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[glibc.git] / math / bits / mathcalls.h
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1 /* Prototype declarations for math functions; helper file for <math.h>.
2 Copyright (C) 1996-2014 Free Software Foundation, Inc.
3 This file is part of the GNU C Library.
5 The GNU C Library is free software; you can redistribute it and/or
6 modify it under the terms of the GNU Lesser General Public
7 License as published by the Free Software Foundation; either
8 version 2.1 of the License, or (at your option) any later version.
10 The GNU C Library is distributed in the hope that it will be useful,
11 but WITHOUT ANY WARRANTY; without even the implied warranty of
12 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
13 Lesser General Public License for more details.
15 You should have received a copy of the GNU Lesser General Public
16 License along with the GNU C Library; if not, see
17 <http://www.gnu.org/licenses/>. */
19 /* NOTE: Because of the special way this file is used by <math.h>, this
20 file must NOT be protected from multiple inclusion as header files
21 usually are.
23 This file provides prototype declarations for the math functions.
24 Most functions are declared using the macro:
26 __MATHCALL (NAME,[_r], (ARGS...));
28 This means there is a function `NAME' returning `double' and a function
29 `NAMEf' returning `float'. Each place `_Mdouble_' appears in the
30 prototype, that is actually `double' in the prototype for `NAME' and
31 `float' in the prototype for `NAMEf'. Reentrant variant functions are
32 called `NAME_r' and `NAMEf_r'.
34 Functions returning other types like `int' are declared using the macro:
36 __MATHDECL (TYPE, NAME,[_r], (ARGS...));
38 This is just like __MATHCALL but for a function returning `TYPE'
39 instead of `_Mdouble_'. In all of these cases, there is still
40 both a `NAME' and a `NAMEf' that takes `float' arguments.
42 Note that there must be no whitespace before the argument passed for
43 NAME, to make token pasting work with -traditional. */
45 #ifndef _MATH_H
46 # error "Never include <bits/mathcalls.h> directly; include <math.h> instead."
47 #endif
50 /* Trigonometric functions. */
52 _Mdouble_BEGIN_NAMESPACE
53 /* Arc cosine of X. */
54 __MATHCALL (acos,, (_Mdouble_ __x));
55 /* Arc sine of X. */
56 __MATHCALL (asin,, (_Mdouble_ __x));
57 /* Arc tangent of X. */
58 __MATHCALL (atan,, (_Mdouble_ __x));
59 /* Arc tangent of Y/X. */
60 __MATHCALL (atan2,, (_Mdouble_ __y, _Mdouble_ __x));
62 /* Cosine of X. */
63 __MATHCALL (cos,, (_Mdouble_ __x));
64 /* Sine of X. */
65 __MATHCALL (sin,, (_Mdouble_ __x));
66 /* Tangent of X. */
67 __MATHCALL (tan,, (_Mdouble_ __x));
69 /* Hyperbolic functions. */
71 /* Hyperbolic cosine of X. */
72 __MATHCALL (cosh,, (_Mdouble_ __x));
73 /* Hyperbolic sine of X. */
74 __MATHCALL (sinh,, (_Mdouble_ __x));
75 /* Hyperbolic tangent of X. */
76 __MATHCALL (tanh,, (_Mdouble_ __x));
77 _Mdouble_END_NAMESPACE
79 #ifdef __USE_GNU
80 /* Cosine and sine of X. */
81 __MATHDECL (void,sincos,,
82 (_Mdouble_ __x, _Mdouble_ *__sinx, _Mdouble_ *__cosx));
83 #endif
85 #if defined __USE_MISC || defined __USE_XOPEN_EXTENDED || defined __USE_ISOC99
86 __BEGIN_NAMESPACE_C99
87 /* Hyperbolic arc cosine of X. */
88 __MATHCALL (acosh,, (_Mdouble_ __x));
89 /* Hyperbolic arc sine of X. */
90 __MATHCALL (asinh,, (_Mdouble_ __x));
91 /* Hyperbolic arc tangent of X. */
92 __MATHCALL (atanh,, (_Mdouble_ __x));
93 __END_NAMESPACE_C99
94 #endif
96 /* Exponential and logarithmic functions. */
98 _Mdouble_BEGIN_NAMESPACE
99 /* Exponential function of X. */
100 __MATHCALL (exp,, (_Mdouble_ __x));
102 /* Break VALUE into a normalized fraction and an integral power of 2. */
103 __MATHCALL (frexp,, (_Mdouble_ __x, int *__exponent));
105 /* X times (two to the EXP power). */
106 __MATHCALL (ldexp,, (_Mdouble_ __x, int __exponent));
108 /* Natural logarithm of X. */
109 __MATHCALL (log,, (_Mdouble_ __x));
111 /* Base-ten logarithm of X. */
112 __MATHCALL (log10,, (_Mdouble_ __x));
114 /* Break VALUE into integral and fractional parts. */
115 __MATHCALL (modf,, (_Mdouble_ __x, _Mdouble_ *__iptr)) __nonnull ((2));
116 _Mdouble_END_NAMESPACE
118 #ifdef __USE_GNU
119 /* A function missing in all standards: compute exponent to base ten. */
120 __MATHCALL (exp10,, (_Mdouble_ __x));
121 /* Another name occasionally used. */
122 __MATHCALL (pow10,, (_Mdouble_ __x));
123 #endif
125 #if defined __USE_MISC || defined __USE_XOPEN_EXTENDED || defined __USE_ISOC99
126 __BEGIN_NAMESPACE_C99
127 /* Return exp(X) - 1. */
128 __MATHCALL (expm1,, (_Mdouble_ __x));
130 /* Return log(1 + X). */
131 __MATHCALL (log1p,, (_Mdouble_ __x));
133 /* Return the base 2 signed integral exponent of X. */
134 __MATHCALL (logb,, (_Mdouble_ __x));
135 __END_NAMESPACE_C99
136 #endif
138 #ifdef __USE_ISOC99
139 __BEGIN_NAMESPACE_C99
140 /* Compute base-2 exponential of X. */
141 __MATHCALL (exp2,, (_Mdouble_ __x));
143 /* Compute base-2 logarithm of X. */
144 __MATHCALL (log2,, (_Mdouble_ __x));
145 __END_NAMESPACE_C99
146 #endif
149 /* Power functions. */
151 _Mdouble_BEGIN_NAMESPACE
152 /* Return X to the Y power. */
153 __MATHCALL (pow,, (_Mdouble_ __x, _Mdouble_ __y));
155 /* Return the square root of X. */
156 __MATHCALL (sqrt,, (_Mdouble_ __x));
157 _Mdouble_END_NAMESPACE
159 #if defined __USE_MISC || defined __USE_XOPEN || defined __USE_ISOC99
160 __BEGIN_NAMESPACE_C99
161 /* Return `sqrt(X*X + Y*Y)'. */
162 __MATHCALL (hypot,, (_Mdouble_ __x, _Mdouble_ __y));
163 __END_NAMESPACE_C99
164 #endif
166 #if defined __USE_MISC || defined __USE_XOPEN_EXTENDED || defined __USE_ISOC99
167 __BEGIN_NAMESPACE_C99
168 /* Return the cube root of X. */
169 __MATHCALL (cbrt,, (_Mdouble_ __x));
170 __END_NAMESPACE_C99
171 #endif
174 /* Nearest integer, absolute value, and remainder functions. */
176 _Mdouble_BEGIN_NAMESPACE
177 /* Smallest integral value not less than X. */
178 __MATHCALLX (ceil,, (_Mdouble_ __x), (__const__));
180 /* Absolute value of X. */
181 __MATHCALLX (fabs,, (_Mdouble_ __x), (__const__));
183 /* Largest integer not greater than X. */
184 __MATHCALLX (floor,, (_Mdouble_ __x), (__const__));
186 /* Floating-point modulo remainder of X/Y. */
187 __MATHCALL (fmod,, (_Mdouble_ __x, _Mdouble_ __y));
190 /* Return 0 if VALUE is finite or NaN, +1 if it
191 is +Infinity, -1 if it is -Infinity. */
192 __MATHDECL_1 (int,__isinf,, (_Mdouble_ __value)) __attribute__ ((__const__));
194 /* Return nonzero if VALUE is finite and not NaN. */
195 __MATHDECL_1 (int,__finite,, (_Mdouble_ __value)) __attribute__ ((__const__));
196 _Mdouble_END_NAMESPACE
198 #ifdef __USE_MISC
199 /* Return 0 if VALUE is finite or NaN, +1 if it
200 is +Infinity, -1 if it is -Infinity. */
201 __MATHDECL_1 (int,isinf,, (_Mdouble_ __value)) __attribute__ ((__const__));
203 /* Return nonzero if VALUE is finite and not NaN. */
204 __MATHDECL_1 (int,finite,, (_Mdouble_ __value)) __attribute__ ((__const__));
206 /* Return the remainder of X/Y. */
207 __MATHCALL (drem,, (_Mdouble_ __x, _Mdouble_ __y));
210 /* Return the fractional part of X after dividing out `ilogb (X)'. */
211 __MATHCALL (significand,, (_Mdouble_ __x));
212 #endif /* Use misc. */
214 #if defined __USE_MISC || defined __USE_ISOC99
215 __BEGIN_NAMESPACE_C99
216 /* Return X with its signed changed to Y's. */
217 __MATHCALLX (copysign,, (_Mdouble_ __x, _Mdouble_ __y), (__const__));
218 __END_NAMESPACE_C99
219 #endif
221 #ifdef __USE_ISOC99
222 __BEGIN_NAMESPACE_C99
223 /* Return representation of qNaN for double type. */
224 __MATHCALLX (nan,, (const char *__tagb), (__const__));
225 __END_NAMESPACE_C99
226 #endif
229 /* Return nonzero if VALUE is not a number. */
230 __MATHDECL_1 (int,__isnan,, (_Mdouble_ __value)) __attribute__ ((__const__));
232 #if defined __USE_MISC || defined __USE_XOPEN
233 /* Return nonzero if VALUE is not a number. */
234 __MATHDECL_1 (int,isnan,, (_Mdouble_ __value)) __attribute__ ((__const__));
236 /* Bessel functions. */
237 __MATHCALL (j0,, (_Mdouble_));
238 __MATHCALL (j1,, (_Mdouble_));
239 __MATHCALL (jn,, (int, _Mdouble_));
240 __MATHCALL (y0,, (_Mdouble_));
241 __MATHCALL (y1,, (_Mdouble_));
242 __MATHCALL (yn,, (int, _Mdouble_));
243 #endif
246 #if defined __USE_MISC || defined __USE_XOPEN || defined __USE_ISOC99
247 __BEGIN_NAMESPACE_C99
248 /* Error and gamma functions. */
249 __MATHCALL (erf,, (_Mdouble_));
250 __MATHCALL (erfc,, (_Mdouble_));
251 __MATHCALL (lgamma,, (_Mdouble_));
252 __END_NAMESPACE_C99
253 #endif
255 #ifdef __USE_ISOC99
256 __BEGIN_NAMESPACE_C99
257 /* True gamma function. */
258 __MATHCALL (tgamma,, (_Mdouble_));
259 __END_NAMESPACE_C99
260 #endif
262 #if defined __USE_MISC || defined __USE_XOPEN
263 /* Obsolete alias for `lgamma'. */
264 __MATHCALL (gamma,, (_Mdouble_));
265 #endif
267 #ifdef __USE_MISC
268 /* Reentrant version of lgamma. This function uses the global variable
269 `signgam'. The reentrant version instead takes a pointer and stores
270 the value through it. */
271 __MATHCALL (lgamma,_r, (_Mdouble_, int *__signgamp));
272 #endif
275 #if defined __USE_MISC || defined __USE_XOPEN_EXTENDED || defined __USE_ISOC99
276 __BEGIN_NAMESPACE_C99
277 /* Return the integer nearest X in the direction of the
278 prevailing rounding mode. */
279 __MATHCALL (rint,, (_Mdouble_ __x));
281 /* Return X + epsilon if X < Y, X - epsilon if X > Y. */
282 __MATHCALLX (nextafter,, (_Mdouble_ __x, _Mdouble_ __y), (__const__));
283 # if defined __USE_ISOC99 && !defined __LDBL_COMPAT
284 __MATHCALLX (nexttoward,, (_Mdouble_ __x, long double __y), (__const__));
285 # endif
287 /* Return the remainder of integer divison X / Y with infinite precision. */
288 __MATHCALL (remainder,, (_Mdouble_ __x, _Mdouble_ __y));
290 # if defined __USE_MISC || defined __USE_ISOC99
291 /* Return X times (2 to the Nth power). */
292 __MATHCALL (scalbn,, (_Mdouble_ __x, int __n));
293 # endif
295 /* Return the binary exponent of X, which must be nonzero. */
296 __MATHDECL (int,ilogb,, (_Mdouble_ __x));
297 #endif
299 #ifdef __USE_ISOC99
300 /* Return X times (2 to the Nth power). */
301 __MATHCALL (scalbln,, (_Mdouble_ __x, long int __n));
303 /* Round X to integral value in floating-point format using current
304 rounding direction, but do not raise inexact exception. */
305 __MATHCALL (nearbyint,, (_Mdouble_ __x));
307 /* Round X to nearest integral value, rounding halfway cases away from
308 zero. */
309 __MATHCALLX (round,, (_Mdouble_ __x), (__const__));
311 /* Round X to the integral value in floating-point format nearest but
312 not larger in magnitude. */
313 __MATHCALLX (trunc,, (_Mdouble_ __x), (__const__));
315 /* Compute remainder of X and Y and put in *QUO a value with sign of x/y
316 and magnitude congruent `mod 2^n' to the magnitude of the integral
317 quotient x/y, with n >= 3. */
318 __MATHCALL (remquo,, (_Mdouble_ __x, _Mdouble_ __y, int *__quo));
321 /* Conversion functions. */
323 /* Round X to nearest integral value according to current rounding
324 direction. */
325 __MATHDECL (long int,lrint,, (_Mdouble_ __x));
326 __extension__
327 __MATHDECL (long long int,llrint,, (_Mdouble_ __x));
329 /* Round X to nearest integral value, rounding halfway cases away from
330 zero. */
331 __MATHDECL (long int,lround,, (_Mdouble_ __x));
332 __extension__
333 __MATHDECL (long long int,llround,, (_Mdouble_ __x));
336 /* Return positive difference between X and Y. */
337 __MATHCALL (fdim,, (_Mdouble_ __x, _Mdouble_ __y));
339 /* Return maximum numeric value from X and Y. */
340 __MATHCALLX (fmax,, (_Mdouble_ __x, _Mdouble_ __y), (__const__));
342 /* Return minimum numeric value from X and Y. */
343 __MATHCALLX (fmin,, (_Mdouble_ __x, _Mdouble_ __y), (__const__));
346 /* Classify given number. */
347 __MATHDECL_1 (int, __fpclassify,, (_Mdouble_ __value))
348 __attribute__ ((__const__));
350 /* Test for negative number. */
351 __MATHDECL_1 (int, __signbit,, (_Mdouble_ __value))
352 __attribute__ ((__const__));
355 /* Multiply-add function computed as a ternary operation. */
356 __MATHCALL (fma,, (_Mdouble_ __x, _Mdouble_ __y, _Mdouble_ __z));
357 #endif /* Use ISO C99. */
359 #if defined __USE_MISC || defined __USE_XOPEN_EXTENDED || defined __USE_ISOC99
360 __END_NAMESPACE_C99
361 #endif
363 #ifdef __USE_GNU
364 /* Test for signaling NaN. */
365 __MATHDECL_1 (int, __issignaling,, (_Mdouble_ __value))
366 __attribute__ ((__const__));
367 #endif
369 #if defined __USE_MISC || defined __USE_XOPEN_EXTENDED
370 /* Return X times (2 to the Nth power). */
371 __MATHCALL (scalb,, (_Mdouble_ __x, _Mdouble_ __n));
372 #endif