1 | /* Copyright (C) 2004-2015 Free Software Foundation, Inc.
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2 | Contributed by Apple, Inc.
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3 |
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4 | This file is part of GCC.
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5 |
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6 | GCC is free software; you can redistribute it and/or modify
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7 | it under the terms of the GNU General Public License as published by
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8 | the Free Software Foundation; either version 3, or (at your option)
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9 | any later version.
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10 |
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11 | GCC is distributed in the hope that it will be useful,
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12 | but WITHOUT ANY WARRANTY; without even the implied warranty of
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13 | MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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14 | GNU General Public License for more details.
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15 |
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16 | Under Section 7 of GPL version 3, you are granted additional
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17 | permissions described in the GCC Runtime Library Exception, version
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18 | 3.1, as published by the Free Software Foundation.
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19 |
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20 | You should have received a copy of the GNU General Public License and
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21 | a copy of the GCC Runtime Library Exception along with this program;
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22 | see the files COPYING3 and COPYING.RUNTIME respectively. If not, see
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23 | <http://www.gnu.org/licenses/>. */
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24 |
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25 | /*
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26 | * ISO C Standard: 7.22 Type-generic math <tgmath.h>
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27 | */
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28 |
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29 | #ifndef _TGMATH_H
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30 | #define _TGMATH_H
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31 |
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32 | #include <math.h>
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33 |
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34 | #ifndef __cplusplus
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35 | #include <complex.h>
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36 |
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37 | /* Naming convention: generic macros are defining using
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38 | __TGMATH_CPLX*, __TGMATH_REAL*, and __TGMATH_CPLX_ONLY. _CPLX
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39 | means the generic argument(s) may be real or complex, _REAL means
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40 | real only, _CPLX means complex only. If there is no suffix, we are
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41 | defining a function of one generic argument. If the suffix is _n
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42 | it is a function of n generic arguments. If the suffix is _m_n it
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43 | is a function of n arguments, the first m of which are generic. We
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44 | only define these macros for values of n and/or m that are needed. */
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45 |
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46 | /* The general rules for generic macros are given in 7.22 paragraphs 1 and 2.
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47 | If any generic parameter is complex, we use a complex version. Otherwise
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48 | we use a real version. If the real part of any generic parameter is long
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49 | double, we use the long double version. Otherwise if the real part of any
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50 | generic parameter is double or of integer type, we use the double version.
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51 | Otherwise we use the float version. */
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52 |
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53 | #define __tg_cplx(expr) \
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54 | __builtin_classify_type(expr) == 9
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55 |
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56 | #define __tg_ldbl(expr) \
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57 | __builtin_types_compatible_p(__typeof__(expr), long double)
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58 |
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59 | #define __tg_dbl(expr) \
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60 | (__builtin_types_compatible_p(__typeof__(expr), double) \
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61 | || __builtin_classify_type(expr) == 1)
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62 |
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63 | #define __tg_choose(x,f,d,l) \
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64 | __builtin_choose_expr(__tg_ldbl(x), l, \
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65 | __builtin_choose_expr(__tg_dbl(x), d, \
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66 | f))
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67 |
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68 | #define __tg_choose_2(x,y,f,d,l) \
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69 | __builtin_choose_expr(__tg_ldbl(x) || __tg_ldbl(y), l, \
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70 | __builtin_choose_expr(__tg_dbl(x) || __tg_dbl(y), d, \
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71 | f))
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72 |
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73 | #define __tg_choose_3(x,y,z,f,d,l) \
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74 | __builtin_choose_expr(__tg_ldbl(x) || __tg_ldbl(y) || __tg_ldbl(z), l, \
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75 | __builtin_choose_expr(__tg_dbl(x) || __tg_dbl(y) \
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76 | || __tg_dbl(z), d, \
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77 | f))
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78 |
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79 | #define __TGMATH_CPLX(z,R,C) \
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80 | __builtin_choose_expr (__tg_cplx(z), \
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81 | __tg_choose (__real__(z), C##f(z), (C)(z), C##l(z)), \
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82 | __tg_choose (z, R##f(z), (R)(z), R##l(z)))
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83 |
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84 | #define __TGMATH_CPLX_2(z1,z2,R,C) \
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85 | __builtin_choose_expr (__tg_cplx(z1) || __tg_cplx(z2), \
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86 | __tg_choose_2 (__real__(z1), __real__(z2), \
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87 | C##f(z1,z2), (C)(z1,z2), C##l(z1,z2)), \
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88 | __tg_choose_2 (z1, z2, \
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89 | R##f(z1,z2), (R)(z1,z2), R##l(z1,z2)))
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90 |
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91 | #define __TGMATH_REAL(x,R) \
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92 | __tg_choose (x, R##f(x), (R)(x), R##l(x))
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93 | #define __TGMATH_REAL_2(x,y,R) \
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94 | __tg_choose_2 (x, y, R##f(x,y), (R)(x,y), R##l(x,y))
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95 | #define __TGMATH_REAL_3(x,y,z,R) \
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96 | __tg_choose_3 (x, y, z, R##f(x,y,z), (R)(x,y,z), R##l(x,y,z))
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97 | #define __TGMATH_REAL_1_2(x,y,R) \
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98 | __tg_choose (x, R##f(x,y), (R)(x,y), R##l(x,y))
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99 | #define __TGMATH_REAL_2_3(x,y,z,R) \
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100 | __tg_choose_2 (x, y, R##f(x,y,z), (R)(x,y,z), R##l(x,y,z))
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101 | #define __TGMATH_CPLX_ONLY(z,C) \
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102 | __tg_choose (__real__(z), C##f(z), (C)(z), C##l(z))
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103 |
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104 | /* Functions defined in both <math.h> and <complex.h> (7.22p4) */
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105 | #define acos(z) __TGMATH_CPLX(z, acos, cacos)
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106 | #define asin(z) __TGMATH_CPLX(z, asin, casin)
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107 | #define atan(z) __TGMATH_CPLX(z, atan, catan)
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108 | #define acosh(z) __TGMATH_CPLX(z, acosh, cacosh)
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109 | #define asinh(z) __TGMATH_CPLX(z, asinh, casinh)
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110 | #define atanh(z) __TGMATH_CPLX(z, atanh, catanh)
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111 | #define cos(z) __TGMATH_CPLX(z, cos, ccos)
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112 | #define sin(z) __TGMATH_CPLX(z, sin, csin)
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113 | #define tan(z) __TGMATH_CPLX(z, tan, ctan)
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114 | #define cosh(z) __TGMATH_CPLX(z, cosh, ccosh)
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115 | #define sinh(z) __TGMATH_CPLX(z, sinh, csinh)
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116 | #define tanh(z) __TGMATH_CPLX(z, tanh, ctanh)
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117 | #define exp(z) __TGMATH_CPLX(z, exp, cexp)
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118 | #define log(z) __TGMATH_CPLX(z, log, clog)
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119 | #define pow(z1,z2) __TGMATH_CPLX_2(z1, z2, pow, cpow)
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120 | #define sqrt(z) __TGMATH_CPLX(z, sqrt, csqrt)
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121 | #define fabs(z) __TGMATH_CPLX(z, fabs, cabs)
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122 |
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123 | /* Functions defined in <math.h> only (7.22p5) */
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124 | #define atan2(x,y) __TGMATH_REAL_2(x, y, atan2)
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125 | #define cbrt(x) __TGMATH_REAL(x, cbrt)
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126 | #define ceil(x) __TGMATH_REAL(x, ceil)
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127 | #define copysign(x,y) __TGMATH_REAL_2(x, y, copysign)
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128 | #define erf(x) __TGMATH_REAL(x, erf)
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129 | #define erfc(x) __TGMATH_REAL(x, erfc)
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130 | #define exp2(x) __TGMATH_REAL(x, exp2)
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131 | #define expm1(x) __TGMATH_REAL(x, expm1)
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132 | #define fdim(x,y) __TGMATH_REAL_2(x, y, fdim)
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133 | #define floor(x) __TGMATH_REAL(x, floor)
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134 | #define fma(x,y,z) __TGMATH_REAL_3(x, y, z, fma)
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135 | #define fmax(x,y) __TGMATH_REAL_2(x, y, fmax)
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136 | #define fmin(x,y) __TGMATH_REAL_2(x, y, fmin)
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137 | #define fmod(x,y) __TGMATH_REAL_2(x, y, fmod)
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138 | #define frexp(x,y) __TGMATH_REAL_1_2(x, y, frexp)
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139 | #define hypot(x,y) __TGMATH_REAL_2(x, y, hypot)
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140 | #define ilogb(x) __TGMATH_REAL(x, ilogb)
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141 | #define ldexp(x,y) __TGMATH_REAL_1_2(x, y, ldexp)
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142 | #define lgamma(x) __TGMATH_REAL(x, lgamma)
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143 | #define llrint(x) __TGMATH_REAL(x, llrint)
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144 | #define llround(x) __TGMATH_REAL(x, llround)
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145 | #define log10(x) __TGMATH_REAL(x, log10)
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146 | #define log1p(x) __TGMATH_REAL(x, log1p)
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147 | #define log2(x) __TGMATH_REAL(x, log2)
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148 | #define logb(x) __TGMATH_REAL(x, logb)
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149 | #define lrint(x) __TGMATH_REAL(x, lrint)
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150 | #define lround(x) __TGMATH_REAL(x, lround)
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151 | #define nearbyint(x) __TGMATH_REAL(x, nearbyint)
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152 | #define nextafter(x,y) __TGMATH_REAL_2(x, y, nextafter)
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153 | #define nexttoward(x,y) __TGMATH_REAL_1_2(x, y, nexttoward)
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154 | #define remainder(x,y) __TGMATH_REAL_2(x, y, remainder)
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155 | #define remquo(x,y,z) __TGMATH_REAL_2_3(x, y, z, remquo)
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156 | #define rint(x) __TGMATH_REAL(x, rint)
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157 | #define round(x) __TGMATH_REAL(x, round)
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158 | #define scalbn(x,y) __TGMATH_REAL_1_2(x, y, scalbn)
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159 | #define scalbln(x,y) __TGMATH_REAL_1_2(x, y, scalbln)
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160 | #define tgamma(x) __TGMATH_REAL(x, tgamma)
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161 | #define trunc(x) __TGMATH_REAL(x, trunc)
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162 |
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163 | /* Functions defined in <complex.h> only (7.22p6) */
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164 | #define carg(z) __TGMATH_CPLX_ONLY(z, carg)
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165 | #define cimag(z) __TGMATH_CPLX_ONLY(z, cimag)
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166 | #define conj(z) __TGMATH_CPLX_ONLY(z, conj)
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167 | #define cproj(z) __TGMATH_CPLX_ONLY(z, cproj)
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168 | #define creal(z) __TGMATH_CPLX_ONLY(z, creal)
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169 |
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170 | #endif /* __cplusplus */
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171 | #endif /* _TGMATH_H */
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