remove obstack support
[uclibc-ng.git] / include / math.h
blob25454764a42f5581e21aac4fc342ccd305d259f3
1 /* Declarations for math functions.
2 Copyright (C) 1991-1993, 1995-1999, 2001, 2002, 2004, 2006
3 Free Software Foundation, Inc.
4 This file is part of the GNU C Library.
6 The GNU C Library is free software; you can redistribute it and/or
7 modify it under the terms of the GNU Lesser General Public
8 License as published by the Free Software Foundation; either
9 version 2.1 of the License, or (at your option) any later version.
11 The GNU C Library is distributed in the hope that it will be useful,
12 but WITHOUT ANY WARRANTY; without even the implied warranty of
13 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
14 Lesser General Public License for more details.
16 You should have received a copy of the GNU Lesser General Public
17 License along with the GNU C Library; if not, see
18 <http://www.gnu.org/licenses/>. */
21 * ISO C99 Standard: 7.12 Mathematics <math.h>
24 #ifndef _MATH_H
25 #define _MATH_H 1
27 #include <features.h>
29 __BEGIN_DECLS
31 /* Get machine-dependent HUGE_VAL value (returned on overflow).
32 On all IEEE754 machines, this is +Infinity. */
33 #include <bits/huge_val.h>
34 #ifdef __USE_ISOC99
35 # include <bits/huge_valf.h>
36 # include <bits/huge_vall.h>
38 /* Get machine-dependent INFINITY value. */
39 # include <bits/inf.h>
41 /* Get machine-dependent NAN value (returned for some domain errors). */
42 # include <bits/nan.h>
43 #endif /* __USE_ISOC99 */
45 /* Get general and ISO C99 specific information. */
46 #include <bits/mathdef.h>
49 /* The file <bits/mathcalls.h> contains the prototypes for all the
50 actual math functions. These macros are used for those prototypes,
51 so we can easily declare each function as both `name' and `__name',
52 and can declare the float versions `namef' and `__namef'. */
54 #define __MATHDECL_1(type,function,suffix,args) \
55 extern type __MATH_PRECNAME(function,suffix) args __THROW
57 #define __MATHDECL(type,function,suffix,args) \
58 __MATHDECL_1(type,function,suffix,args);
60 #define __MATHCALL(function,suffix,args) \
61 __MATHDECL(_Mdouble_,function,suffix,args)
63 #define __MATHDECLX(type,function,suffix,args,attrib) \
64 __MATHDECL_1(type,function,suffix,args) __attribute__ (attrib); \
65 __MATH_maybe_libm_hidden_proto(function)
67 #define __MATHCALLX(function,suffix,args,attrib) \
68 __MATHDECLX(_Mdouble_,function,suffix,args,attrib)
70 /* Decls which are also used internally in libm.
71 Only the main variant is used internally, no need to try to avoid relocs
72 for the {l,f} variants. */
73 #define __MATHDECLI(type,function,suffix,args) \
74 __MATHDECL_1(type,function,suffix,args); \
75 __MATH_maybe_libm_hidden_proto(function)
77 #define __MATHCALLI(function,suffix,args) \
78 __MATHDECLI(_Mdouble_,function,suffix,args)
80 /* Private helpers for purely macro impls below.
81 Only make __foo{,f,l} visible but not (the macro-only) foo. */
82 #if defined _LIBC
83 # define __MATHDECL_PRIV(type,function,suffix,args,attrib) \
84 __MATHDECL_1(type,__CONCAT(__,function),suffix,args) __attribute__ (attrib); \
85 libm_hidden_proto(__MATH_PRECNAME(__##function,suffix))
86 #else
87 # define __MATHDECL_PRIV(type,function,suffix,args,attrib) \
88 __MATHDECL_1(type,__CONCAT(__,function),suffix,args) __attribute__ (attrib);
89 #endif
92 /* Include the file of declarations, declaring double versions */
94 #if defined _LIBC
95 # define __MATH_maybe_libm_hidden_proto(x) libm_hidden_proto(x)
96 #else
97 # define __MATH_maybe_libm_hidden_proto(x)
98 #endif
99 #define _Mdouble_ double
100 #define __MATH_PRECNAME(name,r) __CONCAT(name,r)
101 #define _Mdouble_BEGIN_NAMESPACE __BEGIN_NAMESPACE_STD
102 #define _Mdouble_END_NAMESPACE __END_NAMESPACE_STD
103 #include <bits/mathcalls.h>
104 #undef _Mdouble_
105 #undef _Mdouble_BEGIN_NAMESPACE
106 #undef _Mdouble_END_NAMESPACE
107 #undef __MATH_PRECNAME
108 #undef __MATH_maybe_libm_hidden_proto
111 #if defined __USE_MISC || defined __USE_ISOC99
113 /* Include the file of declarations again, this time using `float'
114 instead of `double' and appending f to each function name. */
116 # define __MATH_maybe_libm_hidden_proto(x)
117 # ifndef _Mfloat_
118 # define _Mfloat_ float
119 # endif
120 # define _Mdouble_ _Mfloat_
121 # ifdef __STDC__
122 # define __MATH_PRECNAME(name,r) name##f##r
123 # else
124 # define __MATH_PRECNAME(name,r) name/**/f/**/r
125 # endif
126 # define _Mdouble_BEGIN_NAMESPACE __BEGIN_NAMESPACE_C99
127 # define _Mdouble_END_NAMESPACE __END_NAMESPACE_C99
128 # include <bits/mathcalls.h>
129 # undef _Mdouble_
130 # undef _Mdouble_BEGIN_NAMESPACE
131 # undef _Mdouble_END_NAMESPACE
132 # undef _Mfloat_
133 # undef __MATH_PRECNAME
134 # undef __MATH_maybe_libm_hidden_proto
137 # if (defined __STDC__ || defined __GNUC__) \
138 && (!defined __NO_LONG_DOUBLE_MATH || defined __LDBL_COMPAT)
139 # ifdef __LDBL_COMPAT
141 # ifdef __USE_ISOC99
142 extern float __nldbl_nexttowardf (float __x, long double __y) __THROW
143 __attribute__ ((__const__));
144 # ifdef __REDIRECT_NTH
145 extern float __REDIRECT_NTH (nexttowardf, (float __x, long double __y), __nldbl_nexttowardf)
146 __attribute__ ((__const__));
147 extern double __REDIRECT_NTH (nexttoward, (double __x, long double __y), nextafter)
148 __attribute__ ((__const__));
149 extern long double __REDIRECT_NTH (nexttowardl, (long double __x, long double __y), nextafter)
150 __attribute__ ((__const__));
151 # endif
152 # endif
154 /* Include the file of declarations again, this time using `long double'
155 instead of `double' and appending l to each function name. */
157 # undef __MATHDECL_1
158 # define __MATHDECL_2(type,function,suffix,args,alias) \
159 extern type __REDIRECT_NTH(__MATH_PRECNAME(function,suffix),args,alias)
160 # define __MATHDECL_1(type,function,suffix,args) \
161 __MATHDECL_2(type,function,suffix,args,__CONCAT(function,suffix))
162 # endif
164 # define __MATH_maybe_libm_hidden_proto(x)
165 # ifndef _Mlong_double_
166 # define _Mlong_double_ long double
167 # endif
168 # define _Mdouble_ _Mlong_double_
169 # ifdef __STDC__
170 # define __MATH_PRECNAME(name,r) name##l##r
171 # else
172 # define __MATH_PRECNAME(name,r) name/**/l/**/r
173 # endif
174 # define _Mdouble_BEGIN_NAMESPACE __BEGIN_NAMESPACE_C99
175 # define _Mdouble_END_NAMESPACE __END_NAMESPACE_C99
176 # include <bits/mathcalls.h>
177 # undef _Mdouble_
178 # undef _Mdouble_BEGIN_NAMESPACE
179 # undef _Mdouble_END_NAMESPACE
180 # undef _Mlong_double_
181 # undef __MATH_PRECNAME
182 # undef __MATH_maybe_libm_hidden_proto
184 # endif /* __STDC__ || __GNUC__ */
186 #endif /* Use misc or ISO C99. */
187 #undef __MATHDECL_1
188 #undef __MATHDECL
189 #undef __MATHCALL
192 #if defined __USE_MISC || defined __USE_XOPEN
193 /* This variable is used by `gamma' and `lgamma'. */
194 extern int signgam;
195 #endif
198 /* ISO C99 defines some generic macros which work on any data type. */
199 #if defined(__USE_ISOC99) || defined(__USE_BSD)
201 /* Get the architecture specific values describing the floating-point
202 evaluation. The following symbols will get defined:
204 float_t floating-point type at least as wide as `float' used
205 to evaluate `float' expressions
206 double_t floating-point type at least as wide as `double' used
207 to evaluate `double' expressions
209 FLT_EVAL_METHOD
210 Defined to
211 0 if `float_t' is `float' and `double_t' is `double'
212 1 if `float_t' and `double_t' are `double'
213 2 if `float_t' and `double_t' are `long double'
214 else `float_t' and `double_t' are unspecified
216 INFINITY representation of the infinity value of type `float'
218 FP_FAST_FMA
219 FP_FAST_FMAF
220 FP_FAST_FMAL
221 If defined it indicates that the `fma' function
222 generally executes about as fast as a multiply and an add.
223 This macro is defined only iff the `fma' function is
224 implemented directly with a hardware multiply-add instructions.
226 FP_ILOGB0 Expands to a value returned by `ilogb (0.0)'.
227 FP_ILOGBNAN Expands to a value returned by `ilogb (NAN)'.
229 DECIMAL_DIG Number of decimal digits supported by conversion between
230 decimal and all internal floating-point formats.
234 /* All floating-point numbers can be put in one of these categories. */
235 enum
237 FP_NAN,
238 # define FP_NAN FP_NAN
239 FP_INFINITE,
240 # define FP_INFINITE FP_INFINITE
241 FP_ZERO,
242 # define FP_ZERO FP_ZERO
243 FP_SUBNORMAL,
244 # define FP_SUBNORMAL FP_SUBNORMAL
245 FP_NORMAL
246 # define FP_NORMAL FP_NORMAL
249 /* Return number of classification appropriate for X. */
250 # ifdef __NO_LONG_DOUBLE_MATH
251 # define fpclassify(x) \
252 (sizeof (x) == sizeof (float) ? __fpclassifyf (x) : __fpclassify (x))
253 # else
254 # define fpclassify(x) \
255 (sizeof (x) == sizeof (float) \
256 ? __fpclassifyf (x) \
257 : sizeof (x) == sizeof (double) \
258 ? __fpclassify (x) : __fpclassifyl (x))
259 # endif
261 /* Return nonzero value if sign of X is negative. */
262 # ifdef __NO_LONG_DOUBLE_MATH
263 # define signbit(x) \
264 (sizeof (x) == sizeof (float) ? __signbitf (x) : __signbit (x))
265 # else
266 # define signbit(x) \
267 (sizeof (x) == sizeof (float) \
268 ? __signbitf (x) \
269 : sizeof (x) == sizeof (double) \
270 ? __signbit (x) : __signbitl (x))
271 # endif
273 /* Return nonzero value if X is not +-Inf or NaN. */
274 # ifdef __NO_LONG_DOUBLE_MATH
275 # define isfinite(x) \
276 (sizeof (x) == sizeof (float) ? __finitef (x) : __finite (x))
277 # else
278 # define isfinite(x) \
279 (sizeof (x) == sizeof (float) \
280 ? __finitef (x) \
281 : sizeof (x) == sizeof (double) \
282 ? __finite (x) : __finitel (x))
283 # endif
285 /* Return nonzero value if X is neither zero, subnormal, Inf, nor NaN. */
286 # define isnormal(x) (fpclassify (x) == FP_NORMAL)
288 /* Return nonzero value if X is a NaN. We could use `fpclassify' but
289 we already have this functions `__isnan' and it is faster. */
290 # ifdef __NO_LONG_DOUBLE_MATH
291 # define isnan(x) \
292 (sizeof (x) == sizeof (float) ? __isnanf (x) : __isnan (x))
293 # else
294 # define isnan(x) \
295 (sizeof (x) == sizeof (float) \
296 ? __isnanf (x) \
297 : sizeof (x) == sizeof (double) \
298 ? __isnan (x) : __isnanl (x))
299 # endif
301 /* Return nonzero value is X is positive or negative infinity. */
302 # ifdef __NO_LONG_DOUBLE_MATH
303 # define isinf(x) \
304 (sizeof (x) == sizeof (float) ? __isinff (x) : __isinf (x))
305 # else
306 # define isinf(x) \
307 (sizeof (x) == sizeof (float) \
308 ? __isinff (x) \
309 : sizeof (x) == sizeof (double) \
310 ? __isinf (x) : __isinfl (x))
311 # endif
313 /* Bitmasks for the math_errhandling macro. */
314 # define MATH_ERRNO 1 /* errno set by math functions. */
315 # define MATH_ERREXCEPT 2 /* Exceptions raised by math functions. */
317 #endif /* Use ISO C99. */
319 /* BSD compat */
320 #define finite(x) __finite(x)
321 #define finitef(x) __finitef(x)
322 #define finitel(x) __finitel(x)
324 #ifdef __USE_MISC
325 /* Support for various different standard error handling behaviors. */
326 typedef enum
328 _IEEE_ = -1, /* According to IEEE 754/IEEE 854. */
329 _SVID_, /* According to System V, release 4. */
330 _XOPEN_, /* Nowadays also Unix98. */
331 _POSIX_,
332 _ISOC_ /* Actually this is ISO C99. */
333 } _LIB_VERSION_TYPE;
335 /* This variable can be changed at run-time to any of the values above to
336 affect floating point error handling behavior (it may also be necessary
337 to change the hardware FPU exception settings). */
338 extern _LIB_VERSION_TYPE _LIB_VERSION;
339 #endif
342 #ifdef __USE_SVID
343 /* In SVID error handling, `matherr' is called with this description
344 of the exceptional condition.
346 We have a problem when using C++ since `exception' is a reserved
347 name in C++. */
348 # ifdef __cplusplus
349 struct __exception
350 # else
351 struct exception
352 # endif
354 int type;
355 char *name;
356 double arg1;
357 double arg2;
358 double retval;
361 # ifdef __cplusplus
362 extern int matherr (struct __exception *__exc) throw ();
363 # else
364 extern int matherr (struct exception *__exc);
365 # endif
367 # define X_TLOSS 1.41484755040568800000e+16
369 /* Types of exceptions in the `type' field. */
370 # define DOMAIN 1
371 # define SING 2
372 # define OVERFLOW 3
373 # define UNDERFLOW 4
374 # define TLOSS 5
375 # define PLOSS 6
377 /* SVID mode specifies returning this large value instead of infinity. */
378 # define HUGE 3.40282347e+38F
380 #else /* !SVID */
382 # ifdef __USE_XOPEN
383 # ifdef __UCLIBC_SUSV4_LEGACY__
384 /* X/Open wants another strange constant. */
385 # define MAXFLOAT 3.40282347e+38F
386 # endif
387 # endif
389 #endif /* SVID */
392 /* Some useful constants. */
393 #if defined __USE_BSD || defined __USE_XOPEN
394 # define M_E 2.7182818284590452354 /* e */
395 # define M_LOG2E 1.4426950408889634074 /* log_2 e */
396 # define M_LOG10E 0.43429448190325182765 /* log_10 e */
397 # define M_LN2 0.69314718055994530942 /* log_e 2 */
398 # define M_LN10 2.30258509299404568402 /* log_e 10 */
399 # define M_PI 3.14159265358979323846 /* pi */
400 # define M_PI_2 1.57079632679489661923 /* pi/2 */
401 # define M_PI_4 0.78539816339744830962 /* pi/4 */
402 # define M_1_PI 0.31830988618379067154 /* 1/pi */
403 # define M_2_PI 0.63661977236758134308 /* 2/pi */
404 # define M_2_SQRTPI 1.12837916709551257390 /* 2/sqrt(pi) */
405 # define M_SQRT2 1.41421356237309504880 /* sqrt(2) */
406 # define M_SQRT1_2 0.70710678118654752440 /* 1/sqrt(2) */
407 #endif
409 /* The above constants are not adequate for computation using `long double's.
410 Therefore we provide as an extension constants with similar names as a
411 GNU extension. Provide enough digits for the 128-bit IEEE quad. */
412 #ifdef __USE_GNU
413 # define M_El 2.7182818284590452353602874713526625L /* e */
414 # define M_LOG2El 1.4426950408889634073599246810018921L /* log_2 e */
415 # define M_LOG10El 0.4342944819032518276511289189166051L /* log_10 e */
416 # define M_LN2l 0.6931471805599453094172321214581766L /* log_e 2 */
417 # define M_LN10l 2.3025850929940456840179914546843642L /* log_e 10 */
418 # define M_PIl 3.1415926535897932384626433832795029L /* pi */
419 # define M_PI_2l 1.5707963267948966192313216916397514L /* pi/2 */
420 # define M_PI_4l 0.7853981633974483096156608458198757L /* pi/4 */
421 # define M_1_PIl 0.3183098861837906715377675267450287L /* 1/pi */
422 # define M_2_PIl 0.6366197723675813430755350534900574L /* 2/pi */
423 # define M_2_SQRTPIl 1.1283791670955125738961589031215452L /* 2/sqrt(pi) */
424 # define M_SQRT2l 1.4142135623730950488016887242096981L /* sqrt(2) */
425 # define M_SQRT1_2l 0.7071067811865475244008443621048490L /* 1/sqrt(2) */
426 #endif
429 /* When compiling in strict ISO C compatible mode we must not use the
430 inline functions since they, among other things, do not set the
431 `errno' variable correctly. */
432 #if defined __STRICT_ANSI__ && !defined __NO_MATH_INLINES
433 # define __NO_MATH_INLINES 1
434 #endif
436 #if defined __USE_ISOC99 && __GNUC_PREREQ(2,97)
437 /* ISO C99 defines some macros to compare number while taking care for
438 unordered numbers. Many FPUs provide special instructions to support
439 these operations. Generic support in GCC for these as builtins went
440 in before 3.0.0, but not all cpus added their patterns. We define
441 versions that use the builtins here, and <bits/mathinline.h> will
442 undef/redefine as appropriate for the specific GCC version in use. */
443 # define isgreater(x, y) __builtin_isgreater(x, y)
444 # define isgreaterequal(x, y) __builtin_isgreaterequal(x, y)
445 # define isless(x, y) __builtin_isless(x, y)
446 # define islessequal(x, y) __builtin_islessequal(x, y)
447 # define islessgreater(x, y) __builtin_islessgreater(x, y)
448 # define isunordered(u, v) __builtin_isunordered(u, v)
449 #endif
451 /* Get machine-dependent inline versions (if there are any). */
452 #ifdef __USE_EXTERN_INLINES
453 # include <bits/mathinline.h>
454 #endif
456 #ifdef __USE_ISOC99
457 /* If we've still got undefined comparison macros, provide defaults. */
459 /* Return nonzero value if X is greater than Y. */
460 # ifndef isgreater
461 # define isgreater(x, y) \
462 (__extension__ \
463 ({ __typeof__(x) __x = (x); __typeof__(y) __y = (y); \
464 !isunordered (__x, __y) && __x > __y; }))
465 # endif
467 /* Return nonzero value if X is greater than or equal to Y. */
468 # ifndef isgreaterequal
469 # define isgreaterequal(x, y) \
470 (__extension__ \
471 ({ __typeof__(x) __x = (x); __typeof__(y) __y = (y); \
472 !isunordered (__x, __y) && __x >= __y; }))
473 # endif
475 /* Return nonzero value if X is less than Y. */
476 # ifndef isless
477 # define isless(x, y) \
478 (__extension__ \
479 ({ __typeof__(x) __x = (x); __typeof__(y) __y = (y); \
480 !isunordered (__x, __y) && __x < __y; }))
481 # endif
483 /* Return nonzero value if X is less than or equal to Y. */
484 # ifndef islessequal
485 # define islessequal(x, y) \
486 (__extension__ \
487 ({ __typeof__(x) __x = (x); __typeof__(y) __y = (y); \
488 !isunordered (__x, __y) && __x <= __y; }))
489 # endif
491 /* Return nonzero value if either X is less than Y or Y is less than X. */
492 # ifndef islessgreater
493 # define islessgreater(x, y) \
494 (__extension__ \
495 ({ __typeof__(x) __x = (x); __typeof__(y) __y = (y); \
496 !isunordered (__x, __y) && (__x < __y || __y < __x); }))
497 # endif
499 /* Return nonzero value if arguments are unordered. */
500 # ifndef isunordered
501 # define isunordered(u, v) \
502 (__extension__ \
503 ({ __typeof__(u) __u = (u); __typeof__(v) __v = (v); \
504 fpclassify (__u) == FP_NAN || fpclassify (__v) == FP_NAN; }))
505 # endif
507 #endif
509 __END_DECLS
512 #endif /* math.h */