1 /* GCC Quad-Precision Math Library
2 Copyright (C) 2010, 2011 Free Software Foundation, Inc.
3 Written by Francois-Xavier Coudert <fxcoudert@gcc.gnu.org>
5 This file is part of the libquadmath library.
6 Libquadmath is free software; you can redistribute it and/or
7 modify it under the terms of the GNU Library General Public
8 License as published by the Free Software Foundation; either
9 version 2 of the License, or (at your option) any later version.
11 Libquadmath 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 Library General Public License for more details.
16 You should have received a copy of the GNU Library General Public
17 License along with libquadmath; see the file COPYING.LIB. If
18 not, write to the Free Software Foundation, Inc., 51 Franklin Street - Fifth Floor,
19 Boston, MA 02110-1301, USA. */
30 /* Define the complex type corresponding to __float128
31 ("_Complex __float128" is not allowed) */
32 typedef _Complex
float __attribute__((mode(TC
))) __complex128
;
35 # define __quadmath_throw throw ()
36 # define __quadmath_nth(fct) fct throw ()
38 # define __quadmath_throw __attribute__((__nothrow__))
39 # define __quadmath_nth(fct) __attribute__((__nothrow__)) fct
42 /* Prototypes for real functions */
43 extern __float128
acosq (__float128
) __quadmath_throw
;
44 extern __float128
acoshq (__float128
) __quadmath_throw
;
45 extern __float128
asinq (__float128
) __quadmath_throw
;
46 extern __float128
asinhq (__float128
) __quadmath_throw
;
47 extern __float128
atanq (__float128
) __quadmath_throw
;
48 extern __float128
atanhq (__float128
) __quadmath_throw
;
49 extern __float128
atan2q (__float128
, __float128
) __quadmath_throw
;
50 extern __float128
cbrtq (__float128
) __quadmath_throw
;
51 extern __float128
ceilq (__float128
) __quadmath_throw
;
52 extern __float128
copysignq (__float128
, __float128
) __quadmath_throw
;
53 extern __float128
coshq (__float128
) __quadmath_throw
;
54 extern __float128
cosq (__float128
) __quadmath_throw
;
55 extern __float128
erfq (__float128
) __quadmath_throw
;
56 extern __float128
erfcq (__float128
) __quadmath_throw
;
57 extern __float128
expq (__float128
) __quadmath_throw
;
58 extern __float128
expm1q (__float128
) __quadmath_throw
;
59 extern __float128
fabsq (__float128
) __quadmath_throw
;
60 extern __float128
fdimq (__float128
, __float128
) __quadmath_throw
;
61 extern int finiteq (__float128
) __quadmath_throw
;
62 extern __float128
floorq (__float128
) __quadmath_throw
;
63 extern __float128
fmaq (__float128
, __float128
, __float128
) __quadmath_throw
;
64 extern __float128
fmaxq (__float128
, __float128
) __quadmath_throw
;
65 extern __float128
fminq (__float128
, __float128
) __quadmath_throw
;
66 extern __float128
fmodq (__float128
, __float128
) __quadmath_throw
;
67 extern __float128
frexpq (__float128
, int *) __quadmath_throw
;
68 extern __float128
hypotq (__float128
, __float128
) __quadmath_throw
;
69 extern int isinfq (__float128
) __quadmath_throw
;
70 extern int ilogbq (__float128
) __quadmath_throw
;
71 extern int isnanq (__float128
) __quadmath_throw
;
72 extern __float128
j0q (__float128
) __quadmath_throw
;
73 extern __float128
j1q (__float128
) __quadmath_throw
;
74 extern __float128
jnq (int, __float128
) __quadmath_throw
;
75 extern __float128
ldexpq (__float128
, int) __quadmath_throw
;
76 extern __float128
lgammaq (__float128
) __quadmath_throw
;
77 extern long long int llrintq (__float128
) __quadmath_throw
;
78 extern long long int llroundq (__float128
) __quadmath_throw
;
79 extern __float128
logbq (__float128
) __quadmath_throw
;
80 extern __float128
logq (__float128
) __quadmath_throw
;
81 extern __float128
log10q (__float128
) __quadmath_throw
;
82 extern __float128
log2q (__float128
) __quadmath_throw
;
83 extern __float128
log1pq (__float128
) __quadmath_throw
;
84 extern long int lrintq (__float128
) __quadmath_throw
;
85 extern long int lroundq (__float128
) __quadmath_throw
;
86 extern __float128
modfq (__float128
, __float128
*) __quadmath_throw
;
87 extern __float128
nanq (const char *) __quadmath_throw
;
88 extern __float128
nearbyintq (__float128
) __quadmath_throw
;
89 extern __float128
nextafterq (__float128
, __float128
) __quadmath_throw
;
90 extern __float128
powq (__float128
, __float128
) __quadmath_throw
;
91 extern __float128
remainderq (__float128
, __float128
) __quadmath_throw
;
92 extern __float128
remquoq (__float128
, __float128
, int *) __quadmath_throw
;
93 extern __float128
rintq (__float128
) __quadmath_throw
;
94 extern __float128
roundq (__float128
) __quadmath_throw
;
95 extern __float128
scalblnq (__float128
, long int) __quadmath_throw
;
96 extern __float128
scalbnq (__float128
, int) __quadmath_throw
;
97 extern int signbitq (__float128
) __quadmath_throw
;
98 extern void sincosq (__float128
, __float128
*, __float128
*) __quadmath_throw
;
99 extern __float128
sinhq (__float128
) __quadmath_throw
;
100 extern __float128
sinq (__float128
) __quadmath_throw
;
101 extern __float128
sqrtq (__float128
) __quadmath_throw
;
102 extern __float128
tanq (__float128
) __quadmath_throw
;
103 extern __float128
tanhq (__float128
) __quadmath_throw
;
104 extern __float128
tgammaq (__float128
) __quadmath_throw
;
105 extern __float128
truncq (__float128
) __quadmath_throw
;
106 extern __float128
y0q (__float128
) __quadmath_throw
;
107 extern __float128
y1q (__float128
) __quadmath_throw
;
108 extern __float128
ynq (int, __float128
) __quadmath_throw
;
111 /* Prototypes for complex functions */
112 extern __float128
cabsq (__complex128
) __quadmath_throw
;
113 extern __float128
cargq (__complex128
) __quadmath_throw
;
114 extern __float128
cimagq (__complex128
) __quadmath_throw
;
115 extern __float128
crealq (__complex128
) __quadmath_throw
;
116 extern __complex128
cacosq (__complex128
) __quadmath_throw
;
117 extern __complex128
cacoshq (__complex128
) __quadmath_throw
;
118 extern __complex128
casinq (__complex128
) __quadmath_throw
;
119 extern __complex128
casinhq (__complex128
) __quadmath_throw
;
120 extern __complex128
catanq (__complex128
) __quadmath_throw
;
121 extern __complex128
catanhq (__complex128
) __quadmath_throw
;
122 extern __complex128
ccosq (__complex128
) __quadmath_throw
;
123 extern __complex128
ccoshq (__complex128
) __quadmath_throw
;
124 extern __complex128
cexpq (__complex128
) __quadmath_throw
;
125 extern __complex128
cexpiq (__float128
) __quadmath_throw
;
126 extern __complex128
clogq (__complex128
) __quadmath_throw
;
127 extern __complex128
clog10q (__complex128
) __quadmath_throw
;
128 extern __complex128
conjq (__complex128
) __quadmath_throw
;
129 extern __complex128
cpowq (__complex128
, __complex128
) __quadmath_throw
;
130 extern __complex128
cprojq (__complex128
) __quadmath_throw
;
131 extern __complex128
csinq (__complex128
) __quadmath_throw
;
132 extern __complex128
csinhq (__complex128
) __quadmath_throw
;
133 extern __complex128
csqrtq (__complex128
) __quadmath_throw
;
134 extern __complex128
ctanq (__complex128
) __quadmath_throw
;
135 extern __complex128
ctanhq (__complex128
) __quadmath_throw
;
138 /* Prototypes for string <-> __float128 conversion functions */
139 extern __float128
strtoflt128 (const char *, char **) __quadmath_throw
;
140 extern int quadmath_snprintf (char *str
, size_t size
,
141 const char *format
, ...) __quadmath_throw
;
145 #define FLT128_MAX 1.18973149535723176508575932662800702e4932Q
146 #define FLT128_MIN 3.36210314311209350626267781732175260e-4932Q
147 #define FLT128_EPSILON 1.92592994438723585305597794258492732e-34Q
148 #define FLT128_DENORM_MIN 6.475175119438025110924438958227646552e-4966Q
149 #define FLT128_MANT_DIG 113
150 #define FLT128_MIN_EXP (-16381)
151 #define FLT128_MAX_EXP 16384
152 #define FLT128_DIG 33
153 #define FLT128_MIN_10_EXP (-4931)
154 #define FLT128_MAX_10_EXP 4932
157 #define HUGE_VALQ __builtin_huge_valq()
158 /* The following alternative is valid, but brings the warning:
159 (floating constant exceeds range of ‘__float128’) */
160 /* #define HUGE_VALQ (__extension__ 0x1.0p32767Q) */
162 #define M_Eq 2.7182818284590452353602874713526625Q /* e */
163 #define M_LOG2Eq 1.4426950408889634073599246810018921Q /* log_2 e */
164 #define M_LOG10Eq 0.4342944819032518276511289189166051Q /* log_10 e */
165 #define M_LN2q 0.6931471805599453094172321214581766Q /* log_e 2 */
166 #define M_LN10q 2.3025850929940456840179914546843642Q /* log_e 10 */
167 #define M_PIq 3.1415926535897932384626433832795029Q /* pi */
168 #define M_PI_2q 1.5707963267948966192313216916397514Q /* pi/2 */
169 #define M_PI_4q 0.7853981633974483096156608458198757Q /* pi/4 */
170 #define M_1_PIq 0.3183098861837906715377675267450287Q /* 1/pi */
171 #define M_2_PIq 0.6366197723675813430755350534900574Q /* 2/pi */
172 #define M_2_SQRTPIq 1.1283791670955125738961589031215452Q /* 2/sqrt(pi) */
173 #define M_SQRT2q 1.4142135623730950488016887242096981Q /* sqrt(2) */
174 #define M_SQRT1_2q 0.7071067811865475244008443621048490Q /* 1/sqrt(2) */
176 #define __quadmath_extern_inline \
177 extern inline __attribute__ ((__gnu_inline__))
179 __quadmath_extern_inline __float128
180 __quadmath_nth (cimagq (__complex128 __z
))
185 __quadmath_extern_inline __float128
186 __quadmath_nth (crealq (__complex128 __z
))
191 __quadmath_extern_inline __complex128
192 __quadmath_nth (conjq (__complex128 __z
))
194 return __extension__
~__z
;