE_VAL, HUGELF, HUGE_VALL */
62 1.51 joerg #if __GNUC_PREREQ__(3, 3)
63 1.51 joerg #define HUGE_VAL __builtin_huge_val()
64 1.51 joerg #else
65 1.42 perry extern const union __double_u __infinity;
66 1.24 simonb #define HUGE_VAL __infinity.__val
67 1.51 joerg #endif
68 1.24 simonb
69 1.24 simonb /*
70 1.24 simonb * ISO C99
71 1.24 simonb */
72 1.27 kleink #if !defined(_ANSI_SOURCE) && !defined(_POSIX_C_SOURCE) && \
73 1.27 kleink !defined(_XOPEN_SOURCE) || \
74 1.27 kleink ((__STDC_VERSION__ - 0) >= 199901L) || \
75 1.27 kleink ((_POSIX_C_SOURCE - 0) >= 200112L) || \
76 1.27 kleink ((_XOPEN_SOURCE - 0) >= 600) || \
77 1.27 kleink defined(_ISOC99_SOURCE) || defined(_NETBSD_SOURCE)
78 1.28 kleink /* 7.12#3 HUGE_VAL, HUGELF, HUGE_VALL */
79 1.51 joerg #if __GNUC_PREREQ__(3, 3)
80 1.51 joerg #define HUGE_VALF __builtin_huge_valf()
81 1.51 joerg #define HUGE_VALL __builtin_huge_vall()
82 1.51 joerg #else
83 1.42 perry extern const union __float_u __infinityf;
84 1.27 kleink #define HUGE_VALF __infinityf.__val
85 1.27 kleink
86 1.42 perry extern const union __long_double_u __infinityl;
87 1.27 kleink #define HUGE_VALL __infinityl.__val
88 1.51 joerg #endif
89 1.27 kleink
90 1.28 kleink /* 7.12#4 INFINITY */
91 1.57 matt #if defined(__INFINITY)
92 1.57 matt #define INFINITY __INFINITY /* float constant which overflows */
93 1.57 matt #elif __GNUC_PREREQ__(3, 3)
94 1.51 joerg #define INFINITY __builtin_inff()
95 1.28 kleink #else
96 1.28 kleink #define INFINITY HUGE_VALF /* positive infinity */
97 1.28 kleink #endif /* __INFINITY */
98 1.28 kleink
99 1.28 kleink /* 7.12#5 NAN: a quiet NaN, if supported */
100 1.27 kleink #ifdef __HAVE_NANF
101 1.48 martin #if __GNUC_PREREQ__(3,3)
102 1.48 martin #define NAN __builtin_nanf("")
103 1.48 martin #else
104 1.42 perry extern const union __float_u __nanf;
105 1.24 simonb #define NAN __nanf.__val
106 1.48 martin #endif
107 1.27 kleink #endif /* __HAVE_NANF */
108 1.29 kleink
109 1.29 kleink /* 7.12#6 number classification macros */
110 1.29 kleink #define FP_INFINITE 0x00
111 1.29 kleink #define FP_NAN 0x01
112 1.29 kleink #define FP_NORMAL 0x02
113 1.29 kleink #define FP_SUBNORMAL 0x03
114 1.29 kleink #define FP_ZERO 0x04
115 1.29 kleink /* NetBSD extensions */
116 1.29 kleink #define _FP_LOMD 0x80 /* range for machine-specific classes */
117 1.29 kleink #define _FP_HIMD 0xff
118 1.29 kleink
119 1.27 kleink #endif /* !_ANSI_SOURCE && ... */
120 1.1 cgd
121 1.6 jtc /*
122 1.6 jtc * XOPEN/SVID
123 1.6 jtc */
124 1.25 bjh21 #if defined(_XOPEN_SOURCE) || defined(_NETBSD_SOURCE)
125 1.1 cgd #define M_E 2.7182818284590452354 /* e */
126 1.1 cgd #define M_LOG2E 1.4426950408889634074 /* log 2e */
127 1.1 cgd #define M_LOG10E 0.43429448190325182765 /* log 10e */
128 1.1 cgd #define M_LN2 0.69314718055994530942 /* log e2 */
129 1.1 cgd #define M_LN10 2.30258509299404568402 /* log e10 */
130 1.1 cgd #define M_PI 3.14159265358979323846 /* pi */
131 1.1 cgd #define M_PI_2 1.57079632679489661923 /* pi/2 */
132 1.1 cgd #define M_PI_4 0.78539816339744830962 /* pi/4 */
133 1.1 cgd #define M_1_PI 0.31830988618379067154 /* 1/pi */
134 1.1 cgd #define M_2_PI 0.63661977236758134308 /* 2/pi */
135 1.1 cgd #define M_2_SQRTPI 1.12837916709551257390 /* 2/sqrt(pi) */
136 1.1 cgd #define M_SQRT2 1.41421356237309504880 /* sqrt(2) */
137 1.1 cgd #define M_SQRT1_2 0.70710678118654752440 /* 1/sqrt(2) */
138 1.6 jtc
139 1.6 jtc #define MAXFLOAT ((float)3.40282346638528860e+38)
140 1.6 jtc extern int signgam;
141 1.25 bjh21 #endif /* _XOPEN_SOURCE || _NETBSD_SOURCE */
142 1.6 jtc
143 1.25 bjh21 #if defined(_NETBSD_SOURCE)
144 1.6 jtc enum fdversion {fdlibm_ieee = -1, fdlibm_svid, fdlibm_xopen, fdlibm_posix};
145 1.6 jtc
146 1.6 jtc #define _LIB_VERSION_TYPE enum fdversion
147 1.38 junyoung #define _LIB_VERSION _fdlib_version
148 1.6 jtc
149 1.38 junyoung /* if global variable _LIB_VERSION is not desirable, one may
150 1.38 junyoung * change the following to be a constant by:
151 1.6 jtc * #define _LIB_VERSION_TYPE const enum version
152 1.6 jtc * In that case, after one initializes the value _LIB_VERSION (see
153 1.6 jtc * s_lib_version.c) during compile time, it cannot be modified
154 1.6 jtc * in the middle of a program
155 1.38 junyoung */
156 1.6 jtc extern _LIB_VERSION_TYPE _LIB_VERSION;
157 1.6 jtc
158 1.6 jtc #define _IEEE_ fdlibm_ieee
159 1.6 jtc #define _SVID_ fdlibm_svid
160 1.6 jtc #define _XOPEN_ fdlibm_xopen
161 1.6 jtc #define _POSIX_ fdlibm_posix
162 1.6 jtc
163 1.11 tv #ifndef __cplusplus
164 1.6 jtc struct exception {
165 1.6 jtc int type;
166 1.47 christos const char *name;
167 1.6 jtc double arg1;
168 1.6 jtc double arg2;
169 1.6 jtc double retval;
170 1.6 jtc };
171 1.11 tv #endif
172 1.6 jtc
173 1.6 jtc #define HUGE MAXFLOAT
174 1.6 jtc
175 1.38 junyoung /*
176 1.6 jtc * set X_TLOSS = pi*2**52, which is possibly defined in <values.h>
177 1.6 jtc * (one may replace the following line by "#include <values.h>")
178 1.6 jtc */
179 1.6 jtc
180 1.38 junyoung #define X_TLOSS 1.41484755040568800000e+16
181 1.6 jtc
182 1.6 jtc #define DOMAIN 1
183 1.6 jtc #define SING 2
184 1.6 jtc #define OVERFLOW 3
185 1.6 jtc #define UNDERFLOW 4
186 1.6 jtc #define TLOSS 5
187 1.6 jtc #define PLOSS 6
188 1.6 jtc
189 1.25 bjh21 #endif /* _NETBSD_SOURCE */
190 1.6 jtc
191 1.1 cgd __BEGIN_DECLS
192 1.6 jtc /*
193 1.6 jtc * ANSI/POSIX
194 1.6 jtc */
195 1.40 perry double acos(double);
196 1.40 perry double asin(double);
197 1.40 perry double atan(double);
198 1.40 perry double atan2(double, double);
199 1.40 perry double cos(double);
200 1.40 perry double sin(double);
201 1.40 perry double tan(double);
202 1.40 perry
203 1.40 perry double cosh(double);
204 1.40 perry double sinh(double);
205 1.40 perry double tanh(double);
206 1.40 perry
207 1.40 perry double exp(double);
208 1.50 christos double exp2(double);
209 1.40 perry double frexp(double, int *);
210 1.40 perry double ldexp(double, int);
211 1.40 perry double log(double);
212 1.41 christos double log2(double);
213 1.40 perry double log10(double);
214 1.40 perry double modf(double, double *);
215 1.40 perry
216 1.40 perry double pow(double, double);
217 1.40 perry double sqrt(double);
218 1.40 perry
219 1.40 perry double ceil(double);
220 1.40 perry double fabs(double);
221 1.40 perry double floor(double);
222 1.40 perry double fmod(double, double);
223 1.1 cgd
224 1.25 bjh21 #if defined(_XOPEN_SOURCE) || defined(_NETBSD_SOURCE)
225 1.40 perry double erf(double);
226 1.40 perry double erfc(double);
227 1.40 perry double gamma(double);
228 1.40 perry double hypot(double, double);
229 1.40 perry int finite(double);
230 1.40 perry double j0(double);
231 1.40 perry double j1(double);
232 1.40 perry double jn(int, double);
233 1.40 perry double lgamma(double);
234 1.40 perry double y0(double);
235 1.40 perry double y1(double);
236 1.40 perry double yn(int, double);
237 1.6 jtc
238 1.25 bjh21 #if (_XOPEN_SOURCE - 0) >= 500 || defined(_NETBSD_SOURCE)
239 1.40 perry double acosh(double);
240 1.40 perry double asinh(double);
241 1.40 perry double atanh(double);
242 1.40 perry double cbrt(double);
243 1.40 perry double expm1(double);
244 1.40 perry int ilogb(double);
245 1.40 perry double log1p(double);
246 1.40 perry double logb(double);
247 1.40 perry double nextafter(double, double);
248 1.40 perry double remainder(double, double);
249 1.40 perry double rint(double);
250 1.40 perry double scalb(double, double);
251 1.25 bjh21 #endif /* (_XOPEN_SOURCE - 0) >= 500 || defined(_NETBSD_SOURCE)*/
252 1.25 bjh21 #endif /* _XOPEN_SOURCE || _NETBSD_SOURCE */
253 1.6 jtc
254 1.29 kleink /*
255 1.29 kleink * ISO C99
256 1.29 kleink */
257 1.29 kleink #if !defined(_ANSI_SOURCE) && !defined(_POSIX_C_SOURCE) && \
258 1.29 kleink !defined(_XOPEN_SOURCE) || \
259 1.29 kleink ((__STDC_VERSION__ - 0) >= 199901L) || \
260 1.29 kleink ((_POSIX_C_SOURCE - 0) >= 200112L) || \
261 1.29 kleink ((_XOPEN_SOURCE - 0) >= 600) || \
262 1.29 kleink defined(_ISOC99_SOURCE) || defined(_NETBSD_SOURCE)
263 1.29 kleink /* 7.12.3.1 int fpclassify(real-floating x) */
264 1.29 kleink #define fpclassify(__x) __fpmacro_unary_floating(fpclassify, __x)
265 1.29 kleink
266 1.29 kleink /* 7.12.3.2 int isfinite(real-floating x) */
267 1.29 kleink #define isfinite(__x) __fpmacro_unary_floating(isfinite, __x)
268 1.29 kleink
269 1.29 kleink /* 7.12.3.5 int isnormal(real-floating x) */
270 1.29 kleink #define isnormal(__x) (fpclassify(__x) == FP_NORMAL)
271 1.29 kleink
272 1.29 kleink /* 7.12.3.6 int signbit(real-floating x) */
273 1.29 kleink #define signbit(__x) __fpmacro_unary_floating(signbit, __x)
274 1.29 kleink
275 1.35 drochner /* 7.12.4 trigonometric */
276 1.35 drochner
277 1.40 perry float acosf(float);
278 1.40 perry float asinf(float);
279 1.40 perry float atanf(float);
280 1.40 perry float atan2f(float, float);
281 1.40 perry float cosf(float);
282 1.40 perry float sinf(float);
283 1.40 perry float tanf(float);
284 1.35 drochner
285 1.59 matt long double acosl(long double);
286 1.59 matt long double asinl(long double);
287 1.59 matt long double atanl(long double);
288 1.59 matt long double atan2l(long double, long double);
289 1.59 matt long double cosl(long double);
290 1.59 matt long double sinl(long double);
291 1.59 matt long double tanl(long double);
292 1.59 matt
293 1.35 drochner /* 7.12.5 hyperbolic */
294 1.35 drochner
295 1.40 perry float acoshf(float);
296 1.40 perry float asinhf(float);
297 1.40 perry float atanhf(float);
298 1.40 perry float coshf(float);
299 1.40 perry float sinhf(float);
300 1.40 perry float tanhf(float);
301 1.59 matt long double acoshl(long double);
302 1.59 matt long double asinhl(long double);
303 1.59 matt long double atanhl(long double);
304 1.59 matt long double coshl(long double);
305 1.59 matt long double sinhl(long double);
306 1.59 matt long double tanhl(long double);
307 1.35 drochner
308 1.35 drochner /* 7.12.6 exp / log */
309 1.35 drochner
310 1.40 perry float expf(float);
311 1.50 christos float exp2f(float);
312 1.40 perry float expm1f(float);
313 1.40 perry float frexpf(float, int *);
314 1.40 perry int ilogbf(float);
315 1.40 perry float ldexpf(float, int);
316 1.40 perry float logf(float);
317 1.41 christos float log2f(float);
318 1.40 perry float log10f(float);
319 1.40 perry float log1pf(float);
320 1.40 perry float logbf(float);
321 1.40 perry float modff(float, float *);
322 1.40 perry float scalbnf(float, int);
323 1.59 matt float scalblnf(float, long);
324 1.59 matt
325 1.59 matt long double expl(long double);
326 1.59 matt long double exp2l(long double);
327 1.59 matt long double expm1l(long double);
328 1.59 matt long double frexpl(long double, int *);
329 1.59 matt int ilogbl(long double);
330 1.59 matt long double ldexpl(long double, int);
331 1.59 matt long double logl(long double);
332 1.59 matt long double log2l(long double);
333 1.59 matt long double log10l(long double);
334 1.59 matt long double log1pl(long double);
335 1.59 matt long double logbl(long double);
336 1.59 matt long double modfl(long double, long double *);
337 1.59 matt long double scalbnl(long double, int);
338 1.59 matt long double scalblnl(long double, long);
339 1.59 matt
340 1.35 drochner
341 1.35 drochner /* 7.12.7 power / absolute */
342 1.35 drochner
343 1.40 perry float cbrtf(float);
344 1.40 perry float fabsf(float);
345 1.40 perry float hypotf(float, float);
346 1.40 perry float powf(float, float);
347 1.40 perry float sqrtf(float);
348 1.59 matt long double cbrtl(long double);
349 1.59 matt long double fabsl(long double);
350 1.59 matt long double hypotl(long double, long double);
351 1.59 matt long double powl(long double, long double);
352 1.59 matt long double sqrtl(long double);
353 1.35 drochner
354 1.35 drochner /* 7.12.8 error / gamma */
355 1.35 drochner
356 1.59 matt double tgamma(double);
357 1.40 perry float erff(float);
358 1.40 perry float erfcf(float);
359 1.40 perry float lgammaf(float);
360 1.58 christos float tgammaf(float);
361 1.59 matt long double erfl(long double);
362 1.59 matt long double erfcl(long double);
363 1.59 matt long double lgammal(long double);
364 1.59 matt long double tgammal(long double);
365 1.35 drochner
366 1.35 drochner /* 7.12.9 nearest integer */
367 1.35 drochner
368 1.59 matt /* LONGLONG */
369 1.59 matt long long int llrint(double);
370 1.59 matt long int lround(double);
371 1.59 matt /* LONGLONG */
372 1.59 matt long long int llround(double);
373 1.59 matt long int lrint(double);
374 1.59 matt double round(double);
375 1.59 matt double trunc(double);
376 1.59 matt
377 1.40 perry float ceilf(float);
378 1.40 perry float floorf(float);
379 1.59 matt /* LONGLONG */
380 1.59 matt long long int llrintf(float);
381 1.59 matt long int lroundf(float);
382 1.59 matt /* LONGLONG */
383 1.59 matt long long int llroundf(float);
384 1.59 matt long int lrintf(float);
385 1.40 perry float rintf(float);
386 1.40 perry float roundf(float);
387 1.44 xtraeme float truncf(float);
388 1.59 matt long double ceill(long double);
389 1.59 matt long double floorl(long double);
390 1.36 drochner /* LONGLONG */
391 1.59 matt long long int llrintl(long double);
392 1.59 matt long int lroundl(long double);
393 1.37 drochner /* LONGLONG */
394 1.59 matt long long int llroundl(long double);
395 1.59 matt long int lrintl(long double);
396 1.59 matt long double rintl(long double);
397 1.59 matt long double roundl(long double);
398 1.59 matt long double truncl(long double);
399 1.35 drochner
400 1.35 drochner /* 7.12.10 remainder */
401 1.35 drochner
402 1.40 perry float fmodf(float, float);
403 1.40 perry float remainderf(float, float);
404 1.59 matt long double fmodl(long double, long double);
405 1.59 matt long double remainderl(long double, long double);
406 1.35 drochner
407 1.54 christos /* 7.12.10.3 The remquo functions */
408 1.54 christos double remquo(double, double, int *);
409 1.54 christos float remquof(float, float, int *);
410 1.59 matt long double remquol(long double, long double, int *);
411 1.54 christos
412 1.45 drochner /* 7.12.11 manipulation */
413 1.35 drochner
414 1.59 matt double nan(const char *);
415 1.59 matt double nearbyint(double);
416 1.59 matt double nexttoward(double, long double);
417 1.40 perry float copysignf(float, float);
418 1.59 matt float nanf(const char *);
419 1.59 matt float nearbyintf(float);
420 1.59 matt float nextafterf(float, float);
421 1.59 matt float nexttowardf(float, long double);
422 1.53 christos long double copysignl(long double, long double);
423 1.43 kleink long double nanl(const char *);
424 1.59 matt long double nearbyintl(long double);
425 1.53 christos long double nextafterl(long double, long double);
426 1.59 matt long double nexttowardl(long double, long double);
427 1.35 drochner
428 1.52 dholland /* 7.12.14 comparison */
429 1.45 drochner
430 1.45 drochner #define isunordered(x, y) (isnan(x) || isnan(y))
431 1.45 drochner #define isgreater(x, y) (!isunordered((x), (y)) && (x) > (y))
432 1.45 drochner #define isgreaterequal(x, y) (!isunordered((x), (y)) && (x) >= (y))
433 1.45 drochner #define isless(x, y) (!isunordered((x), (y)) && (x) < (y))
434 1.45 drochner #define islessequal(x, y) (!isunordered((x), (y)) && (x) <= (y))
435 1.45 drochner #define islessgreater(x, y) (!isunordered((x), (y)) && \
436 1.45 drochner ((x) > (y) || (y) > (x)))
437 1.49 christos double fdim(double, double);
438 1.59 matt double fma(double, double, double);
439 1.49 christos double fmax(double, double);
440 1.49 christos double fmin(double, double);
441 1.49 christos float fdimf(float, float);
442 1.59 matt float fmaf(float, float, float);
443 1.49 christos float fmaxf(float, float);
444 1.49 christos float fminf(float, float);
445 1.49 christos long double fdiml(long double, long double);
446 1.59 matt long double fmal(long double, long double, long double);
447 1.49 christos long double fmaxl(long double, long double);
448 1.49 christos long double fminl(long double, long double);
449 1.35 drochner
450 1.29 kleink #endif /* !_ANSI_SOURCE && ... */
451 1.29 kleink
452 1.34 kleink #if !defined(_ANSI_SOURCE) && !defined(_POSIX_C_SOURCE) || \
453 1.34 kleink !defined(_XOPEN_SOURCE) || \
454 1.34 kleink ((__STDC_VERSION__ - 0) >= 199901L) || \
455 1.34 kleink ((_POSIX_C_SOURCE - 0) >= 200112L) || \
456 1.34 kleink defined(_ISOC99_SOURCE) || defined(_NETBSD_SOURCE)
457 1.34 kleink /* 7.12.3.3 int isinf(real-floating x) */
458 1.34 kleink #ifdef __isinf
459 1.34 kleink #define isinf(__x) __isinf(__x)
460 1.34 kleink #else
461 1.34 kleink #define isinf(__x) __fpmacro_unary_floating(isinf, __x)
462 1.34 kleink #endif
463 1.34 kleink
464 1.34 kleink /* 7.12.3.4 int isnan(real-floating x) */
465 1.34 kleink #ifdef __isnan
466 1.34 kleink #define isnan(__x) __isnan(__x)
467 1.34 kleink #else
468 1.34 kleink #define isnan(__x) __fpmacro_unary_floating(isnan, __x)
469 1.34 kleink #endif
470 1.34 kleink #endif /* !_ANSI_SOURCE && ... */
471 1.34 kleink
472 1.25 bjh21 #if defined(_NETBSD_SOURCE)
473 1.11 tv #ifndef __cplusplus
474 1.40 perry int matherr(struct exception *);
475 1.11 tv #endif
476 1.6 jtc
477 1.6 jtc /*
478 1.6 jtc * IEEE Test Vector
479 1.6 jtc */
480 1.40 perry double significand(double);
481 1.1 cgd
482 1.6 jtc /*
483 1.6 jtc * Functions callable from C, intended to support IEEE arithmetic.
484 1.6 jtc */
485 1.40 perry double copysign(double, double);
486 1.40 perry double scalbn(double, int);
487 1.59 matt double scalbln(double, long);
488 1.6 jtc
489 1.6 jtc /*
490 1.6 jtc * BSD math library entry points
491 1.6 jtc */
492 1.40 perry double drem(double, double);
493 1.6 jtc
494 1.25 bjh21 #endif /* _NETBSD_SOURCE */
495 1.12 kleink
496 1.25 bjh21 #if defined(_NETBSD_SOURCE) || defined(_REENTRANT)
497 1.6 jtc /*
498 1.6 jtc * Reentrant version of gamma & lgamma; passes signgam back by reference
499 1.6 jtc * as the second argument; user must allocate space for signgam.
500 1.6 jtc */
501 1.40 perry double gamma_r(double, int *);
502 1.40 perry double lgamma_r(double, int *);
503 1.25 bjh21 #endif /* _NETBSD_SOURCE || _REENTRANT */
504 1.9 jtc
505 1.9 jtc
506 1.25 bjh21 #if defined(_NETBSD_SOURCE)
507 1.15 kleink
508 1.9 jtc /* float versions of ANSI/POSIX functions */
509 1.22 simonb
510 1.40 perry float gammaf(float);
511 1.40 perry int isinff(float);
512 1.40 perry int isnanf(float);
513 1.40 perry int finitef(float);
514 1.40 perry float j0f(float);
515 1.40 perry float j1f(float);
516 1.40 perry float jnf(int, float);
517 1.40 perry float y0f(float);
518 1.40 perry float y1f(float);
519 1.40 perry float ynf(int, float);
520 1.22 simonb
521 1.40 perry float scalbf(float, float);
522 1.9 jtc
523 1.9 jtc /*
524 1.9 jtc * float version of IEEE Test Vector
525 1.9 jtc */
526 1.40 perry float significandf(float);
527 1.9 jtc
528 1.9 jtc /*
529 1.9 jtc * float versions of BSD math library entry points
530 1.9 jtc */
531 1.40 perry float dremf(float, float);
532 1.25 bjh21 #endif /* _NETBSD_SOURCE */
533 1.9 jtc
534 1.25 bjh21 #if defined(_NETBSD_SOURCE) || defined(_REENTRANT)
535 1.9 jtc /*
536 1.9 jtc * Float versions of reentrant version of gamma & lgamma; passes
537 1.9 jtc * signgam back by reference as the second argument; user must
538 1.9 jtc * allocate space for signgam.
539 1.9 jtc */
540 1.40 perry float gammaf_r(float, int *);
541 1.40 perry float lgammaf_r(float, int *);
542 1.12 kleink #endif /* !... || _REENTRANT */
543 1.9 jtc
544 1.29 kleink /*
545 1.29 kleink * Library implementation
546 1.29 kleink */
547 1.40 perry int __fpclassifyf(float);
548 1.40 perry int __fpclassifyd(double);
549 1.40 perry int __isfinitef(float);
550 1.40 perry int __isfinited(double);
551 1.40 perry int __isinff(float);
552 1.40 perry int __isinfd(double);
553 1.40 perry int __isnanf(float);
554 1.40 perry int __isnand(double);
555 1.40 perry int __signbitf(float);
556 1.40 perry int __signbitd(double);
557 1.29 kleink
558 1.29 kleink #ifdef __HAVE_LONG_DOUBLE
559 1.40 perry int __fpclassifyl(long double);
560 1.40 perry int __isfinitel(long double);
561 1.40 perry int __isinfl(long double);
562 1.40 perry int __isnanl(long double);
563 1.40 perry int __signbitl(long double);
564 1.29 kleink #endif
565 1.55 joerg
566 1.1 cgd __END_DECLS
567 1.1 cgd
568 1.1 cgd #endif /* _MATH_H_ */
569