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[/] [openrisc/] [trunk/] [gnu-old/] [gdb-7.1/] [gdb/] [solib.c] - Diff between revs 834 and 842

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/* Handle shared libraries for GDB, the GNU Debugger.
/* Handle shared libraries for GDB, the GNU Debugger.
 
 
   Copyright (C) 1990, 1991, 1992, 1993, 1994, 1995, 1996, 1997, 1998, 1999,
   Copyright (C) 1990, 1991, 1992, 1993, 1994, 1995, 1996, 1997, 1998, 1999,
   2000, 2001, 2002, 2003, 2005, 2006, 2007, 2008, 2009, 2010
   2000, 2001, 2002, 2003, 2005, 2006, 2007, 2008, 2009, 2010
   Free Software Foundation, Inc.
   Free Software Foundation, Inc.
 
 
   This file is part of GDB.
   This file is part of GDB.
 
 
   This program is free software; you can redistribute it and/or modify
   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
   it under the terms of the GNU General Public License as published by
   the Free Software Foundation; either version 3 of the License, or
   the Free Software Foundation; either version 3 of the License, or
   (at your option) any later version.
   (at your option) any later version.
 
 
   This program is distributed in the hope that it will be useful,
   This program is distributed in the hope that it will be useful,
   but WITHOUT ANY WARRANTY; without even the implied warranty of
   but WITHOUT ANY WARRANTY; without even the implied warranty of
   MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
   MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
   GNU General Public License for more details.
   GNU General Public License for more details.
 
 
   You should have received a copy of the GNU General Public License
   You should have received a copy of the GNU General Public License
   along with this program.  If not, see <http://www.gnu.org/licenses/>.  */
   along with this program.  If not, see <http://www.gnu.org/licenses/>.  */
 
 
#include "defs.h"
#include "defs.h"
 
 
#include <sys/types.h>
#include <sys/types.h>
#include <fcntl.h>
#include <fcntl.h>
#include "gdb_string.h"
#include "gdb_string.h"
#include "symtab.h"
#include "symtab.h"
#include "bfd.h"
#include "bfd.h"
#include "symfile.h"
#include "symfile.h"
#include "objfiles.h"
#include "objfiles.h"
#include "exceptions.h"
#include "exceptions.h"
#include "gdbcore.h"
#include "gdbcore.h"
#include "command.h"
#include "command.h"
#include "target.h"
#include "target.h"
#include "frame.h"
#include "frame.h"
#include "gdb_regex.h"
#include "gdb_regex.h"
#include "inferior.h"
#include "inferior.h"
#include "environ.h"
#include "environ.h"
#include "language.h"
#include "language.h"
#include "gdbcmd.h"
#include "gdbcmd.h"
#include "completer.h"
#include "completer.h"
#include "filenames.h"          /* for DOSish file names */
#include "filenames.h"          /* for DOSish file names */
#include "exec.h"
#include "exec.h"
#include "solist.h"
#include "solist.h"
#include "observer.h"
#include "observer.h"
#include "readline/readline.h"
#include "readline/readline.h"
#include "remote.h"
#include "remote.h"
#include "solib.h"
#include "solib.h"
#include "interps.h"
#include "interps.h"
 
 
/* Architecture-specific operations.  */
/* Architecture-specific operations.  */
 
 
/* Per-architecture data key.  */
/* Per-architecture data key.  */
static struct gdbarch_data *solib_data;
static struct gdbarch_data *solib_data;
 
 
static void *
static void *
solib_init (struct obstack *obstack)
solib_init (struct obstack *obstack)
{
{
  struct target_so_ops **ops;
  struct target_so_ops **ops;
 
 
  ops = OBSTACK_ZALLOC (obstack, struct target_so_ops *);
  ops = OBSTACK_ZALLOC (obstack, struct target_so_ops *);
  *ops = current_target_so_ops;
  *ops = current_target_so_ops;
  return ops;
  return ops;
}
}
 
 
static struct target_so_ops *
static struct target_so_ops *
solib_ops (struct gdbarch *gdbarch)
solib_ops (struct gdbarch *gdbarch)
{
{
  struct target_so_ops **ops = gdbarch_data (gdbarch, solib_data);
  struct target_so_ops **ops = gdbarch_data (gdbarch, solib_data);
  return *ops;
  return *ops;
}
}
 
 
/* Set the solib operations for GDBARCH to NEW_OPS.  */
/* Set the solib operations for GDBARCH to NEW_OPS.  */
 
 
void
void
set_solib_ops (struct gdbarch *gdbarch, struct target_so_ops *new_ops)
set_solib_ops (struct gdbarch *gdbarch, struct target_so_ops *new_ops)
{
{
  struct target_so_ops **ops = gdbarch_data (gdbarch, solib_data);
  struct target_so_ops **ops = gdbarch_data (gdbarch, solib_data);
  *ops = new_ops;
  *ops = new_ops;
}
}


 
 
/* external data declarations */
/* external data declarations */
 
 
/* FIXME: gdbarch needs to control this variable, or else every
/* FIXME: gdbarch needs to control this variable, or else every
   configuration needs to call set_solib_ops.  */
   configuration needs to call set_solib_ops.  */
struct target_so_ops *current_target_so_ops;
struct target_so_ops *current_target_so_ops;
 
 
/* List of known shared objects */
/* List of known shared objects */
#define so_list_head current_program_space->so_list
#define so_list_head current_program_space->so_list
 
 
/* Local function prototypes */
/* Local function prototypes */
 
 
/* If non-empty, this is a search path for loading non-absolute shared library
/* If non-empty, this is a search path for loading non-absolute shared library
   symbol files.  This takes precedence over the environment variables PATH
   symbol files.  This takes precedence over the environment variables PATH
   and LD_LIBRARY_PATH.  */
   and LD_LIBRARY_PATH.  */
static char *solib_search_path = NULL;
static char *solib_search_path = NULL;
static void
static void
show_solib_search_path (struct ui_file *file, int from_tty,
show_solib_search_path (struct ui_file *file, int from_tty,
                        struct cmd_list_element *c, const char *value)
                        struct cmd_list_element *c, const char *value)
{
{
  fprintf_filtered (file, _("\
  fprintf_filtered (file, _("\
The search path for loading non-absolute shared library symbol files is %s.\n"),
The search path for loading non-absolute shared library symbol files is %s.\n"),
                    value);
                    value);
}
}
 
 
/*
/*
 
 
   GLOBAL FUNCTION
   GLOBAL FUNCTION
 
 
   solib_find -- Find a shared library file.
   solib_find -- Find a shared library file.
 
 
   SYNOPSIS
   SYNOPSIS
 
 
   char *solib_find (char *in_pathname, int *fd);
   char *solib_find (char *in_pathname, int *fd);
 
 
   DESCRIPTION
   DESCRIPTION
 
 
   Global variable GDB_SYSROOT is used as a prefix directory
   Global variable GDB_SYSROOT is used as a prefix directory
   to search for shared libraries if they have an absolute path.
   to search for shared libraries if they have an absolute path.
 
 
   Global variable SOLIB_SEARCH_PATH is used as a prefix directory
   Global variable SOLIB_SEARCH_PATH is used as a prefix directory
   (or set of directories, as in LD_LIBRARY_PATH) to search for all
   (or set of directories, as in LD_LIBRARY_PATH) to search for all
   shared libraries if not found in GDB_SYSROOT.
   shared libraries if not found in GDB_SYSROOT.
 
 
   Search algorithm:
   Search algorithm:
   * If there is a gdb_sysroot and path is absolute:
   * If there is a gdb_sysroot and path is absolute:
   *   Search for gdb_sysroot/path.
   *   Search for gdb_sysroot/path.
   * else
   * else
   *   Look for it literally (unmodified).
   *   Look for it literally (unmodified).
   * Look in SOLIB_SEARCH_PATH.
   * Look in SOLIB_SEARCH_PATH.
   * If available, use target defined search function.
   * If available, use target defined search function.
   * If gdb_sysroot is NOT set, perform the following two searches:
   * If gdb_sysroot is NOT set, perform the following two searches:
   *   Look in inferior's $PATH.
   *   Look in inferior's $PATH.
   *   Look in inferior's $LD_LIBRARY_PATH.
   *   Look in inferior's $LD_LIBRARY_PATH.
   *
   *
   * The last check avoids doing this search when targetting remote
   * The last check avoids doing this search when targetting remote
   * machines since gdb_sysroot will almost always be set.
   * machines since gdb_sysroot will almost always be set.
 
 
   RETURNS
   RETURNS
 
 
   Full pathname of the shared library file, or NULL if not found.
   Full pathname of the shared library file, or NULL if not found.
   (The pathname is malloc'ed; it needs to be freed by the caller.)
   (The pathname is malloc'ed; it needs to be freed by the caller.)
   *FD is set to either -1 or an open file handle for the library.  */
   *FD is set to either -1 or an open file handle for the library.  */
 
 
char *
char *
solib_find (char *in_pathname, int *fd)
solib_find (char *in_pathname, int *fd)
{
{
  struct target_so_ops *ops = solib_ops (target_gdbarch);
  struct target_so_ops *ops = solib_ops (target_gdbarch);
  int found_file = -1;
  int found_file = -1;
  char *temp_pathname = NULL;
  char *temp_pathname = NULL;
  int gdb_sysroot_is_empty;
  int gdb_sysroot_is_empty;
 
 
  gdb_sysroot_is_empty = (gdb_sysroot == NULL || *gdb_sysroot == 0);
  gdb_sysroot_is_empty = (gdb_sysroot == NULL || *gdb_sysroot == 0);
 
 
  if (! IS_ABSOLUTE_PATH (in_pathname) || gdb_sysroot_is_empty)
  if (! IS_ABSOLUTE_PATH (in_pathname) || gdb_sysroot_is_empty)
    temp_pathname = in_pathname;
    temp_pathname = in_pathname;
  else
  else
    {
    {
      int prefix_len = strlen (gdb_sysroot);
      int prefix_len = strlen (gdb_sysroot);
 
 
      /* Remove trailing slashes from absolute prefix.  */
      /* Remove trailing slashes from absolute prefix.  */
      while (prefix_len > 0
      while (prefix_len > 0
             && IS_DIR_SEPARATOR (gdb_sysroot[prefix_len - 1]))
             && IS_DIR_SEPARATOR (gdb_sysroot[prefix_len - 1]))
        prefix_len--;
        prefix_len--;
 
 
      /* Cat the prefixed pathname together.  */
      /* Cat the prefixed pathname together.  */
      temp_pathname = alloca (prefix_len + strlen (in_pathname) + 1);
      temp_pathname = alloca (prefix_len + strlen (in_pathname) + 1);
      strncpy (temp_pathname, gdb_sysroot, prefix_len);
      strncpy (temp_pathname, gdb_sysroot, prefix_len);
      temp_pathname[prefix_len] = '\0';
      temp_pathname[prefix_len] = '\0';
      strcat (temp_pathname, in_pathname);
      strcat (temp_pathname, in_pathname);
    }
    }
 
 
  /* Handle remote files.  */
  /* Handle remote files.  */
  if (remote_filename_p (temp_pathname))
  if (remote_filename_p (temp_pathname))
    {
    {
      *fd = -1;
      *fd = -1;
      return xstrdup (temp_pathname);
      return xstrdup (temp_pathname);
    }
    }
 
 
  /* Now see if we can open it.  */
  /* Now see if we can open it.  */
  found_file = open (temp_pathname, O_RDONLY | O_BINARY, 0);
  found_file = open (temp_pathname, O_RDONLY | O_BINARY, 0);
 
 
  /* We try to find the library in various ways.  After each attempt
  /* We try to find the library in various ways.  After each attempt
     (except for the one above), either found_file >= 0 and
     (except for the one above), either found_file >= 0 and
     temp_pathname is a malloc'd string, or found_file < 0 and
     temp_pathname is a malloc'd string, or found_file < 0 and
     temp_pathname does not point to storage that needs to be
     temp_pathname does not point to storage that needs to be
     freed.  */
     freed.  */
 
 
    if (found_file < 0)
    if (found_file < 0)
      temp_pathname = NULL;
      temp_pathname = NULL;
    else
    else
      temp_pathname = xstrdup (temp_pathname);
      temp_pathname = xstrdup (temp_pathname);
 
 
  /* If the search in gdb_sysroot failed, and the path name is
  /* If the search in gdb_sysroot failed, and the path name is
     absolute at this point, make it relative.  (openp will try and open the
     absolute at this point, make it relative.  (openp will try and open the
     file according to its absolute path otherwise, which is not what we want.)
     file according to its absolute path otherwise, which is not what we want.)
     Affects subsequent searches for this solib.  */
     Affects subsequent searches for this solib.  */
  if (found_file < 0 && IS_ABSOLUTE_PATH (in_pathname))
  if (found_file < 0 && IS_ABSOLUTE_PATH (in_pathname))
    {
    {
      /* First, get rid of any drive letters etc.  */
      /* First, get rid of any drive letters etc.  */
      while (!IS_DIR_SEPARATOR (*in_pathname))
      while (!IS_DIR_SEPARATOR (*in_pathname))
        in_pathname++;
        in_pathname++;
 
 
      /* Next, get rid of all leading dir separators.  */
      /* Next, get rid of all leading dir separators.  */
      while (IS_DIR_SEPARATOR (*in_pathname))
      while (IS_DIR_SEPARATOR (*in_pathname))
        in_pathname++;
        in_pathname++;
    }
    }
 
 
  /* If not found, search the solib_search_path (if any).  */
  /* If not found, search the solib_search_path (if any).  */
  if (found_file < 0 && solib_search_path != NULL)
  if (found_file < 0 && solib_search_path != NULL)
    found_file = openp (solib_search_path, OPF_TRY_CWD_FIRST,
    found_file = openp (solib_search_path, OPF_TRY_CWD_FIRST,
                        in_pathname, O_RDONLY | O_BINARY, &temp_pathname);
                        in_pathname, O_RDONLY | O_BINARY, &temp_pathname);
 
 
  /* If not found, next search the solib_search_path (if any) for the basename
  /* If not found, next search the solib_search_path (if any) for the basename
     only (ignoring the path).  This is to allow reading solibs from a path
     only (ignoring the path).  This is to allow reading solibs from a path
     that differs from the opened path.  */
     that differs from the opened path.  */
  if (found_file < 0 && solib_search_path != NULL)
  if (found_file < 0 && solib_search_path != NULL)
    found_file = openp (solib_search_path, OPF_TRY_CWD_FIRST,
    found_file = openp (solib_search_path, OPF_TRY_CWD_FIRST,
                        lbasename (in_pathname), O_RDONLY | O_BINARY,
                        lbasename (in_pathname), O_RDONLY | O_BINARY,
                        &temp_pathname);
                        &temp_pathname);
 
 
  /* If not found, try to use target supplied solib search method */
  /* If not found, try to use target supplied solib search method */
  if (found_file < 0 && ops->find_and_open_solib)
  if (found_file < 0 && ops->find_and_open_solib)
    found_file = ops->find_and_open_solib (in_pathname, O_RDONLY | O_BINARY,
    found_file = ops->find_and_open_solib (in_pathname, O_RDONLY | O_BINARY,
                                           &temp_pathname);
                                           &temp_pathname);
 
 
  /* If not found, next search the inferior's $PATH environment variable. */
  /* If not found, next search the inferior's $PATH environment variable. */
  if (found_file < 0 && gdb_sysroot_is_empty)
  if (found_file < 0 && gdb_sysroot_is_empty)
    found_file = openp (get_in_environ (current_inferior ()->environment,
    found_file = openp (get_in_environ (current_inferior ()->environment,
                                        "PATH"),
                                        "PATH"),
                        OPF_TRY_CWD_FIRST, in_pathname, O_RDONLY | O_BINARY,
                        OPF_TRY_CWD_FIRST, in_pathname, O_RDONLY | O_BINARY,
                        &temp_pathname);
                        &temp_pathname);
 
 
  /* If not found, next search the inferior's $LD_LIBRARY_PATH
  /* If not found, next search the inferior's $LD_LIBRARY_PATH
     environment variable. */
     environment variable. */
  if (found_file < 0 && gdb_sysroot_is_empty)
  if (found_file < 0 && gdb_sysroot_is_empty)
    found_file = openp (get_in_environ (current_inferior ()->environment,
    found_file = openp (get_in_environ (current_inferior ()->environment,
                                        "LD_LIBRARY_PATH"),
                                        "LD_LIBRARY_PATH"),
                        OPF_TRY_CWD_FIRST, in_pathname, O_RDONLY | O_BINARY,
                        OPF_TRY_CWD_FIRST, in_pathname, O_RDONLY | O_BINARY,
                        &temp_pathname);
                        &temp_pathname);
 
 
  *fd = found_file;
  *fd = found_file;
  return temp_pathname;
  return temp_pathname;
}
}
 
 
/* Open and return a BFD for the shared library PATHNAME.  If FD is not -1,
/* Open and return a BFD for the shared library PATHNAME.  If FD is not -1,
   it is used as file handle to open the file.  Throws an error if the file
   it is used as file handle to open the file.  Throws an error if the file
   could not be opened.  Handles both local and remote file access.
   could not be opened.  Handles both local and remote file access.
 
 
   PATHNAME must be malloc'ed by the caller.  If successful, the new BFD's
   PATHNAME must be malloc'ed by the caller.  If successful, the new BFD's
   name will point to it.  If unsuccessful, PATHNAME will be freed and the
   name will point to it.  If unsuccessful, PATHNAME will be freed and the
   FD will be closed (unless FD was -1).  */
   FD will be closed (unless FD was -1).  */
 
 
bfd *
bfd *
solib_bfd_fopen (char *pathname, int fd)
solib_bfd_fopen (char *pathname, int fd)
{
{
  bfd *abfd;
  bfd *abfd;
 
 
  if (remote_filename_p (pathname))
  if (remote_filename_p (pathname))
    {
    {
      gdb_assert (fd == -1);
      gdb_assert (fd == -1);
      abfd = remote_bfd_open (pathname, gnutarget);
      abfd = remote_bfd_open (pathname, gnutarget);
    }
    }
  else
  else
    {
    {
      abfd = bfd_fopen (pathname, gnutarget, FOPEN_RB, fd);
      abfd = bfd_fopen (pathname, gnutarget, FOPEN_RB, fd);
 
 
      if (abfd)
      if (abfd)
        bfd_set_cacheable (abfd, 1);
        bfd_set_cacheable (abfd, 1);
      else if (fd != -1)
      else if (fd != -1)
        close (fd);
        close (fd);
    }
    }
 
 
  if (!abfd)
  if (!abfd)
    {
    {
      make_cleanup (xfree, pathname);
      make_cleanup (xfree, pathname);
      error (_("Could not open `%s' as an executable file: %s"),
      error (_("Could not open `%s' as an executable file: %s"),
             pathname, bfd_errmsg (bfd_get_error ()));
             pathname, bfd_errmsg (bfd_get_error ()));
    }
    }
 
 
  return abfd;
  return abfd;
}
}
 
 
/* Find shared library PATHNAME and open a BFD for it.  */
/* Find shared library PATHNAME and open a BFD for it.  */
 
 
bfd *
bfd *
solib_bfd_open (char *pathname)
solib_bfd_open (char *pathname)
{
{
  char *found_pathname;
  char *found_pathname;
  int found_file;
  int found_file;
  bfd *abfd;
  bfd *abfd;
  const struct bfd_arch_info *b;
  const struct bfd_arch_info *b;
 
 
  /* Search for shared library file.  */
  /* Search for shared library file.  */
  found_pathname = solib_find (pathname, &found_file);
  found_pathname = solib_find (pathname, &found_file);
  if (found_pathname == NULL)
  if (found_pathname == NULL)
    perror_with_name (pathname);
    perror_with_name (pathname);
 
 
  /* Open bfd for shared library.  */
  /* Open bfd for shared library.  */
  abfd = solib_bfd_fopen (found_pathname, found_file);
  abfd = solib_bfd_fopen (found_pathname, found_file);
 
 
  /* Check bfd format.  */
  /* Check bfd format.  */
  if (!bfd_check_format (abfd, bfd_object))
  if (!bfd_check_format (abfd, bfd_object))
    {
    {
      bfd_close (abfd);
      bfd_close (abfd);
      make_cleanup (xfree, found_pathname);
      make_cleanup (xfree, found_pathname);
      error (_("`%s': not in executable format: %s"),
      error (_("`%s': not in executable format: %s"),
             found_pathname, bfd_errmsg (bfd_get_error ()));
             found_pathname, bfd_errmsg (bfd_get_error ()));
    }
    }
 
 
  /* Check bfd arch.  */
  /* Check bfd arch.  */
  b = gdbarch_bfd_arch_info (target_gdbarch);
  b = gdbarch_bfd_arch_info (target_gdbarch);
  if (!b->compatible (b, bfd_get_arch_info (abfd)))
  if (!b->compatible (b, bfd_get_arch_info (abfd)))
    warning (_("`%s': Shared library architecture %s is not compatible "
    warning (_("`%s': Shared library architecture %s is not compatible "
               "with target architecture %s."), found_pathname,
               "with target architecture %s."), found_pathname,
             bfd_get_arch_info (abfd)->printable_name, b->printable_name);
             bfd_get_arch_info (abfd)->printable_name, b->printable_name);
 
 
  return abfd;
  return abfd;
}
}
 
 
 
 
/*
/*
 
 
   LOCAL FUNCTION
   LOCAL FUNCTION
 
 
   solib_map_sections -- open bfd and build sections for shared lib
   solib_map_sections -- open bfd and build sections for shared lib
 
 
   SYNOPSIS
   SYNOPSIS
 
 
   static int solib_map_sections (struct so_list *so)
   static int solib_map_sections (struct so_list *so)
 
 
   DESCRIPTION
   DESCRIPTION
 
 
   Given a pointer to one of the shared objects in our list
   Given a pointer to one of the shared objects in our list
   of mapped objects, use the recorded name to open a bfd
   of mapped objects, use the recorded name to open a bfd
   descriptor for the object, build a section table, and then
   descriptor for the object, build a section table, and then
   relocate all the section addresses by the base address at
   relocate all the section addresses by the base address at
   which the shared object was mapped.
   which the shared object was mapped.
 
 
   FIXMES
   FIXMES
 
 
   In most (all?) cases the shared object file name recorded in the
   In most (all?) cases the shared object file name recorded in the
   dynamic linkage tables will be a fully qualified pathname.  For
   dynamic linkage tables will be a fully qualified pathname.  For
   cases where it isn't, do we really mimic the systems search
   cases where it isn't, do we really mimic the systems search
   mechanism correctly in the below code (particularly the tilde
   mechanism correctly in the below code (particularly the tilde
   expansion stuff?).
   expansion stuff?).
 */
 */
 
 
static int
static int
solib_map_sections (void *arg)
solib_map_sections (void *arg)
{
{
  struct so_list *so = (struct so_list *) arg;  /* catch_errors bogon */
  struct so_list *so = (struct so_list *) arg;  /* catch_errors bogon */
  struct target_so_ops *ops = solib_ops (target_gdbarch);
  struct target_so_ops *ops = solib_ops (target_gdbarch);
  char *filename;
  char *filename;
  struct target_section *p;
  struct target_section *p;
  struct cleanup *old_chain;
  struct cleanup *old_chain;
  bfd *abfd;
  bfd *abfd;
 
 
  filename = tilde_expand (so->so_name);
  filename = tilde_expand (so->so_name);
  old_chain = make_cleanup (xfree, filename);
  old_chain = make_cleanup (xfree, filename);
  abfd = ops->bfd_open (filename);
  abfd = ops->bfd_open (filename);
  do_cleanups (old_chain);
  do_cleanups (old_chain);
 
 
  /* Leave bfd open, core_xfer_memory and "info files" need it.  */
  /* Leave bfd open, core_xfer_memory and "info files" need it.  */
  so->abfd = gdb_bfd_ref (abfd);
  so->abfd = gdb_bfd_ref (abfd);
 
 
  /* copy full path name into so_name, so that later symbol_file_add
  /* copy full path name into so_name, so that later symbol_file_add
     can find it */
     can find it */
  if (strlen (bfd_get_filename (abfd)) >= SO_NAME_MAX_PATH_SIZE)
  if (strlen (bfd_get_filename (abfd)) >= SO_NAME_MAX_PATH_SIZE)
    error (_("Shared library file name is too long."));
    error (_("Shared library file name is too long."));
  strcpy (so->so_name, bfd_get_filename (abfd));
  strcpy (so->so_name, bfd_get_filename (abfd));
 
 
  if (build_section_table (abfd, &so->sections, &so->sections_end))
  if (build_section_table (abfd, &so->sections, &so->sections_end))
    {
    {
      error (_("Can't find the file sections in `%s': %s"),
      error (_("Can't find the file sections in `%s': %s"),
             bfd_get_filename (abfd), bfd_errmsg (bfd_get_error ()));
             bfd_get_filename (abfd), bfd_errmsg (bfd_get_error ()));
    }
    }
 
 
  for (p = so->sections; p < so->sections_end; p++)
  for (p = so->sections; p < so->sections_end; p++)
    {
    {
      /* Relocate the section binding addresses as recorded in the shared
      /* Relocate the section binding addresses as recorded in the shared
         object's file by the base address to which the object was actually
         object's file by the base address to which the object was actually
         mapped. */
         mapped. */
      ops->relocate_section_addresses (so, p);
      ops->relocate_section_addresses (so, p);
 
 
      /* If the target didn't provide information about the address
      /* If the target didn't provide information about the address
         range of the shared object, assume we want the location of
         range of the shared object, assume we want the location of
         the .text section.  */
         the .text section.  */
      if (so->addr_low == 0 && so->addr_high == 0
      if (so->addr_low == 0 && so->addr_high == 0
          && strcmp (p->the_bfd_section->name, ".text") == 0)
          && strcmp (p->the_bfd_section->name, ".text") == 0)
        {
        {
          so->addr_low = p->addr;
          so->addr_low = p->addr;
          so->addr_high = p->endaddr;
          so->addr_high = p->endaddr;
        }
        }
    }
    }
 
 
  return (1);
  return (1);
}
}
 
 
/* LOCAL FUNCTION
/* LOCAL FUNCTION
 
 
   free_so --- free a `struct so_list' object
   free_so --- free a `struct so_list' object
 
 
   SYNOPSIS
   SYNOPSIS
 
 
   void free_so (struct so_list *so)
   void free_so (struct so_list *so)
 
 
   DESCRIPTION
   DESCRIPTION
 
 
   Free the storage associated with the `struct so_list' object SO.
   Free the storage associated with the `struct so_list' object SO.
   If we have opened a BFD for SO, close it.
   If we have opened a BFD for SO, close it.
 
 
   The caller is responsible for removing SO from whatever list it is
   The caller is responsible for removing SO from whatever list it is
   a member of.  If we have placed SO's sections in some target's
   a member of.  If we have placed SO's sections in some target's
   section table, the caller is responsible for removing them.
   section table, the caller is responsible for removing them.
 
 
   This function doesn't mess with objfiles at all.  If there is an
   This function doesn't mess with objfiles at all.  If there is an
   objfile associated with SO that needs to be removed, the caller is
   objfile associated with SO that needs to be removed, the caller is
   responsible for taking care of that.  */
   responsible for taking care of that.  */
 
 
void
void
free_so (struct so_list *so)
free_so (struct so_list *so)
{
{
  struct target_so_ops *ops = solib_ops (target_gdbarch);
  struct target_so_ops *ops = solib_ops (target_gdbarch);
 
 
  if (so->sections)
  if (so->sections)
    xfree (so->sections);
    xfree (so->sections);
 
 
  gdb_bfd_unref (so->abfd);
  gdb_bfd_unref (so->abfd);
 
 
  ops->free_so (so);
  ops->free_so (so);
 
 
  xfree (so);
  xfree (so);
}
}
 
 
 
 
/* Return address of first so_list entry in master shared object list.  */
/* Return address of first so_list entry in master shared object list.  */
struct so_list *
struct so_list *
master_so_list (void)
master_so_list (void)
{
{
  return so_list_head;
  return so_list_head;
}
}
 
 
static void
static void
symbol_add_stub (struct so_list *so, int flags)
symbol_add_stub (struct so_list *so, int flags)
{
{
  struct section_addr_info *sap;
  struct section_addr_info *sap;
 
 
  /* Have we already loaded this shared object?  */
  /* Have we already loaded this shared object?  */
  ALL_OBJFILES (so->objfile)
  ALL_OBJFILES (so->objfile)
    {
    {
      if (strcmp (so->objfile->name, so->so_name) == 0)
      if (strcmp (so->objfile->name, so->so_name) == 0)
        return;
        return;
    }
    }
 
 
  sap = build_section_addr_info_from_section_table (so->sections,
  sap = build_section_addr_info_from_section_table (so->sections,
                                                    so->sections_end);
                                                    so->sections_end);
 
 
  so->objfile = symbol_file_add_from_bfd (so->abfd, flags, sap, OBJF_SHARED);
  so->objfile = symbol_file_add_from_bfd (so->abfd, flags, sap, OBJF_SHARED);
  free_section_addr_info (sap);
  free_section_addr_info (sap);
 
 
  return;
  return;
}
}
 
 
/* Read in symbols for shared object SO.  If SYMFILE_VERBOSE is set in FLAGS,
/* Read in symbols for shared object SO.  If SYMFILE_VERBOSE is set in FLAGS,
   be chatty about it.  Return non-zero if any symbols were actually
   be chatty about it.  Return non-zero if any symbols were actually
   loaded.  */
   loaded.  */
 
 
int
int
solib_read_symbols (struct so_list *so, int flags)
solib_read_symbols (struct so_list *so, int flags)
{
{
  const int from_tty = flags & SYMFILE_VERBOSE;
  const int from_tty = flags & SYMFILE_VERBOSE;
 
 
  if (so->symbols_loaded)
  if (so->symbols_loaded)
    {
    {
      if (from_tty || info_verbose)
      if (from_tty || info_verbose)
        printf_unfiltered (_("Symbols already loaded for %s\n"), so->so_name);
        printf_unfiltered (_("Symbols already loaded for %s\n"), so->so_name);
    }
    }
  else if (so->abfd == NULL)
  else if (so->abfd == NULL)
    {
    {
      if (from_tty || info_verbose)
      if (from_tty || info_verbose)
        printf_unfiltered (_("Symbol file not found for %s\n"), so->so_name);
        printf_unfiltered (_("Symbol file not found for %s\n"), so->so_name);
    }
    }
  else
  else
    {
    {
      volatile struct gdb_exception exception;
      volatile struct gdb_exception exception;
      TRY_CATCH (exception, RETURN_MASK_ALL)
      TRY_CATCH (exception, RETURN_MASK_ALL)
        {
        {
          symbol_add_stub (so, flags);
          symbol_add_stub (so, flags);
        }
        }
      if (exception.reason != 0)
      if (exception.reason != 0)
        {
        {
          exception_fprintf (gdb_stderr, exception,
          exception_fprintf (gdb_stderr, exception,
                             "Error while reading shared library symbols:\n");
                             "Error while reading shared library symbols:\n");
          return 0;
          return 0;
        }
        }
      if (from_tty || info_verbose)
      if (from_tty || info_verbose)
        printf_unfiltered (_("Loaded symbols for %s\n"), so->so_name);
        printf_unfiltered (_("Loaded symbols for %s\n"), so->so_name);
      so->symbols_loaded = 1;
      so->symbols_loaded = 1;
      return 1;
      return 1;
    }
    }
 
 
  return 0;
  return 0;
}
}
 
 
/* LOCAL FUNCTION
/* LOCAL FUNCTION
 
 
   update_solib_list --- synchronize GDB's shared object list with inferior's
   update_solib_list --- synchronize GDB's shared object list with inferior's
 
 
   SYNOPSIS
   SYNOPSIS
 
 
   void update_solib_list (int from_tty, struct target_ops *TARGET)
   void update_solib_list (int from_tty, struct target_ops *TARGET)
 
 
   Extract the list of currently loaded shared objects from the
   Extract the list of currently loaded shared objects from the
   inferior, and compare it with the list of shared objects currently
   inferior, and compare it with the list of shared objects currently
   in GDB's so_list_head list.  Edit so_list_head to bring it in sync
   in GDB's so_list_head list.  Edit so_list_head to bring it in sync
   with the inferior's new list.
   with the inferior's new list.
 
 
   If we notice that the inferior has unloaded some shared objects,
   If we notice that the inferior has unloaded some shared objects,
   free any symbolic info GDB had read about those shared objects.
   free any symbolic info GDB had read about those shared objects.
 
 
   Don't load symbolic info for any new shared objects; just add them
   Don't load symbolic info for any new shared objects; just add them
   to the list, and leave their symbols_loaded flag clear.
   to the list, and leave their symbols_loaded flag clear.
 
 
   If FROM_TTY is non-null, feel free to print messages about what
   If FROM_TTY is non-null, feel free to print messages about what
   we're doing.
   we're doing.
 
 
   If TARGET is non-null, add the sections of all new shared objects
   If TARGET is non-null, add the sections of all new shared objects
   to TARGET's section table.  Note that this doesn't remove any
   to TARGET's section table.  Note that this doesn't remove any
   sections for shared objects that have been unloaded, and it
   sections for shared objects that have been unloaded, and it
   doesn't check to see if the new shared objects are already present in
   doesn't check to see if the new shared objects are already present in
   the section table.  But we only use this for core files and
   the section table.  But we only use this for core files and
   processes we've just attached to, so that's okay.  */
   processes we've just attached to, so that's okay.  */
 
 
static void
static void
update_solib_list (int from_tty, struct target_ops *target)
update_solib_list (int from_tty, struct target_ops *target)
{
{
  struct target_so_ops *ops = solib_ops (target_gdbarch);
  struct target_so_ops *ops = solib_ops (target_gdbarch);
  struct so_list *inferior = ops->current_sos();
  struct so_list *inferior = ops->current_sos();
  struct so_list *gdb, **gdb_link;
  struct so_list *gdb, **gdb_link;
 
 
  /* We can reach here due to changing solib-search-path or the
  /* We can reach here due to changing solib-search-path or the
     sysroot, before having any inferior.  */
     sysroot, before having any inferior.  */
  if (target_has_execution && !ptid_equal (inferior_ptid, null_ptid))
  if (target_has_execution && !ptid_equal (inferior_ptid, null_ptid))
    {
    {
      struct inferior *inf = current_inferior ();
      struct inferior *inf = current_inferior ();
 
 
      /* If we are attaching to a running process for which we
      /* If we are attaching to a running process for which we
         have not opened a symbol file, we may be able to get its
         have not opened a symbol file, we may be able to get its
         symbols now!  */
         symbols now!  */
      if (inf->attach_flag && symfile_objfile == NULL)
      if (inf->attach_flag && symfile_objfile == NULL)
        catch_errors (ops->open_symbol_file_object, &from_tty,
        catch_errors (ops->open_symbol_file_object, &from_tty,
                      "Error reading attached process's symbol file.\n",
                      "Error reading attached process's symbol file.\n",
                      RETURN_MASK_ALL);
                      RETURN_MASK_ALL);
    }
    }
 
 
  /* GDB and the inferior's dynamic linker each maintain their own
  /* GDB and the inferior's dynamic linker each maintain their own
     list of currently loaded shared objects; we want to bring the
     list of currently loaded shared objects; we want to bring the
     former in sync with the latter.  Scan both lists, seeing which
     former in sync with the latter.  Scan both lists, seeing which
     shared objects appear where.  There are three cases:
     shared objects appear where.  There are three cases:
 
 
     - A shared object appears on both lists.  This means that GDB
     - A shared object appears on both lists.  This means that GDB
     knows about it already, and it's still loaded in the inferior.
     knows about it already, and it's still loaded in the inferior.
     Nothing needs to happen.
     Nothing needs to happen.
 
 
     - A shared object appears only on GDB's list.  This means that
     - A shared object appears only on GDB's list.  This means that
     the inferior has unloaded it.  We should remove the shared
     the inferior has unloaded it.  We should remove the shared
     object from GDB's tables.
     object from GDB's tables.
 
 
     - A shared object appears only on the inferior's list.  This
     - A shared object appears only on the inferior's list.  This
     means that it's just been loaded.  We should add it to GDB's
     means that it's just been loaded.  We should add it to GDB's
     tables.
     tables.
 
 
     So we walk GDB's list, checking each entry to see if it appears
     So we walk GDB's list, checking each entry to see if it appears
     in the inferior's list too.  If it does, no action is needed, and
     in the inferior's list too.  If it does, no action is needed, and
     we remove it from the inferior's list.  If it doesn't, the
     we remove it from the inferior's list.  If it doesn't, the
     inferior has unloaded it, and we remove it from GDB's list.  By
     inferior has unloaded it, and we remove it from GDB's list.  By
     the time we're done walking GDB's list, the inferior's list
     the time we're done walking GDB's list, the inferior's list
     contains only the new shared objects, which we then add.  */
     contains only the new shared objects, which we then add.  */
 
 
  gdb = so_list_head;
  gdb = so_list_head;
  gdb_link = &so_list_head;
  gdb_link = &so_list_head;
  while (gdb)
  while (gdb)
    {
    {
      struct so_list *i = inferior;
      struct so_list *i = inferior;
      struct so_list **i_link = &inferior;
      struct so_list **i_link = &inferior;
 
 
      /* Check to see whether the shared object *gdb also appears in
      /* Check to see whether the shared object *gdb also appears in
         the inferior's current list.  */
         the inferior's current list.  */
      while (i)
      while (i)
        {
        {
          if (ops->same)
          if (ops->same)
            {
            {
              if (ops->same (gdb, i))
              if (ops->same (gdb, i))
                break;
                break;
            }
            }
          else
          else
            {
            {
              if (! strcmp (gdb->so_original_name, i->so_original_name))
              if (! strcmp (gdb->so_original_name, i->so_original_name))
                break;
                break;
            }
            }
 
 
          i_link = &i->next;
          i_link = &i->next;
          i = *i_link;
          i = *i_link;
        }
        }
 
 
      /* If the shared object appears on the inferior's list too, then
      /* If the shared object appears on the inferior's list too, then
         it's still loaded, so we don't need to do anything.  Delete
         it's still loaded, so we don't need to do anything.  Delete
         it from the inferior's list, and leave it on GDB's list.  */
         it from the inferior's list, and leave it on GDB's list.  */
      if (i)
      if (i)
        {
        {
          *i_link = i->next;
          *i_link = i->next;
          free_so (i);
          free_so (i);
          gdb_link = &gdb->next;
          gdb_link = &gdb->next;
          gdb = *gdb_link;
          gdb = *gdb_link;
        }
        }
 
 
      /* If it's not on the inferior's list, remove it from GDB's tables.  */
      /* If it's not on the inferior's list, remove it from GDB's tables.  */
      else
      else
        {
        {
          /* Notify any observer that the shared object has been
          /* Notify any observer that the shared object has been
             unloaded before we remove it from GDB's tables.  */
             unloaded before we remove it from GDB's tables.  */
          observer_notify_solib_unloaded (gdb);
          observer_notify_solib_unloaded (gdb);
 
 
          *gdb_link = gdb->next;
          *gdb_link = gdb->next;
 
 
          /* Unless the user loaded it explicitly, free SO's objfile.  */
          /* Unless the user loaded it explicitly, free SO's objfile.  */
          if (gdb->objfile && ! (gdb->objfile->flags & OBJF_USERLOADED))
          if (gdb->objfile && ! (gdb->objfile->flags & OBJF_USERLOADED))
            free_objfile (gdb->objfile);
            free_objfile (gdb->objfile);
 
 
          /* Some targets' section tables might be referring to
          /* Some targets' section tables might be referring to
             sections from so->abfd; remove them.  */
             sections from so->abfd; remove them.  */
          remove_target_sections (gdb->abfd);
          remove_target_sections (gdb->abfd);
 
 
          free_so (gdb);
          free_so (gdb);
          gdb = *gdb_link;
          gdb = *gdb_link;
        }
        }
    }
    }
 
 
  /* Now the inferior's list contains only shared objects that don't
  /* Now the inferior's list contains only shared objects that don't
     appear in GDB's list --- those that are newly loaded.  Add them
     appear in GDB's list --- those that are newly loaded.  Add them
     to GDB's shared object list.  */
     to GDB's shared object list.  */
  if (inferior)
  if (inferior)
    {
    {
      struct so_list *i;
      struct so_list *i;
 
 
      /* Add the new shared objects to GDB's list.  */
      /* Add the new shared objects to GDB's list.  */
      *gdb_link = inferior;
      *gdb_link = inferior;
 
 
      /* Fill in the rest of each of the `struct so_list' nodes.  */
      /* Fill in the rest of each of the `struct so_list' nodes.  */
      for (i = inferior; i; i = i->next)
      for (i = inferior; i; i = i->next)
        {
        {
          i->from_tty = from_tty;
          i->from_tty = from_tty;
          i->pspace = current_program_space;
          i->pspace = current_program_space;
 
 
          /* Fill in the rest of the `struct so_list' node.  */
          /* Fill in the rest of the `struct so_list' node.  */
          catch_errors (solib_map_sections, i,
          catch_errors (solib_map_sections, i,
                        "Error while mapping shared library sections:\n",
                        "Error while mapping shared library sections:\n",
                        RETURN_MASK_ALL);
                        RETURN_MASK_ALL);
 
 
          /* Add the shared object's sections to the current set of
          /* Add the shared object's sections to the current set of
             file section tables.  Do this immediately after mapping
             file section tables.  Do this immediately after mapping
             the object so that later nodes in the list can query this
             the object so that later nodes in the list can query this
             object, as is needed in solib-osf.c.  */
             object, as is needed in solib-osf.c.  */
          add_target_sections (i->sections, i->sections_end);
          add_target_sections (i->sections, i->sections_end);
 
 
          /* Notify any observer that the shared object has been
          /* Notify any observer that the shared object has been
             loaded now that we've added it to GDB's tables.  */
             loaded now that we've added it to GDB's tables.  */
          observer_notify_solib_loaded (i);
          observer_notify_solib_loaded (i);
        }
        }
    }
    }
}
}
 
 
 
 
/* Return non-zero if NAME is the libpthread shared library.
/* Return non-zero if NAME is the libpthread shared library.
 
 
   Uses a fairly simplistic heuristic approach where we check
   Uses a fairly simplistic heuristic approach where we check
   the file name against "/libpthread".  This can lead to false
   the file name against "/libpthread".  This can lead to false
   positives, but this should be good enough in practice.  */
   positives, but this should be good enough in practice.  */
 
 
int
int
libpthread_name_p (const char *name)
libpthread_name_p (const char *name)
{
{
  return (strstr (name, "/libpthread") != NULL);
  return (strstr (name, "/libpthread") != NULL);
}
}
 
 
/* Return non-zero if SO is the libpthread shared library.  */
/* Return non-zero if SO is the libpthread shared library.  */
 
 
static int
static int
libpthread_solib_p (struct so_list *so)
libpthread_solib_p (struct so_list *so)
{
{
  return libpthread_name_p (so->so_name);
  return libpthread_name_p (so->so_name);
}
}
 
 
/* GLOBAL FUNCTION
/* GLOBAL FUNCTION
 
 
   solib_add -- read in symbol info for newly added shared libraries
   solib_add -- read in symbol info for newly added shared libraries
 
 
   SYNOPSIS
   SYNOPSIS
 
 
   void solib_add (char *pattern, int from_tty, struct target_ops
   void solib_add (char *pattern, int from_tty, struct target_ops
   *TARGET, int readsyms)
   *TARGET, int readsyms)
 
 
   DESCRIPTION
   DESCRIPTION
 
 
   Read in symbolic information for any shared objects whose names
   Read in symbolic information for any shared objects whose names
   match PATTERN.  (If we've already read a shared object's symbol
   match PATTERN.  (If we've already read a shared object's symbol
   info, leave it alone.)  If PATTERN is zero, read them all.
   info, leave it alone.)  If PATTERN is zero, read them all.
 
 
   If READSYMS is 0, defer reading symbolic information until later
   If READSYMS is 0, defer reading symbolic information until later
   but still do any needed low level processing.
   but still do any needed low level processing.
 
 
   FROM_TTY and TARGET are as described for update_solib_list, above.  */
   FROM_TTY and TARGET are as described for update_solib_list, above.  */
 
 
void
void
solib_add (char *pattern, int from_tty, struct target_ops *target, int readsyms)
solib_add (char *pattern, int from_tty, struct target_ops *target, int readsyms)
{
{
  struct so_list *gdb;
  struct so_list *gdb;
 
 
  if (pattern)
  if (pattern)
    {
    {
      char *re_err = re_comp (pattern);
      char *re_err = re_comp (pattern);
 
 
      if (re_err)
      if (re_err)
        error (_("Invalid regexp: %s"), re_err);
        error (_("Invalid regexp: %s"), re_err);
    }
    }
 
 
  update_solib_list (from_tty, target);
  update_solib_list (from_tty, target);
 
 
  /* Walk the list of currently loaded shared libraries, and read
  /* Walk the list of currently loaded shared libraries, and read
     symbols for any that match the pattern --- or any whose symbols
     symbols for any that match the pattern --- or any whose symbols
     aren't already loaded, if no pattern was given.  */
     aren't already loaded, if no pattern was given.  */
  {
  {
    int any_matches = 0;
    int any_matches = 0;
    int loaded_any_symbols = 0;
    int loaded_any_symbols = 0;
    const int flags =
    const int flags =
        SYMFILE_DEFER_BP_RESET | (from_tty ? SYMFILE_VERBOSE : 0);
        SYMFILE_DEFER_BP_RESET | (from_tty ? SYMFILE_VERBOSE : 0);
 
 
    for (gdb = so_list_head; gdb; gdb = gdb->next)
    for (gdb = so_list_head; gdb; gdb = gdb->next)
      if (! pattern || re_exec (gdb->so_name))
      if (! pattern || re_exec (gdb->so_name))
        {
        {
          /* Normally, we would read the symbols from that library
          /* Normally, we would read the symbols from that library
             only if READSYMS is set.  However, we're making a small
             only if READSYMS is set.  However, we're making a small
             exception for the pthread library, because we sometimes
             exception for the pthread library, because we sometimes
             need the library symbols to be loaded in order to provide
             need the library symbols to be loaded in order to provide
             thread support (x86-linux for instance).  */
             thread support (x86-linux for instance).  */
          const int add_this_solib =
          const int add_this_solib =
            (readsyms || libpthread_solib_p (gdb));
            (readsyms || libpthread_solib_p (gdb));
 
 
          any_matches = 1;
          any_matches = 1;
          if (add_this_solib && solib_read_symbols (gdb, flags))
          if (add_this_solib && solib_read_symbols (gdb, flags))
            loaded_any_symbols = 1;
            loaded_any_symbols = 1;
        }
        }
 
 
    if (loaded_any_symbols)
    if (loaded_any_symbols)
      breakpoint_re_set ();
      breakpoint_re_set ();
 
 
    if (from_tty && pattern && ! any_matches)
    if (from_tty && pattern && ! any_matches)
      printf_unfiltered
      printf_unfiltered
        ("No loaded shared libraries match the pattern `%s'.\n", pattern);
        ("No loaded shared libraries match the pattern `%s'.\n", pattern);
 
 
    if (loaded_any_symbols)
    if (loaded_any_symbols)
      {
      {
        struct target_so_ops *ops = solib_ops (target_gdbarch);
        struct target_so_ops *ops = solib_ops (target_gdbarch);
 
 
        /* Getting new symbols may change our opinion about what is
        /* Getting new symbols may change our opinion about what is
           frameless.  */
           frameless.  */
        reinit_frame_cache ();
        reinit_frame_cache ();
 
 
        ops->special_symbol_handling ();
        ops->special_symbol_handling ();
      }
      }
  }
  }
}
}
 
 
 
 
/*
/*
 
 
   LOCAL FUNCTION
   LOCAL FUNCTION
 
 
   info_sharedlibrary_command -- code for "info sharedlibrary"
   info_sharedlibrary_command -- code for "info sharedlibrary"
 
 
   SYNOPSIS
   SYNOPSIS
 
 
   static void info_sharedlibrary_command ()
   static void info_sharedlibrary_command ()
 
 
   DESCRIPTION
   DESCRIPTION
 
 
   Walk through the shared library list and print information
   Walk through the shared library list and print information
   about each attached library matching PATTERN.  If PATTERN is elided,
   about each attached library matching PATTERN.  If PATTERN is elided,
   print them all.
   print them all.
 */
 */
 
 
static void
static void
info_sharedlibrary_command (char *pattern, int from_tty)
info_sharedlibrary_command (char *pattern, int from_tty)
{
{
  struct so_list *so = NULL;    /* link map state variable */
  struct so_list *so = NULL;    /* link map state variable */
  int header_done = 0;
  int header_done = 0;
  int so_missing_debug_info = 0;
  int so_missing_debug_info = 0;
  int addr_width;
  int addr_width;
  int nr_libs;
  int nr_libs;
  struct cleanup *table_cleanup;
  struct cleanup *table_cleanup;
  struct gdbarch *gdbarch = target_gdbarch;
  struct gdbarch *gdbarch = target_gdbarch;
 
 
  if (pattern)
  if (pattern)
    {
    {
      char *re_err = re_comp (pattern);
      char *re_err = re_comp (pattern);
 
 
      if (re_err)
      if (re_err)
        error (_("Invalid regexp: %s"), re_err);
        error (_("Invalid regexp: %s"), re_err);
    }
    }
 
 
  /* "0x", a little whitespace, and two hex digits per byte of pointers.  */
  /* "0x", a little whitespace, and two hex digits per byte of pointers.  */
  addr_width = 4 + (gdbarch_ptr_bit (gdbarch) / 4);
  addr_width = 4 + (gdbarch_ptr_bit (gdbarch) / 4);
 
 
  update_solib_list (from_tty, 0);
  update_solib_list (from_tty, 0);
 
 
  /* make_cleanup_ui_out_table_begin_end needs to know the number of
  /* make_cleanup_ui_out_table_begin_end needs to know the number of
     rows, so we need to make two passes over the libs.  */
     rows, so we need to make two passes over the libs.  */
 
 
  for (nr_libs = 0, so = so_list_head; so; so = so->next)
  for (nr_libs = 0, so = so_list_head; so; so = so->next)
    {
    {
      if (so->so_name[0])
      if (so->so_name[0])
        {
        {
          if (pattern && ! re_exec (so->so_name))
          if (pattern && ! re_exec (so->so_name))
            continue;
            continue;
          ++nr_libs;
          ++nr_libs;
        }
        }
    }
    }
 
 
  table_cleanup =
  table_cleanup =
    make_cleanup_ui_out_table_begin_end (uiout, 4, nr_libs,
    make_cleanup_ui_out_table_begin_end (uiout, 4, nr_libs,
                                         "SharedLibraryTable");
                                         "SharedLibraryTable");
 
 
  /* The "- 1" is because ui_out adds one space between columns.  */
  /* The "- 1" is because ui_out adds one space between columns.  */
  ui_out_table_header (uiout, addr_width - 1, ui_left, "from", "From");
  ui_out_table_header (uiout, addr_width - 1, ui_left, "from", "From");
  ui_out_table_header (uiout, addr_width - 1, ui_left, "to", "To");
  ui_out_table_header (uiout, addr_width - 1, ui_left, "to", "To");
  ui_out_table_header (uiout, 12 - 1, ui_left, "syms-read", "Syms Read");
  ui_out_table_header (uiout, 12 - 1, ui_left, "syms-read", "Syms Read");
  ui_out_table_header (uiout, 0, ui_noalign,
  ui_out_table_header (uiout, 0, ui_noalign,
                       "name", "Shared Object Library");
                       "name", "Shared Object Library");
 
 
  ui_out_table_body (uiout);
  ui_out_table_body (uiout);
 
 
  for (so = so_list_head; so; so = so->next)
  for (so = so_list_head; so; so = so->next)
    {
    {
      struct cleanup *lib_cleanup;
      struct cleanup *lib_cleanup;
 
 
      if (! so->so_name[0])
      if (! so->so_name[0])
        continue;
        continue;
      if (pattern && ! re_exec (so->so_name))
      if (pattern && ! re_exec (so->so_name))
        continue;
        continue;
 
 
      lib_cleanup = make_cleanup_ui_out_tuple_begin_end (uiout, "lib");
      lib_cleanup = make_cleanup_ui_out_tuple_begin_end (uiout, "lib");
 
 
      if (so->addr_high != 0)
      if (so->addr_high != 0)
        {
        {
          ui_out_field_core_addr (uiout, "from", gdbarch, so->addr_low);
          ui_out_field_core_addr (uiout, "from", gdbarch, so->addr_low);
          ui_out_field_core_addr (uiout, "to", gdbarch, so->addr_high);
          ui_out_field_core_addr (uiout, "to", gdbarch, so->addr_high);
        }
        }
      else
      else
        {
        {
          ui_out_field_skip (uiout, "from");
          ui_out_field_skip (uiout, "from");
          ui_out_field_skip (uiout, "to");
          ui_out_field_skip (uiout, "to");
        }
        }
 
 
      if (! ui_out_is_mi_like_p (interp_ui_out (top_level_interpreter ()))
      if (! ui_out_is_mi_like_p (interp_ui_out (top_level_interpreter ()))
          && so->symbols_loaded
          && so->symbols_loaded
          && !objfile_has_symbols (so->objfile))
          && !objfile_has_symbols (so->objfile))
        {
        {
          so_missing_debug_info = 1;
          so_missing_debug_info = 1;
          ui_out_field_string (uiout, "syms-read", "Yes (*)");
          ui_out_field_string (uiout, "syms-read", "Yes (*)");
        }
        }
      else
      else
        ui_out_field_string (uiout, "syms-read",
        ui_out_field_string (uiout, "syms-read",
                             so->symbols_loaded ? "Yes" : "No");
                             so->symbols_loaded ? "Yes" : "No");
 
 
      ui_out_field_string (uiout, "name", so->so_name);
      ui_out_field_string (uiout, "name", so->so_name);
 
 
      ui_out_text (uiout, "\n");
      ui_out_text (uiout, "\n");
 
 
      do_cleanups (lib_cleanup);
      do_cleanups (lib_cleanup);
    }
    }
 
 
  do_cleanups (table_cleanup);
  do_cleanups (table_cleanup);
 
 
  if (nr_libs == 0)
  if (nr_libs == 0)
    {
    {
      if (pattern)
      if (pattern)
        ui_out_message (uiout, 0,
        ui_out_message (uiout, 0,
                        _("No shared libraries matched.\n"));
                        _("No shared libraries matched.\n"));
      else
      else
        ui_out_message (uiout, 0,
        ui_out_message (uiout, 0,
                        _("No shared libraries loaded at this time.\n"));
                        _("No shared libraries loaded at this time.\n"));
    }
    }
  else
  else
    {
    {
      if (so_missing_debug_info)
      if (so_missing_debug_info)
        ui_out_message (uiout, 0,
        ui_out_message (uiout, 0,
                        _("(*): Shared library is missing debugging information.\n"));
                        _("(*): Shared library is missing debugging information.\n"));
    }
    }
}
}
 
 
/* Return 1 if ADDRESS lies within SOLIB.  */
/* Return 1 if ADDRESS lies within SOLIB.  */
 
 
int
int
solib_contains_address_p (const struct so_list *const solib,
solib_contains_address_p (const struct so_list *const solib,
                          CORE_ADDR address)
                          CORE_ADDR address)
{
{
  struct target_section *p;
  struct target_section *p;
 
 
  for (p = solib->sections; p < solib->sections_end; p++)
  for (p = solib->sections; p < solib->sections_end; p++)
    if (p->addr <= address && address < p->endaddr)
    if (p->addr <= address && address < p->endaddr)
      return 1;
      return 1;
 
 
  return 0;
  return 0;
}
}
 
 
/*
/*
 
 
   GLOBAL FUNCTION
   GLOBAL FUNCTION
 
 
   solib_name_from_address -- if an address is in a shared lib, return
   solib_name_from_address -- if an address is in a shared lib, return
   its name.
   its name.
 
 
   SYNOPSIS
   SYNOPSIS
 
 
   char * solib_name_from_address (CORE_ADDR address)
   char * solib_name_from_address (CORE_ADDR address)
 
 
   DESCRIPTION
   DESCRIPTION
 
 
   Provides a hook for other gdb routines to discover whether or
   Provides a hook for other gdb routines to discover whether or
   not a particular address is within the mapped address space of
   not a particular address is within the mapped address space of
   a shared library.
   a shared library.
 
 
   For example, this routine is called at one point to disable
   For example, this routine is called at one point to disable
   breakpoints which are in shared libraries that are not currently
   breakpoints which are in shared libraries that are not currently
   mapped in.
   mapped in.
 */
 */
 
 
char *
char *
solib_name_from_address (struct program_space *pspace, CORE_ADDR address)
solib_name_from_address (struct program_space *pspace, CORE_ADDR address)
{
{
  struct so_list *so = NULL;
  struct so_list *so = NULL;
 
 
  for (so = pspace->so_list; so; so = so->next)
  for (so = pspace->so_list; so; so = so->next)
    if (solib_contains_address_p (so, address))
    if (solib_contains_address_p (so, address))
      return (so->so_name);
      return (so->so_name);
 
 
  return (0);
  return (0);
}
}
 
 
/* Return whether the data starting at VADDR, size SIZE, must be kept
/* Return whether the data starting at VADDR, size SIZE, must be kept
   in a core file for shared libraries loaded before "gcore" is used
   in a core file for shared libraries loaded before "gcore" is used
   to be handled correctly when the core file is loaded.  This only
   to be handled correctly when the core file is loaded.  This only
   applies when the section would otherwise not be kept in the core
   applies when the section would otherwise not be kept in the core
   file (in particular, for readonly sections).  */
   file (in particular, for readonly sections).  */
 
 
int
int
solib_keep_data_in_core (CORE_ADDR vaddr, unsigned long size)
solib_keep_data_in_core (CORE_ADDR vaddr, unsigned long size)
{
{
  struct target_so_ops *ops = solib_ops (target_gdbarch);
  struct target_so_ops *ops = solib_ops (target_gdbarch);
 
 
  if (ops->keep_data_in_core)
  if (ops->keep_data_in_core)
    return ops->keep_data_in_core (vaddr, size);
    return ops->keep_data_in_core (vaddr, size);
  else
  else
    return 0;
    return 0;
}
}
 
 
/* Called by free_all_symtabs */
/* Called by free_all_symtabs */
 
 
void
void
clear_solib (void)
clear_solib (void)
{
{
  struct target_so_ops *ops = solib_ops (target_gdbarch);
  struct target_so_ops *ops = solib_ops (target_gdbarch);
 
 
  /* This function is expected to handle ELF shared libraries.  It is
  /* This function is expected to handle ELF shared libraries.  It is
     also used on Solaris, which can run either ELF or a.out binaries
     also used on Solaris, which can run either ELF or a.out binaries
     (for compatibility with SunOS 4), both of which can use shared
     (for compatibility with SunOS 4), both of which can use shared
     libraries.  So we don't know whether we have an ELF executable or
     libraries.  So we don't know whether we have an ELF executable or
     an a.out executable until the user chooses an executable file.
     an a.out executable until the user chooses an executable file.
 
 
     ELF shared libraries don't get mapped into the address space
     ELF shared libraries don't get mapped into the address space
     until after the program starts, so we'd better not try to insert
     until after the program starts, so we'd better not try to insert
     breakpoints in them immediately.  We have to wait until the
     breakpoints in them immediately.  We have to wait until the
     dynamic linker has loaded them; we'll hit a bp_shlib_event
     dynamic linker has loaded them; we'll hit a bp_shlib_event
     breakpoint (look for calls to create_solib_event_breakpoint) when
     breakpoint (look for calls to create_solib_event_breakpoint) when
     it's ready.
     it's ready.
 
 
     SunOS shared libraries seem to be different --- they're present
     SunOS shared libraries seem to be different --- they're present
     as soon as the process begins execution, so there's no need to
     as soon as the process begins execution, so there's no need to
     put off inserting breakpoints.  There's also nowhere to put a
     put off inserting breakpoints.  There's also nowhere to put a
     bp_shlib_event breakpoint, so if we put it off, we'll never get
     bp_shlib_event breakpoint, so if we put it off, we'll never get
     around to it.
     around to it.
 
 
     So: disable breakpoints only if we're using ELF shared libs.  */
     So: disable breakpoints only if we're using ELF shared libs.  */
  if (exec_bfd != NULL
  if (exec_bfd != NULL
      && bfd_get_flavour (exec_bfd) != bfd_target_aout_flavour)
      && bfd_get_flavour (exec_bfd) != bfd_target_aout_flavour)
    disable_breakpoints_in_shlibs ();
    disable_breakpoints_in_shlibs ();
 
 
  while (so_list_head)
  while (so_list_head)
    {
    {
      struct so_list *so = so_list_head;
      struct so_list *so = so_list_head;
      so_list_head = so->next;
      so_list_head = so->next;
      observer_notify_solib_unloaded (so);
      observer_notify_solib_unloaded (so);
      if (so->abfd)
      if (so->abfd)
        remove_target_sections (so->abfd);
        remove_target_sections (so->abfd);
      free_so (so);
      free_so (so);
    }
    }
 
 
  ops->clear_solib ();
  ops->clear_solib ();
}
}
 
 
/* GLOBAL FUNCTION
/* GLOBAL FUNCTION
 
 
   solib_create_inferior_hook -- shared library startup support
   solib_create_inferior_hook -- shared library startup support
 
 
   SYNOPSIS
   SYNOPSIS
 
 
   void solib_create_inferior_hook (int from_tty)
   void solib_create_inferior_hook (int from_tty)
 
 
   DESCRIPTION
   DESCRIPTION
 
 
   When gdb starts up the inferior, it nurses it along (through the
   When gdb starts up the inferior, it nurses it along (through the
   shell) until it is ready to execute it's first instruction.  At this
   shell) until it is ready to execute it's first instruction.  At this
   point, this function gets called via expansion of the macro
   point, this function gets called via expansion of the macro
   SOLIB_CREATE_INFERIOR_HOOK.  */
   SOLIB_CREATE_INFERIOR_HOOK.  */
 
 
void
void
solib_create_inferior_hook (int from_tty)
solib_create_inferior_hook (int from_tty)
{
{
  struct target_so_ops *ops = solib_ops (target_gdbarch);
  struct target_so_ops *ops = solib_ops (target_gdbarch);
  ops->solib_create_inferior_hook (from_tty);
  ops->solib_create_inferior_hook (from_tty);
}
}
 
 
/* GLOBAL FUNCTION
/* GLOBAL FUNCTION
 
 
   in_solib_dynsym_resolve_code -- check to see if an address is in
   in_solib_dynsym_resolve_code -- check to see if an address is in
                                   dynamic loader's dynamic symbol
                                   dynamic loader's dynamic symbol
                                   resolution code
                                   resolution code
 
 
   SYNOPSIS
   SYNOPSIS
 
 
   int in_solib_dynsym_resolve_code (CORE_ADDR pc)
   int in_solib_dynsym_resolve_code (CORE_ADDR pc)
 
 
   DESCRIPTION
   DESCRIPTION
 
 
   Determine if PC is in the dynamic linker's symbol resolution
   Determine if PC is in the dynamic linker's symbol resolution
   code.  Return 1 if so, 0 otherwise.
   code.  Return 1 if so, 0 otherwise.
*/
*/
 
 
int
int
in_solib_dynsym_resolve_code (CORE_ADDR pc)
in_solib_dynsym_resolve_code (CORE_ADDR pc)
{
{
  struct target_so_ops *ops = solib_ops (target_gdbarch);
  struct target_so_ops *ops = solib_ops (target_gdbarch);
  return ops->in_dynsym_resolve_code (pc);
  return ops->in_dynsym_resolve_code (pc);
}
}
 
 
/*
/*
 
 
   LOCAL FUNCTION
   LOCAL FUNCTION
 
 
   sharedlibrary_command -- handle command to explicitly add library
   sharedlibrary_command -- handle command to explicitly add library
 
 
   SYNOPSIS
   SYNOPSIS
 
 
   static void sharedlibrary_command (char *args, int from_tty)
   static void sharedlibrary_command (char *args, int from_tty)
 
 
   DESCRIPTION
   DESCRIPTION
 
 
 */
 */
 
 
static void
static void
sharedlibrary_command (char *args, int from_tty)
sharedlibrary_command (char *args, int from_tty)
{
{
  dont_repeat ();
  dont_repeat ();
  solib_add (args, from_tty, (struct target_ops *) 0, 1);
  solib_add (args, from_tty, (struct target_ops *) 0, 1);
}
}
 
 
/* LOCAL FUNCTION
/* LOCAL FUNCTION
 
 
   no_shared_libraries -- handle command to explicitly discard symbols
   no_shared_libraries -- handle command to explicitly discard symbols
   from shared libraries.
   from shared libraries.
 
 
   DESCRIPTION
   DESCRIPTION
 
 
   Implements the command "nosharedlibrary", which discards symbols
   Implements the command "nosharedlibrary", which discards symbols
   that have been auto-loaded from shared libraries.  Symbols from
   that have been auto-loaded from shared libraries.  Symbols from
   shared libraries that were added by explicit request of the user
   shared libraries that were added by explicit request of the user
   are not discarded.  Also called from remote.c.  */
   are not discarded.  Also called from remote.c.  */
 
 
void
void
no_shared_libraries (char *ignored, int from_tty)
no_shared_libraries (char *ignored, int from_tty)
{
{
  /* The order of the two routines below is important: clear_solib notifies
  /* The order of the two routines below is important: clear_solib notifies
     the solib_unloaded observers, and some of these observers might need
     the solib_unloaded observers, and some of these observers might need
     access to their associated objfiles.  Therefore, we can not purge the
     access to their associated objfiles.  Therefore, we can not purge the
     solibs' objfiles before clear_solib has been called.  */
     solibs' objfiles before clear_solib has been called.  */
 
 
  clear_solib ();
  clear_solib ();
  objfile_purge_solibs ();
  objfile_purge_solibs ();
}
}
 
 
static void
static void
reload_shared_libraries (char *ignored, int from_tty,
reload_shared_libraries (char *ignored, int from_tty,
                         struct cmd_list_element *e)
                         struct cmd_list_element *e)
{
{
  no_shared_libraries (NULL, from_tty);
  no_shared_libraries (NULL, from_tty);
  /* Creating inferior hooks here has two purposes. First, if we reload
  /* Creating inferior hooks here has two purposes. First, if we reload
     shared libraries then the address of solib breakpoint we've computed
     shared libraries then the address of solib breakpoint we've computed
     previously might be no longer valid.  For example, if we forgot to set
     previously might be no longer valid.  For example, if we forgot to set
     solib-absolute-prefix and are setting it right now, then the previous
     solib-absolute-prefix and are setting it right now, then the previous
     breakpoint address is plain wrong.  Second, installing solib hooks
     breakpoint address is plain wrong.  Second, installing solib hooks
     also implicitly figures were ld.so is and loads symbols for it.
     also implicitly figures were ld.so is and loads symbols for it.
     Absent this call, if we've just connected to a target and set
     Absent this call, if we've just connected to a target and set
     solib-absolute-prefix or solib-search-path, we'll lose all information
     solib-absolute-prefix or solib-search-path, we'll lose all information
     about ld.so.  */
     about ld.so.  */
  if (target_has_execution)
  if (target_has_execution)
    {
    {
#ifdef SOLIB_CREATE_INFERIOR_HOOK
#ifdef SOLIB_CREATE_INFERIOR_HOOK
      SOLIB_CREATE_INFERIOR_HOOK (PIDGET (inferior_ptid));
      SOLIB_CREATE_INFERIOR_HOOK (PIDGET (inferior_ptid));
#else
#else
      solib_create_inferior_hook (from_tty);
      solib_create_inferior_hook (from_tty);
#endif
#endif
    }
    }
 
 
  /* Sometimes the platform-specific hook loads initial shared
  /* Sometimes the platform-specific hook loads initial shared
     libraries, and sometimes it doesn't.  If it doesn't FROM_TTY will be
     libraries, and sometimes it doesn't.  If it doesn't FROM_TTY will be
     incorrectly 0 but such solib targets should be fixed anyway.  If we
     incorrectly 0 but such solib targets should be fixed anyway.  If we
     made all the inferior hook methods consistent, this call could be
     made all the inferior hook methods consistent, this call could be
     removed.  Call it only after the solib target has been initialized by
     removed.  Call it only after the solib target has been initialized by
     solib_create_inferior_hook.  */
     solib_create_inferior_hook.  */
 
 
  solib_add (NULL, 0, NULL, auto_solib_add);
  solib_add (NULL, 0, NULL, auto_solib_add);
 
 
  /* We have unloaded and then reloaded debug info for all shared libraries.
  /* We have unloaded and then reloaded debug info for all shared libraries.
     However, frames may still reference them, for example a frame's
     However, frames may still reference them, for example a frame's
     unwinder might still point of DWARF FDE structures that are now freed.
     unwinder might still point of DWARF FDE structures that are now freed.
     Reinit frame cache to avoid crashing.  */
     Reinit frame cache to avoid crashing.  */
  reinit_frame_cache ();
  reinit_frame_cache ();
}
}
 
 
static void
static void
show_auto_solib_add (struct ui_file *file, int from_tty,
show_auto_solib_add (struct ui_file *file, int from_tty,
                     struct cmd_list_element *c, const char *value)
                     struct cmd_list_element *c, const char *value)
{
{
  fprintf_filtered (file, _("Autoloading of shared library symbols is %s.\n"),
  fprintf_filtered (file, _("Autoloading of shared library symbols is %s.\n"),
                    value);
                    value);
}
}
 
 
 
 
/* Handler for library-specific lookup of global symbol NAME in OBJFILE.  Call
/* Handler for library-specific lookup of global symbol NAME in OBJFILE.  Call
   the library-specific handler if it is installed for the current target.  */
   the library-specific handler if it is installed for the current target.  */
 
 
struct symbol *
struct symbol *
solib_global_lookup (const struct objfile *objfile,
solib_global_lookup (const struct objfile *objfile,
                     const char *name,
                     const char *name,
                     const char *linkage_name,
                     const char *linkage_name,
                     const domain_enum domain)
                     const domain_enum domain)
{
{
  struct target_so_ops *ops = solib_ops (target_gdbarch);
  struct target_so_ops *ops = solib_ops (target_gdbarch);
 
 
  if (ops->lookup_lib_global_symbol != NULL)
  if (ops->lookup_lib_global_symbol != NULL)
    return ops->lookup_lib_global_symbol (objfile, name, linkage_name, domain);
    return ops->lookup_lib_global_symbol (objfile, name, linkage_name, domain);
  return NULL;
  return NULL;
}
}
 
 
 
 
extern initialize_file_ftype _initialize_solib; /* -Wmissing-prototypes */
extern initialize_file_ftype _initialize_solib; /* -Wmissing-prototypes */
 
 
void
void
_initialize_solib (void)
_initialize_solib (void)
{
{
  struct cmd_list_element *c;
  struct cmd_list_element *c;
 
 
  solib_data = gdbarch_data_register_pre_init (solib_init);
  solib_data = gdbarch_data_register_pre_init (solib_init);
 
 
  add_com ("sharedlibrary", class_files, sharedlibrary_command,
  add_com ("sharedlibrary", class_files, sharedlibrary_command,
           _("Load shared object library symbols for files matching REGEXP."));
           _("Load shared object library symbols for files matching REGEXP."));
  add_info ("sharedlibrary", info_sharedlibrary_command,
  add_info ("sharedlibrary", info_sharedlibrary_command,
            _("Status of loaded shared object libraries."));
            _("Status of loaded shared object libraries."));
  add_com ("nosharedlibrary", class_files, no_shared_libraries,
  add_com ("nosharedlibrary", class_files, no_shared_libraries,
           _("Unload all shared object library symbols."));
           _("Unload all shared object library symbols."));
 
 
  add_setshow_boolean_cmd ("auto-solib-add", class_support,
  add_setshow_boolean_cmd ("auto-solib-add", class_support,
                           &auto_solib_add, _("\
                           &auto_solib_add, _("\
Set autoloading of shared library symbols."), _("\
Set autoloading of shared library symbols."), _("\
Show autoloading of shared library symbols."), _("\
Show autoloading of shared library symbols."), _("\
If \"on\", symbols from all shared object libraries will be loaded\n\
If \"on\", symbols from all shared object libraries will be loaded\n\
automatically when the inferior begins execution, when the dynamic linker\n\
automatically when the inferior begins execution, when the dynamic linker\n\
informs gdb that a new library has been loaded, or when attaching to the\n\
informs gdb that a new library has been loaded, or when attaching to the\n\
inferior.  Otherwise, symbols must be loaded manually, using `sharedlibrary'."),
inferior.  Otherwise, symbols must be loaded manually, using `sharedlibrary'."),
                           NULL,
                           NULL,
                           show_auto_solib_add,
                           show_auto_solib_add,
                           &setlist, &showlist);
                           &setlist, &showlist);
 
 
  add_setshow_filename_cmd ("sysroot", class_support,
  add_setshow_filename_cmd ("sysroot", class_support,
                            &gdb_sysroot, _("\
                            &gdb_sysroot, _("\
Set an alternate system root."), _("\
Set an alternate system root."), _("\
Show the current system root."), _("\
Show the current system root."), _("\
The system root is used to load absolute shared library symbol files.\n\
The system root is used to load absolute shared library symbol files.\n\
For other (relative) files, you can add directories using\n\
For other (relative) files, you can add directories using\n\
`set solib-search-path'."),
`set solib-search-path'."),
                            reload_shared_libraries,
                            reload_shared_libraries,
                            NULL,
                            NULL,
                            &setlist, &showlist);
                            &setlist, &showlist);
 
 
  add_alias_cmd ("solib-absolute-prefix", "sysroot", class_support, 0,
  add_alias_cmd ("solib-absolute-prefix", "sysroot", class_support, 0,
                 &setlist);
                 &setlist);
  add_alias_cmd ("solib-absolute-prefix", "sysroot", class_support, 0,
  add_alias_cmd ("solib-absolute-prefix", "sysroot", class_support, 0,
                 &showlist);
                 &showlist);
 
 
  add_setshow_optional_filename_cmd ("solib-search-path", class_support,
  add_setshow_optional_filename_cmd ("solib-search-path", class_support,
                                     &solib_search_path, _("\
                                     &solib_search_path, _("\
Set the search path for loading non-absolute shared library symbol files."), _("\
Set the search path for loading non-absolute shared library symbol files."), _("\
Show the search path for loading non-absolute shared library symbol files."), _("\
Show the search path for loading non-absolute shared library symbol files."), _("\
This takes precedence over the environment variables PATH and LD_LIBRARY_PATH."),
This takes precedence over the environment variables PATH and LD_LIBRARY_PATH."),
                                     reload_shared_libraries,
                                     reload_shared_libraries,
                                     show_solib_search_path,
                                     show_solib_search_path,
                                     &setlist, &showlist);
                                     &setlist, &showlist);
}
}
 
 

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