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fa78feca47
This code manages the mappings of the available databases in NSS (i.e. passwd, hosts, netgroup, etc) with the actions that should be taken to do a query on those databases. This is the main API between query functions scattered throughout glibc and the underlying code (actions, modules, etc). Reviewed-by: Siddhesh Poyarekar <siddhesh@sourceware.org>
159 lines
5.1 KiB
C
159 lines
5.1 KiB
C
/* Copyright (C) 2002-2020 Free Software Foundation, Inc.
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This file is part of the GNU C Library.
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Contributed by Ulrich Drepper <drepper@redhat.com>, 2002.
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The GNU C Library is free software; you can redistribute it and/or
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modify it under the terms of the GNU Lesser General Public
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License as published by the Free Software Foundation; either
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version 2.1 of the License, or (at your option) any later version.
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The GNU C Library 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 GNU
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Lesser General Public License for more details.
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You should have received a copy of the GNU Lesser General Public
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License along with the GNU C Library; if not, see
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<https://www.gnu.org/licenses/>. */
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#include <assert.h>
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#include <stdlib.h>
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#include <unistd.h>
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#include <sys/types.h>
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#include <sysdep.h>
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#include <libio/libioP.h>
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#include <tls.h>
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#include <hp-timing.h>
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#include <ldsodefs.h>
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#include <stdio-lock.h>
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#include <atomic.h>
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#include <nptl/pthreadP.h>
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#include <fork.h>
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#include <arch-fork.h>
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#include <futex-internal.h>
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#include <malloc/malloc-internal.h>
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#include <nss/nss_database.h>
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static void
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fresetlockfiles (void)
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{
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_IO_ITER i;
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for (i = _IO_iter_begin(); i != _IO_iter_end(); i = _IO_iter_next(i))
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if ((_IO_iter_file (i)->_flags & _IO_USER_LOCK) == 0)
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_IO_lock_init (*((_IO_lock_t *) _IO_iter_file(i)->_lock));
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}
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pid_t
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__libc_fork (void)
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{
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pid_t pid;
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/* Determine if we are running multiple threads. We skip some fork
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handlers in the single-thread case, to make fork safer to use in
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signal handlers. POSIX requires that fork is async-signal-safe,
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but our current fork implementation is not. */
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bool multiple_threads = THREAD_GETMEM (THREAD_SELF, header.multiple_threads);
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__run_fork_handlers (atfork_run_prepare, multiple_threads);
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struct nss_database_data nss_database_data;
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/* If we are not running multiple threads, we do not have to
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preserve lock state. If fork runs from a signal handler, only
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async-signal-safe functions can be used in the child. These data
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structures are only used by unsafe functions, so their state does
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not matter if fork was called from a signal handler. */
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if (multiple_threads)
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{
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call_function_static_weak (__nss_database_fork_prepare_parent,
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&nss_database_data);
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_IO_list_lock ();
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/* Acquire malloc locks. This needs to come last because fork
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handlers may use malloc, and the libio list lock has an
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indirect malloc dependency as well (via the getdelim
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function). */
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call_function_static_weak (__malloc_fork_lock_parent);
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}
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pid = arch_fork (&THREAD_SELF->tid);
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if (pid == 0)
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{
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struct pthread *self = THREAD_SELF;
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/* See __pthread_once. */
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if (__fork_generation_pointer != NULL)
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*__fork_generation_pointer += __PTHREAD_ONCE_FORK_GEN_INCR;
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/* Initialize the robust mutex list setting in the kernel which has
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been reset during the fork. We do not check for errors because if
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it fails here, it must have failed at process startup as well and
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nobody could have used robust mutexes.
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Before we do that, we have to clear the list of robust mutexes
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because we do not inherit ownership of mutexes from the parent.
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We do not have to set self->robust_head.futex_offset since we do
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inherit the correct value from the parent. We do not need to clear
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the pending operation because it must have been zero when fork was
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called. */
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#if __PTHREAD_MUTEX_HAVE_PREV
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self->robust_prev = &self->robust_head;
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#endif
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self->robust_head.list = &self->robust_head;
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#ifdef SHARED
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if (__builtin_expect (__libc_pthread_functions_init, 0))
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PTHFCT_CALL (ptr_set_robust, (self));
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#else
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extern __typeof (__nptl_set_robust) __nptl_set_robust
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__attribute__((weak));
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if (__builtin_expect (__nptl_set_robust != NULL, 0))
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__nptl_set_robust (self);
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#endif
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/* Reset the lock state in the multi-threaded case. */
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if (multiple_threads)
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{
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/* Release malloc locks. */
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call_function_static_weak (__malloc_fork_unlock_child);
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/* Reset the file list. These are recursive mutexes. */
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fresetlockfiles ();
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/* Reset locks in the I/O code. */
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_IO_list_resetlock ();
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call_function_static_weak (__nss_database_fork_subprocess,
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&nss_database_data);
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}
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/* Reset the lock the dynamic loader uses to protect its data. */
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__rtld_lock_initialize (GL(dl_load_lock));
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/* Run the handlers registered for the child. */
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__run_fork_handlers (atfork_run_child, multiple_threads);
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}
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else
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{
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/* Release acquired locks in the multi-threaded case. */
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if (multiple_threads)
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{
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/* Release malloc locks, parent process variant. */
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call_function_static_weak (__malloc_fork_unlock_parent);
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/* We execute this even if the 'fork' call failed. */
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_IO_list_unlock ();
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}
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/* Run the handlers registered for the parent. */
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__run_fork_handlers (atfork_run_parent, multiple_threads);
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}
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return pid;
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}
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weak_alias (__libc_fork, __fork)
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libc_hidden_def (__fork)
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weak_alias (__libc_fork, fork)
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