forked from rpms/glibc
0457f649e3
* Wed Sep 16 2015 Mike FABIAN <mfabian@redhat.com> - 2.22.90-7 - Add the C.UTF-8 locale (#902094). * Wed Sep 16 2015 Carlos O'Donell <carlos@systemhalted.org> - 2.22.90-6 - Fix GCC 5 and -Werror related build failures. - Fix --install-langs bug which causes SIGABRT (#1262040).
341 lines
8.6 KiB
C
341 lines
8.6 KiB
C
#include <sys/types.h>
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#include <sys/wait.h>
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#include <stdio.h>
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#include <errno.h>
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#include <unistd.h>
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#include <sys/time.h>
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#include <dirent.h>
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#include <stddef.h>
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#include <fcntl.h>
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#include <string.h>
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#include <sys/stat.h>
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#include <elf.h>
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#define verbose_exec(failcode, path...) \
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do \
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{ \
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char *const arr[] = { path, NULL }; \
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vexec (failcode, arr); \
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} while (0)
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__attribute__((noinline)) void vexec (int failcode, char *const path[]);
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__attribute__((noinline)) void says (const char *str);
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__attribute__((noinline)) void sayn (long num);
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__attribute__((noinline)) void message (char *const path[]);
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__attribute__((noinline)) int check_elf (const char *name);
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#ifdef __i386__
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static int
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is_ia64 (void)
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{
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unsigned int fl1, fl2;
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/* See if we can use cpuid. */
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__asm__ ("pushfl; pushfl; popl %0; movl %0,%1; xorl %2,%0;"
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"pushl %0; popfl; pushfl; popl %0; popfl"
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: "=&r" (fl1), "=&r" (fl2)
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: "i" (0x00200000));
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if (((fl1 ^ fl2) & 0x00200000) == 0)
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return 0;
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/* Host supports cpuid. See if cpuid gives capabilities, try
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CPUID(0). Preserve %ebx and %ecx; cpuid insn clobbers these, we
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don't need their CPUID values here, and %ebx may be the PIC
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register. */
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__asm__ ("pushl %%ecx; pushl %%ebx; cpuid; popl %%ebx; popl %%ecx"
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: "=a" (fl1) : "0" (0) : "edx", "cc");
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if (fl1 == 0)
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return 0;
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/* Invoke CPUID(1), return %edx; caller can examine bits to
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determine what's supported. */
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__asm__ ("pushl %%ecx; pushl %%ebx; cpuid; popl %%ebx; popl %%ecx"
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: "=d" (fl2), "=a" (fl1) : "1" (1) : "cc");
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return (fl2 & (1 << 30)) != 0;
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}
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#else
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#define is_ia64() 0
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#endif
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int
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main (void)
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{
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struct stat statbuf;
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char initpath[256];
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char buffer[4096];
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struct pref {
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char *p;
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int len;
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} prefix[] = { { "libc-", 5 }, { "libm-", 5 },
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{ "librt-", 6 }, { "libpthread-", 11 },
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{ "librtkaio-", 10 }, { "libthread_db-", 13 } };
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int i, j, fd;
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off_t base;
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ssize_t ret;
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#ifdef __i386__
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const char *remove_dirs[] = { "/lib/tls", "/lib/i686", "/lib/tls/i486", "/lib/tls/i586", "/lib/tls/i686" };
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#else
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#ifndef LIBTLS
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#define LIBTLS "/lib/tls"
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#endif
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const char *remove_dirs[] = { LIBTLS };
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#endif
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for (j = 0; j < sizeof (remove_dirs) / sizeof (remove_dirs[0]); ++j)
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{
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size_t rmlen = strlen (remove_dirs[j]);
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fd = open (remove_dirs[j], O_RDONLY);
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if (fd >= 0
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&& (ret = getdirentries (fd, buffer, sizeof (buffer), &base))
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>= (ssize_t) offsetof (struct dirent, d_name))
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{
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for (base = 0; base + offsetof (struct dirent, d_name) < ret; )
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{
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struct dirent *d = (struct dirent *) (buffer + base);
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for (i = 0; i < sizeof (prefix) / sizeof (prefix[0]); i++)
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if (! strncmp (d->d_name, prefix[i].p, prefix[i].len))
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{
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char *p = d->d_name + prefix[i].len;
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while (*p == '.' || (*p >= '0' && *p <= '9')) p++;
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if (p[0] == 's' && p[1] == 'o' && p[2] == '\0'
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&& p + 3 - d->d_name
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< sizeof (initpath) - rmlen - 1)
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{
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memcpy (initpath, remove_dirs[j], rmlen);
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initpath[rmlen] = '/';
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strcpy (initpath + rmlen + 1, d->d_name);
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unlink (initpath);
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break;
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}
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}
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base += d->d_reclen;
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}
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close (fd);
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}
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}
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int ldsocfd = open (LD_SO_CONF, O_RDONLY);
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struct stat ldsocst;
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if (ldsocfd >= 0 && fstat (ldsocfd, &ldsocst) >= 0)
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{
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char p[ldsocst.st_size + 1];
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if (read (ldsocfd, p, ldsocst.st_size) == ldsocst.st_size)
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{
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p[ldsocst.st_size] = '\0';
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if (strstr (p, "include ld.so.conf.d/*.conf") == NULL)
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{
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close (ldsocfd);
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ldsocfd = open (LD_SO_CONF, O_WRONLY | O_TRUNC);
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if (ldsocfd >= 0)
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{
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size_t slen = strlen ("include ld.so.conf.d/*.conf\n");
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if (write (ldsocfd, "include ld.so.conf.d/*.conf\n", slen)
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!= slen
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|| write (ldsocfd, p, ldsocst.st_size) != ldsocst.st_size)
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_exit (109);
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}
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}
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}
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if (ldsocfd >= 0)
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close (ldsocfd);
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}
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/* If installing bi-arch glibc, rpm sometimes doesn't unpack all files
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before running one of the lib's %post scriptlet. /sbin/ldconfig will
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then be run by the other arch's %post. */
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if (! access ("/sbin/ldconfig", X_OK))
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verbose_exec (110, "/sbin/ldconfig", "/sbin/ldconfig");
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if (! utimes (GCONV_MODULES_DIR "/gconv-modules.cache", NULL))
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{
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#ifndef ICONVCONFIG
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#define ICONVCONFIG "/usr/sbin/iconvconfig"
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#endif
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char *iconv_cache = GCONV_MODULES_DIR"/gconv-modules.cache";
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char *iconv_dir = GCONV_MODULES_DIR;
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if (is_ia64 ())
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{
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iconv_cache = "/emul/ia32-linux"GCONV_MODULES_DIR"/gconv-modules.cache";
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iconv_dir = "/emul/ia32-linux"GCONV_MODULES_DIR;
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}
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verbose_exec (113, ICONVCONFIG, "/usr/sbin/iconvconfig",
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"-o", iconv_cache,
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"--nostdlib", iconv_dir);
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}
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/* Check if telinit is available and either SysVInit fifo,
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or upstart telinit. */
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if (access ("/sbin/telinit", X_OK)
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|| ((!!access ("/dev/initctl", F_OK))
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^ !access ("/sbin/initctl", X_OK)))
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_exit (0);
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/* Check if we are not inside of some chroot, because we'd just
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timeout and leave /etc/initrunlvl.
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On more modern systems this test is not sufficient to detect
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if we're in a chroot. */
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if (readlink ("/proc/1/exe", initpath, 256) <= 0 ||
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readlink ("/proc/1/root", initpath, 256) <= 0)
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_exit (0);
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/* Here's another well known way to detect chroot, at least on an
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ext and xfs filesystems and assuming nothing mounted on the chroot's
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root. */
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if (stat ("/", &statbuf) != 0
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|| (statbuf.st_ino != 2
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&& statbuf.st_ino != 128))
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_exit (0);
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if (check_elf ("/proc/1/exe"))
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verbose_exec (116, "/sbin/telinit", "/sbin/telinit", "u");
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/* Check if we can safely condrestart sshd. */
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if (access ("/sbin/service", X_OK) == 0
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&& access ("/usr/sbin/sshd", X_OK) == 0
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&& access ("/etc/rc.d/init.d/sshd", X_OK) == 0
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&& access ("/bin/bash", X_OK) == 0)
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{
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if (check_elf ("/usr/sbin/sshd"))
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verbose_exec (-121, "/sbin/service", "/sbin/service", "sshd", "condrestart");
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}
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_exit(0);
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}
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void
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vexec (int failcode, char *const path[])
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{
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pid_t pid;
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int status, save_errno;
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int devnull = 0;
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if (failcode < 0)
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{
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devnull = 1;
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failcode = -failcode;
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}
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pid = vfork ();
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if (pid == 0)
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{
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int fd;
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if (devnull && (fd = open ("/dev/null", O_WRONLY)) >= 0)
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{
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dup2 (fd, 1);
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dup2 (fd, 2);
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close (fd);
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}
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execv (path[0], path + 1);
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save_errno = errno;
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message (path);
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says (" exec failed with errno ");
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sayn (save_errno);
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says ("\n");
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_exit (failcode);
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}
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else if (pid < 0)
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{
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save_errno = errno;
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message (path);
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says (" fork failed with errno ");
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sayn (save_errno);
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says ("\n");
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_exit (failcode + 1);
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}
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if (waitpid (0, &status, 0) != pid || !WIFEXITED (status))
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{
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message (path);
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says (" child terminated abnormally\n");
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_exit (failcode + 2);
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}
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if (WEXITSTATUS (status))
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{
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message (path);
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says (" child exited with exit code ");
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sayn (WEXITSTATUS (status));
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says ("\n");
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_exit (WEXITSTATUS (status));
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}
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}
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void
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says (const char *str)
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{
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write (1, str, strlen (str));
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}
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void
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sayn (long num)
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{
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char string[sizeof (long) * 3 + 1];
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char *p = string + sizeof (string) - 1;
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*p = '\0';
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if (num == 0)
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*--p = '0';
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else
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while (num)
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{
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*--p = '0' + num % 10;
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num = num / 10;
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}
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says (p);
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}
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void
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message (char *const path[])
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{
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says ("/usr/sbin/glibc_post_upgrade: While trying to execute ");
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says (path[0]);
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}
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int
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check_elf (const char *name)
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{
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/* Play safe, if we can't open or read, assume it might be
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ELF for the current arch. */
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int ret = 1;
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int fd = open (name, O_RDONLY);
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if (fd >= 0)
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{
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Elf32_Ehdr ehdr;
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if (read (fd, &ehdr, offsetof (Elf32_Ehdr, e_version))
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== offsetof (Elf32_Ehdr, e_version))
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{
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ret = 0;
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if (ehdr.e_ident[EI_CLASS]
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== (sizeof (long) == 8 ? ELFCLASS64 : ELFCLASS32))
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{
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#if defined __i386__
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ret = ehdr.e_machine == EM_386;
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#elif defined __x86_64__
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ret = ehdr.e_machine == EM_X86_64;
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#elif defined __ia64__
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ret = ehdr.e_machine == EM_IA_64;
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#elif defined __powerpc64__
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ret = ehdr.e_machine == EM_PPC64;
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#elif defined __powerpc__
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ret = ehdr.e_machine == EM_PPC;
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#elif defined __s390__ || defined __s390x__
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ret = ehdr.e_machine == EM_S390;
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#elif defined __x86_64__
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ret = ehdr.e_machine == EM_X86_64;
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#elif defined __sparc__
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if (sizeof (long) == 8)
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ret = ehdr.e_machine == EM_SPARCV9;
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else
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ret = (ehdr.e_machine == EM_SPARC
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|| ehdr.e_machine == EM_SPARC32PLUS);
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#else
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ret = 1;
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#endif
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}
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}
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close (fd);
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}
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return ret;
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}
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