mirror of
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568 lines
16 KiB
Plaintext
568 lines
16 KiB
Plaintext
# Backported macros from autoconf git master + a few custom patches
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# This file is part of Autoconf. -*- Autoconf -*-
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# Programming languages support.
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# Copyright (C) 2001-2017, 2020-2023 Free Software Foundation, Inc.
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# This file is part of Autoconf. This program is free
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# software; you can redistribute it and/or modify it under the
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# terms of the GNU General Public License as published by the
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# Free Software Foundation, either version 3 of the License, or
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# (at your option) any later version.
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#
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# This program is distributed in the hope that it will be useful,
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# but WITHOUT ANY WARRANTY; without even the implied warranty of
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# MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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# GNU General Public License for more details.
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#
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# Under Section 7 of GPL version 3, you are granted additional
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# permissions described in the Autoconf Configure Script Exception,
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# version 3.0, as published by the Free Software Foundation.
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#
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# You should have received a copy of the GNU General Public License
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# and a copy of the Autoconf Configure Script Exception along with
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# this program; see the files COPYINGv3 and COPYING.EXCEPTION
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# respectively. If not, see <https://www.gnu.org/licenses/>.
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# Written by David MacKenzie, with help from
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# Akim Demaille, Paul Eggert,
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# François Pinard, Karl Berry, Richard Pixley, Ian Lance Taylor,
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# Roland McGrath, Noah Friedman, david d zuhn, and many others.
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# ---- Backported macros only ----
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AC_DEFUN([_AC_C_C89_TEST_GLOBALS],
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[m4_divert_text([INIT_PREPARE],
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[[# Test code for whether the C compiler supports C89 (global declarations)
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ac_c_conftest_c89_globals='
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/* Does the compiler advertise C89 conformance?
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Do not test the value of __STDC__, because some compilers set it to 0
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while being otherwise adequately conformant. */
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#if !defined __STDC__
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# error "Compiler does not advertise C89 conformance"
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#endif
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#include <stddef.h>
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#include <stdarg.h>
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struct stat;
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/* Most of the following tests are stolen from RCS 5.7 src/conf.sh. */
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struct buf { int x; };
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struct buf * (*rcsopen) (struct buf *, struct stat *, int);
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static char *e (char **p, int i)
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{
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return p[i];
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}
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static char *f (char * (*g) (char **, int), char **p, ...)
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{
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char *s;
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va_list v;
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va_start (v,p);
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s = g (p, va_arg (v,int));
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va_end (v);
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return s;
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}
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/* C89 style stringification. */
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#define noexpand_stringify(a) #a
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const char *stringified = noexpand_stringify(arbitrary+token=sequence);
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/* C89 style token pasting. Exercises some of the corner cases that
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e.g. old MSVC gets wrong, but not very hard. */
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#define noexpand_concat(a,b) a##b
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#define expand_concat(a,b) noexpand_concat(a,b)
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extern int vA;
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extern int vbee;
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#define aye A
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#define bee B
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int *pvA = &expand_concat(v,aye);
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int *pvbee = &noexpand_concat(v,bee);
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/* OSF 4.0 Compaq cc is some sort of almost-ANSI by default. It has
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function prototypes and stuff, but not \xHH hex character constants.
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These do not provoke an error unfortunately, instead are silently treated
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as an "x". The following induces an error, until -std is added to get
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proper ANSI mode. Curiously \x00 != x always comes out true, for an
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array size at least. It is necessary to write \x00 == 0 to get something
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that is true only with -std. */
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int osf4_cc_array ['\''\x00'\'' == 0 ? 1 : -1];
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/* IBM C 6 for AIX is almost-ANSI by default, but it replaces macro parameters
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inside strings and character constants. */
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#define FOO(x) '\''x'\''
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int xlc6_cc_array[FOO(a) == '\''x'\'' ? 1 : -1];
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int test (int i, double x);
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struct s1 {int (*f) (int a);};
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struct s2 {int (*f) (double a);};
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int pairnames (int, char **, int *(*)(struct buf *, struct stat *, int),
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int, int);'
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]])])
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AC_DEFUN([_AC_C_C99_TEST_GLOBALS],
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[m4_divert_text([INIT_PREPARE],
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[[# Test code for whether the C compiler supports C99 (global declarations)
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ac_c_conftest_c99_globals='
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// Does the compiler advertise C99 conformance?
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#if !defined __STDC_VERSION__ || __STDC_VERSION__ < 199901L
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# error "Compiler does not advertise C99 conformance"
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#endif
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#include <stdbool.h>
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extern int puts (const char *);
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extern int printf (const char *, ...);
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extern int dprintf (int, const char *, ...);
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extern void *malloc (size_t);
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extern void free (void *);
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// Check varargs macros. These examples are taken from C99 6.10.3.5.
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// dprintf is used instead of fprintf to avoid needing to declare
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// FILE and stderr.
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#define debug(...) dprintf (2, __VA_ARGS__)
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#define showlist(...) puts (#__VA_ARGS__)
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#define report(test,...) ((test) ? puts (#test) : printf (__VA_ARGS__))
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static void
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test_varargs_macros (void)
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{
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int x = 1234;
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int y = 5678;
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debug ("Flag");
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debug ("X = %d\n", x);
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showlist (The first, second, and third items.);
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report (x>y, "x is %d but y is %d", x, y);
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}
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// Check long long types.
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#define BIG64 18446744073709551615ull
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#define BIG32 4294967295ul
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#define BIG_OK (BIG64 / BIG32 == 4294967297ull && BIG64 % BIG32 == 0)
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#if !BIG_OK
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#error "your preprocessor is broken"
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#endif
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#if BIG_OK
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#else
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#error "your preprocessor is broken"
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#endif
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static long long int bignum = -9223372036854775807LL;
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static unsigned long long int ubignum = BIG64;
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struct incomplete_array
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{
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int datasize;
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double data[];
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};
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struct named_init {
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int number;
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const wchar_t *name;
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double average;
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};
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typedef const char *ccp;
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static inline int
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test_restrict (ccp restrict text)
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{
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// See if C++-style comments work.
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// Iterate through items via the restricted pointer.
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// Also check for declarations in for loops.
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for (unsigned int i = 0; *(text+i) != '\''\0'\''; ++i)
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continue;
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return 0;
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}
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// Check varargs and va_copy.
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static bool
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test_varargs (const char *format, ...)
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{
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va_list args;
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va_start (args, format);
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va_list args_copy;
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va_copy (args_copy, args);
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const char *str = "";
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int number = 0;
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float fnumber = 0;
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while (*format)
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{
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switch (*format++)
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{
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case '\''s'\'': // string
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str = va_arg (args_copy, const char *);
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break;
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case '\''d'\'': // int
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number = va_arg (args_copy, int);
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break;
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case '\''f'\'': // float
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fnumber = va_arg (args_copy, double);
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break;
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default:
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break;
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}
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}
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va_end (args_copy);
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va_end (args);
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return *str && number && fnumber;
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}
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'
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]])])
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AC_DEFUN([_AC_C_C11_TEST_GLOBALS],
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[m4_divert_text([INIT_PREPARE],
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[[# Test code for whether the C compiler supports C11 (global declarations)
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ac_c_conftest_c11_globals='
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// Does the compiler advertise C11 conformance?
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#if !defined __STDC_VERSION__ || __STDC_VERSION__ < 201112L
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# error "Compiler does not advertise C11 conformance"
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#endif
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// Check _Alignas.
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char _Alignas (double) aligned_as_double;
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char _Alignas (0) no_special_alignment;
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extern char aligned_as_int;
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char _Alignas (0) _Alignas (int) aligned_as_int;
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// Check _Alignof.
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enum
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{
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int_alignment = _Alignof (int),
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int_array_alignment = _Alignof (int[100]),
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char_alignment = _Alignof (char)
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};
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_Static_assert (0 < -_Alignof (int), "_Alignof is signed");
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// Check _Noreturn.
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_Noreturn int does_not_return (void) { for (;;) continue; }
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// Check _Static_assert.
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struct test_static_assert
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{
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int x;
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_Static_assert (sizeof (int) <= sizeof (long int),
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"_Static_assert does not work in struct");
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long int y;
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};
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// Check UTF-8 literals.
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#define u8 syntax error!
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char const utf8_literal[] = u8"happens to be ASCII" "another string";
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// Check duplicate typedefs.
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typedef long *long_ptr;
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typedef long int *long_ptr;
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typedef long_ptr long_ptr;
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// Anonymous structures and unions -- taken from C11 6.7.2.1 Example 1.
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struct anonymous
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{
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union {
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struct { int i; int j; };
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struct { int k; long int l; } w;
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};
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int m;
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} v1;
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'
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]])])
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# AC_LANG_CALL(C)(PROLOGUE, FUNCTION)
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# -----------------------------------
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# Avoid conflicting decl of main.
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m4_define([AC_LANG_CALL(C)],
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[AC_LANG_PROGRAM([$1
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m4_if([$2], [main], ,
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[/* Override any GCC internal prototype to avoid an error.
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Use char because int might match the return type of a GCC
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builtin and then its argument prototype would still apply.
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The 'extern "C"' is for builds by C++ compilers;
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although this is not generally supported in C code supporting it here
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has little cost and some practical benefit (sr 110532). */
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#ifdef __cplusplus
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extern "C"
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#endif
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char $2 (void);])], [return $2 ();])])
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# AC_LANG_FUNC_LINK_TRY(C)(FUNCTION)
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# ----------------------------------
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# Don't include <ctype.h> because on OSF/1 3.0 it includes
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# <sys/types.h> which includes <sys/select.h> which contains a
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# prototype for select. Similarly for bzero.
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#
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# This test used to merely assign f=$1 in main(), but that was
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# optimized away by HP unbundled cc A.05.36 for ia64 under +O3,
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# presumably on the basis that there's no need to do that store if the
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# program is about to exit. Conversely, the AIX linker optimizes an
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# unused external declaration that initializes f=$1. So this test
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# program has both an external initialization of f, and a use of f in
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# main that affects the exit status.
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#
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m4_define([AC_LANG_FUNC_LINK_TRY(C)],
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[AC_LANG_PROGRAM(
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[/* Define $1 to an innocuous variant, in case <limits.h> declares $1.
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For example, HP-UX 11i <limits.h> declares gettimeofday. */
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#define $1 innocuous_$1
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/* System header to define __stub macros and hopefully few prototypes,
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which can conflict with char $1 (void); below. */
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#include <limits.h>
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#undef $1
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/* Override any GCC internal prototype to avoid an error.
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Use char because int might match the return type of a GCC
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builtin and then its argument prototype would still apply. */
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#ifdef __cplusplus
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extern "C"
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#endif
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char $1 (void);
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/* The GNU C library defines this for functions which it implements
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to always fail with ENOSYS. Some functions are actually named
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something starting with __ and the normal name is an alias. */
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#if defined __stub_$1 || defined __stub___$1
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choke me
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#endif
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], [return $1 ();])])
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# AC_C_BIGENDIAN ([ACTION-IF-TRUE], [ACTION-IF-FALSE], [ACTION-IF-UNKNOWN],
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# [ACTION-IF-UNIVERSAL])
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# -------------------------------------------------------------------------
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AC_DEFUN([AC_C_BIGENDIAN],
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[AH_VERBATIM([WORDS_BIGENDIAN],
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[/* Define WORDS_BIGENDIAN to 1 if your processor stores words with the most
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significant byte first (like Motorola and SPARC, unlike Intel). */
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#if defined AC_APPLE_UNIVERSAL_BUILD
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# if defined __BIG_ENDIAN__
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# define WORDS_BIGENDIAN 1
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# endif
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#else
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# ifndef WORDS_BIGENDIAN
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# undef WORDS_BIGENDIAN
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# endif
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#endif])dnl
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AC_CACHE_CHECK([whether byte ordering is bigendian], [ac_cv_c_bigendian],
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[ac_cv_c_bigendian=unknown
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# See if we're dealing with a universal compiler.
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AC_COMPILE_IFELSE(
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[AC_LANG_SOURCE(
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[[#ifndef __APPLE_CC__
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not a universal capable compiler
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#endif
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typedef int dummy;
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]])],
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[
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# Check for potential -arch flags. It is not universal unless
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# there are at least two -arch flags with different values.
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ac_arch=
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ac_prev=
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for ac_word in $CC $CFLAGS $CPPFLAGS $LDFLAGS; do
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if test -n "$ac_prev"; then
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case $ac_word in
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i?86 | x86_64 | ppc | ppc64)
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if test -z "$ac_arch" || test "$ac_arch" = "$ac_word"; then
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ac_arch=$ac_word
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else
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ac_cv_c_bigendian=universal
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break
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fi
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;;
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esac
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ac_prev=
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elif test "x$ac_word" = "x-arch"; then
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ac_prev=arch
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fi
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done])
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if test $ac_cv_c_bigendian = unknown; then
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# See if sys/param.h defines the BYTE_ORDER macro.
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AC_COMPILE_IFELSE(
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[AC_LANG_PROGRAM(
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[[#include <sys/types.h>
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#include <sys/param.h>
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]],
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[[#if ! (defined BYTE_ORDER && defined BIG_ENDIAN \\
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&& defined LITTLE_ENDIAN && BYTE_ORDER && BIG_ENDIAN \\
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&& LITTLE_ENDIAN)
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bogus endian macros
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#endif
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]])],
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[# It does; now see whether it defined to BIG_ENDIAN or not.
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AC_COMPILE_IFELSE(
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[AC_LANG_PROGRAM(
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[[#include <sys/types.h>
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#include <sys/param.h>
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]],
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[[#if BYTE_ORDER != BIG_ENDIAN
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not big endian
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#endif
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]])],
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[ac_cv_c_bigendian=yes],
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[ac_cv_c_bigendian=no])])
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fi
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if test $ac_cv_c_bigendian = unknown; then
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# See if <limits.h> defines _LITTLE_ENDIAN or _BIG_ENDIAN (e.g., Solaris).
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AC_COMPILE_IFELSE(
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[AC_LANG_PROGRAM(
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[[#include <limits.h>
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]],
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[[#if ! (defined _LITTLE_ENDIAN || defined _BIG_ENDIAN)
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bogus endian macros
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#endif
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]])],
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[# It does; now see whether it defined to _BIG_ENDIAN or not.
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AC_COMPILE_IFELSE(
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[AC_LANG_PROGRAM(
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[[#include <limits.h>
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]],
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[[#ifndef _BIG_ENDIAN
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not big endian
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#endif
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]])],
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[ac_cv_c_bigendian=yes],
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[ac_cv_c_bigendian=no])])
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fi
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if test $ac_cv_c_bigendian = unknown; then
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# Compile a test program.
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AC_RUN_IFELSE(
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[AC_LANG_PROGRAM([AC_INCLUDES_DEFAULT],
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[[
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/* Are we little or big endian? From Harbison&Steele. */
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|
union
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{
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|
long int l;
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|
char c[sizeof (long int)];
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|
} u;
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|
u.l = 1;
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|
return u.c[sizeof (long int) - 1] == 1;
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|
]])],
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[ac_cv_c_bigendian=no],
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|
[ac_cv_c_bigendian=yes],
|
|
[# Try to guess by grepping values from an object file.
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|
AC_LINK_IFELSE(
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|
[AC_LANG_SOURCE(
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|
[[unsigned short int ascii_mm[] =
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{ 0x4249, 0x4765, 0x6E44, 0x6961, 0x6E53, 0x7953, 0 };
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|
unsigned short int ascii_ii[] =
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|
{ 0x694C, 0x5454, 0x656C, 0x6E45, 0x6944, 0x6E61, 0 };
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|
int use_ascii (int i) {
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|
return ascii_mm[i] + ascii_ii[i];
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|
}
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unsigned short int ebcdic_ii[] =
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{ 0x89D3, 0xE3E3, 0x8593, 0x95C5, 0x89C4, 0x9581, 0 };
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unsigned short int ebcdic_mm[] =
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{ 0xC2C9, 0xC785, 0x95C4, 0x8981, 0x95E2, 0xA8E2, 0 };
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int use_ebcdic (int i) {
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return ebcdic_mm[i] + ebcdic_ii[i];
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}
|
|
int
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|
main (int argc, char **argv)
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|
{
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|
/* Intimidate the compiler so that it does not
|
|
optimize the arrays away. */
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|
char *p = argv[0];
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ascii_mm[1] = *p++; ebcdic_mm[1] = *p++;
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ascii_ii[1] = *p++; ebcdic_ii[1] = *p++;
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return use_ascii (argc) == use_ebcdic (*p);
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}]])],
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|
[if grep BIGenDianSyS conftest$ac_exeext >/dev/null; then
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ac_cv_c_bigendian=yes
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fi
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|
if grep LiTTleEnDian conftest$ac_exeext >/dev/null ; then
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|
if test "$ac_cv_c_bigendian" = unknown; then
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|
ac_cv_c_bigendian=no
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|
else
|
|
# finding both strings is unlikely to happen, but who knows?
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|
ac_cv_c_bigendian=unknown
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|
fi
|
|
fi])])
|
|
fi])
|
|
case $ac_cv_c_bigendian in #(
|
|
yes)
|
|
m4_default([$1],
|
|
[AC_DEFINE([WORDS_BIGENDIAN], 1)]);; #(
|
|
no)
|
|
$2 ;; #(
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|
universal)
|
|
dnl Note that AC_APPLE_UNIVERSAL_BUILD sorts less than WORDS_BIGENDIAN;
|
|
dnl this is a necessity for proper config header operation. Warn if
|
|
dnl the user did not specify a config header but is relying on the
|
|
dnl default behavior for universal builds.
|
|
m4_default([$4],
|
|
[AC_CONFIG_COMMANDS_PRE([m4_ifset([AH_HEADER], [],
|
|
[m4_warn([obsolete],
|
|
[AC_C_BIGENDIAN should be used with AC_CONFIG_HEADERS])])])dnl
|
|
AC_DEFINE([AC_APPLE_UNIVERSAL_BUILD],1,
|
|
[Define if building universal (internal helper macro)])])
|
|
;; #(
|
|
*)
|
|
m4_default([$3],
|
|
[AC_MSG_ERROR([unknown endianness
|
|
presetting ac_cv_c_bigendian=no (or yes) will help])]) ;;
|
|
esac
|
|
])# AC_C_BIGENDIAN
|
|
|
|
|
|
# AC_C_VARARRAYS
|
|
# --------------
|
|
# Check whether the C compiler supports variable-length arrays.
|
|
AC_DEFUN([AC_C_VARARRAYS],
|
|
[
|
|
AC_CACHE_CHECK([for variable-length arrays],
|
|
ac_cv_c_vararrays,
|
|
[AC_COMPILE_IFELSE([AC_LANG_SOURCE(
|
|
[[ #ifndef __STDC_NO_VLA__
|
|
#error __STDC_NO_VLA__ not defined
|
|
choke me now
|
|
#endif
|
|
]])],
|
|
[ac_cv_c_vararrays='no: __STDC_NO_VLA__ is defined'],
|
|
[AC_COMPILE_IFELSE(
|
|
[AC_LANG_PROGRAM(
|
|
[[/* Test for VLA support. This test is partly inspired
|
|
from examples in the C standard. Use at least two VLA
|
|
functions to detect the GCC 3.4.3 bug described in:
|
|
https://lists.gnu.org/archive/html/bug-gnulib/2014-08/msg00014.html
|
|
*/
|
|
#ifdef __STDC_NO_VLA__
|
|
syntax error;
|
|
#else
|
|
extern int n;
|
|
static int B[100];
|
|
int fvla (int m, int C[m][m]);
|
|
|
|
static int
|
|
simple (int count, int all[static count])
|
|
{
|
|
return all[count - 1];
|
|
}
|
|
|
|
int
|
|
fvla (int m, int C[m][m])
|
|
{
|
|
typedef int VLA[m][m];
|
|
VLA x;
|
|
int D[m];
|
|
static int (*q)[m] = &B;
|
|
int (*s)[n] = q;
|
|
(void) simple;
|
|
return C && &x[0][0] == &D[0] && &D[0] == s[0];
|
|
}
|
|
#endif
|
|
]])],
|
|
[ac_cv_c_vararrays=yes],
|
|
[ac_cv_c_vararrays=no])])])
|
|
if test "$ac_cv_c_vararrays" = yes; then
|
|
dnl This is for compatibility with Autoconf 2.61-2.69.
|
|
AC_DEFINE([HAVE_C_VARARRAYS], 1,
|
|
[Define to 1 if C supports variable-length arrays.])
|
|
elif test "$ac_cv_c_vararrays" = no; then
|
|
AC_DEFINE([__STDC_NO_VLA__], 1,
|
|
[Define to 1 if C does not support variable-length arrays, and
|
|
if the compiler does not already define this.])
|
|
fi
|
|
])
|
|
|