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155 lines
7.3 KiB
155 lines
7.3 KiB
/*-
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* Copyright (c) 2001-2011 The FreeBSD Project.
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* All rights reserved.
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*
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* Redistribution and use in source and binary forms, with or without
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* modification, are permitted provided that the following conditions
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* are met:
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* 1. Redistributions of source code must retain the above copyright
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* notice, this list of conditions and the following disclaimer.
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* 2. Redistributions in binary form must reproduce the above copyright
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* notice, this list of conditions and the following disclaimer in the
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* documentation and/or other materials provided with the distribution.
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*
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* THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS ``AS IS'' AND
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* ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
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* IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
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* ARE DISCLAIMED. IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE
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* FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
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* DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
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* OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
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* HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
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* LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
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* OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
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* SUCH DAMAGE.
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*
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* $FreeBSD$
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*/
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#ifndef _COMPLEX_H
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#define _COMPLEX_H
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#include <sys/cdefs.h>
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#ifdef __GNUC__
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#define _Complex_I ((float _Complex)1.0i)
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#endif
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#ifdef __generic
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_Static_assert(__generic(_Complex_I, float _Complex, 1, 0),
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"_Complex_I must be of type float _Complex");
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#endif
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#define complex _Complex
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#define I _Complex_I
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#if __STDC_VERSION__ >= 201112L
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#define CMPLX(x, y) ((double complex){ x, y })
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#define CMPLXF(x, y) ((float complex){ x, y })
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#define CMPLXL(x, y) ((long double complex){ x, y })
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#endif
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__BEGIN_DECLS
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/* 7.3.5 Trigonometric functions */
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/* 7.3.5.1 The cacos functions */
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double complex cacos(double complex __z) __INTRODUCED_IN(23);
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float complex cacosf(float complex __z) __INTRODUCED_IN(23);
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long double complex cacosl(long double complex __z) __RENAME_LDBL(cacos, 23, 26);
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/* 7.3.5.2 The casin functions */
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double complex casin(double complex __z) __INTRODUCED_IN(23);
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float complex casinf(float complex __z) __INTRODUCED_IN(23);
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long double complex casinl(long double complex __z) __RENAME_LDBL(casin, 23, 26);
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/* 7.3.5.1 The catan functions */
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double complex catan(double complex __z) __INTRODUCED_IN(23);
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float complex catanf(float complex __z) __INTRODUCED_IN(23);
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long double complex catanl(long double complex __z) __RENAME_LDBL(catan, 23, 26);
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/* 7.3.5.1 The ccos functions */
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double complex ccos(double complex __z) __INTRODUCED_IN(23);
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float complex ccosf(float complex __z) __INTRODUCED_IN(23);
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long double complex ccosl(long double complex __z) __RENAME_LDBL(ccos, 23, 26);
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/* 7.3.5.1 The csin functions */
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double complex csin(double complex __z) __INTRODUCED_IN(23);
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float complex csinf(float complex __z) __INTRODUCED_IN(23);
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long double complex csinl(long double complex __z) __RENAME_LDBL(csin, 23, 26);
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/* 7.3.5.1 The ctan functions */
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double complex ctan(double complex __z) __INTRODUCED_IN(23);
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float complex ctanf(float complex __z) __INTRODUCED_IN(23);
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long double complex ctanl(long double complex __z) __RENAME_LDBL(ctan, 23, 26);
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/* 7.3.6 Hyperbolic functions */
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/* 7.3.6.1 The cacosh functions */
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double complex cacosh(double complex __z) __INTRODUCED_IN(23);
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float complex cacoshf(float complex __z) __INTRODUCED_IN(23);
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long double complex cacoshl(long double complex __z) __RENAME_LDBL(cacosh, 23, 26);
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/* 7.3.6.2 The casinh functions */
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double complex casinh(double complex __z) __INTRODUCED_IN(23);
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float complex casinhf(float complex __z) __INTRODUCED_IN(23);
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long double complex casinhl(long double complex __z) __RENAME_LDBL(casinh, 23, 26);
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/* 7.3.6.3 The catanh functions */
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double complex catanh(double complex __z) __INTRODUCED_IN(23);
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float complex catanhf(float complex __z) __INTRODUCED_IN(23);
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long double complex catanhl(long double complex __z) __RENAME_LDBL(catanh, 23, 26);
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/* 7.3.6.4 The ccosh functions */
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double complex ccosh(double complex __z) __INTRODUCED_IN(23);
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float complex ccoshf(float complex __z) __INTRODUCED_IN(23);
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long double complex ccoshl(long double complex __z) __RENAME_LDBL(ccosh, 23, 26);
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/* 7.3.6.5 The csinh functions */
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double complex csinh(double complex __z) __INTRODUCED_IN(23);
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float complex csinhf(float complex __z) __INTRODUCED_IN(23);
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long double complex csinhl(long double complex __z) __RENAME_LDBL(csinh, 23, 26);
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/* 7.3.6.6 The ctanh functions */
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double complex ctanh(double complex __z) __INTRODUCED_IN(23);
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float complex ctanhf(float complex __z) __INTRODUCED_IN(23);
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long double complex ctanhl(long double complex __z) __RENAME_LDBL(ctanh, 23, 26);
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/* 7.3.7 Exponential and logarithmic functions */
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/* 7.3.7.1 The cexp functions */
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double complex cexp(double complex __z) __INTRODUCED_IN(23);
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float complex cexpf(float complex __z) __INTRODUCED_IN(23);
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long double complex cexpl(long double complex __z) __RENAME_LDBL(cexp, 23, 26);
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/* 7.3.7.2 The clog functions */
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double complex clog(double complex __z) __INTRODUCED_IN(26);
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float complex clogf(float complex __z) __INTRODUCED_IN(26);
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long double complex clogl(long double complex __z) __RENAME_LDBL(clog, 26, 26);
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/* 7.3.8 Power and absolute-value functions */
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/* 7.3.8.1 The cabs functions */
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double cabs(double complex __z) __INTRODUCED_IN(23);
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float cabsf(float complex __z) __INTRODUCED_IN(23);
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long double cabsl(long double complex __z) __INTRODUCED_IN_32(21) __INTRODUCED_IN_64(23) /*__RENAME_LDBL(cabs)*/;
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/* 7.3.8.2 The cpow functions */
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double complex cpow(double complex __x, double complex __z) __INTRODUCED_IN(26);
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float complex cpowf(float complex __x, float complex __z) __INTRODUCED_IN(26);
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long double complex cpowl(long double complex __x, long double complex __z) __RENAME_LDBL(cpow, 26, 26);
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/* 7.3.8.3 The csqrt functions */
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double complex csqrt(double complex __z) __INTRODUCED_IN(23);
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float complex csqrtf(float complex __z) __INTRODUCED_IN(23);
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long double complex csqrtl(long double complex __z) __INTRODUCED_IN_32(21) __INTRODUCED_IN_64(23) /*__RENAME_LDBL(csqrt)*/;
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/* 7.3.9 Manipulation functions */
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/* 7.3.9.1 The carg functions */
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double carg(double complex __z) __INTRODUCED_IN(23);
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float cargf(float complex __z) __INTRODUCED_IN(23);
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long double cargl(long double complex __z) __RENAME_LDBL(carg, 23, 23);
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/* 7.3.9.2 The cimag functions */
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double cimag(double complex __z) __INTRODUCED_IN(23);
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float cimagf(float complex __z) __INTRODUCED_IN(23);
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long double cimagl(long double complex __z) __RENAME_LDBL(cimag, 23, 23);
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/* 7.3.9.3 The conj functions */
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double complex conj(double complex __z) __INTRODUCED_IN(23);
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float complex conjf(float complex __z) __INTRODUCED_IN(23);
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long double complex conjl(long double complex __z) __RENAME_LDBL(conj, 23, 23);
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/* 7.3.9.4 The cproj functions */
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double complex cproj(double complex __z) __INTRODUCED_IN(23);
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float complex cprojf(float complex __z) __INTRODUCED_IN(23);
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long double complex cprojl(long double complex __z) __INTRODUCED_IN_32(21) __INTRODUCED_IN_64(23) /*__RENAME_LDBL(cproj)*/;
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/* 7.3.9.5 The creal functions */
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double creal(double complex __z) __INTRODUCED_IN(23);
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float crealf(float complex __z) __INTRODUCED_IN(23);
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long double creall(long double complex __z) __RENAME_LDBL(creal, 23, 23);
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__END_DECLS
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#endif
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