Mercurial > hg > octave-kai > gnulib-hg
view tests/test-dprintf-posix2.c @ 16616:2f2ef742aa4b
New module 'exp2'.
* lib/math.in.h (exp2): New declaration.
* lib/exp2.c: New file.
* m4/exp2.m4: New file.
* m4/math_h.m4 (gl_MATH_H): Test whether exp2 is declared.
(gl_MATH_H_DEFAULTS): Initialize GNULIB_EXP2, HAVE_DECL_EXP2,
REPLACE_EXP2.
* modules/math (Makefile.am): Substitute GNULIB_EXP2, HAVE_DECL_EXP2,
REPLACE_EXP2.
* modules/exp2: New file.
* tests/test-math-c++.cc: Check the declaration of exp2.
* doc/posix-functions/exp2.texi: Mention the new module and the IRIX
and OpenBSD problems.
author | Bruno Haible <bruno@clisp.org> |
---|---|
date | Wed, 07 Mar 2012 03:29:32 +0100 |
parents | 8250f2777afc |
children | e542fd46ad6f |
line wrap: on
line source
/* Test of POSIX compatible dprintf() function. Copyright (C) 2009-2012 Free Software Foundation, Inc. This program is free software: you can redistribute it and/or modify it under the terms of the GNU General Public License as published by the Free Software Foundation; either version 3 of the License, or (at your option) any later version. This program is distributed in the hope that it will be useful, but WITHOUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for more details. You should have received a copy of the GNU General Public License along with this program. If not, see <http://www.gnu.org/licenses/>. */ /* Written by Bruno Haible <bruno@clisp.org>, 2009. */ #include <config.h> #include <stdio.h> #include <stdlib.h> #include <string.h> #include <unistd.h> #include <errno.h> #if HAVE_GETRLIMIT && HAVE_SETRLIMIT # include <sys/types.h> # include <sys/time.h> # include <sys/resource.h> #endif #include "resource-ext.h" /* Test against a memory leak in the fprintf replacement. */ /* Number of iterations across the loop. */ #define NUM_ROUNDS 1000 /* Number of bytes that are allowed to escape per round. */ #define MAX_ALLOC_ROUND 10000 /* Number of bytes that are allowed to escape in total. This should be at least 10 MB, since it includes the normal memory or address space of the test program. */ #define MAX_ALLOC_TOTAL (NUM_ROUNDS * MAX_ALLOC_ROUND) int main (int argc, char *argv[]) { uintptr_t initial_rusage_as; int arg; int result; /* Limit the amount of malloc()ed memory to MAX_ALLOC_TOTAL or less. */ /* On AIX systems, malloc() is limited by RLIMIT_DATA. */ #if HAVE_GETRLIMIT && HAVE_SETRLIMIT && defined RLIMIT_DATA { struct rlimit limit; if (getrlimit (RLIMIT_DATA, &limit) >= 0) { if (limit.rlim_max == RLIM_INFINITY || limit.rlim_max > MAX_ALLOC_TOTAL) limit.rlim_max = MAX_ALLOC_TOTAL; limit.rlim_cur = limit.rlim_max; (void) setrlimit (RLIMIT_DATA, &limit); } } #endif /* On all systems except AIX and OpenBSD, malloc() is limited by RLIMIT_AS. On some systems, setrlimit of RLIMIT_AS doesn't work but get_rusage_as () does. Allow the address space size to grow by at most MAX_ALLOC_TOTAL. */ initial_rusage_as = get_rusage_as (); #if !defined _AIX if (initial_rusage_as == 0) return 77; #endif arg = atoi (argv[1]); if (arg == 0) { void *memory = malloc (MAX_ALLOC_TOTAL); if (memory == NULL) return 1; memset (memory, 17, MAX_ALLOC_TOTAL); result = 78; } else { /* Perform the test and test whether it triggers a permanent memory allocation of more than MAX_ALLOC_TOTAL bytes. */ int repeat; for (repeat = 0; repeat < NUM_ROUNDS; repeat++) { /* This may produce a temporary memory allocation of 11000 bytes. but should not result in a permanent memory allocation. */ if (dprintf (STDOUT_FILENO, "%011000d\n", 17) == -1 && errno == ENOMEM) return 1; } result = 0; } if (get_rusage_as () > initial_rusage_as + MAX_ALLOC_TOTAL) return 1; return result; }