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https://sourceware.org/git/glibc.git
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630da022cb
Applying this commit results in bit-identical libc.so.6. The elf/ld-linux-x86-64.so.2 does change, but only in .note.gnu.build-id Reviewed-by: Carlos O'Donell <carlos@redhat.com>
262 lines
7.8 KiB
C
262 lines
7.8 KiB
C
/* Exception handling in the dynamic linker.
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Copyright (C) 1995-2023 Free Software Foundation, Inc.
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This file is part of the GNU C Library.
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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 <libintl.h>
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#include <setjmp.h>
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#include <stdbool.h>
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#include <stdlib.h>
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#include <string.h>
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#include <unistd.h>
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#include <ldsodefs.h>
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#include <stdio.h>
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#include <tls.h>
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/* This structure communicates state between _dl_catch_error and
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_dl_signal_error. */
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struct rtld_catch
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{
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struct dl_exception *exception; /* The exception data is stored there. */
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volatile int *errcode; /* Return value of _dl_signal_error. */
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jmp_buf env; /* longjmp here on error. */
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};
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/* Multiple threads at once can use the `_dl_catch_error' function.
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The calls can come from `_dl_map_object_deps', `_dlerror_run', or
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from any of the libc functionality which loads dynamic objects
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(NSS, iconv). Therefore we have to be prepared to save the state
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in thread-local memory. We use THREAD_GETMEM and THREAD_SETMEM
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instead of ELF TLS because ELF TLS is not available in the dynamic
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loader. Additionally, the exception handling mechanism must be
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usable before the TCB has been set up, which is why
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rtld_catch_notls is used if !__rtld_tls_init_tp_called. This is
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not needed for static builds, where initialization completes before
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static dlopen etc. can be called. */
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#if IS_IN (rtld)
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static struct rtld_catch *rtld_catch_notls;
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#endif
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static struct rtld_catch *
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get_catch (void)
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{
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#if IS_IN (rtld)
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if (!__rtld_tls_init_tp_called)
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return rtld_catch_notls;
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else
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#endif
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return THREAD_GETMEM (THREAD_SELF, rtld_catch);
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}
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static void
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set_catch (struct rtld_catch *catch)
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{
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#if IS_IN (rtld)
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if (!__rtld_tls_init_tp_called)
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rtld_catch_notls = catch;
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else
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#endif
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THREAD_SETMEM (THREAD_SELF, rtld_catch, catch);
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}
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/* Lossage while resolving the program's own symbols is always fatal. */
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static void
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__attribute__ ((noreturn))
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fatal_error (int errcode, const char *objname, const char *occasion,
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const char *errstring)
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{
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char buffer[1024];
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_dl_fatal_printf ("%s: %s: %s%s%s%s%s\n",
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RTLD_PROGNAME,
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occasion ?: N_("error while loading shared libraries"),
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objname, *objname ? ": " : "",
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errstring, errcode ? ": " : "",
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(errcode
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? __strerror_r (errcode, buffer, sizeof buffer)
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: ""));
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}
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void
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_dl_signal_exception (int errcode, struct dl_exception *exception,
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const char *occasion)
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{
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struct rtld_catch *lcatch = get_catch ();
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if (lcatch != NULL)
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{
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*lcatch->exception = *exception;
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*lcatch->errcode = errcode;
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/* We do not restore the signal mask because none was saved. */
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__longjmp (lcatch->env[0].__jmpbuf, 1);
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}
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else
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fatal_error (errcode, exception->objname, occasion, exception->errstring);
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}
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rtld_hidden_def (_dl_signal_exception)
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void
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_dl_signal_error (int errcode, const char *objname, const char *occasion,
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const char *errstring)
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{
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struct rtld_catch *lcatch = get_catch ();
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if (! errstring)
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errstring = N_("DYNAMIC LINKER BUG!!!");
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if (lcatch != NULL)
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{
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_dl_exception_create (lcatch->exception, objname, errstring);
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*lcatch->errcode = errcode;
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/* We do not restore the signal mask because none was saved. */
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__longjmp (lcatch->env[0].__jmpbuf, 1);
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}
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else
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fatal_error (errcode, objname, occasion, errstring);
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}
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rtld_hidden_def (_dl_signal_error)
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#if IS_IN (rtld)
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/* This points to a function which is called when a continuable error is
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received. Unlike the handling of `catch' this function may return.
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The arguments will be the `errstring' and `objname'.
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Since this functionality is not used in normal programs (only in ld.so)
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we do not care about multi-threaded programs here. We keep this as a
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global variable. */
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static receiver_fct receiver;
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void
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_dl_signal_cexception (int errcode, struct dl_exception *exception,
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const char *occasion)
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{
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if (__builtin_expect (GLRO(dl_debug_mask)
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& ~(DL_DEBUG_STATISTICS), 0))
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_dl_debug_printf ("%s: error: %s: %s (%s)\n",
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exception->objname, occasion,
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exception->errstring, receiver ? "continued" : "fatal");
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if (receiver)
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{
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/* We are inside _dl_receive_error. Call the user supplied
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handler and resume the work. The receiver will still be
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installed. */
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(*receiver) (errcode, exception->objname, exception->errstring);
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}
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else
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_dl_signal_exception (errcode, exception, occasion);
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}
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void
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_dl_signal_cerror (int errcode, const char *objname, const char *occasion,
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const char *errstring)
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{
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if (__builtin_expect (GLRO(dl_debug_mask)
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& ~(DL_DEBUG_STATISTICS), 0))
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_dl_debug_printf ("%s: error: %s: %s (%s)\n", objname, occasion,
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errstring, receiver ? "continued" : "fatal");
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if (receiver)
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{
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/* We are inside _dl_receive_error. Call the user supplied
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handler and resume the work. The receiver will still be
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installed. */
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(*receiver) (errcode, objname, errstring);
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}
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else
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_dl_signal_error (errcode, objname, occasion, errstring);
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}
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void
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_dl_receive_error (receiver_fct fct, void (*operate) (void *), void *args)
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{
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struct rtld_catch *old_catch = get_catch ();
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receiver_fct old_receiver = receiver;
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/* Set the new values. */
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set_catch (NULL);
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receiver = fct;
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(*operate) (args);
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set_catch (old_catch);
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receiver = old_receiver;
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}
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#endif
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int
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_dl_catch_exception (struct dl_exception *exception,
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void (*operate) (void *), void *args)
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{
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/* If exception is NULL, temporarily disable exception handling.
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Exceptions during operate (args) are fatal. */
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if (exception == NULL)
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{
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struct rtld_catch *old_catch = get_catch ();
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set_catch (NULL);
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operate (args);
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/* If we get here, the operation was successful. */
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set_catch (old_catch);
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return 0;
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}
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/* We need not handle `receiver' since setting a `catch' is handled
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before it. */
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/* Only this needs to be marked volatile, because it is the only local
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variable that gets changed between the setjmp invocation and the
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longjmp call. All others are just set here (before setjmp) and read
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in _dl_signal_error (before longjmp). */
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volatile int errcode;
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struct rtld_catch c;
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/* Don't use an initializer since we don't need to clear C.env. */
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c.exception = exception;
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c.errcode = &errcode;
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struct rtld_catch *old = get_catch ();
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set_catch (&c);
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/* Do not save the signal mask. */
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if (__builtin_expect (__sigsetjmp (c.env, 0), 0) == 0)
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{
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(*operate) (args);
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set_catch (old);
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*exception = (struct dl_exception) { NULL };
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return 0;
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}
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/* We get here only if we longjmp'd out of OPERATE.
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_dl_signal_exception has already stored values into
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*EXCEPTION. */
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set_catch (old);
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return errcode;
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}
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rtld_hidden_def (_dl_catch_exception)
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int
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_dl_catch_error (const char **objname, const char **errstring,
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bool *mallocedp, void (*operate) (void *), void *args)
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{
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struct dl_exception exception;
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int errorcode = _dl_catch_exception (&exception, operate, args);
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*objname = exception.objname;
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*errstring = exception.errstring;
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*mallocedp = exception.message_buffer == exception.errstring;
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return errorcode;
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}
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