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# ltmain.sh - Provide generalized library-building support services.
# Generated from ltmain.m4sh.
# NOTE: Changing this file will not affect anything until you rerun configure.
 
#
# ltmain.sh (GNU libtool) 2.2.6
# Copyright (C) 1996, 1997, 1998, 1999, 2000, 2001, 2003, 2004, 2005, 2006,
# Written by Gordon Matzigkeit <gord@gnu.ai.mit.edu>, 1996
# 2007  Free Software Foundation, Inc.
 
# Originally by Gordon Matzigkeit <gord@gnu.ai.mit.edu>, 1996
# Copyright (C) 1996, 1997, 1998, 1999, 2000, 2001, 2003, 2004, 2005, 2006, 2007 2008 Free Software Foundation, Inc.
#
# This is free software; see the source for copying conditions.  There is NO
# This program is free software; you can redistribute it and/or modify
# warranty; not even for MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.
 
 
 
# GNU Libtool 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 2 of the License, or
# the Free Software Foundation; either version 2 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, but
# As a special exception to the GNU General Public License,
 
# if you distribute this file as part of a program or library that
 
# is built using GNU Libtool, you may include this file under the
 
# same distribution terms that you use for the rest of that program.
 
#
 
# GNU Libtool is distributed in the hope that it will be useful, but
# WITHOUT ANY WARRANTY; without even the implied warranty of
# WITHOUT ANY WARRANTY; without even the implied warranty of
# MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the GNU
# MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the GNU
# General Public License for more details.
# 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, write to the Free Software
# along with GNU Libtool; see the file COPYING.  If not, a copy
# Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301, USA.
# can be downloaded from http://www.gnu.org/licenses/gpl.html,
#
# or obtained by writing to the Free Software Foundation, Inc.,
# As a special exception to the GNU General Public License, if you
# 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301, USA.
# distribute this file as part of a program that contains a
 
# configuration script generated by Autoconf, you may include it under
 
# the same distribution terms that you use for the rest of that program.
 
 
 
basename="s,^.*/,,g"
 
 
 
# Work around backward compatibility issue on IRIX 6.5. On IRIX 6.4+, sh
 
# is ksh but when the shell is invoked as "sh" and the current value of
 
# the _XPG environment variable is not equal to 1 (one), the special
 
# positional parameter $0, within a function call, is the name of the
 
# function.
 
progpath="$0"
 
 
 
# The name of this program:
 
progname=`echo "$progpath" | $SED $basename`
 
modename="$progname"
 
 
 
# Global variables:
# Usage: $progname [OPTION]... [MODE-ARG]...
EXIT_SUCCESS=0
#
EXIT_FAILURE=1
# Provide generalized library-building support services.
 
#
 
#     --config             show all configuration variables
 
#     --debug              enable verbose shell tracing
 
# -n, --dry-run            display commands without modifying any files
 
#     --features           display basic configuration information and exit
 
#     --mode=MODE          use operation mode MODE
 
#     --preserve-dup-deps  don't remove duplicate dependency libraries
 
#     --quiet, --silent    don't print informational messages
 
#     --tag=TAG            use configuration variables from tag TAG
 
# -v, --verbose            print informational messages (default)
 
#     --version            print version information
 
# -h, --help               print short or long help message
 
#
 
# MODE must be one of the following:
 
#
 
#       clean              remove files from the build directory
 
#       compile            compile a source file into a libtool object
 
#       execute            automatically set library path, then run a program
 
#       finish             complete the installation of libtool libraries
 
#       install            install libraries or executables
 
#       link               create a library or an executable
 
#       uninstall          remove libraries from an installed directory
 
#
 
# MODE-ARGS vary depending on the MODE.
 
# Try `$progname --help --mode=MODE' for a more detailed description of MODE.
 
#
 
# When reporting a bug, please describe a test case to reproduce it and
 
# include the following information:
 
#
 
#       host-triplet:   $host
 
#       shell:          $SHELL
 
#       compiler:               $LTCC
 
#       compiler flags:         $LTCFLAGS
 
#       linker:         $LD (gnu? $with_gnu_ld)
 
#       $progname:              (GNU libtool) 2.2.6 Debian-2.2.6a-4
 
#       automake:               $automake_version
 
#       autoconf:               $autoconf_version
 
#
 
# Report bugs to <bug-libtool@gnu.org>.
 
 
PROGRAM=ltmain.sh
PROGRAM=ltmain.sh
PACKAGE=libtool
PACKAGE=libtool
VERSION=1.5.24
VERSION="2.2.6 Debian-2.2.6a-4"
TIMESTAMP=" (1.1220.2.456 2007/06/24 02:25:32)"
TIMESTAMP=""
 
package_revision=1.3012
 
 
# Be Bourne compatible (taken from Autoconf:_AS_BOURNE_COMPATIBLE).
# Be Bourne compatible
if test -n "${ZSH_VERSION+set}" && (emulate sh) >/dev/null 2>&1; then
if test -n "${ZSH_VERSION+set}" && (emulate sh) >/dev/null 2>&1; then
  emulate sh
  emulate sh
  NULLCMD=:
  NULLCMD=:
  # Zsh 3.x and 4.x performs word splitting on ${1+"$@"}, which
  # Zsh 3.x and 4.x performs word splitting on ${1+"$@"}, which
  # is contrary to our usage.  Disable this feature.
  # is contrary to our usage.  Disable this feature.
Line 58... Line 89...
  case `(set -o) 2>/dev/null` in *posix*) set -o posix;; esac
  case `(set -o) 2>/dev/null` in *posix*) set -o posix;; esac
fi
fi
BIN_SH=xpg4; export BIN_SH # for Tru64
BIN_SH=xpg4; export BIN_SH # for Tru64
DUALCASE=1; export DUALCASE # for MKS sh
DUALCASE=1; export DUALCASE # for MKS sh
 
 
# Check that we have a working $echo.
# NLS nuisances: We save the old values to restore during execute mode.
if test "X$1" = X--no-reexec; then
 
  # Discard the --no-reexec flag, and continue.
 
  shift
 
elif test "X$1" = X--fallback-echo; then
 
  # Avoid inline document here, it may be left over
 
  :
 
elif test "X`($echo '\t') 2>/dev/null`" = 'X\t'; then
 
  # Yippee, $echo works!
 
  :
 
else
 
  # Restart under the correct shell, and then maybe $echo will work.
 
  exec $SHELL "$progpath" --no-reexec ${1+"$@"}
 
fi
 
 
 
if test "X$1" = X--fallback-echo; then
 
  # used as fallback echo
 
  shift
 
  cat <<EOF
 
$*
 
EOF
 
  exit $EXIT_SUCCESS
 
fi
 
 
 
default_mode=
 
help="Try \`$progname --help' for more information."
 
magic="%%%MAGIC variable%%%"
 
mkdir="mkdir"
 
mv="mv -f"
 
rm="rm -f"
 
 
 
# Sed substitution that helps us do robust quoting.  It backslashifies
 
# metacharacters that are still active within double-quoted strings.
 
Xsed="${SED}"' -e 1s/^X//'
 
sed_quote_subst='s/\([\\`\\"$\\\\]\)/\\\1/g'
 
# test EBCDIC or ASCII
 
case `echo X|tr X '\101'` in
 
 A) # ASCII based system
 
    # \n is not interpreted correctly by Solaris 8 /usr/ucb/tr
 
  SP2NL='tr \040 \012'
 
  NL2SP='tr \015\012 \040\040'
 
  ;;
 
 *) # EBCDIC based system
 
  SP2NL='tr \100 \n'
 
  NL2SP='tr \r\n \100\100'
 
  ;;
 
esac
 
 
 
# NLS nuisances.
 
# Only set LANG and LC_ALL to C if already set.
# Only set LANG and LC_ALL to C if already set.
# These must not be set unconditionally because not all systems understand
# These must not be set unconditionally because not all systems understand
# e.g. LANG=C (notably SCO).
# e.g. LANG=C (notably SCO).
# We save the old values to restore during execute mode.
lt_user_locale=
for lt_var in LANG LC_ALL LC_CTYPE LC_COLLATE LC_MESSAGES
lt_safe_locale=
 
for lt_var in LANG LANGUAGE LC_ALL LC_CTYPE LC_COLLATE LC_MESSAGES
do
do
  eval "if test \"\${$lt_var+set}\" = set; then
  eval "if test \"\${$lt_var+set}\" = set; then
          save_$lt_var=\$$lt_var
          save_$lt_var=\$$lt_var
          $lt_var=C
          $lt_var=C
          export $lt_var
          export $lt_var
 
          lt_user_locale=\"$lt_var=\\\$save_\$lt_var; \$lt_user_locale\"
 
          lt_safe_locale=\"$lt_var=C; \$lt_safe_locale\"
        fi"
        fi"
done
done
 
 
 
$lt_unset CDPATH
 
 
 
 
 
 
 
 
 
 
 
: ${CP="cp -f"}
 
: ${ECHO="echo"}
 
: ${EGREP="/bin/grep -E"}
 
: ${FGREP="/bin/grep -F"}
 
: ${GREP="/bin/grep"}
 
: ${LN_S="ln -s"}
 
: ${MAKE="make"}
 
: ${MKDIR="mkdir"}
 
: ${MV="mv -f"}
 
: ${RM="rm -f"}
 
: ${SED="/bin/sed"}
 
: ${SHELL="${CONFIG_SHELL-/bin/sh}"}
 
: ${Xsed="$SED -e 1s/^X//"}
 
 
 
# Global variables:
 
EXIT_SUCCESS=0
 
EXIT_FAILURE=1
 
EXIT_MISMATCH=63  # $? = 63 is used to indicate version mismatch to missing.
 
EXIT_SKIP=77      # $? = 77 is used to indicate a skipped test to automake.
 
 
 
exit_status=$EXIT_SUCCESS
 
 
# Make sure IFS has a sensible default
# Make sure IFS has a sensible default
lt_nl='
lt_nl='
'
'
IFS="   $lt_nl"
IFS="   $lt_nl"
 
 
if test "$build_libtool_libs" != yes && test "$build_old_libs" != yes; then
dirname="s,/[^/]*$,,"
  $echo "$modename: not configured to build any kind of library" 1>&2
basename="s,^.*/,,"
  $echo "Fatal configuration error.  See the $PACKAGE docs for more information." 1>&2
 
  exit $EXIT_FAILURE
# func_dirname_and_basename file append nondir_replacement
 
# perform func_basename and func_dirname in a single function
 
# call:
 
#   dirname:  Compute the dirname of FILE.  If nonempty,
 
#             add APPEND to the result, otherwise set result
 
#             to NONDIR_REPLACEMENT.
 
#             value returned in "$func_dirname_result"
 
#   basename: Compute filename of FILE.
 
#             value retuned in "$func_basename_result"
 
# Implementation must be kept synchronized with func_dirname
 
# and func_basename. For efficiency, we do not delegate to
 
# those functions but instead duplicate the functionality here.
 
func_dirname_and_basename ()
 
{
 
  # Extract subdirectory from the argument.
 
  func_dirname_result=`$ECHO "X${1}" | $Xsed -e "$dirname"`
 
  if test "X$func_dirname_result" = "X${1}"; then
 
    func_dirname_result="${3}"
 
  else
 
    func_dirname_result="$func_dirname_result${2}"
fi
fi
 
  func_basename_result=`$ECHO "X${1}" | $Xsed -e "$basename"`
 
}
 
 
# Global variables.
# Generated shell functions inserted here.
mode=$default_mode
 
nonopt=
# Work around backward compatibility issue on IRIX 6.5. On IRIX 6.4+, sh
prev=
# is ksh but when the shell is invoked as "sh" and the current value of
prevopt=
# the _XPG environment variable is not equal to 1 (one), the special
run=
# positional parameter $0, within a function call, is the name of the
show="$echo"
# function.
show_help=
progpath="$0"
execute_dlfiles=
 
duplicate_deps=no
# The name of this program:
preserve_args=
# In the unlikely event $progname began with a '-', it would play havoc with
lo2o="s/\\.lo\$/.${objext}/"
# func_echo (imagine progname=-n), so we prepend ./ in that case:
o2lo="s/\\.${objext}\$/.lo/"
func_dirname_and_basename "$progpath"
extracted_archives=
progname=$func_basename_result
extracted_serial=0
case $progname in
 
  -*) progname=./$progname ;;
 
esac
 
 
 
# Make sure we have an absolute path for reexecution:
 
case $progpath in
 
  [\\/]*|[A-Za-z]:\\*) ;;
 
  *[\\/]*)
 
     progdir=$func_dirname_result
 
     progdir=`cd "$progdir" && pwd`
 
     progpath="$progdir/$progname"
 
     ;;
 
  *)
 
     save_IFS="$IFS"
 
     IFS=:
 
     for progdir in $PATH; do
 
       IFS="$save_IFS"
 
       test -x "$progdir/$progname" && break
 
     done
 
     IFS="$save_IFS"
 
     test -n "$progdir" || progdir=`pwd`
 
     progpath="$progdir/$progname"
 
     ;;
 
esac
 
 
 
# Sed substitution that helps us do robust quoting.  It backslashifies
 
# metacharacters that are still active within double-quoted strings.
 
Xsed="${SED}"' -e 1s/^X//'
 
sed_quote_subst='s/\([`"$\\]\)/\\\1/g'
 
 
 
# Same as above, but do not quote variable references.
 
double_quote_subst='s/\(["`\\]\)/\\\1/g'
 
 
 
# Re-`\' parameter expansions in output of double_quote_subst that were
 
# `\'-ed in input to the same.  If an odd number of `\' preceded a '$'
 
# in input to double_quote_subst, that '$' was protected from expansion.
 
# Since each input `\' is now two `\'s, look for any number of runs of
 
# four `\'s followed by two `\'s and then a '$'.  `\' that '$'.
 
bs='\\'
 
bs2='\\\\'
 
bs4='\\\\\\\\'
 
dollar='\$'
 
sed_double_backslash="\
 
  s/$bs4/&\\
 
/g
 
  s/^$bs2$dollar/$bs&/
 
  s/\\([^$bs]\\)$bs2$dollar/\\1$bs2$bs$dollar/g
 
  s/\n//g"
 
 
 
# Standard options:
 
opt_dry_run=false
 
opt_help=false
 
opt_quiet=false
 
opt_verbose=false
 
opt_warning=:
 
 
 
# func_echo arg...
 
# Echo program name prefixed message, along with the current mode
 
# name if it has been set yet.
 
func_echo ()
 
{
 
    $ECHO "$progname${mode+: }$mode: $*"
 
}
 
 
 
# func_verbose arg...
 
# Echo program name prefixed message in verbose mode only.
 
func_verbose ()
 
{
 
    $opt_verbose && func_echo ${1+"$@"}
 
 
 
    # A bug in bash halts the script if the last line of a function
 
    # fails when set -e is in force, so we need another command to
 
    # work around that:
 
    :
 
}
 
 
 
# func_error arg...
 
# Echo program name prefixed message to standard error.
 
func_error ()
 
{
 
    $ECHO "$progname${mode+: }$mode: "${1+"$@"} 1>&2
 
}
 
 
 
# func_warning arg...
 
# Echo program name prefixed warning message to standard error.
 
func_warning ()
 
{
 
    $opt_warning && $ECHO "$progname${mode+: }$mode: warning: "${1+"$@"} 1>&2
 
 
 
    # bash bug again:
 
    :
 
}
 
 
 
# func_fatal_error arg...
 
# Echo program name prefixed message to standard error, and exit.
 
func_fatal_error ()
 
{
 
    func_error ${1+"$@"}
 
    exit $EXIT_FAILURE
 
}
 
 
 
# func_fatal_help arg...
 
# Echo program name prefixed message to standard error, followed by
 
# a help hint, and exit.
 
func_fatal_help ()
 
{
 
    func_error ${1+"$@"}
 
    func_fatal_error "$help"
 
}
 
help="Try \`$progname --help' for more information."  ## default
 
 
 
 
 
# func_grep expression filename
 
# Check whether EXPRESSION matches any line of FILENAME, without output.
 
func_grep ()
 
{
 
    $GREP "$1" "$2" >/dev/null 2>&1
 
}
 
 
 
 
 
# func_mkdir_p directory-path
 
# Make sure the entire path to DIRECTORY-PATH is available.
 
func_mkdir_p ()
 
{
 
    my_directory_path="$1"
 
    my_dir_list=
 
 
 
    if test -n "$my_directory_path" && test "$opt_dry_run" != ":"; then
 
 
 
      # Protect directory names starting with `-'
 
      case $my_directory_path in
 
        -*) my_directory_path="./$my_directory_path" ;;
 
      esac
 
 
 
      # While some portion of DIR does not yet exist...
 
      while test ! -d "$my_directory_path"; do
 
        # ...make a list in topmost first order.  Use a colon delimited
 
        # list incase some portion of path contains whitespace.
 
        my_dir_list="$my_directory_path:$my_dir_list"
 
 
 
        # If the last portion added has no slash in it, the list is done
 
        case $my_directory_path in */*) ;; *) break ;; esac
 
 
 
        # ...otherwise throw away the child directory and loop
 
        my_directory_path=`$ECHO "X$my_directory_path" | $Xsed -e "$dirname"`
 
      done
 
      my_dir_list=`$ECHO "X$my_dir_list" | $Xsed -e 's,:*$,,'`
 
 
 
      save_mkdir_p_IFS="$IFS"; IFS=':'
 
      for my_dir in $my_dir_list; do
 
        IFS="$save_mkdir_p_IFS"
 
        # mkdir can fail with a `File exist' error if two processes
 
        # try to create one of the directories concurrently.  Don't
 
        # stop in that case!
 
        $MKDIR "$my_dir" 2>/dev/null || :
 
      done
 
      IFS="$save_mkdir_p_IFS"
 
 
 
      # Bail out if we (or some other process) failed to create a directory.
 
      test -d "$my_directory_path" || \
 
        func_fatal_error "Failed to create \`$1'"
 
    fi
 
}
 
 
#####################################
 
# Shell function definitions:
 
# This seems to be the best place for them
 
 
 
# func_mktempdir [string]
# func_mktempdir [string]
# Make a temporary directory that won't clash with other running
# Make a temporary directory that won't clash with other running
# libtool processes, and avoids race conditions if possible.  If
# libtool processes, and avoids race conditions if possible.  If
# given, STRING is the basename for that directory.
# given, STRING is the basename for that directory.
func_mktempdir ()
func_mktempdir ()
{
{
    my_template="${TMPDIR-/tmp}/${1-$progname}"
    my_template="${TMPDIR-/tmp}/${1-$progname}"
 
 
    if test "$run" = ":"; then
    if test "$opt_dry_run" = ":"; then
      # Return a directory name, but don't create it in dry-run mode
      # Return a directory name, but don't create it in dry-run mode
      my_tmpdir="${my_template}-$$"
      my_tmpdir="${my_template}-$$"
    else
    else
 
 
      # If mktemp works, use that first and foremost
      # If mktemp works, use that first and foremost
Line 173... Line 367...
        # Failing that, at least try and use $RANDOM to avoid a race
        # Failing that, at least try and use $RANDOM to avoid a race
        my_tmpdir="${my_template}-${RANDOM-0}$$"
        my_tmpdir="${my_template}-${RANDOM-0}$$"
 
 
        save_mktempdir_umask=`umask`
        save_mktempdir_umask=`umask`
        umask 0077
        umask 0077
        $mkdir "$my_tmpdir"
        $MKDIR "$my_tmpdir"
        umask $save_mktempdir_umask
        umask $save_mktempdir_umask
      fi
      fi
 
 
      # If we're not in dry-run mode, bomb out on failure
      # If we're not in dry-run mode, bomb out on failure
      test -d "$my_tmpdir" || {
      test -d "$my_tmpdir" || \
        $echo "cannot create temporary directory \`$my_tmpdir'" 1>&2
        func_fatal_error "cannot create temporary directory \`$my_tmpdir'"
        exit $EXIT_FAILURE
 
      }
 
    fi
    fi
 
 
    $echo "X$my_tmpdir" | $Xsed
    $ECHO "X$my_tmpdir" | $Xsed
}
}
 
 
 
 
# func_win32_libid arg
# func_quote_for_eval arg
# return the library type of file 'arg'
# Aesthetically quote ARG to be evaled later.
#
# This function returns two values: FUNC_QUOTE_FOR_EVAL_RESULT
# Need a lot of goo to handle *both* DLLs and import libs
# is double-quoted, suitable for a subsequent eval, whereas
# Has to be a shell function in order to 'eat' the argument
# FUNC_QUOTE_FOR_EVAL_UNQUOTED_RESULT has merely all characters
# that is supplied when $file_magic_command is called.
# which are still active within double quotes backslashified.
func_win32_libid ()
func_quote_for_eval ()
{
{
  win32_libid_type="unknown"
    case $1 in
  win32_fileres=`file -L $1 2>/dev/null`
      *[\\\`\"\$]*)
  case $win32_fileres in
        func_quote_for_eval_unquoted_result=`$ECHO "X$1" | $Xsed -e "$sed_quote_subst"` ;;
  *ar\ archive\ import\ library*) # definitely import
      *)
    win32_libid_type="x86 archive import"
        func_quote_for_eval_unquoted_result="$1" ;;
    ;;
 
  *ar\ archive*) # could be an import, or static
 
    if eval $OBJDUMP -f $1 | $SED -e '10q' 2>/dev/null | \
 
      $EGREP -e 'file format pe-i386(.*architecture: i386)?' >/dev/null ; then
 
      win32_nmres=`eval $NM -f posix -A $1 | \
 
        $SED -n -e '1,100{
 
                / I /{
 
                        s,.*,import,
 
                        p
 
                        q
 
                        }
 
                }'`
 
      case $win32_nmres in
 
      import*)  win32_libid_type="x86 archive import";;
 
      *)        win32_libid_type="x86 archive static";;
 
      esac
 
    fi
 
    ;;
 
  *DLL*)
 
    win32_libid_type="x86 DLL"
 
    ;;
 
  *executable*) # but shell scripts are "executable" too...
 
    case $win32_fileres in
 
    *MS\ Windows\ PE\ Intel*)
 
      win32_libid_type="x86 DLL"
 
      ;;
 
    esac
    esac
 
 
 
    case $func_quote_for_eval_unquoted_result in
 
      # Double-quote args containing shell metacharacters to delay
 
      # word splitting, command substitution and and variable
 
      # expansion for a subsequent eval.
 
      # Many Bourne shells cannot handle close brackets correctly
 
      # in scan sets, so we specify it separately.
 
      *[\[\~\#\^\&\*\(\)\{\}\|\;\<\>\?\'\ \     ]*|*]*|"")
 
        func_quote_for_eval_result="\"$func_quote_for_eval_unquoted_result\""
    ;;
    ;;
 
      *)
 
        func_quote_for_eval_result="$func_quote_for_eval_unquoted_result"
  esac
  esac
  $echo $win32_libid_type
 
}
}
 
 
 
 
# func_infer_tag arg
# func_quote_for_expand arg
# Infer tagged configuration to use if any are available and
# Aesthetically quote ARG to be evaled later; same as above,
# if one wasn't chosen via the "--tag" command line option.
# but do not quote variable references.
# Only attempt this if the compiler in the base compile
func_quote_for_expand ()
# command doesn't match the default compiler.
 
# arg is usually of the form 'gcc ...'
 
func_infer_tag ()
 
{
{
    if test -n "$available_tags" && test -z "$tagname"; then
    case $1 in
      CC_quoted=
      *[\\\`\"]*)
      for arg in $CC; do
        my_arg=`$ECHO "X$1" | $Xsed \
        case $arg in
            -e "$double_quote_subst" -e "$sed_double_backslash"` ;;
          *[\[\~\#\^\&\*\(\)\{\}\|\;\<\>\?\'\ \ ]*|*]*|"")
 
          arg="\"$arg\""
 
          ;;
 
        esac
 
        CC_quoted="$CC_quoted $arg"
 
      done
 
      case $@ in
 
      # Blanks in the command may have been stripped by the calling shell,
 
      # but not from the CC environment variable when configure was run.
 
      " $CC "* | "$CC "* | " `$echo $CC` "* | "`$echo $CC` "* | " $CC_quoted"* | "$CC_quoted "* | " `$echo $CC_quoted` "* | "`$echo $CC_quoted` "*) ;;
 
      # Blanks at the start of $base_compile will cause this to fail
 
      # if we don't check for them as well.
 
      *)
      *)
        for z in $available_tags; do
        my_arg="$1" ;;
          if grep "^# ### BEGIN LIBTOOL TAG CONFIG: $z$" < "$progpath" > /dev/null; then
 
            # Evaluate the configuration.
 
            eval "`${SED} -n -e '/^# ### BEGIN LIBTOOL TAG CONFIG: '$z'$/,/^# ### END LIBTOOL TAG CONFIG: '$z'$/p' < $progpath`"
 
            CC_quoted=
 
            for arg in $CC; do
 
            # Double-quote args containing other shell metacharacters.
 
            case $arg in
 
              *[\[\~\#\^\&\*\(\)\{\}\|\;\<\>\?\'\ \     ]*|*]*|"")
 
              arg="\"$arg\""
 
              ;;
 
            esac
 
            CC_quoted="$CC_quoted $arg"
 
          done
 
            case "$@ " in
 
              " $CC "* | "$CC "* | " `$echo $CC` "* | "`$echo $CC` "* | " $CC_quoted"* | "$CC_quoted "* | " `$echo $CC_quoted` "* | "`$echo $CC_quoted` "*)
 
              # The compiler in the base compile command matches
 
              # the one in the tagged configuration.
 
              # Assume this is the tagged configuration we want.
 
              tagname=$z
 
              break
 
              ;;
 
            esac
            esac
          fi
 
        done
    case $my_arg in
        # If $tagname still isn't set, then no tagged configuration
      # Double-quote args containing shell metacharacters to delay
        # was found and let the user know that the "--tag" command
      # word splitting and command substitution for a subsequent eval.
        # line option must be used.
      # Many Bourne shells cannot handle close brackets correctly
        if test -z "$tagname"; then
      # in scan sets, so we specify it separately.
          $echo "$modename: unable to infer tagged configuration"
      *[\[\~\#\^\&\*\(\)\{\}\|\;\<\>\?\'\ \     ]*|*]*|"")
          $echo "$modename: specify a tag with \`--tag'" 1>&2
        my_arg="\"$my_arg\""
          exit $EXIT_FAILURE
 
#        else
 
#          $echo "$modename: using $tagname tagged configuration"
 
        fi
 
        ;;
        ;;
      esac
      esac
    fi
 
 
    func_quote_for_expand_result="$my_arg"
}
}
 
 
 
 
# func_extract_an_archive dir oldlib
# func_show_eval cmd [fail_exp]
func_extract_an_archive ()
# Unless opt_silent is true, then output CMD.  Then, if opt_dryrun is
 
# not true, evaluate CMD.  If the evaluation of CMD fails, and FAIL_EXP
 
# is given, then evaluate it.
 
func_show_eval ()
{
{
    f_ex_an_ar_dir="$1"; shift
    my_cmd="$1"
    f_ex_an_ar_oldlib="$1"
    my_fail_exp="${2-:}"
 
 
    $show "(cd $f_ex_an_ar_dir && $AR x $f_ex_an_ar_oldlib)"
    ${opt_silent-false} || {
    $run eval "(cd \$f_ex_an_ar_dir && $AR x \$f_ex_an_ar_oldlib)" || exit $?
      func_quote_for_expand "$my_cmd"
    if ($AR t "$f_ex_an_ar_oldlib" | sort | sort -uc >/dev/null 2>&1); then
      eval "func_echo $func_quote_for_expand_result"
     :
    }
    else
 
      $echo "$modename: ERROR: object name conflicts: $f_ex_an_ar_dir/$f_ex_an_ar_oldlib" 1>&2
    if ${opt_dry_run-false}; then :; else
      exit $EXIT_FAILURE
      eval "$my_cmd"
 
      my_status=$?
 
      if test "$my_status" -eq 0; then :; else
 
        eval "(exit $my_status); $my_fail_exp"
 
      fi
    fi
    fi
}
}
 
 
# func_extract_archives gentop oldlib ...
 
func_extract_archives ()
# func_show_eval_locale cmd [fail_exp]
 
# Unless opt_silent is true, then output CMD.  Then, if opt_dryrun is
 
# not true, evaluate CMD.  If the evaluation of CMD fails, and FAIL_EXP
 
# is given, then evaluate it.  Use the saved locale for evaluation.
 
func_show_eval_locale ()
{
{
    my_gentop="$1"; shift
    my_cmd="$1"
    my_oldlibs=${1+"$@"}
    my_fail_exp="${2-:}"
    my_oldobjs=""
 
    my_xlib=""
    ${opt_silent-false} || {
    my_xabs=""
      func_quote_for_expand "$my_cmd"
    my_xdir=""
      eval "func_echo $func_quote_for_expand_result"
    my_status=""
    }
 
 
    $show "${rm}r $my_gentop"
    if ${opt_dry_run-false}; then :; else
    $run ${rm}r "$my_gentop"
      eval "$lt_user_locale
    $show "$mkdir $my_gentop"
            $my_cmd"
    $run $mkdir "$my_gentop"
 
    my_status=$?
    my_status=$?
    if test "$my_status" -ne 0 && test ! -d "$my_gentop"; then
      eval "$lt_safe_locale"
      exit $my_status
      if test "$my_status" -eq 0; then :; else
 
        eval "(exit $my_status); $my_fail_exp"
 
      fi
    fi
    fi
 
}
 
 
    for my_xlib in $my_oldlibs; do
 
      # Extract the objects.
 
      case $my_xlib in
 
        [\\/]* | [A-Za-z]:[\\/]*) my_xabs="$my_xlib" ;;
 
        *) my_xabs=`pwd`"/$my_xlib" ;;
 
      esac
 
      my_xlib=`$echo "X$my_xlib" | $Xsed -e 's%^.*/%%'`
 
      my_xlib_u=$my_xlib
 
      while :; do
 
        case " $extracted_archives " in
 
        *" $my_xlib_u "*)
 
          extracted_serial=`expr $extracted_serial + 1`
 
          my_xlib_u=lt$extracted_serial-$my_xlib ;;
 
        *) break ;;
 
        esac
 
      done
 
      extracted_archives="$extracted_archives $my_xlib_u"
 
      my_xdir="$my_gentop/$my_xlib_u"
 
 
 
      $show "${rm}r $my_xdir"
 
      $run ${rm}r "$my_xdir"
 
      $show "$mkdir $my_xdir"
 
      $run $mkdir "$my_xdir"
# func_version
      exit_status=$?
# Echo version message to standard output and exit.
      if test "$exit_status" -ne 0 && test ! -d "$my_xdir"; then
func_version ()
        exit $exit_status
{
      fi
    $SED -n '/^# '$PROGRAM' (GNU /,/# warranty; / {
      case $host in
        s/^# //
      *-darwin*)
        s/^# *$//
        $show "Extracting $my_xabs"
        s/\((C)\)[ 0-9,-]*\( [1-9][0-9]*\)/\1\2/
        # Do not bother doing anything if just a dry run
        p
        if test -z "$run"; then
     }' < "$progpath"
          darwin_orig_dir=`pwd`
     exit $?
          cd $my_xdir || exit $?
 
          darwin_archive=$my_xabs
 
          darwin_curdir=`pwd`
 
          darwin_base_archive=`$echo "X$darwin_archive" | $Xsed -e 's%^.*/%%'`
 
          darwin_arches=`lipo -info "$darwin_archive" 2>/dev/null | $EGREP Architectures 2>/dev/null`
 
          if test -n "$darwin_arches"; then
 
            darwin_arches=`echo "$darwin_arches" | $SED -e 's/.*are://'`
 
            darwin_arch=
 
            $show "$darwin_base_archive has multiple architectures $darwin_arches"
 
            for darwin_arch in  $darwin_arches ; do
 
              mkdir -p "unfat-$$/${darwin_base_archive}-${darwin_arch}"
 
              lipo -thin $darwin_arch -output "unfat-$$/${darwin_base_archive}-${darwin_arch}/${darwin_base_archive}" "${darwin_archive}"
 
              cd "unfat-$$/${darwin_base_archive}-${darwin_arch}"
 
              func_extract_an_archive "`pwd`" "${darwin_base_archive}"
 
              cd "$darwin_curdir"
 
              $rm "unfat-$$/${darwin_base_archive}-${darwin_arch}/${darwin_base_archive}"
 
            done # $darwin_arches
 
      ## Okay now we have a bunch of thin objects, gotta fatten them up :)
 
            darwin_filelist=`find unfat-$$ -type f -name \*.o -print -o -name \*.lo -print| xargs basename | sort -u | $NL2SP`
 
            darwin_file=
 
            darwin_files=
 
            for darwin_file in $darwin_filelist; do
 
              darwin_files=`find unfat-$$ -name $darwin_file -print | $NL2SP`
 
              lipo -create -output "$darwin_file" $darwin_files
 
            done # $darwin_filelist
 
            ${rm}r unfat-$$
 
            cd "$darwin_orig_dir"
 
          else
 
            cd "$darwin_orig_dir"
 
            func_extract_an_archive "$my_xdir" "$my_xabs"
 
          fi # $darwin_arches
 
        fi # $run
 
        ;;
 
      *)
 
        func_extract_an_archive "$my_xdir" "$my_xabs"
 
        ;;
 
      esac
 
      my_oldobjs="$my_oldobjs "`find $my_xdir -name \*.$objext -print -o -name \*.lo -print | $NL2SP`
 
    done
 
    func_extract_archives_result="$my_oldobjs"
 
}
}
# End of Shell function definitions
 
#####################################
 
 
 
# Darwin sucks
# func_usage
eval std_shrext=\"$shrext_cmds\"
# Echo short help message to standard output and exit.
 
func_usage ()
 
{
 
    $SED -n '/^# Usage:/,/# -h/ {
 
        s/^# //
 
        s/^# *$//
 
        s/\$progname/'$progname'/
 
        p
 
    }' < "$progpath"
 
    $ECHO
 
    $ECHO "run \`$progname --help | more' for full usage"
 
    exit $?
 
}
 
 
disable_libs=no
# func_help
 
# Echo long help message to standard output and exit.
 
func_help ()
 
{
 
    $SED -n '/^# Usage:/,/# Report bugs to/ {
 
        s/^# //
 
        s/^# *$//
 
        s*\$progname*'$progname'*
 
        s*\$host*'"$host"'*
 
        s*\$SHELL*'"$SHELL"'*
 
        s*\$LTCC*'"$LTCC"'*
 
        s*\$LTCFLAGS*'"$LTCFLAGS"'*
 
        s*\$LD*'"$LD"'*
 
        s/\$with_gnu_ld/'"$with_gnu_ld"'/
 
        s/\$automake_version/'"`(automake --version) 2>/dev/null |$SED 1q`"'/
 
        s/\$autoconf_version/'"`(autoconf --version) 2>/dev/null |$SED 1q`"'/
 
        p
 
     }' < "$progpath"
 
    exit $?
 
}
 
 
# Parse our command line options once, thoroughly.
# func_missing_arg argname
while test "$#" -gt 0
# Echo program name prefixed message to standard error and set global
do
# exit_cmd.
  arg="$1"
func_missing_arg ()
  shift
{
 
    func_error "missing argument for $1"
 
    exit_cmd=exit
 
}
 
 
  case $arg in
exit_cmd=:
  -*=*) optarg=`$echo "X$arg" | $Xsed -e 's/[-_a-zA-Z0-9]*=//'` ;;
 
  *) optarg= ;;
 
  esac
 
 
 
  # If the previous option needs an argument, assign it.
 
  if test -n "$prev"; then
 
    case $prev in
 
    execute_dlfiles)
 
      execute_dlfiles="$execute_dlfiles $arg"
 
      ;;
 
    tag)
 
      tagname="$arg"
 
      preserve_args="${preserve_args}=$arg"
 
 
 
      # Check whether tagname contains only valid characters
 
      case $tagname in
 
      *[!-_A-Za-z0-9,/]*)
 
        $echo "$progname: invalid tag name: $tagname" 1>&2
 
        exit $EXIT_FAILURE
 
        ;;
 
      esac
 
 
 
      case $tagname in
 
      CC)
 
        # Don't test for the "default" C tag, as we know, it's there, but
# Check that we have a working $ECHO.
        # not specially marked.
if test "X$1" = X--no-reexec; then
        ;;
  # Discard the --no-reexec flag, and continue.
      *)
  shift
        if grep "^# ### BEGIN LIBTOOL TAG CONFIG: $tagname$" < "$progpath" > /dev/null; then
elif test "X$1" = X--fallback-echo; then
          taglist="$taglist $tagname"
  # Avoid inline document here, it may be left over
          # Evaluate the configuration.
  :
          eval "`${SED} -n -e '/^# ### BEGIN LIBTOOL TAG CONFIG: '$tagname'$/,/^# ### END LIBTOOL TAG CONFIG: '$tagname'$/p' < $progpath`"
elif test "X`{ $ECHO '\t'; } 2>/dev/null`" = 'X\t'; then
 
  # Yippee, $ECHO works!
 
  :
        else
        else
          $echo "$progname: ignoring unknown tag $tagname" 1>&2
  # Restart under the correct shell, and then maybe $ECHO will work.
 
  exec $SHELL "$progpath" --no-reexec ${1+"$@"}
        fi
        fi
        ;;
 
      esac
 
      ;;
 
    *)
 
      eval "$prev=\$arg"
 
      ;;
 
    esac
 
 
 
    prev=
if test "X$1" = X--fallback-echo; then
    prevopt=
  # used as fallback echo
    continue
  shift
 
  cat <<EOF
 
$*
 
EOF
 
  exit $EXIT_SUCCESS
  fi
  fi
 
 
  # Have we seen a non-optional argument yet?
magic="%%%MAGIC variable%%%"
  case $arg in
magic_exe="%%%MAGIC EXE variable%%%"
  --help)
 
    show_help=yes
# Global variables.
    ;;
# $mode is unset
 
nonopt=
 
execute_dlfiles=
 
preserve_args=
 
lo2o="s/\\.lo\$/.${objext}/"
 
o2lo="s/\\.${objext}\$/.lo/"
 
extracted_archives=
 
extracted_serial=0
 
 
  --version)
opt_dry_run=false
    echo "\
opt_duplicate_deps=false
$PROGRAM (GNU $PACKAGE) $VERSION$TIMESTAMP
opt_silent=false
 
opt_debug=:
 
 
Copyright (C) 2007  Free Software Foundation, Inc.
# If this variable is set in any of the actions, the command in it
This is free software; see the source for copying conditions.  There is NO
# will be execed at the end.  This prevents here-documents from being
warranty; not even for MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE."
# left over by shells.
    exit $?
exec_cmd=
    ;;
 
 
# func_fatal_configuration arg...
 
# Echo program name prefixed message to standard error, followed by
 
# a configuration failure hint, and exit.
 
func_fatal_configuration ()
 
{
 
    func_error ${1+"$@"}
 
    func_error "See the $PACKAGE documentation for more information."
 
    func_fatal_error "Fatal configuration error."
 
}
 
 
 
 
 
# func_config
 
# Display the configuration for all the tags in this script.
 
func_config ()
 
{
 
    re_begincf='^# ### BEGIN LIBTOOL'
 
    re_endcf='^# ### END LIBTOOL'
 
 
 
    # Default configuration.
 
    $SED "1,/$re_begincf CONFIG/d;/$re_endcf CONFIG/,\$d" < "$progpath"
 
 
  --config)
 
    ${SED} -e '1,/^# ### BEGIN LIBTOOL CONFIG/d' -e '/^# ### END LIBTOOL CONFIG/,$d' $progpath
 
    # Now print the configurations for the tags.
    # Now print the configurations for the tags.
    for tagname in $taglist; do
    for tagname in $taglist; do
      ${SED} -n -e "/^# ### BEGIN LIBTOOL TAG CONFIG: $tagname$/,/^# ### END LIBTOOL TAG CONFIG: $tagname$/p" < "$progpath"
      $SED -n "/$re_begincf TAG CONFIG: $tagname\$/,/$re_endcf TAG CONFIG: $tagname\$/p" < "$progpath"
    done
    done
    exit $?
 
    ;;
 
 
 
  --debug)
    exit $?
    $echo "$progname: enabling shell trace mode"
}
    set -x
 
    preserve_args="$preserve_args $arg"
 
    ;;
 
 
 
  --dry-run | -n)
 
    run=:
 
    ;;
 
 
 
  --features)
# func_features
    $echo "host: $host"
# Display the features supported by this script.
 
func_features ()
 
{
 
    $ECHO "host: $host"
    if test "$build_libtool_libs" = yes; then
    if test "$build_libtool_libs" = yes; then
      $echo "enable shared libraries"
      $ECHO "enable shared libraries"
    else
    else
      $echo "disable shared libraries"
      $ECHO "disable shared libraries"
    fi
    fi
    if test "$build_old_libs" = yes; then
    if test "$build_old_libs" = yes; then
      $echo "enable static libraries"
      $ECHO "enable static libraries"
    else
    else
      $echo "disable static libraries"
      $ECHO "disable static libraries"
    fi
    fi
 
 
    exit $?
    exit $?
    ;;
}
 
 
  --finish) mode="finish" ;;
# func_enable_tag tagname
 
# Verify that TAGNAME is valid, and either flag an error and exit, or
 
# enable the TAGNAME tag.  We also add TAGNAME to the global $taglist
 
# variable here.
 
func_enable_tag ()
 
{
 
  # Global variable:
 
  tagname="$1"
 
 
 
  re_begincf="^# ### BEGIN LIBTOOL TAG CONFIG: $tagname\$"
 
  re_endcf="^# ### END LIBTOOL TAG CONFIG: $tagname\$"
 
  sed_extractcf="/$re_begincf/,/$re_endcf/p"
 
 
  --mode) prevopt="--mode" prev=mode ;;
  # Validate tagname.
  --mode=*) mode="$optarg" ;;
  case $tagname in
 
    *[!-_A-Za-z0-9,/]*)
 
      func_fatal_error "invalid tag name: $tagname"
 
      ;;
 
  esac
 
 
  --preserve-dup-deps) duplicate_deps="yes" ;;
  # Don't test for the "default" C tag, as we know it's
 
  # there but not specially marked.
 
  case $tagname in
 
    CC) ;;
 
    *)
 
      if $GREP "$re_begincf" "$progpath" >/dev/null 2>&1; then
 
        taglist="$taglist $tagname"
 
 
  --quiet | --silent)
        # Evaluate the configuration.  Be careful to quote the path
    show=:
        # and the sed script, to avoid splitting on whitespace, but
    preserve_args="$preserve_args $arg"
        # also don't use non-portable quotes within backquotes within
 
        # quotes we have to do it in 2 steps:
 
        extractedcf=`$SED -n -e "$sed_extractcf" < "$progpath"`
 
        eval "$extractedcf"
 
      else
 
        func_error "ignoring unknown tag $tagname"
 
      fi
    ;;
    ;;
 
  esac
 
}
 
 
 
# Parse options once, thoroughly.  This comes as soon as possible in
 
# the script to make things like `libtool --version' happen quickly.
 
{
 
 
  --tag)
  # Shorthand for --mode=foo, only valid as the first argument
    prevopt="--tag"
  case $1 in
    prev=tag
  clean|clea|cle|cl)
    preserve_args="$preserve_args --tag"
    shift; set dummy --mode clean ${1+"$@"}; shift
    ;;
    ;;
  --tag=*)
  compile|compil|compi|comp|com|co|c)
    set tag "$optarg" ${1+"$@"}
    shift; set dummy --mode compile ${1+"$@"}; shift
    shift
    ;;
    prev=tag
  execute|execut|execu|exec|exe|ex|e)
    preserve_args="$preserve_args --tag"
    shift; set dummy --mode execute ${1+"$@"}; shift
 
    ;;
 
  finish|finis|fini|fin|fi|f)
 
    shift; set dummy --mode finish ${1+"$@"}; shift
    ;;
    ;;
 
  install|instal|insta|inst|ins|in|i)
 
    shift; set dummy --mode install ${1+"$@"}; shift
 
    ;;
 
  link|lin|li|l)
 
    shift; set dummy --mode link ${1+"$@"}; shift
 
    ;;
 
  uninstall|uninstal|uninsta|uninst|unins|unin|uni|un|u)
 
    shift; set dummy --mode uninstall ${1+"$@"}; shift
 
    ;;
 
  esac
 
 
  -dlopen)
  # Parse non-mode specific arguments:
    prevopt="-dlopen"
  while test "$#" -gt 0; do
    prev=execute_dlfiles
    opt="$1"
 
    shift
 
 
 
    case $opt in
 
      --config)         func_config                                     ;;
 
 
 
      --debug)          preserve_args="$preserve_args $opt"
 
                        func_echo "enabling shell trace mode"
 
                        opt_debug='set -x'
 
                        $opt_debug
    ;;
    ;;
 
 
  -*)
      -dlopen)          test "$#" -eq 0 && func_missing_arg "$opt" && break
    $echo "$modename: unrecognized option \`$arg'" 1>&2
                        execute_dlfiles="$execute_dlfiles $1"
    $echo "$help" 1>&2
                        shift
    exit $EXIT_FAILURE
 
    ;;
    ;;
 
 
  *)
      --dry-run | -n)   opt_dry_run=:                                   ;;
    nonopt="$arg"
      --features)       func_features                                   ;;
 
      --finish)         mode="finish"                                   ;;
 
 
 
      --mode)           test "$#" -eq 0 && func_missing_arg "$opt" && break
 
                        case $1 in
 
                          # Valid mode arguments:
 
                          clean)        ;;
 
                          compile)      ;;
 
                          execute)      ;;
 
                          finish)       ;;
 
                          install)      ;;
 
                          link)         ;;
 
                          relink)       ;;
 
                          uninstall)    ;;
 
 
 
                          # Catch anything else as an error
 
                          *) func_error "invalid argument for $opt"
 
                             exit_cmd=exit
    break
    break
    ;;
    ;;
  esac
  esac
done
 
 
 
if test -n "$prevopt"; then
                        mode="$1"
  $echo "$modename: option \`$prevopt' requires an argument" 1>&2
                        shift
  $echo "$help" 1>&2
                        ;;
  exit $EXIT_FAILURE
 
fi
 
 
 
case $disable_libs in
      --preserve-dup-deps)
no)
                        opt_duplicate_deps=:                            ;;
 
 
 
      --quiet|--silent) preserve_args="$preserve_args $opt"
 
                        opt_silent=:
  ;;
  ;;
shared)
 
  build_libtool_libs=no
      --verbose| -v)    preserve_args="$preserve_args $opt"
  build_old_libs=yes
                        opt_silent=false
  ;;
  ;;
static)
 
  build_old_libs=`case $build_libtool_libs in yes) echo no;; *) echo yes;; esac`
      --tag)            test "$#" -eq 0 && func_missing_arg "$opt" && break
 
                        preserve_args="$preserve_args $opt $1"
 
                        func_enable_tag "$1"    # tagname is set here
 
                        shift
  ;;
  ;;
esac
 
 
 
# If this variable is set in any of the actions, the command in it
      # Separate optargs to long options:
# will be execed at the end.  This prevents here-documents from being
      -dlopen=*|--mode=*|--tag=*)
# left over by shells.
                        func_opt_split "$opt"
exec_cmd=
                        set dummy "$func_opt_split_opt" "$func_opt_split_arg" ${1+"$@"}
 
                        shift
 
                        ;;
 
 
if test -z "$show_help"; then
      -\?|-h)           func_usage                                      ;;
 
      --help)           opt_help=:                                      ;;
 
      --version)        func_version                                    ;;
 
 
  # Infer the operation mode.
      -*)               func_fatal_help "unrecognized option \`$opt'"   ;;
  if test -z "$mode"; then
 
    $echo "*** Warning: inferring the mode of operation is deprecated." 1>&2
      *)                nonopt="$opt"
    $echo "*** Future versions of Libtool will require --mode=MODE be specified." 1>&2
 
    case $nonopt in
 
    *cc | cc* | *++ | gcc* | *-gcc* | g++* | xlc*)
 
      mode=link
 
      for arg
 
      do
 
        case $arg in
 
        -c)
 
           mode=compile
 
           break
           break
           ;;
           ;;
        esac
        esac
      done
      done
      ;;
 
    *db | *dbx | *strace | *truss)
 
      mode=execute
  case $host in
      ;;
    *cygwin* | *mingw* | *pw32* | *cegcc*)
    *install*|cp|mv)
      # don't eliminate duplications in $postdeps and $predeps
      mode=install
      opt_duplicate_compiler_generated_deps=:
      ;;
 
    *rm)
 
      mode=uninstall
 
      ;;
      ;;
    *)
    *)
      # If we have no mode, but dlfiles were specified, then do execute mode.
      opt_duplicate_compiler_generated_deps=$opt_duplicate_deps
      test -n "$execute_dlfiles" && mode=execute
      ;;
 
  esac
 
 
      # Just use the default operation mode.
  # Having warned about all mis-specified options, bail out if
      if test -z "$mode"; then
  # anything was wrong.
        if test -n "$nonopt"; then
  $exit_cmd $EXIT_FAILURE
          $echo "$modename: warning: cannot infer operation mode from \`$nonopt'" 1>&2
}
        else
 
          $echo "$modename: warning: cannot infer operation mode without MODE-ARGS" 1>&2
# func_check_version_match
 
# Ensure that we are using m4 macros, and libtool script from the same
 
# release of libtool.
 
func_check_version_match ()
 
{
 
  if test "$package_revision" != "$macro_revision"; then
 
    if test "$VERSION" != "$macro_version"; then
 
      if test -z "$macro_version"; then
 
        cat >&2 <<_LT_EOF
 
$progname: Version mismatch error.  This is $PACKAGE $VERSION, but the
 
$progname: definition of this LT_INIT comes from an older release.
 
$progname: You should recreate aclocal.m4 with macros from $PACKAGE $VERSION
 
$progname: and run autoconf again.
 
_LT_EOF
 
      else
 
        cat >&2 <<_LT_EOF
 
$progname: Version mismatch error.  This is $PACKAGE $VERSION, but the
 
$progname: definition of this LT_INIT comes from $PACKAGE $macro_version.
 
$progname: You should recreate aclocal.m4 with macros from $PACKAGE $VERSION
 
$progname: and run autoconf again.
 
_LT_EOF
 
      fi
 
    else
 
      cat >&2 <<_LT_EOF
 
$progname: Version mismatch error.  This is $PACKAGE $VERSION, revision $package_revision,
 
$progname: but the definition of this LT_INIT comes from revision $macro_revision.
 
$progname: You should recreate aclocal.m4 with macros from revision $package_revision
 
$progname: of $PACKAGE $VERSION and run autoconf again.
 
_LT_EOF
        fi
        fi
 
 
 
    exit $EXIT_MISMATCH
      fi
      fi
      ;;
}
    esac
 
 
 
 
## ----------- ##
 
##    Main.    ##
 
## ----------- ##
 
 
 
$opt_help || {
 
  # Sanity checks first:
 
  func_check_version_match
 
 
 
  if test "$build_libtool_libs" != yes && test "$build_old_libs" != yes; then
 
    func_fatal_configuration "not configured to build any kind of library"
  fi
  fi
 
 
 
  test -z "$mode" && func_fatal_error "error: you must specify a MODE."
 
 
 
 
 
  # Darwin sucks
 
  eval std_shrext=\"$shrext_cmds\"
 
 
 
 
  # Only execute mode is allowed to have -dlopen flags.
  # Only execute mode is allowed to have -dlopen flags.
  if test -n "$execute_dlfiles" && test "$mode" != execute; then
  if test -n "$execute_dlfiles" && test "$mode" != execute; then
    $echo "$modename: unrecognized option \`-dlopen'" 1>&2
    func_error "unrecognized option \`-dlopen'"
    $echo "$help" 1>&2
    $ECHO "$help" 1>&2
    exit $EXIT_FAILURE
    exit $EXIT_FAILURE
  fi
  fi
 
 
  # Change the help message to a mode-specific one.
  # Change the help message to a mode-specific one.
  generic_help="$help"
  generic_help="$help"
  help="Try \`$modename --help --mode=$mode' for more information."
  help="Try \`$progname --help --mode=$mode' for more information."
 
}
 
 
  # These modes are in order of execution frequency so that they run quickly.
 
  case $mode in
 
  # libtool compile mode
 
  compile)
 
    modename="$modename: compile"
 
    # Get the compilation command and the source file.
 
    base_compile=
 
    srcfile="$nonopt"  #  always keep a non-empty value in "srcfile"
 
    suppress_opt=yes
 
    suppress_output=
 
    arg_mode=normal
 
    libobj=
 
    later=
 
 
 
    for arg
# func_lalib_p file
    do
# True iff FILE is a libtool `.la' library or `.lo' object file.
      case $arg_mode in
# This function is only a basic sanity check; it will hardly flush out
 
# determined imposters.
 
func_lalib_p ()
 
{
 
    test -f "$1" &&
 
      $SED -e 4q "$1" 2>/dev/null \
 
        | $GREP "^# Generated by .*$PACKAGE" > /dev/null 2>&1
 
}
 
 
 
# func_lalib_unsafe_p file
 
# True iff FILE is a libtool `.la' library or `.lo' object file.
 
# This function implements the same check as func_lalib_p without
 
# resorting to external programs.  To this end, it redirects stdin and
 
# closes it afterwards, without saving the original file descriptor.
 
# As a safety measure, use it only where a negative result would be
 
# fatal anyway.  Works if `file' does not exist.
 
func_lalib_unsafe_p ()
 
{
 
    lalib_p=no
 
    if test -f "$1" && test -r "$1" && exec 5<&0 <"$1"; then
 
        for lalib_p_l in 1 2 3 4
 
        do
 
            read lalib_p_line
 
            case "$lalib_p_line" in
 
                \#\ Generated\ by\ *$PACKAGE* ) lalib_p=yes; break;;
 
            esac
 
        done
 
        exec 0<&5 5<&-
 
    fi
 
    test "$lalib_p" = yes
 
}
 
 
 
# func_ltwrapper_script_p file
 
# True iff FILE is a libtool wrapper script
 
# This function is only a basic sanity check; it will hardly flush out
 
# determined imposters.
 
func_ltwrapper_script_p ()
 
{
 
    func_lalib_p "$1"
 
}
 
 
 
# func_ltwrapper_executable_p file
 
# True iff FILE is a libtool wrapper executable
 
# This function is only a basic sanity check; it will hardly flush out
 
# determined imposters.
 
func_ltwrapper_executable_p ()
 
{
 
    func_ltwrapper_exec_suffix=
 
    case $1 in
 
    *.exe) ;;
 
    *) func_ltwrapper_exec_suffix=.exe ;;
 
    esac
 
    $GREP "$magic_exe" "$1$func_ltwrapper_exec_suffix" >/dev/null 2>&1
 
}
 
 
 
# func_ltwrapper_scriptname file
 
# Assumes file is an ltwrapper_executable
 
# uses $file to determine the appropriate filename for a
 
# temporary ltwrapper_script.
 
func_ltwrapper_scriptname ()
 
{
 
    func_ltwrapper_scriptname_result=""
 
    if func_ltwrapper_executable_p "$1"; then
 
        func_dirname_and_basename "$1" "" "."
 
        func_stripname '' '.exe' "$func_basename_result"
 
        func_ltwrapper_scriptname_result="$func_dirname_result/$objdir/${func_stripname_result}_ltshwrapper"
 
    fi
 
}
 
 
 
# func_ltwrapper_p file
 
# True iff FILE is a libtool wrapper script or wrapper executable
 
# This function is only a basic sanity check; it will hardly flush out
 
# determined imposters.
 
func_ltwrapper_p ()
 
{
 
    func_ltwrapper_script_p "$1" || func_ltwrapper_executable_p "$1"
 
}
 
 
 
 
 
# func_execute_cmds commands fail_cmd
 
# Execute tilde-delimited COMMANDS.
 
# If FAIL_CMD is given, eval that upon failure.
 
# FAIL_CMD may read-access the current command in variable CMD!
 
func_execute_cmds ()
 
{
 
    $opt_debug
 
    save_ifs=$IFS; IFS='~'
 
    for cmd in $1; do
 
      IFS=$save_ifs
 
      eval cmd=\"$cmd\"
 
      func_show_eval "$cmd" "${2-:}"
 
    done
 
    IFS=$save_ifs
 
}
 
 
 
 
 
# func_source file
 
# Source FILE, adding directory component if necessary.
 
# Note that it is not necessary on cygwin/mingw to append a dot to
 
# FILE even if both FILE and FILE.exe exist: automatic-append-.exe
 
# behavior happens only for exec(3), not for open(2)!  Also, sourcing
 
# `FILE.' does not work on cygwin managed mounts.
 
func_source ()
 
{
 
    $opt_debug
 
    case $1 in
 
    */* | *\\*) . "$1" ;;
 
    *)          . "./$1" ;;
 
    esac
 
}
 
 
 
 
 
# func_infer_tag arg
 
# Infer tagged configuration to use if any are available and
 
# if one wasn't chosen via the "--tag" command line option.
 
# Only attempt this if the compiler in the base compile
 
# command doesn't match the default compiler.
 
# arg is usually of the form 'gcc ...'
 
func_infer_tag ()
 
{
 
    $opt_debug
 
    if test -n "$available_tags" && test -z "$tagname"; then
 
      CC_quoted=
 
      for arg in $CC; do
 
        func_quote_for_eval "$arg"
 
        CC_quoted="$CC_quoted $func_quote_for_eval_result"
 
      done
 
      case $@ in
 
      # Blanks in the command may have been stripped by the calling shell,
 
      # but not from the CC environment variable when configure was run.
 
      " $CC "* | "$CC "* | " `$ECHO $CC` "* | "`$ECHO $CC` "* | " $CC_quoted"* | "$CC_quoted "* | " `$ECHO $CC_quoted` "* | "`$ECHO $CC_quoted` "*) ;;
 
      # Blanks at the start of $base_compile will cause this to fail
 
      # if we don't check for them as well.
 
      *)
 
        for z in $available_tags; do
 
          if $GREP "^# ### BEGIN LIBTOOL TAG CONFIG: $z$" < "$progpath" > /dev/null; then
 
            # Evaluate the configuration.
 
            eval "`${SED} -n -e '/^# ### BEGIN LIBTOOL TAG CONFIG: '$z'$/,/^# ### END LIBTOOL TAG CONFIG: '$z'$/p' < $progpath`"
 
            CC_quoted=
 
            for arg in $CC; do
 
              # Double-quote args containing other shell metacharacters.
 
              func_quote_for_eval "$arg"
 
              CC_quoted="$CC_quoted $func_quote_for_eval_result"
 
            done
 
            case "$@ " in
 
              " $CC "* | "$CC "* | " `$ECHO $CC` "* | "`$ECHO $CC` "* | " $CC_quoted"* | "$CC_quoted "* | " `$ECHO $CC_quoted` "* | "`$ECHO $CC_quoted` "*)
 
              # The compiler in the base compile command matches
 
              # the one in the tagged configuration.
 
              # Assume this is the tagged configuration we want.
 
              tagname=$z
 
              break
 
              ;;
 
            esac
 
          fi
 
        done
 
        # If $tagname still isn't set, then no tagged configuration
 
        # was found and let the user know that the "--tag" command
 
        # line option must be used.
 
        if test -z "$tagname"; then
 
          func_echo "unable to infer tagged configuration"
 
          func_fatal_error "specify a tag with \`--tag'"
 
#       else
 
#         func_verbose "using $tagname tagged configuration"
 
        fi
 
        ;;
 
      esac
 
    fi
 
}
 
 
 
 
 
 
 
# func_write_libtool_object output_name pic_name nonpic_name
 
# Create a libtool object file (analogous to a ".la" file),
 
# but don't create it if we're doing a dry run.
 
func_write_libtool_object ()
 
{
 
    write_libobj=${1}
 
    if test "$build_libtool_libs" = yes; then
 
      write_lobj=\'${2}\'
 
    else
 
      write_lobj=none
 
    fi
 
 
 
    if test "$build_old_libs" = yes; then
 
      write_oldobj=\'${3}\'
 
    else
 
      write_oldobj=none
 
    fi
 
 
 
    $opt_dry_run || {
 
      cat >${write_libobj}T <<EOF
 
# $write_libobj - a libtool object file
 
# Generated by $PROGRAM (GNU $PACKAGE$TIMESTAMP) $VERSION
 
#
 
# Please DO NOT delete this file!
 
# It is necessary for linking the library.
 
 
 
# Name of the PIC object.
 
pic_object=$write_lobj
 
 
 
# Name of the non-PIC object
 
non_pic_object=$write_oldobj
 
 
 
EOF
 
      $MV "${write_libobj}T" "${write_libobj}"
 
    }
 
}
 
 
 
# func_mode_compile arg...
 
func_mode_compile ()
 
{
 
    $opt_debug
 
    # Get the compilation command and the source file.
 
    base_compile=
 
    srcfile="$nonopt"  #  always keep a non-empty value in "srcfile"
 
    suppress_opt=yes
 
    suppress_output=
 
    arg_mode=normal
 
    libobj=
 
    later=
 
    pie_flag=
 
 
 
    for arg
 
    do
 
      case $arg_mode in
      arg  )
      arg  )
        # do not "continue".  Instead, add this to base_compile
        # do not "continue".  Instead, add this to base_compile
        lastarg="$arg"
        lastarg="$arg"
        arg_mode=normal
        arg_mode=normal
        ;;
        ;;
Line 676... Line 1128...
 
 
      normal )
      normal )
        # Accept any command-line options.
        # Accept any command-line options.
        case $arg in
        case $arg in
        -o)
        -o)
          if test -n "$libobj" ; then
          test -n "$libobj" && \
            $echo "$modename: you cannot specify \`-o' more than once" 1>&2
            func_fatal_error "you cannot specify \`-o' more than once"
            exit $EXIT_FAILURE
 
          fi
 
          arg_mode=target
          arg_mode=target
          continue
          continue
          ;;
          ;;
 
 
        -static | -prefer-pic | -prefer-non-pic)
        -pie | -fpie | -fPIE)
 
          pie_flag="$pie_flag $arg"
 
          continue
 
          ;;
 
 
 
        -shared | -static | -prefer-pic | -prefer-non-pic)
          later="$later $arg"
          later="$later $arg"
          continue
          continue
          ;;
          ;;
 
 
        -no-suppress)
        -no-suppress)
Line 700... Line 1155...
          arg_mode=arg  #  the next one goes into the "base_compile" arg list
          arg_mode=arg  #  the next one goes into the "base_compile" arg list
          continue      #  The current "srcfile" will either be retained or
          continue      #  The current "srcfile" will either be retained or
          ;;            #  replaced later.  I would guess that would be a bug.
          ;;            #  replaced later.  I would guess that would be a bug.
 
 
        -Wc,*)
        -Wc,*)
          args=`$echo "X$arg" | $Xsed -e "s/^-Wc,//"`
          func_stripname '-Wc,' '' "$arg"
 
          args=$func_stripname_result
          lastarg=
          lastarg=
          save_ifs="$IFS"; IFS=','
          save_ifs="$IFS"; IFS=','
          for arg in $args; do
          for arg in $args; do
            IFS="$save_ifs"
            IFS="$save_ifs"
 
            func_quote_for_eval "$arg"
            # Double-quote args containing other shell metacharacters.
            lastarg="$lastarg $func_quote_for_eval_result"
            # Many Bourne shells cannot handle close brackets correctly
 
            # in scan sets, so we specify it separately.
 
            case $arg in
 
              *[\[\~\#\^\&\*\(\)\{\}\|\;\<\>\?\'\ \     ]*|*]*|"")
 
              arg="\"$arg\""
 
              ;;
 
            esac
 
            lastarg="$lastarg $arg"
 
          done
          done
          IFS="$save_ifs"
          IFS="$save_ifs"
          lastarg=`$echo "X$lastarg" | $Xsed -e "s/^ //"`
          func_stripname ' ' '' "$lastarg"
 
          lastarg=$func_stripname_result
 
 
          # Add the arguments to base_compile.
          # Add the arguments to base_compile.
          base_compile="$base_compile $lastarg"
          base_compile="$base_compile $lastarg"
          continue
          continue
          ;;
          ;;
Line 736... Line 1185...
        esac  #  case $arg
        esac  #  case $arg
        ;;
        ;;
      esac    #  case $arg_mode
      esac    #  case $arg_mode
 
 
      # Aesthetically quote the previous argument.
      # Aesthetically quote the previous argument.
      lastarg=`$echo "X$lastarg" | $Xsed -e "$sed_quote_subst"`
      func_quote_for_eval "$lastarg"
 
      base_compile="$base_compile $func_quote_for_eval_result"
      case $lastarg in
 
      # Double-quote args containing other shell metacharacters.
 
      # Many Bourne shells cannot handle close brackets correctly
 
      # in scan sets, and some SunOS ksh mistreat backslash-escaping
 
      # in scan sets (worked around with variable expansion),
 
      # and furthermore cannot handle '|' '&' '(' ')' in scan sets
 
      # at all, so we specify them separately.
 
      *[\[\~\#\^\&\*\(\)\{\}\|\;\<\>\?\'\ \     ]*|*]*|"")
 
        lastarg="\"$lastarg\""
 
        ;;
 
      esac
 
 
 
      base_compile="$base_compile $lastarg"
 
    done # for arg
    done # for arg
 
 
    case $arg_mode in
    case $arg_mode in
    arg)
    arg)
      $echo "$modename: you must specify an argument for -Xcompile"
      func_fatal_error "you must specify an argument for -Xcompile"
      exit $EXIT_FAILURE
 
      ;;
      ;;
    target)
    target)
      $echo "$modename: you must specify a target with \`-o'" 1>&2
      func_fatal_error "you must specify a target with \`-o'"
      exit $EXIT_FAILURE
 
      ;;
      ;;
    *)
    *)
      # Get the name of the library object.
      # Get the name of the library object.
      [ -z "$libobj" ] && libobj=`$echo "X$srcfile" | $Xsed -e 's%^.*/%%'`
      test -z "$libobj" && {
 
        func_basename "$srcfile"
 
        libobj="$func_basename_result"
 
      }
      ;;
      ;;
    esac
    esac
 
 
    # Recognize several different file suffixes.
    # Recognize several different file suffixes.
    # If the user specifies -o file.o, it is replaced with file.lo
    # If the user specifies -o file.o, it is replaced with file.lo
    xform='[cCFSifmso]'
 
    case $libobj in
    case $libobj in
    *.ada) xform=ada ;;
    *.[cCFSifmso] | \
    *.adb) xform=adb ;;
    *.ada | *.adb | *.ads | *.asm | \
    *.ads) xform=ads ;;
    *.c++ | *.cc | *.ii | *.class | *.cpp | *.cxx | \
    *.asm) xform=asm ;;
    *.[fF][09]? | *.for | *.java | *.obj | *.sx)
    *.c++) xform=c++ ;;
      func_xform "$libobj"
    *.cc) xform=cc ;;
      libobj=$func_xform_result
    *.ii) xform=ii ;;
      ;;
    *.class) xform=class ;;
 
    *.cpp) xform=cpp ;;
 
    *.cxx) xform=cxx ;;
 
    *.[fF][09]?) xform=[fF][09]. ;;
 
    *.for) xform=for ;;
 
    *.java) xform=java ;;
 
    *.obj) xform=obj ;;
 
    esac
    esac
 
 
    libobj=`$echo "X$libobj" | $Xsed -e "s/\.$xform$/.lo/"`
 
 
 
    case $libobj in
    case $libobj in
    *.lo) obj=`$echo "X$libobj" | $Xsed -e "$lo2o"` ;;
    *.lo) func_lo2o "$libobj"; obj=$func_lo2o_result ;;
    *)
    *)
      $echo "$modename: cannot determine name of library object from \`$libobj'" 1>&2
      func_fatal_error "cannot determine name of library object from \`$libobj'"
      exit $EXIT_FAILURE
 
      ;;
      ;;
    esac
    esac
 
 
    func_infer_tag $base_compile
    func_infer_tag $base_compile
 
 
    for arg in $later; do
    for arg in $later; do
      case $arg in
      case $arg in
 
      -shared)
 
        test "$build_libtool_libs" != yes && \
 
          func_fatal_configuration "can not build a shared library"
 
        build_old_libs=no
 
        continue
 
        ;;
 
 
      -static)
      -static)
 
        build_libtool_libs=no
        build_old_libs=yes
        build_old_libs=yes
        continue
        continue
        ;;
        ;;
 
 
      -prefer-pic)
      -prefer-pic)
Line 819... Line 1253...
        continue
        continue
        ;;
        ;;
      esac
      esac
    done
    done
 
 
    qlibobj=`$echo "X$libobj" | $Xsed -e "$sed_quote_subst"`
    func_quote_for_eval "$libobj"
    case $qlibobj in
    test "X$libobj" != "X$func_quote_for_eval_result" \
      *[\[\~\#\^\&\*\(\)\{\}\|\;\<\>\?\'\ \     ]*|*]*|"")
      && $ECHO "X$libobj" | $GREP '[]~#^*{};<>?"'"'"'    &()|`$[]' \
        qlibobj="\"$qlibobj\"" ;;
      && func_warning "libobj name \`$libobj' may not contain shell special characters."
    esac
    func_dirname_and_basename "$obj" "/" ""
    test "X$libobj" != "X$qlibobj" \
    objname="$func_basename_result"
        && $echo "X$libobj" | grep '[]~#^*{};<>?"'"'"'  &()|`$[]' \
    xdir="$func_dirname_result"
        && $echo "$modename: libobj name \`$libobj' may not contain shell special characters."
 
    objname=`$echo "X$obj" | $Xsed -e 's%^.*/%%'`
 
    xdir=`$echo "X$obj" | $Xsed -e 's%/[^/]*$%%'`
 
    if test "X$xdir" = "X$obj"; then
 
      xdir=
 
    else
 
      xdir=$xdir/
 
    fi
 
    lobj=${xdir}$objdir/$objname
    lobj=${xdir}$objdir/$objname
 
 
    if test -z "$base_compile"; then
    test -z "$base_compile" && \
      $echo "$modename: you must specify a compilation command" 1>&2
      func_fatal_help "you must specify a compilation command"
      $echo "$help" 1>&2
 
      exit $EXIT_FAILURE
 
    fi
 
 
 
    # Delete any leftover library objects.
    # Delete any leftover library objects.
    if test "$build_old_libs" = yes; then
    if test "$build_old_libs" = yes; then
      removelist="$obj $lobj $libobj ${libobj}T"
      removelist="$obj $lobj $libobj ${libobj}T"
    else
    else
      removelist="$lobj $libobj ${libobj}T"
      removelist="$lobj $libobj ${libobj}T"
    fi
    fi
 
 
    $run $rm $removelist
 
    trap "$run $rm $removelist; exit $EXIT_FAILURE" 1 2 15
 
 
 
    # On Cygwin there's no "real" PIC flag so we must build both object types
    # On Cygwin there's no "real" PIC flag so we must build both object types
    case $host_os in
    case $host_os in
    cygwin* | mingw* | pw32* | os2*)
    cygwin* | mingw* | pw32* | os2* | cegcc*)
      pic_mode=default
      pic_mode=default
      ;;
      ;;
    esac
    esac
    if test "$pic_mode" = no && test "$deplibs_check_method" != pass_all; then
    if test "$pic_mode" = no && test "$deplibs_check_method" != pass_all; then
      # non-PIC code in shared libraries is not supported
      # non-PIC code in shared libraries is not supported
Line 866... Line 1286...
    fi
    fi
 
 
    # Calculate the filename of the output object if compiler does
    # Calculate the filename of the output object if compiler does
    # not support -o with -c
    # not support -o with -c
    if test "$compiler_c_o" = no; then
    if test "$compiler_c_o" = no; then
      output_obj=`$echo "X$srcfile" | $Xsed -e 's%^.*/%%' -e 's%\.[^.]*$%%'`.${objext}
      output_obj=`$ECHO "X$srcfile" | $Xsed -e 's%^.*/%%' -e 's%\.[^.]*$%%'`.${objext}
      lockfile="$output_obj.lock"
      lockfile="$output_obj.lock"
      removelist="$removelist $output_obj $lockfile"
 
      trap "$run $rm $removelist; exit $EXIT_FAILURE" 1 2 15
 
    else
    else
      output_obj=
      output_obj=
      need_locks=no
      need_locks=no
      lockfile=
      lockfile=
    fi
    fi
 
 
    # Lock this critical section if it is needed
    # Lock this critical section if it is needed
    # We use this script file to make the link, it avoids creating a new file
    # We use this script file to make the link, it avoids creating a new file
    if test "$need_locks" = yes; then
    if test "$need_locks" = yes; then
      until $run ln "$progpath" "$lockfile" 2>/dev/null; do
      until $opt_dry_run || ln "$progpath" "$lockfile" 2>/dev/null; do
        $show "Waiting for $lockfile to be removed"
        func_echo "Waiting for $lockfile to be removed"
        sleep 2
        sleep 2
      done
      done
    elif test "$need_locks" = warn; then
    elif test "$need_locks" = warn; then
      if test -f "$lockfile"; then
      if test -f "$lockfile"; then
        $echo "\
        $ECHO "\
*** ERROR, $lockfile exists and contains:
*** ERROR, $lockfile exists and contains:
`cat $lockfile 2>/dev/null`
`cat $lockfile 2>/dev/null`
 
 
This indicates that another process is trying to use the same
This indicates that another process is trying to use the same
temporary object file, and libtool could not work around it because
temporary object file, and libtool could not work around it because
your compiler does not support \`-c' and \`-o' together.  If you
your compiler does not support \`-c' and \`-o' together.  If you
repeat this compilation, it may succeed, by chance, but you had better
repeat this compilation, it may succeed, by chance, but you had better
avoid parallel builds (make -j) in this platform, or get a better
avoid parallel builds (make -j) in this platform, or get a better
compiler."
compiler."
 
 
        $run $rm $removelist
        $opt_dry_run || $RM $removelist
        exit $EXIT_FAILURE
        exit $EXIT_FAILURE
      fi
      fi
      $echo "$srcfile" > "$lockfile"
      removelist="$removelist $output_obj"
 
      $ECHO "$srcfile" > "$lockfile"
    fi
    fi
 
 
 
    $opt_dry_run || $RM $removelist
 
    removelist="$removelist $lockfile"
 
    trap '$opt_dry_run || $RM $removelist; exit $EXIT_FAILURE' 1 2 15
 
 
    if test -n "$fix_srcfile_path"; then
    if test -n "$fix_srcfile_path"; then
      eval srcfile=\"$fix_srcfile_path\"
      eval srcfile=\"$fix_srcfile_path\"
    fi
    fi
    qsrcfile=`$echo "X$srcfile" | $Xsed -e "$sed_quote_subst"`
    func_quote_for_eval "$srcfile"
    case $qsrcfile in
    qsrcfile=$func_quote_for_eval_result
      *[\[\~\#\^\&\*\(\)\{\}\|\;\<\>\?\'\ \     ]*|*]*|"")
 
      qsrcfile="\"$qsrcfile\"" ;;
 
    esac
 
 
 
    $run $rm "$libobj" "${libobj}T"
 
 
 
    # Create a libtool object file (analogous to a ".la" file),
 
    # but don't create it if we're doing a dry run.
 
    test -z "$run" && cat > ${libobj}T <<EOF
 
# $libobj - a libtool object file
 
# Generated by $PROGRAM - GNU $PACKAGE $VERSION$TIMESTAMP
 
#
 
# Please DO NOT delete this file!
 
# It is necessary for linking the library.
 
 
 
# Name of the PIC object.
 
EOF
 
 
 
    # Only build a PIC object if we are building libtool libraries.
    # Only build a PIC object if we are building libtool libraries.
    if test "$build_libtool_libs" = yes; then
    if test "$build_libtool_libs" = yes; then
      # Without this assignment, base_compile gets emptied.
      # Without this assignment, base_compile gets emptied.
      fbsd_hideous_sh_bug=$base_compile
      fbsd_hideous_sh_bug=$base_compile
Line 937... Line 1343...
      else
      else
        # Don't build PIC code
        # Don't build PIC code
        command="$base_compile $qsrcfile"
        command="$base_compile $qsrcfile"
      fi
      fi
 
 
      if test ! -d "${xdir}$objdir"; then
      func_mkdir_p "$xdir$objdir"
        $show "$mkdir ${xdir}$objdir"
 
        $run $mkdir ${xdir}$objdir
 
        exit_status=$?
 
        if test "$exit_status" -ne 0 && test ! -d "${xdir}$objdir"; then
 
          exit $exit_status
 
        fi
 
      fi
 
 
 
      if test -z "$output_obj"; then
      if test -z "$output_obj"; then
        # Place PIC objects in $objdir
        # Place PIC objects in $objdir
        command="$command -o $lobj"
        command="$command -o $lobj"
      fi
      fi
 
 
      $run $rm "$lobj" "$output_obj"
      func_show_eval_locale "$command"  \
 
          'test -n "$output_obj" && $RM $removelist; exit $EXIT_FAILURE'
      $show "$command"
 
      if $run eval "$command"; then :
 
      else
 
        test -n "$output_obj" && $run $rm $removelist
 
        exit $EXIT_FAILURE
 
      fi
 
 
 
      if test "$need_locks" = warn &&
      if test "$need_locks" = warn &&
         test "X`cat $lockfile 2>/dev/null`" != "X$srcfile"; then
         test "X`cat $lockfile 2>/dev/null`" != "X$srcfile"; then
        $echo "\
        $ECHO "\
*** ERROR, $lockfile contains:
*** ERROR, $lockfile contains:
`cat $lockfile 2>/dev/null`
`cat $lockfile 2>/dev/null`
 
 
but it should contain:
but it should contain:
$srcfile
$srcfile
Line 976... Line 1369...
your compiler does not support \`-c' and \`-o' together.  If you
your compiler does not support \`-c' and \`-o' together.  If you
repeat this compilation, it may succeed, by chance, but you had better
repeat this compilation, it may succeed, by chance, but you had better
avoid parallel builds (make -j) in this platform, or get a better
avoid parallel builds (make -j) in this platform, or get a better
compiler."
compiler."
 
 
        $run $rm $removelist
        $opt_dry_run || $RM $removelist
        exit $EXIT_FAILURE
        exit $EXIT_FAILURE
      fi
      fi
 
 
      # Just move the object if needed, then go on to compile the next one
      # Just move the object if needed, then go on to compile the next one
      if test -n "$output_obj" && test "X$output_obj" != "X$lobj"; then
      if test -n "$output_obj" && test "X$output_obj" != "X$lobj"; then
        $show "$mv $output_obj $lobj"
        func_show_eval '$MV "$output_obj" "$lobj"' \
        if $run $mv $output_obj $lobj; then :
          'error=$?; $opt_dry_run || $RM $removelist; exit $error'
        else
 
          error=$?
 
          $run $rm $removelist
 
          exit $error
 
        fi
 
      fi
      fi
 
 
      # Append the name of the PIC object to the libtool object file.
 
      test -z "$run" && cat >> ${libobj}T <<EOF
 
pic_object='$objdir/$objname'
 
 
 
EOF
 
 
 
      # Allow error messages only from the first compilation.
      # Allow error messages only from the first compilation.
      if test "$suppress_opt" = yes; then
      if test "$suppress_opt" = yes; then
        suppress_output=' >/dev/null 2>&1'
        suppress_output=' >/dev/null 2>&1'
      fi
      fi
    else
 
      # No PIC object so indicate it doesn't exist in the libtool
 
      # object file.
 
      test -z "$run" && cat >> ${libobj}T <<EOF
 
pic_object=none
 
 
 
EOF
 
    fi
    fi
 
 
    # Only build a position-dependent object if we build old libraries.
    # Only build a position-dependent object if we build old libraries.
    if test "$build_old_libs" = yes; then
    if test "$build_old_libs" = yes; then
      if test "$pic_mode" != yes; then
      if test "$pic_mode" != yes; then
        # Don't build PIC code
        # Don't build PIC code
        command="$base_compile $qsrcfile"
        command="$base_compile $qsrcfile$pie_flag"
      else
      else
        command="$base_compile $qsrcfile $pic_flag"
        command="$base_compile $qsrcfile $pic_flag"
      fi
      fi
      if test "$compiler_c_o" = yes; then
      if test "$compiler_c_o" = yes; then
        command="$command -o $obj"
        command="$command -o $obj"
      fi
      fi
 
 
      # Suppress compiler output if we already did a PIC compilation.
      # Suppress compiler output if we already did a PIC compilation.
      command="$command$suppress_output"
      command="$command$suppress_output"
      $run $rm "$obj" "$output_obj"
      func_show_eval_locale "$command" \
      $show "$command"
        '$opt_dry_run || $RM $removelist; exit $EXIT_FAILURE'
      if $run eval "$command"; then :
 
      else
 
        $run $rm $removelist
 
        exit $EXIT_FAILURE
 
      fi
 
 
 
      if test "$need_locks" = warn &&
      if test "$need_locks" = warn &&
         test "X`cat $lockfile 2>/dev/null`" != "X$srcfile"; then
         test "X`cat $lockfile 2>/dev/null`" != "X$srcfile"; then
        $echo "\
        $ECHO "\
*** ERROR, $lockfile contains:
*** ERROR, $lockfile contains:
`cat $lockfile 2>/dev/null`
`cat $lockfile 2>/dev/null`
 
 
but it should contain:
but it should contain:
$srcfile
$srcfile
Line 1048... Line 1418...
your compiler does not support \`-c' and \`-o' together.  If you
your compiler does not support \`-c' and \`-o' together.  If you
repeat this compilation, it may succeed, by chance, but you had better
repeat this compilation, it may succeed, by chance, but you had better
avoid parallel builds (make -j) in this platform, or get a better
avoid parallel builds (make -j) in this platform, or get a better
compiler."
compiler."
 
 
        $run $rm $removelist
        $opt_dry_run || $RM $removelist
        exit $EXIT_FAILURE
        exit $EXIT_FAILURE
      fi
      fi
 
 
      # Just move the object if needed
      # Just move the object if needed
      if test -n "$output_obj" && test "X$output_obj" != "X$obj"; then
      if test -n "$output_obj" && test "X$output_obj" != "X$obj"; then
        $show "$mv $output_obj $obj"
        func_show_eval '$MV "$output_obj" "$obj"' \
        if $run $mv $output_obj $obj; then :
          'error=$?; $opt_dry_run || $RM $removelist; exit $error'
        else
 
          error=$?
 
          $run $rm $removelist
 
          exit $error
 
        fi
 
      fi
      fi
 
 
      # Append the name of the non-PIC object the libtool object file.
 
      # Only append if the libtool object file exists.
 
      test -z "$run" && cat >> ${libobj}T <<EOF
 
# Name of the non-PIC object.
 
non_pic_object='$objname'
 
 
 
EOF
 
    else
 
      # Append the name of the non-PIC object the libtool object file.
 
      # Only append if the libtool object file exists.
 
      test -z "$run" && cat >> ${libobj}T <<EOF
 
# Name of the non-PIC object.
 
non_pic_object=none
 
 
 
EOF
 
    fi
    fi
 
 
    $run $mv "${libobj}T" "${libobj}"
    $opt_dry_run || {
 
      func_write_libtool_object "$libobj" "$objdir/$objname" "$objname"
 
 
    # Unlock the critical section if it was locked
    # Unlock the critical section if it was locked
    if test "$need_locks" != no; then
    if test "$need_locks" != no; then
      $run $rm "$lockfile"
        removelist=$lockfile
 
        $RM "$lockfile"
    fi
    fi
 
    }
 
 
    exit $EXIT_SUCCESS
    exit $EXIT_SUCCESS
    ;;
}
 
 
  # libtool link mode
$opt_help || {
  link | relink)
test "$mode" = compile && func_mode_compile ${1+"$@"}
    modename="$modename: link"
}
    case $host in
 
    *-*-cygwin* | *-*-mingw* | *-*-pw32* | *-*-os2*)
 
      # It is impossible to link a dll without this setting, and
 
      # we shouldn't force the makefile maintainer to figure out
 
      # which system we are compiling for in order to pass an extra
 
      # flag for every libtool invocation.
 
      # allow_undefined=no
 
 
 
      # FIXME: Unfortunately, there are problems with the above when trying
func_mode_help ()
      # to make a dll which has undefined symbols, in which case not
{
      # even a static library is built.  For now, we need to specify
    # We need to display help for each of the modes.
      # -no-undefined on the libtool link line when we can be certain
    case $mode in
      # that all symbols are satisfied, otherwise we get a static library.
      "")
      allow_undefined=yes
        # Generic help is extracted from the usage comments
 
        # at the start of this file.
 
        func_help
      ;;
      ;;
    *)
 
      allow_undefined=yes
      clean)
 
        $ECHO \
 
"Usage: $progname [OPTION]... --mode=clean RM [RM-OPTION]... FILE...
 
 
 
Remove files from the build directory.
 
 
 
RM is the name of the program to use to delete files associated with each FILE
 
(typically \`/bin/rm').  RM-OPTIONS are options (such as \`-f') to be passed
 
to RM.
 
 
 
If FILE is a libtool library, object or program, all the files associated
 
with it are deleted. Otherwise, only FILE itself is deleted using RM."
      ;;
      ;;
    esac
 
    libtool_args="$nonopt"
 
    base_compile="$nonopt $@"
 
    compile_command="$nonopt"
 
    finalize_command="$nonopt"
 
 
 
    compile_rpath=
      compile)
    finalize_rpath=
      $ECHO \
    compile_shlibpath=
"Usage: $progname [OPTION]... --mode=compile COMPILE-COMMAND... SOURCEFILE
    finalize_shlibpath=
 
    convenience=
 
    old_convenience=
 
    deplibs=
 
    old_deplibs=
 
    compiler_flags=
 
    linker_flags=
 
    dllsearchpath=
 
    lib_search_path=`pwd`
 
    inst_prefix_dir=
 
 
 
    avoid_version=no
Compile a source file into a libtool library object.
    dlfiles=
 
    dlprefiles=
 
    dlself=no
 
    export_dynamic=no
 
    export_symbols=
 
    export_symbols_regex=
 
    generated=
 
    libobjs=
 
    ltlibs=
 
    module=no
 
    no_install=no
 
    objs=
 
    non_pic_objects=
 
    notinst_path= # paths that contain not-installed libtool libraries
 
    precious_files_regex=
 
    prefer_static_libs=no
 
    preload=no
 
    prev=
 
    prevarg=
 
    release=
 
    rpath=
 
    xrpath=
 
    perm_rpath=
 
    temp_rpath=
 
    thread_safe=no
 
    vinfo=
 
    vinfo_number=no
 
 
 
    func_infer_tag $base_compile
This mode accepts the following additional options:
 
 
    # We need to know -static, to get the right output filenames.
  -o OUTPUT-FILE    set the output file name to OUTPUT-FILE
    for arg
  -no-suppress      do not suppress compiler output for multiple passes
    do
  -prefer-pic       try to building PIC objects only
      case $arg in
  -prefer-non-pic   try to building non-PIC objects only
      -all-static | -static | -static-libtool-libs)
  -shared           do not build a \`.o' file suitable for static linking
        case $arg in
  -static           only build a \`.o' file suitable for static linking
        -all-static)
 
          if test "$build_libtool_libs" = yes && test -z "$link_static_flag"; then
COMPILE-COMMAND is a command to be used in creating a \`standard' object file
            $echo "$modename: warning: complete static linking is impossible in this configuration" 1>&2
from the given SOURCEFILE.
          fi
 
          if test -n "$link_static_flag"; then
The output file name is determined by removing the directory component from
            dlopen_self=$dlopen_self_static
SOURCEFILE, then substituting the C source code suffix \`.c' with the
          fi
library object suffix, \`.lo'."
          prefer_static_libs=yes
 
          ;;
          ;;
        -static)
 
          if test -z "$pic_flag" && test -n "$link_static_flag"; then
      execute)
            dlopen_self=$dlopen_self_static
        $ECHO \
          fi
"Usage: $progname [OPTION]... --mode=execute COMMAND [ARGS]...
          prefer_static_libs=built
 
 
Automatically set library path, then run a program.
 
 
 
This mode accepts the following additional options:
 
 
 
  -dlopen FILE      add the directory containing FILE to the library path
 
 
 
This mode sets the library path environment variable according to \`-dlopen'
 
flags.
 
 
 
If any of the ARGS are libtool executable wrappers, then they are translated
 
into their corresponding uninstalled binary, and any of their required library
 
directories are added to the library path.
 
 
 
Then, COMMAND is executed, with ARGS as arguments."
          ;;
          ;;
        -static-libtool-libs)
 
          if test -z "$pic_flag" && test -n "$link_static_flag"; then
      finish)
            dlopen_self=$dlopen_self_static
        $ECHO \
          fi
"Usage: $progname [OPTION]... --mode=finish [LIBDIR]...
          prefer_static_libs=yes
 
 
Complete the installation of libtool libraries.
 
 
 
Each LIBDIR is a directory that contains libtool libraries.
 
 
 
The commands that this mode executes may require superuser privileges.  Use
 
the \`--dry-run' option if you just want to see what would be executed."
          ;;
          ;;
        esac
 
        build_libtool_libs=no
      install)
        build_old_libs=yes
        $ECHO \
        break
"Usage: $progname [OPTION]... --mode=install INSTALL-COMMAND...
 
 
 
Install executables or libraries.
 
 
 
INSTALL-COMMAND is the installation command.  The first component should be
 
either the \`install' or \`cp' program.
 
 
 
The following components of INSTALL-COMMAND are treated specially:
 
 
 
  -inst-prefix PREFIX-DIR  Use PREFIX-DIR as a staging area for installation
 
 
 
The rest of the components are interpreted as arguments to that command (only
 
BSD-compatible install options are recognized)."
        ;;
        ;;
      esac
 
    done
 
 
 
    # See if our shared archives depend on static archives.
      link)
    test -n "$old_archive_from_new_cmds" && build_old_libs=yes
        $ECHO \
 
"Usage: $progname [OPTION]... --mode=link LINK-COMMAND...
 
 
    # Go through the arguments, transforming them on the way.
Link object files or libraries together to form another library, or to
    while test "$#" -gt 0; do
create an executable program.
      arg="$1"
 
      shift
LINK-COMMAND is a command using the C compiler that you would use to create
      case $arg in
a program from several object files.
      *[\[\~\#\^\&\*\(\)\{\}\|\;\<\>\?\'\ \     ]*|*]*|"")
 
        qarg=\"`$echo "X$arg" | $Xsed -e "$sed_quote_subst"`\" ### testsuite: skip nested quoting test
The following components of LINK-COMMAND are treated specially:
 
 
 
  -all-static       do not do any dynamic linking at all
 
  -avoid-version    do not add a version suffix if possible
 
  -dlopen FILE      \`-dlpreopen' FILE if it cannot be dlopened at runtime
 
  -dlpreopen FILE   link in FILE and add its symbols to lt_preloaded_symbols
 
  -export-dynamic   allow symbols from OUTPUT-FILE to be resolved with dlsym(3)
 
  -export-symbols SYMFILE
 
                    try to export only the symbols listed in SYMFILE
 
  -export-symbols-regex REGEX
 
                    try to export only the symbols matching REGEX
 
  -LLIBDIR          search LIBDIR for required installed libraries
 
  -lNAME            OUTPUT-FILE requires the installed library libNAME
 
  -module           build a library that can dlopened
 
  -no-fast-install  disable the fast-install mode
 
  -no-install       link a not-installable executable
 
  -no-undefined     declare that a library does not refer to external symbols
 
  -o OUTPUT-FILE    create OUTPUT-FILE from the specified objects
 
  -objectlist FILE  Use a list of object files found in FILE to specify objects
 
  -precious-files-regex REGEX
 
                    don't remove output files matching REGEX
 
  -release RELEASE  specify package release information
 
  -rpath LIBDIR     the created library will eventually be installed in LIBDIR
 
  -R[ ]LIBDIR       add LIBDIR to the runtime path of programs and libraries
 
  -shared           only do dynamic linking of libtool libraries
 
  -shrext SUFFIX    override the standard shared library file extension
 
  -static           do not do any dynamic linking of uninstalled libtool libraries
 
  -static-libtool-libs
 
                    do not do any dynamic linking of libtool libraries
 
  -version-info CURRENT[:REVISION[:AGE]]
 
                    specify library version info [each variable defaults to 0]
 
  -weak LIBNAME     declare that the target provides the LIBNAME interface
 
 
 
All other options (arguments beginning with \`-') are ignored.
 
 
 
Every other argument is treated as a filename.  Files ending in \`.la' are
 
treated as uninstalled libtool libraries, other files are standard or library
 
object files.
 
 
 
If the OUTPUT-FILE ends in \`.la', then a libtool library is created,
 
only library objects (\`.lo' files) may be specified, and \`-rpath' is
 
required, except when creating a convenience library.
 
 
 
If OUTPUT-FILE ends in \`.a' or \`.lib', then a standard library is created
 
using \`ar' and \`ranlib', or on Windows using \`lib'.
 
 
 
If OUTPUT-FILE ends in \`.lo' or \`.${objext}', then a reloadable object file
 
is created, otherwise an executable program is created."
        ;;
        ;;
      *) qarg=$arg ;;
 
      esac
 
      libtool_args="$libtool_args $qarg"
 
 
 
      # If the previous option needs an argument, assign it.
      uninstall)
      if test -n "$prev"; then
        $ECHO \
        case $prev in
"Usage: $progname [OPTION]... --mode=uninstall RM [RM-OPTION]... FILE...
        output)
 
          compile_command="$compile_command @OUTPUT@"
Remove libraries from an installation directory.
          finalize_command="$finalize_command @OUTPUT@"
 
 
RM is the name of the program to use to delete files associated with each FILE
 
(typically \`/bin/rm').  RM-OPTIONS are options (such as \`-f') to be passed
 
to RM.
 
 
 
If FILE is a libtool library, all the files associated with it are deleted.
 
Otherwise, only FILE itself is deleted using RM."
 
        ;;
 
 
 
      *)
 
        func_fatal_help "invalid operation mode \`$mode'"
          ;;
          ;;
        esac
        esac
 
 
        case $prev in
    $ECHO
        dlfiles|dlprefiles)
    $ECHO "Try \`$progname --help' for more information about other modes."
          if test "$preload" = no; then
 
            # Add the symbol object into the linking commands.
    exit $?
            compile_command="$compile_command @SYMFILE@"
}
            finalize_command="$finalize_command @SYMFILE@"
 
            preload=yes
  # Now that we've collected a possible --mode arg, show help if necessary
          fi
  $opt_help && func_mode_help
          case $arg in
 
          *.la | *.lo) ;;  # We handle these cases below.
 
          force)
# func_mode_execute arg...
            if test "$dlself" = no; then
func_mode_execute ()
              dlself=needless
{
              export_dynamic=yes
    $opt_debug
            fi
    # The first argument is the command name.
            prev=
    cmd="$nonopt"
 
    test -z "$cmd" && \
 
      func_fatal_help "you must specify a COMMAND"
 
 
 
    # Handle -dlopen flags immediately.
 
    for file in $execute_dlfiles; do
 
      test -f "$file" \
 
        || func_fatal_help "\`$file' is not a file"
 
 
 
      dir=
 
      case $file in
 
      *.la)
 
        # Check to see that this really is a libtool archive.
 
        func_lalib_unsafe_p "$file" \
 
          || func_fatal_help "\`$lib' is not a valid libtool archive"
 
 
 
        # Read the libtool library.
 
        dlname=
 
        library_names=
 
        func_source "$file"
 
 
 
        # Skip this library if it cannot be dlopened.
 
        if test -z "$dlname"; then
 
          # Warn if it was a shared library.
 
          test -n "$library_names" && \
 
            func_warning "\`$file' was not linked with \`-export-dynamic'"
            continue
            continue
            ;;
 
          self)
 
            if test "$prev" = dlprefiles; then
 
              dlself=yes
 
            elif test "$prev" = dlfiles && test "$dlopen_self" != yes; then
 
              dlself=yes
 
            else
 
              dlself=needless
 
              export_dynamic=yes
 
            fi
            fi
            prev=
 
            continue
        func_dirname "$file" "" "."
            ;;
        dir="$func_dirname_result"
          *)
 
            if test "$prev" = dlfiles; then
        if test -f "$dir/$objdir/$dlname"; then
              dlfiles="$dlfiles $arg"
          dir="$dir/$objdir"
            else
            else
              dlprefiles="$dlprefiles $arg"
          if test ! -f "$dir/$dlname"; then
 
            func_fatal_error "cannot find \`$dlname' in \`$dir' or \`$dir/$objdir'"
 
          fi
            fi
            fi
            prev=
 
            continue
 
            ;;
            ;;
          esac
 
 
      *.lo)
 
        # Just add the directory containing the .lo file.
 
        func_dirname "$file" "" "."
 
        dir="$func_dirname_result"
          ;;
          ;;
        expsyms)
 
          export_symbols="$arg"
      *)
          if test ! -f "$arg"; then
        func_warning "\`-dlopen' is ignored for non-libtool libraries and objects"
            $echo "$modename: symbol file \`$arg' does not exist"
 
            exit $EXIT_FAILURE
 
          fi
 
          prev=
 
          continue
          continue
          ;;
          ;;
        expsyms_regex)
      esac
          export_symbols_regex="$arg"
 
          prev=
 
          continue
 
          ;;
 
        inst_prefix)
 
          inst_prefix_dir="$arg"
 
          prev=
 
          continue
 
          ;;
 
        precious_regex)
 
          precious_files_regex="$arg"
 
          prev=
 
          continue
 
          ;;
 
        release)
 
          release="-$arg"
 
          prev=
 
          continue
 
          ;;
 
        objectlist)
 
          if test -f "$arg"; then
 
            save_arg=$arg
 
            moreargs=
 
            for fil in `cat $save_arg`
 
            do
 
#             moreargs="$moreargs $fil"
 
              arg=$fil
 
              # A libtool-controlled object.
 
 
 
              # Check to see that this really is a libtool object.
      # Get the absolute pathname.
              if (${SED} -e '2q' $arg | grep "^# Generated by .*$PACKAGE") >/dev/null 2>&1; then
      absdir=`cd "$dir" && pwd`
                pic_object=
      test -n "$absdir" && dir="$absdir"
                non_pic_object=
 
 
 
                # Read the .lo file
      # Now add the directory to shlibpath_var.
                # If there is no directory component, then add one.
      if eval "test -z \"\$$shlibpath_var\""; then
                case $arg in
        eval "$shlibpath_var=\"\$dir\""
                */* | *\\*) . $arg ;;
      else
                *) . ./$arg ;;
        eval "$shlibpath_var=\"\$dir:\$$shlibpath_var\""
                esac
      fi
 
    done
 
 
                if test -z "$pic_object" || \
    # This variable tells wrapper scripts just to set shlibpath_var
                   test -z "$non_pic_object" ||
    # rather than running their programs.
                   test "$pic_object" = none && \
    libtool_execute_magic="$magic"
                   test "$non_pic_object" = none; then
 
                  $echo "$modename: cannot find name of object for \`$arg'" 1>&2
    # Check if any of the arguments is a wrapper script.
                  exit $EXIT_FAILURE
    args=
 
    for file
 
    do
 
      case $file in
 
      -*) ;;
 
      *)
 
        # Do a test to see if this is really a libtool program.
 
        if func_ltwrapper_script_p "$file"; then
 
          func_source "$file"
 
          # Transform arg to wrapped name.
 
          file="$progdir/$program"
 
        elif func_ltwrapper_executable_p "$file"; then
 
          func_ltwrapper_scriptname "$file"
 
          func_source "$func_ltwrapper_scriptname_result"
 
          # Transform arg to wrapped name.
 
          file="$progdir/$program"
                fi
                fi
 
        ;;
 
      esac
 
      # Quote arguments (to preserve shell metacharacters).
 
      func_quote_for_eval "$file"
 
      args="$args $func_quote_for_eval_result"
 
    done
 
 
                # Extract subdirectory from the argument.
    if test "X$opt_dry_run" = Xfalse; then
                xdir=`$echo "X$arg" | $Xsed -e 's%/[^/]*$%%'`
      if test -n "$shlibpath_var"; then
                if test "X$xdir" = "X$arg"; then
        # Export the shlibpath_var.
                  xdir=
        eval "export $shlibpath_var"
                else
 
                  xdir="$xdir/"
 
                fi
                fi
 
 
                if test "$pic_object" != none; then
      # Restore saved environment variables
                  # Prepend the subdirectory the object is found in.
      for lt_var in LANG LANGUAGE LC_ALL LC_CTYPE LC_COLLATE LC_MESSAGES
                  pic_object="$xdir$pic_object"
      do
 
        eval "if test \"\${save_$lt_var+set}\" = set; then
 
                $lt_var=\$save_$lt_var; export $lt_var
 
              else
 
                $lt_unset $lt_var
 
              fi"
 
      done
 
 
                  if test "$prev" = dlfiles; then
      # Now prepare to actually exec the command.
                    if test "$build_libtool_libs" = yes && test "$dlopen_support" = yes; then
      exec_cmd="\$cmd$args"
                      dlfiles="$dlfiles $pic_object"
 
                      prev=
 
                      continue
 
                    else
                    else
                      # If libtool objects are unsupported, then we need to preload.
      # Display what would be done.
                      prev=dlprefiles
      if test -n "$shlibpath_var"; then
 
        eval "\$ECHO \"\$shlibpath_var=\$$shlibpath_var\""
 
        $ECHO "export $shlibpath_var"
                    fi
                    fi
 
      $ECHO "$cmd$args"
 
      exit $EXIT_SUCCESS
                  fi
                  fi
 
}
 
 
                  # CHECK ME:  I think I busted this.  -Ossama
test "$mode" = execute && func_mode_execute ${1+"$@"}
                  if test "$prev" = dlprefiles; then
 
                    # Preload the old-style object.
 
                    dlprefiles="$dlprefiles $pic_object"
 
                    prev=
 
                  fi
 
 
 
                  # A PIC object.
 
                  libobjs="$libobjs $pic_object"
 
                  arg="$pic_object"
 
                fi
 
 
 
                # Non-PIC object.
# func_mode_finish arg...
                if test "$non_pic_object" != none; then
func_mode_finish ()
                  # Prepend the subdirectory the object is found in.
{
                  non_pic_object="$xdir$non_pic_object"
    $opt_debug
 
    libdirs="$nonopt"
 
    admincmds=
 
 
                  # A standard non-PIC object
    if test -n "$finish_cmds$finish_eval" && test -n "$libdirs"; then
                  non_pic_objects="$non_pic_objects $non_pic_object"
      for dir
                  if test -z "$pic_object" || test "$pic_object" = none ; then
      do
                    arg="$non_pic_object"
        libdirs="$libdirs $dir"
 
      done
 
 
 
      for libdir in $libdirs; do
 
        if test -n "$finish_cmds"; then
 
          # Do each command in the finish commands.
 
          func_execute_cmds "$finish_cmds" 'admincmds="$admincmds
 
'"$cmd"'"'
                  fi
                  fi
                else
        if test -n "$finish_eval"; then
                  # If the PIC object exists, use it instead.
          # Do the single finish_eval.
                  # $xdir was prepended to $pic_object above.
          eval cmds=\"$finish_eval\"
                  non_pic_object="$pic_object"
          $opt_dry_run || eval "$cmds" || admincmds="$admincmds
                  non_pic_objects="$non_pic_objects $non_pic_object"
       $cmds"
 
        fi
 
      done
                fi
                fi
              else
 
                # Only an error if not doing a dry-run.
 
                if test -z "$run"; then
 
                  $echo "$modename: \`$arg' is not a valid libtool object" 1>&2
 
                  exit $EXIT_FAILURE
 
                else
 
                  # Dry-run case.
 
 
 
                  # Extract subdirectory from the argument.
    # Exit here if they wanted silent mode.
                  xdir=`$echo "X$arg" | $Xsed -e 's%/[^/]*$%%'`
    $opt_silent && exit $EXIT_SUCCESS
                  if test "X$xdir" = "X$arg"; then
 
                    xdir=
    $ECHO "X----------------------------------------------------------------------" | $Xsed
                  else
    $ECHO "Libraries have been installed in:"
                    xdir="$xdir/"
    for libdir in $libdirs; do
 
      $ECHO "   $libdir"
 
    done
 
    $ECHO
 
    $ECHO "If you ever happen to want to link against installed libraries"
 
    $ECHO "in a given directory, LIBDIR, you must either use libtool, and"
 
    $ECHO "specify the full pathname of the library, or use the \`-LLIBDIR'"
 
    $ECHO "flag during linking and do at least one of the following:"
 
    if test -n "$shlibpath_var"; then
 
      $ECHO "   - add LIBDIR to the \`$shlibpath_var' environment variable"
 
      $ECHO "     during execution"
 
    fi
 
    if test -n "$runpath_var"; then
 
      $ECHO "   - add LIBDIR to the \`$runpath_var' environment variable"
 
      $ECHO "     during linking"
                  fi
                  fi
 
    if test -n "$hardcode_libdir_flag_spec"; then
 
      libdir=LIBDIR
 
      eval flag=\"$hardcode_libdir_flag_spec\"
 
 
                  pic_object=`$echo "X${xdir}${objdir}/${arg}" | $Xsed -e "$lo2o"`
      $ECHO "   - use the \`$flag' linker flag"
                  non_pic_object=`$echo "X${xdir}${arg}" | $Xsed -e "$lo2o"`
 
                  libobjs="$libobjs $pic_object"
 
                  non_pic_objects="$non_pic_objects $non_pic_object"
 
                fi
                fi
 
    if test -n "$admincmds"; then
 
      $ECHO "   - have your system administrator run these commands:$admincmds"
              fi
              fi
            done
    if test -f /etc/ld.so.conf; then
          else
      $ECHO "   - have your system administrator add LIBDIR to \`/etc/ld.so.conf'"
            $echo "$modename: link input file \`$save_arg' does not exist"
 
            exit $EXIT_FAILURE
 
          fi
          fi
          arg=$save_arg
    $ECHO
          prev=
 
          continue
    $ECHO "See any operating system documentation about shared libraries for"
 
    case $host in
 
      solaris2.[6789]|solaris2.1[0-9])
 
        $ECHO "more information, such as the ld(1), crle(1) and ld.so(8) manual"
 
        $ECHO "pages."
          ;;
          ;;
        rpath | xrpath)
 
          # We need an absolute path.
 
          case $arg in
 
          [\\/]* | [A-Za-z]:[\\/]*) ;;
 
          *)
          *)
            $echo "$modename: only absolute run-paths are allowed" 1>&2
        $ECHO "more information, such as the ld(1) and ld.so(8) manual pages."
            exit $EXIT_FAILURE
 
            ;;
            ;;
          esac
          esac
          if test "$prev" = rpath; then
    $ECHO "X----------------------------------------------------------------------" | $Xsed
            case "$rpath " in
    exit $EXIT_SUCCESS
            *" $arg "*) ;;
}
            *) rpath="$rpath $arg" ;;
 
            esac
test "$mode" = finish && func_mode_finish ${1+"$@"}
 
 
 
 
 
# func_mode_install arg...
 
func_mode_install ()
 
{
 
    $opt_debug
 
    # There may be an optional sh(1) argument at the beginning of
 
    # install_prog (especially on Windows NT).
 
    if test "$nonopt" = "$SHELL" || test "$nonopt" = /bin/sh ||
 
       # Allow the use of GNU shtool's install command.
 
       $ECHO "X$nonopt" | $GREP shtool >/dev/null; then
 
      # Aesthetically quote it.
 
      func_quote_for_eval "$nonopt"
 
      install_prog="$func_quote_for_eval_result "
 
      arg=$1
 
      shift
          else
          else
            case "$xrpath " in
      install_prog=
            *" $arg "*) ;;
      arg=$nonopt
            *) xrpath="$xrpath $arg" ;;
 
            esac
 
          fi
          fi
 
 
 
    # The real first argument should be the name of the installation program.
 
    # Aesthetically quote it.
 
    func_quote_for_eval "$arg"
 
    install_prog="$install_prog$func_quote_for_eval_result"
 
 
 
    # We need to accept at least all the BSD install flags.
 
    dest=
 
    files=
 
    opts=
          prev=
          prev=
 
    install_type=
 
    isdir=no
 
    stripme=
 
    for arg
 
    do
 
      if test -n "$dest"; then
 
        files="$files $dest"
 
        dest=$arg
          continue
          continue
 
      fi
 
 
 
      case $arg in
 
      -d) isdir=yes ;;
 
      -f)
 
        case " $install_prog " in
 
        *[\\\ /]cp\ *) ;;
 
        *) prev=$arg ;;
 
        esac
          ;;
          ;;
        xcompiler)
      -g | -m | -o)
          compiler_flags="$compiler_flags $qarg"
        prev=$arg
          prev=
 
          compile_command="$compile_command $qarg"
 
          finalize_command="$finalize_command $qarg"
 
          continue
 
          ;;
 
        xlinker)
 
          linker_flags="$linker_flags $qarg"
 
          compiler_flags="$compiler_flags $wl$qarg"
 
          prev=
 
          compile_command="$compile_command $wl$qarg"
 
          finalize_command="$finalize_command $wl$qarg"
 
          continue
 
          ;;
 
        xcclinker)
 
          linker_flags="$linker_flags $qarg"
 
          compiler_flags="$compiler_flags $qarg"
 
          prev=
 
          compile_command="$compile_command $qarg"
 
          finalize_command="$finalize_command $qarg"
 
          continue
 
          ;;
          ;;
        shrext)
      -s)
          shrext_cmds="$arg"
        stripme=" -s"
          prev=
 
          continue
          continue
          ;;
          ;;
        darwin_framework|darwin_framework_skip)
      -*)
          test "$prev" = "darwin_framework" && compiler_flags="$compiler_flags $arg"
 
          compile_command="$compile_command $arg"
 
          finalize_command="$finalize_command $arg"
 
          prev=
 
          continue
 
          ;;
          ;;
        *)
        *)
          eval "$prev=\"\$arg\""
        # If the previous option needed an argument, then skip it.
 
        if test -n "$prev"; then
          prev=
          prev=
 
        else
 
          dest=$arg
          continue
          continue
 
        fi
          ;;
          ;;
        esac
        esac
      fi # test -n "$prev"
 
 
 
      prevarg="$arg"
      # Aesthetically quote the argument.
 
      func_quote_for_eval "$arg"
 
      install_prog="$install_prog $func_quote_for_eval_result"
 
    done
 
 
      case $arg in
    test -z "$install_prog" && \
      -all-static)
      func_fatal_help "you must specify an install program"
        if test -n "$link_static_flag"; then
 
          compile_command="$compile_command $link_static_flag"
 
          finalize_command="$finalize_command $link_static_flag"
 
        fi
 
        continue
 
        ;;
 
 
 
      -allow-undefined)
    test -n "$prev" && \
        # FIXME: remove this flag sometime in the future.
      func_fatal_help "the \`$prev' option requires an argument"
        $echo "$modename: \`-allow-undefined' is deprecated because it is the default" 1>&2
 
        continue
 
        ;;
 
 
 
      -avoid-version)
    if test -z "$files"; then
        avoid_version=yes
      if test -z "$dest"; then
        continue
        func_fatal_help "no file or destination specified"
        ;;
 
 
 
      -dlopen)
 
        prev=dlfiles
 
        continue
 
        ;;
 
 
 
      -dlpreopen)
 
        prev=dlprefiles
 
        continue
 
        ;;
 
 
 
      -export-dynamic)
 
        export_dynamic=yes
 
        continue
 
        ;;
 
 
 
      -export-symbols | -export-symbols-regex)
 
        if test -n "$export_symbols" || test -n "$export_symbols_regex"; then
 
          $echo "$modename: more than one -exported-symbols argument is not allowed"
 
          exit $EXIT_FAILURE
 
        fi
 
        if test "X$arg" = "X-export-symbols"; then
 
          prev=expsyms
 
        else
        else
          prev=expsyms_regex
        func_fatal_help "you must specify a destination"
 
      fi
        fi
        fi
        continue
 
        ;;
 
 
 
      -framework|-arch|-isysroot)
 
        case " $CC " in
 
          *" ${arg} ${1} "* | *" ${arg} ${1} "*)
 
                prev=darwin_framework_skip ;;
 
          *) compiler_flags="$compiler_flags $arg"
 
             prev=darwin_framework ;;
 
        esac
 
        compile_command="$compile_command $arg"
 
        finalize_command="$finalize_command $arg"
 
        continue
 
        ;;
 
 
 
      -inst-prefix-dir)
    # Strip any trailing slash from the destination.
        prev=inst_prefix
    func_stripname '' '/' "$dest"
        continue
    dest=$func_stripname_result
        ;;
 
 
 
      # The native IRIX linker understands -LANG:*, -LIST:* and -LNO:*
    # Check to see that the destination is a directory.
      # so, if we see these flags be careful not to treat them like -L
    test -d "$dest" && isdir=yes
      -L[A-Z][A-Z]*:*)
    if test "$isdir" = yes; then
        case $with_gcc/$host in
      destdir="$dest"
        no/*-*-irix* | /*-*-irix*)
      destname=
          compile_command="$compile_command $arg"
    else
          finalize_command="$finalize_command $arg"
      func_dirname_and_basename "$dest" "" "."
          ;;
      destdir="$func_dirname_result"
        esac
      destname="$func_basename_result"
        continue
 
        ;;
 
 
 
      -L*)
      # Not a directory, so check to see that there is only one file specified.
        dir=`$echo "X$arg" | $Xsed -e 's/^-L//'`
      set dummy $files; shift
        # We need an absolute path.
      test "$#" -gt 1 && \
        case $dir in
        func_fatal_help "\`$dest' is not a directory"
 
    fi
 
    case $destdir in
        [\\/]* | [A-Za-z]:[\\/]*) ;;
        [\\/]* | [A-Za-z]:[\\/]*) ;;
        *)
        *)
          absdir=`cd "$dir" && pwd`
      for file in $files; do
          if test -z "$absdir"; then
        case $file in
            $echo "$modename: cannot determine absolute directory name of \`$dir'" 1>&2
        *.lo) ;;
            absdir="$dir"
 
            notinst_path="$notinst_path $dir"
 
          fi
 
          dir="$absdir"
 
          ;;
 
        esac
 
        case "$deplibs " in
 
        *" -L$dir "*) ;;
 
        *)
        *)
          deplibs="$deplibs -L$dir"
          func_fatal_help "\`$destdir' must be an absolute directory name"
          lib_search_path="$lib_search_path $dir"
 
          ;;
          ;;
        esac
        esac
        case $host in
      done
        *-*-cygwin* | *-*-mingw* | *-*-pw32* | *-*-os2*)
 
          testbindir=`$echo "X$dir" | $Xsed -e 's*/lib$*/bin*'`
 
          case :$dllsearchpath: in
 
          *":$dir:"*) ;;
 
          *) dllsearchpath="$dllsearchpath:$dir";;
 
          esac
 
          case :$dllsearchpath: in
 
          *":$testbindir:"*) ;;
 
          *) dllsearchpath="$dllsearchpath:$testbindir";;
 
          esac
 
          ;;
          ;;
        esac
        esac
        continue
 
        ;;
 
 
 
      -l*)
    # This variable tells wrapper scripts just to set variables rather
        if test "X$arg" = "X-lc" || test "X$arg" = "X-lm"; then
    # than running their programs.
          case $host in
    libtool_install_magic="$magic"
          *-*-cygwin* | *-*-mingw* | *-*-pw32* | *-*-beos*)
 
            # These systems don't actually have a C or math library (as such)
    staticlibs=
            continue
    future_libdirs=
            ;;
    current_libdirs=
          *-*-os2*)
    for file in $files; do
            # These systems don't actually have a C library (as such)
 
            test "X$arg" = "X-lc" && continue
      # Do each installation.
            ;;
      case $file in
          *-*-openbsd* | *-*-freebsd* | *-*-dragonfly*)
      *.$libext)
            # Do not include libc due to us having libc/libc_r.
        # Do the static libraries later.
            test "X$arg" = "X-lc" && continue
        staticlibs="$staticlibs $file"
            ;;
 
          *-*-rhapsody* | *-*-darwin1.[012])
 
            # Rhapsody C and math libraries are in the System framework
 
            deplibs="$deplibs -framework System"
 
            continue
 
            ;;
 
          *-*-sco3.2v5* | *-*-sco5v6*)
 
            # Causes problems with __ctype
 
            test "X$arg" = "X-lc" && continue
 
            ;;
 
          *-*-sysv4.2uw2* | *-*-sysv5* | *-*-unixware* | *-*-OpenUNIX*)
 
            # Compiler inserts libc in the correct place for threads to work
 
            test "X$arg" = "X-lc" && continue
 
            ;;
            ;;
 
 
 
      *.la)
 
        # Check to see that this really is a libtool archive.
 
        func_lalib_unsafe_p "$file" \
 
          || func_fatal_help "\`$file' is not a valid libtool archive"
 
 
 
        library_names=
 
        old_library=
 
        relink_command=
 
        func_source "$file"
 
 
 
        # Add the libdir to current_libdirs if it is the destination.
 
        if test "X$destdir" = "X$libdir"; then
 
          case "$current_libdirs " in
 
          *" $libdir "*) ;;
 
          *) current_libdirs="$current_libdirs $libdir" ;;
          esac
          esac
        elif test "X$arg" = "X-lc_r"; then
        else
         case $host in
          # Note the libdir as a future libdir.
         *-*-openbsd* | *-*-freebsd* | *-*-dragonfly*)
          case "$future_libdirs " in
           # Do not include libc_r directly, use -pthread flag.
          *" $libdir "*) ;;
           continue
          *) future_libdirs="$future_libdirs $libdir" ;;
           ;;
 
         esac
         esac
        fi
        fi
        deplibs="$deplibs $arg"
 
        continue
 
        ;;
 
 
 
      # Tru64 UNIX uses -model [arg] to determine the layout of C++
        func_dirname "$file" "/" ""
      # classes, name mangling, and exception handling.
        dir="$func_dirname_result"
      -model)
        dir="$dir$objdir"
        compile_command="$compile_command $arg"
 
        compiler_flags="$compiler_flags $arg"
 
        finalize_command="$finalize_command $arg"
 
        prev=xcompiler
 
        continue
 
        ;;
 
 
 
     -mt|-mthreads|-kthread|-Kthread|-pthread|-pthreads|--thread-safe|-threads)
        if test -n "$relink_command"; then
        compiler_flags="$compiler_flags $arg"
          # Determine the prefix the user has applied to our future dir.
        compile_command="$compile_command $arg"
          inst_prefix_dir=`$ECHO "X$destdir" | $Xsed -e "s%$libdir\$%%"`
        finalize_command="$finalize_command $arg"
 
        continue
 
        ;;
 
 
 
      -module)
          # Don't allow the user to place us outside of our expected
        module=yes
          # location b/c this prevents finding dependent libraries that
        continue
          # are installed to the same prefix.
        ;;
          # At present, this check doesn't affect windows .dll's that
 
          # are installed into $libdir/../bin (currently, that works fine)
 
          # but it's something to keep an eye on.
 
          test "$inst_prefix_dir" = "$destdir" && \
 
            func_fatal_error "error: cannot install \`$file' to a directory not ending in $libdir"
 
 
      # -64, -mips[0-9] enable 64-bit mode on the SGI compiler
          if test -n "$inst_prefix_dir"; then
      # -r[0-9][0-9]* specifies the processor on the SGI compiler
            # Stick the inst_prefix_dir data into the link command.
      # -xarch=*, -xtarget=* enable 64-bit mode on the Sun compiler
            relink_command=`$ECHO "X$relink_command" | $Xsed -e "s%@inst_prefix_dir@%-inst-prefix-dir $inst_prefix_dir%"`
      # +DA*, +DD* enable 64-bit mode on the HP compiler
          else
      # -q* pass through compiler args for the IBM compiler
            relink_command=`$ECHO "X$relink_command" | $Xsed -e "s%@inst_prefix_dir@%%"`
      # -m* pass through architecture-specific compiler args for GCC
          fi
      # -m*, -t[45]*, -txscale* pass through architecture-specific
 
      # compiler args for GCC
 
      # -p, -pg, --coverage, -fprofile-* pass through profiling flag for GCC
 
      # -F/path gives path to uninstalled frameworks, gcc on darwin
 
      # @file GCC response files
 
      -64|-mips[0-9]|-r[0-9][0-9]*|-xarch=*|-xtarget=*|+DA*|+DD*|-q*|-m*| \
 
      -t[45]*|-txscale*|-p|-pg|--coverage|-fprofile-*|-F*|@*)
 
 
 
        # Unknown arguments in both finalize_command and compile_command need
          func_warning "relinking \`$file'"
        # to be aesthetically quoted because they are evaled later.
          func_show_eval "$relink_command" \
        arg=`$echo "X$arg" | $Xsed -e "$sed_quote_subst"`
            'func_fatal_error "error: relink \`$file'\'' with the above command before installing it"'
        case $arg in
        fi
        *[\[\~\#\^\&\*\(\)\{\}\|\;\<\>\?\'\ \   ]*|*]*|"")
 
          arg="\"$arg\""
 
          ;;
 
        esac
 
        compile_command="$compile_command $arg"
 
        finalize_command="$finalize_command $arg"
 
        compiler_flags="$compiler_flags $arg"
 
        continue
 
        ;;
 
 
 
      -shrext)
        # See the names of the shared library.
        prev=shrext
        set dummy $library_names; shift
        continue
        if test -n "$1"; then
        ;;
          realname="$1"
 
          shift
 
 
      -no-fast-install)
          srcname="$realname"
        fast_install=no
          test -n "$relink_command" && srcname="$realname"T
        continue
 
        ;;
 
 
 
      -no-install)
          # Install the shared library and build the symlinks.
        case $host in
          func_show_eval "$install_prog $dir/$srcname $destdir/$realname" \
        *-*-cygwin* | *-*-mingw* | *-*-pw32* | *-*-os2* | *-*-darwin*)
              'exit $?'
          # The PATH hackery in wrapper scripts is required on Windows
          tstripme="$stripme"
          # and Darwin in order for the loader to find any dlls it needs.
          case $host_os in
          $echo "$modename: warning: \`-no-install' is ignored for $host" 1>&2
          cygwin* | mingw* | pw32* | cegcc*)
          $echo "$modename: warning: assuming \`-no-fast-install' instead" 1>&2
            case $realname in
          fast_install=no
            *.dll.a)
 
              tstripme=""
          ;;
          ;;
        *) no_install=yes ;;
 
        esac
        esac
        continue
 
        ;;
        ;;
 
          esac
 
          if test -n "$tstripme" && test -n "$striplib"; then
 
            func_show_eval "$striplib $destdir/$realname" 'exit $?'
 
          fi
 
 
      -no-undefined)
          if test "$#" -gt 0; then
        allow_undefined=no
            # Delete the old symlinks, and create new ones.
        continue
            # Try `ln -sf' first, because the `ln' binary might depend on
        ;;
            # the symlink we replace!  Solaris /bin/ln does not understand -f,
 
            # so we also need to try rm && ln -s.
 
            for linkname
 
            do
 
              test "$linkname" != "$realname" \
 
                && func_show_eval "(cd $destdir && { $LN_S -f $realname $linkname || { $RM $linkname && $LN_S $realname $linkname; }; })"
 
            done
 
          fi
 
 
      -objectlist)
          # Do each command in the postinstall commands.
        prev=objectlist
          lib="$destdir/$realname"
        continue
          func_execute_cmds "$postinstall_cmds" 'exit $?'
        ;;
        fi
 
 
      -o) prev=output ;;
        # Install the pseudo-library for information purposes.
 
        func_basename "$file"
 
        name="$func_basename_result"
 
        instname="$dir/$name"i
 
        func_show_eval "$install_prog $instname $destdir/$name" 'exit $?'
 
 
      -precious-files-regex)
        # Maybe install the static library, too.
        prev=precious_regex
        test -n "$old_library" && staticlibs="$staticlibs $dir/$old_library"
        continue
 
        ;;
        ;;
 
 
      -release)
      *.lo)
        prev=release
        # Install (i.e. copy) a libtool object.
        continue
 
        ;;
 
 
 
      -rpath)
        # Figure out destination file name, if it wasn't already specified.
        prev=rpath
        if test -n "$destname"; then
        continue
          destfile="$destdir/$destname"
        ;;
        else
 
          func_basename "$file"
 
          destfile="$func_basename_result"
 
          destfile="$destdir/$destfile"
 
        fi
 
 
      -R)
        # Deduce the name of the destination old-style object file.
        prev=xrpath
        case $destfile in
        continue
        *.lo)
 
          func_lo2o "$destfile"
 
          staticdest=$func_lo2o_result
 
          ;;
 
        *.$objext)
 
          staticdest="$destfile"
 
          destfile=
        ;;
        ;;
 
 
      -R*)
 
        dir=`$echo "X$arg" | $Xsed -e 's/^-R//'`
 
        # We need an absolute path.
 
        case $dir in
 
        [\\/]* | [A-Za-z]:[\\/]*) ;;
 
        *)
        *)
          $echo "$modename: only absolute run-paths are allowed" 1>&2
          func_fatal_help "cannot copy a libtool object to \`$destfile'"
          exit $EXIT_FAILURE
 
          ;;
          ;;
        esac
        esac
        case "$xrpath " in
 
        *" $dir "*) ;;
 
        *) xrpath="$xrpath $dir" ;;
 
        esac
 
        continue
 
        ;;
 
 
 
      -static | -static-libtool-libs)
        # Install the libtool object if requested.
        # The effects of -static are defined in a previous loop.
        test -n "$destfile" && \
        # We used to do the same as -all-static on platforms that
          func_show_eval "$install_prog $file $destfile" 'exit $?'
        # didn't have a PIC flag, but the assumption that the effects
 
        # would be equivalent was wrong.  It would break on at least
 
        # Digital Unix and AIX.
 
        continue
 
        ;;
 
 
 
      -thread-safe)
        # Install the old object if enabled.
        thread_safe=yes
        if test "$build_old_libs" = yes; then
        continue
          # Deduce the name of the old-style object file.
 
          func_lo2o "$file"
 
          staticobj=$func_lo2o_result
 
          func_show_eval "$install_prog \$staticobj \$staticdest" 'exit $?'
 
        fi
 
        exit $EXIT_SUCCESS
        ;;
        ;;
 
 
      -version-info)
      *)
        prev=vinfo
        # Figure out destination file name, if it wasn't already specified.
        continue
        if test -n "$destname"; then
        ;;
          destfile="$destdir/$destname"
      -version-number)
        else
        prev=vinfo
          func_basename "$file"
        vinfo_number=yes
          destfile="$func_basename_result"
        continue
          destfile="$destdir/$destfile"
        ;;
        fi
 
 
      -Wc,*)
        # If the file is missing, and there is a .exe on the end, strip it
        args=`$echo "X$arg" | $Xsed -e "$sed_quote_subst" -e 's/^-Wc,//'`
        # because it is most likely a libtool script we actually want to
        arg=
        # install
        save_ifs="$IFS"; IFS=','
        stripped_ext=""
        for flag in $args; do
        case $file in
          IFS="$save_ifs"
          *.exe)
          case $flag in
            if test ! -f "$file"; then
            *[\[\~\#\^\&\*\(\)\{\}\|\;\<\>\?\'\ \       ]*|*]*|"")
              func_stripname '' '.exe' "$file"
            flag="\"$flag\""
              file=$func_stripname_result
 
              stripped_ext=".exe"
 
            fi
            ;;
            ;;
          esac
          esac
          arg="$arg $wl$flag"
 
          compiler_flags="$compiler_flags $flag"
 
        done
 
        IFS="$save_ifs"
 
        arg=`$echo "X$arg" | $Xsed -e "s/^ //"`
 
        ;;
 
 
 
      -Wl,*)
        # Do a test to see if this is really a libtool program.
        args=`$echo "X$arg" | $Xsed -e "$sed_quote_subst" -e 's/^-Wl,//'`
        case $host in
        arg=
        *cygwin* | *mingw*)
        save_ifs="$IFS"; IFS=','
            if func_ltwrapper_executable_p "$file"; then
        for flag in $args; do
              func_ltwrapper_scriptname "$file"
          IFS="$save_ifs"
              wrapper=$func_ltwrapper_scriptname_result
          case $flag in
            else
            *[\[\~\#\^\&\*\(\)\{\}\|\;\<\>\?\'\ \       ]*|*]*|"")
              func_stripname '' '.exe' "$file"
            flag="\"$flag\""
              wrapper=$func_stripname_result
 
            fi
 
            ;;
 
        *)
 
            wrapper=$file
            ;;
            ;;
          esac
          esac
          arg="$arg $wl$flag"
        if func_ltwrapper_script_p "$wrapper"; then
          compiler_flags="$compiler_flags $wl$flag"
          notinst_deplibs=
          linker_flags="$linker_flags $flag"
          relink_command=
 
 
 
          func_source "$wrapper"
 
 
 
          # Check the variables that should have been set.
 
          test -z "$generated_by_libtool_version" && \
 
            func_fatal_error "invalid libtool wrapper script \`$wrapper'"
 
 
 
          finalize=yes
 
          for lib in $notinst_deplibs; do
 
            # Check to see that each library is installed.
 
            libdir=
 
            if test -f "$lib"; then
 
              func_source "$lib"
 
            fi
 
            libfile="$libdir/"`$ECHO "X$lib" | $Xsed -e 's%^.*/%%g'` ### testsuite: skip nested quoting test
 
            if test -n "$libdir" && test ! -f "$libfile"; then
 
              func_warning "\`$lib' has not been installed in \`$libdir'"
 
              finalize=no
 
            fi
        done
        done
        IFS="$save_ifs"
 
        arg=`$echo "X$arg" | $Xsed -e "s/^ //"`
 
        ;;
 
 
 
      -Xcompiler)
          relink_command=
        prev=xcompiler
          func_source "$wrapper"
        continue
 
        ;;
 
 
 
      -Xlinker)
          outputname=
        prev=xlinker
          if test "$fast_install" = no && test -n "$relink_command"; then
        continue
            $opt_dry_run || {
        ;;
              if test "$finalize" = yes; then
 
                tmpdir=`func_mktempdir`
 
                func_basename "$file$stripped_ext"
 
                file="$func_basename_result"
 
                outputname="$tmpdir/$file"
 
                # Replace the output file specification.
 
                relink_command=`$ECHO "X$relink_command" | $Xsed -e 's%@OUTPUT@%'"$outputname"'%g'`
 
 
      -XCClinker)
                $opt_silent || {
        prev=xcclinker
                  func_quote_for_expand "$relink_command"
 
                  eval "func_echo $func_quote_for_expand_result"
 
                }
 
                if eval "$relink_command"; then :
 
                  else
 
                  func_error "error: relink \`$file' with the above command before installing it"
 
                  $opt_dry_run || ${RM}r "$tmpdir"
        continue
        continue
        ;;
                fi
 
                file="$outputname"
 
              else
 
                func_warning "cannot relink \`$file'"
 
              fi
 
            }
 
          else
 
            # Install the binary that we compiled earlier.
 
            file=`$ECHO "X$file$stripped_ext" | $Xsed -e "s%\([^/]*\)$%$objdir/\1%"`
 
          fi
 
        fi
 
 
      # Some other compiler flag.
        # remove .exe since cygwin /usr/bin/install will append another
      -* | +*)
        # one anyway
        # Unknown arguments in both finalize_command and compile_command need
        case $install_prog,$host in
        # to be aesthetically quoted because they are evaled later.
        */usr/bin/install*,*cygwin*)
        arg=`$echo "X$arg" | $Xsed -e "$sed_quote_subst"`
          case $file:$destfile in
        case $arg in
          *.exe:*.exe)
        *[\[\~\#\^\&\*\(\)\{\}\|\;\<\>\?\'\ \   ]*|*]*|"")
            # this is ok
          arg="\"$arg\""
            ;;
 
          *.exe:*)
 
            destfile=$destfile.exe
 
            ;;
 
          *:*.exe)
 
            func_stripname '' '.exe' "$destfile"
 
            destfile=$func_stripname_result
          ;;
          ;;
        esac
        esac
        ;;
        ;;
 
        esac
      *.$objext)
        func_show_eval "$install_prog\$stripme \$file \$destfile" 'exit $?'
        # A standard object.
        $opt_dry_run || if test -n "$outputname"; then
        objs="$objs $arg"
          ${RM}r "$tmpdir"
 
        fi
        ;;
        ;;
 
      esac
 
    done
 
 
      *.lo)
    for file in $staticlibs; do
        # A libtool-controlled object.
      func_basename "$file"
 
      name="$func_basename_result"
 
 
        # Check to see that this really is a libtool object.
      # Set up the ranlib parameters.
        if (${SED} -e '2q' $arg | grep "^# Generated by .*$PACKAGE") >/dev/null 2>&1; then
      oldlib="$destdir/$name"
          pic_object=
 
          non_pic_object=
 
 
 
          # Read the .lo file
      func_show_eval "$install_prog \$file \$oldlib" 'exit $?'
          # If there is no directory component, then add one.
 
          case $arg in
 
          */* | *\\*) . $arg ;;
 
          *) . ./$arg ;;
 
          esac
 
 
 
          if test -z "$pic_object" || \
      if test -n "$stripme" && test -n "$old_striplib"; then
             test -z "$non_pic_object" ||
        func_show_eval "$old_striplib $oldlib" 'exit $?'
             test "$pic_object" = none && \
 
             test "$non_pic_object" = none; then
 
            $echo "$modename: cannot find name of object for \`$arg'" 1>&2
 
            exit $EXIT_FAILURE
 
          fi
          fi
 
 
          # Extract subdirectory from the argument.
      # Do each command in the postinstall commands.
          xdir=`$echo "X$arg" | $Xsed -e 's%/[^/]*$%%'`
      func_execute_cmds "$old_postinstall_cmds" 'exit $?'
          if test "X$xdir" = "X$arg"; then
    done
            xdir=
 
          else
 
            xdir="$xdir/"
 
          fi
 
 
 
          if test "$pic_object" != none; then
    test -n "$future_libdirs" && \
            # Prepend the subdirectory the object is found in.
      func_warning "remember to run \`$progname --finish$future_libdirs'"
            pic_object="$xdir$pic_object"
 
 
 
            if test "$prev" = dlfiles; then
    if test -n "$current_libdirs"; then
              if test "$build_libtool_libs" = yes && test "$dlopen_support" = yes; then
      # Maybe just do a dry run.
                dlfiles="$dlfiles $pic_object"
      $opt_dry_run && current_libdirs=" -n$current_libdirs"
                prev=
      exec_cmd='$SHELL $progpath $preserve_args --finish$current_libdirs'
                continue
 
              else
              else
                # If libtool objects are unsupported, then we need to preload.
      exit $EXIT_SUCCESS
                prev=dlprefiles
 
              fi
 
            fi
            fi
 
}
 
 
            # CHECK ME:  I think I busted this.  -Ossama
test "$mode" = install && func_mode_install ${1+"$@"}
            if test "$prev" = dlprefiles; then
 
              # Preload the old-style object.
 
              dlprefiles="$dlprefiles $pic_object"
 
              prev=
 
            fi
 
 
 
            # A PIC object.
 
            libobjs="$libobjs $pic_object"
 
            arg="$pic_object"
 
          fi
 
 
 
          # Non-PIC object.
# func_generate_dlsyms outputname originator pic_p
          if test "$non_pic_object" != none; then
# Extract symbols from dlprefiles and create ${outputname}S.o with
            # Prepend the subdirectory the object is found in.
# a dlpreopen symbol table.
            non_pic_object="$xdir$non_pic_object"
func_generate_dlsyms ()
 
{
 
    $opt_debug
 
    my_outputname="$1"
 
    my_originator="$2"
 
    my_pic_p="${3-no}"
 
    my_prefix=`$ECHO "$my_originator" | sed 's%[^a-zA-Z0-9]%_%g'`
 
    my_dlsyms=
 
 
            # A standard non-PIC object
    if test -n "$dlfiles$dlprefiles" || test "$dlself" != no; then
            non_pic_objects="$non_pic_objects $non_pic_object"
      if test -n "$NM" && test -n "$global_symbol_pipe"; then
            if test -z "$pic_object" || test "$pic_object" = none ; then
        my_dlsyms="${my_outputname}S.c"
              arg="$non_pic_object"
 
            fi
 
          else
          else
            # If the PIC object exists, use it instead.
        func_error "not configured to extract global symbols from dlpreopened files"
            # $xdir was prepended to $pic_object above.
 
            non_pic_object="$pic_object"
 
            non_pic_objects="$non_pic_objects $non_pic_object"
 
          fi
          fi
        else
 
          # Only an error if not doing a dry-run.
 
          if test -z "$run"; then
 
            $echo "$modename: \`$arg' is not a valid libtool object" 1>&2
 
            exit $EXIT_FAILURE
 
          else
 
            # Dry-run case.
 
 
 
            # Extract subdirectory from the argument.
 
            xdir=`$echo "X$arg" | $Xsed -e 's%/[^/]*$%%'`
 
            if test "X$xdir" = "X$arg"; then
 
              xdir=
 
            else
 
              xdir="$xdir/"
 
            fi
            fi
 
 
            pic_object=`$echo "X${xdir}${objdir}/${arg}" | $Xsed -e "$lo2o"`
    if test -n "$my_dlsyms"; then
            non_pic_object=`$echo "X${xdir}${arg}" | $Xsed -e "$lo2o"`
      case $my_dlsyms in
            libobjs="$libobjs $pic_object"
      "") ;;
            non_pic_objects="$non_pic_objects $non_pic_object"
      *.c)
          fi
        # Discover the nlist of each of the dlfiles.
        fi
        nlist="$output_objdir/${my_outputname}.nm"
        ;;
 
 
 
      *.$libext)
        func_show_eval "$RM $nlist ${nlist}S ${nlist}T"
        # An archive.
 
        deplibs="$deplibs $arg"
 
        old_deplibs="$old_deplibs $arg"
 
        continue
 
        ;;
 
 
 
      *.la)
        # Parse the name list into a source file.
        # A libtool-controlled library.
        func_verbose "creating $output_objdir/$my_dlsyms"
 
 
        if test "$prev" = dlfiles; then
        $opt_dry_run || $ECHO > "$output_objdir/$my_dlsyms" "\
          # This library was specified with -dlopen.
/* $my_dlsyms - symbol resolution table for \`$my_outputname' dlsym emulation. */
          dlfiles="$dlfiles $arg"
/* Generated by $PROGRAM (GNU $PACKAGE$TIMESTAMP) $VERSION */
          prev=
 
        elif test "$prev" = dlprefiles; then
#ifdef __cplusplus
          # The library was specified with -dlpreopen.
extern \"C\" {
          dlprefiles="$dlprefiles $arg"
#endif
          prev=
 
        else
/* External symbol declarations for the compiler. */\
          deplibs="$deplibs $arg"
"
 
 
 
        if test "$dlself" = yes; then
 
          func_verbose "generating symbol list for \`$output'"
 
 
 
          $opt_dry_run || echo ': @PROGRAM@ ' > "$nlist"
 
 
 
          # Add our own program objects to the symbol list.
 
          progfiles=`$ECHO "X$objs$old_deplibs" | $SP2NL | $Xsed -e "$lo2o" | $NL2SP`
 
          for progfile in $progfiles; do
 
            func_verbose "extracting global C symbols from \`$progfile'"
 
            $opt_dry_run || eval "$NM $progfile | $global_symbol_pipe >> '$nlist'"
 
          done
 
 
 
          if test -n "$exclude_expsyms"; then
 
            $opt_dry_run || {
 
              eval '$EGREP -v " ($exclude_expsyms)$" "$nlist" > "$nlist"T'
 
              eval '$MV "$nlist"T "$nlist"'
 
            }
        fi
        fi
        continue
 
        ;;
 
 
 
      # Some other compiler argument.
          if test -n "$export_symbols_regex"; then
      *)
            $opt_dry_run || {
        # Unknown arguments in both finalize_command and compile_command need
              eval '$EGREP -e "$export_symbols_regex" "$nlist" > "$nlist"T'
        # to be aesthetically quoted because they are evaled later.
              eval '$MV "$nlist"T "$nlist"'
        arg=`$echo "X$arg" | $Xsed -e "$sed_quote_subst"`
            }
        case $arg in
          fi
        *[\[\~\#\^\&\*\(\)\{\}\|\;\<\>\?\'\ \   ]*|*]*|"")
 
          arg="\"$arg\""
          # Prepare the list of exported symbols
 
          if test -z "$export_symbols"; then
 
            export_symbols="$output_objdir/$outputname.exp"
 
            $opt_dry_run || {
 
              $RM $export_symbols
 
              eval "${SED} -n -e '/^: @PROGRAM@ $/d' -e 's/^.* \(.*\)$/\1/p' "'< "$nlist" > "$export_symbols"'
 
              case $host in
 
              *cygwin* | *mingw* | *cegcc* )
 
                eval "echo EXPORTS "'> "$output_objdir/$outputname.def"'
 
                eval 'cat "$export_symbols" >> "$output_objdir/$outputname.def"'
          ;;
          ;;
        esac
        esac
 
            }
 
          else
 
            $opt_dry_run || {
 
              eval "${SED} -e 's/\([].[*^$]\)/\\\\\1/g' -e 's/^/ /' -e 's/$/$/'"' < "$export_symbols" > "$output_objdir/$outputname.exp"'
 
              eval '$GREP -f "$output_objdir/$outputname.exp" < "$nlist" > "$nlist"T'
 
              eval '$MV "$nlist"T "$nlist"'
 
              case $host in
 
                *cygwin | *mingw* | *cegcc* )
 
                  eval "echo EXPORTS "'> "$output_objdir/$outputname.def"'
 
                  eval 'cat "$nlist" >> "$output_objdir/$outputname.def"'
        ;;
        ;;
      esac # arg
              esac
 
            }
      # Now actually substitute the argument into the commands.
 
      if test -n "$arg"; then
 
        compile_command="$compile_command $arg"
 
        finalize_command="$finalize_command $arg"
 
      fi
      fi
    done # argument parsing loop
 
 
 
    if test -n "$prev"; then
 
      $echo "$modename: the \`$prevarg' option requires an argument" 1>&2
 
      $echo "$help" 1>&2
 
      exit $EXIT_FAILURE
 
    fi
    fi
 
 
    if test "$export_dynamic" = yes && test -n "$export_dynamic_flag_spec"; then
        for dlprefile in $dlprefiles; do
      eval arg=\"$export_dynamic_flag_spec\"
          func_verbose "extracting global C symbols from \`$dlprefile'"
      compile_command="$compile_command $arg"
          func_basename "$dlprefile"
      finalize_command="$finalize_command $arg"
          name="$func_basename_result"
    fi
          $opt_dry_run || {
 
            eval '$ECHO ": $name " >> "$nlist"'
 
            eval "$NM $dlprefile 2>/dev/null | $global_symbol_pipe >> '$nlist'"
 
          }
 
        done
 
 
    oldlibs=
        $opt_dry_run || {
    # calculate the name of the file, without its directory
          # Make sure we have at least an empty file.
    outputname=`$echo "X$output" | $Xsed -e 's%^.*/%%'`
          test -f "$nlist" || : > "$nlist"
    libobjs_save="$libobjs"
 
 
 
    if test -n "$shlibpath_var"; then
          if test -n "$exclude_expsyms"; then
      # get the directories listed in $shlibpath_var
            $EGREP -v " ($exclude_expsyms)$" "$nlist" > "$nlist"T
      eval shlib_search_path=\`\$echo \"X\${$shlibpath_var}\" \| \$Xsed -e \'s/:/ /g\'\`
            $MV "$nlist"T "$nlist"
    else
 
      shlib_search_path=
 
    fi
    fi
    eval sys_lib_search_path=\"$sys_lib_search_path_spec\"
 
    eval sys_lib_dlsearch_path=\"$sys_lib_dlsearch_path_spec\"
 
 
 
    output_objdir=`$echo "X$output" | $Xsed -e 's%/[^/]*$%%'`
          # Try sorting and uniquifying the output.
    if test "X$output_objdir" = "X$output"; then
          if $GREP -v "^: " < "$nlist" |
      output_objdir="$objdir"
              if sort -k 3 </dev/null >/dev/null 2>&1; then
 
                sort -k 3
    else
    else
      output_objdir="$output_objdir/$objdir"
                sort +2
    fi
              fi |
    # Create the object directory.
              uniq > "$nlist"S; then
    if test ! -d "$output_objdir"; then
            :
      $show "$mkdir $output_objdir"
          else
      $run $mkdir $output_objdir
            $GREP -v "^: " < "$nlist" > "$nlist"S
      exit_status=$?
 
      if test "$exit_status" -ne 0 && test ! -d "$output_objdir"; then
 
        exit $exit_status
 
      fi
      fi
 
 
 
          if test -f "$nlist"S; then
 
            eval "$global_symbol_to_cdecl"' < "$nlist"S >> "$output_objdir/$my_dlsyms"'
 
          else
 
            $ECHO '/* NONE */' >> "$output_objdir/$my_dlsyms"
    fi
    fi
 
 
    # Determine the type of output
          $ECHO >> "$output_objdir/$my_dlsyms" "\
    case $output in
 
    "")
 
      $echo "$modename: you must specify an output file" 1>&2
 
      $echo "$help" 1>&2
 
      exit $EXIT_FAILURE
 
      ;;
 
    *.$libext) linkmode=oldlib ;;
 
    *.lo | *.$objext) linkmode=obj ;;
 
    *.la) linkmode=lib ;;
 
    *) linkmode=prog ;; # Anything else should be a program.
 
    esac
 
 
 
 
/* The mapping between symbol names and symbols.  */
 
typedef struct {
 
  const char *name;
 
  void *address;
 
} lt_dlsymlist;
 
"
    case $host in
    case $host in
    *cygwin* | *mingw* | *pw32*)
          *cygwin* | *mingw* | *cegcc* )
      # don't eliminate duplications in $postdeps and $predeps
            $ECHO >> "$output_objdir/$my_dlsyms" "\
      duplicate_compiler_generated_deps=yes
/* DATA imports from DLLs on WIN32 con't be const, because
 
   runtime relocations are performed -- see ld's documentation
 
   on pseudo-relocs.  */"
 
            lt_dlsym_const= ;;
 
          *osf5*)
 
            echo >> "$output_objdir/$my_dlsyms" "\
 
/* This system does not cope well with relocations in const data */"
 
            lt_dlsym_const= ;;
 
          *)
 
            lt_dlsym_const=const ;;
 
          esac
 
 
 
          $ECHO >> "$output_objdir/$my_dlsyms" "\
 
extern $lt_dlsym_const lt_dlsymlist
 
lt_${my_prefix}_LTX_preloaded_symbols[];
 
$lt_dlsym_const lt_dlsymlist
 
lt_${my_prefix}_LTX_preloaded_symbols[] =
 
{\
 
  { \"$my_originator\", (void *) 0 },"
 
 
 
          case $need_lib_prefix in
 
          no)
 
            eval "$global_symbol_to_c_name_address" < "$nlist" >> "$output_objdir/$my_dlsyms"
      ;;
      ;;
    *)
    *)
      duplicate_compiler_generated_deps=$duplicate_deps
            eval "$global_symbol_to_c_name_address_lib_prefix" < "$nlist" >> "$output_objdir/$my_dlsyms"
      ;;
      ;;
    esac
    esac
    specialdeplibs=
          $ECHO >> "$output_objdir/$my_dlsyms" "\
 
  {0, (void *) 0}
 
};
 
 
    libs=
/* This works around a problem in FreeBSD linker */
    # Find all interdependent deplibs by searching for libraries
#ifdef FREEBSD_WORKAROUND
    # that are linked more than once (e.g. -la -lb -la)
static const void *lt_preloaded_setup() {
    for deplib in $deplibs; do
  return lt_${my_prefix}_LTX_preloaded_symbols;
      if test "X$duplicate_deps" = "Xyes" ; then
}
        case "$libs " in
#endif
        *" $deplib "*) specialdeplibs="$specialdeplibs $deplib" ;;
 
        esac
 
      fi
 
      libs="$libs $deplib"
 
    done
 
 
 
    if test "$linkmode" = lib; then
#ifdef __cplusplus
      libs="$predeps $libs $compiler_lib_search_path $postdeps"
}
 
#endif\
 
"
 
        } # !$opt_dry_run
 
 
      # Compute libraries that are listed more than once in $predeps
        pic_flag_for_symtable=
      # $postdeps and mark them as special (i.e., whose duplicates are
        case "$compile_command " in
      # not to be eliminated).
        *" -static "*) ;;
      pre_post_deps=
        *)
      if test "X$duplicate_compiler_generated_deps" = "Xyes" ; then
          case $host in
        for pre_post_dep in $predeps $postdeps; do
          # compiling the symbol table file with pic_flag works around
          case "$pre_post_deps " in
          # a FreeBSD bug that causes programs to crash when -lm is
          *" $pre_post_dep "*) specialdeplibs="$specialdeplibs $pre_post_deps" ;;
          # linked before any other PIC object.  But we must not use
 
          # pic_flag when linking with -static.  The problem exists in
 
          # FreeBSD 2.2.6 and is fixed in FreeBSD 3.1.
 
          *-*-freebsd2*|*-*-freebsd3.0*|*-*-freebsdelf3.0*)
 
            pic_flag_for_symtable=" $pic_flag -DFREEBSD_WORKAROUND" ;;
 
          *-*-hpux*)
 
            pic_flag_for_symtable=" $pic_flag"  ;;
 
          *)
 
            if test "X$my_pic_p" != Xno; then
 
              pic_flag_for_symtable=" $pic_flag"
 
            fi
 
            ;;
 
          esac
 
          ;;
 
        esac
 
        symtab_cflags=
 
        for arg in $LTCFLAGS; do
 
          case $arg in
 
          -pie | -fpie | -fPIE) ;;
 
          *) symtab_cflags="$symtab_cflags $arg" ;;
          esac
          esac
          pre_post_deps="$pre_post_deps $pre_post_dep"
 
        done
        done
      fi
 
      pre_post_deps=
 
    fi
 
 
 
    deplibs=
        # Now compile the dynamic symbol file.
    newdependency_libs=
        func_show_eval '(cd $output_objdir && $LTCC$symtab_cflags -c$no_builtin_flag$pic_flag_for_symtable "$my_dlsyms")' 'exit $?'
    newlib_search_path=
 
    need_relink=no # whether we're linking any uninstalled libtool libraries
        # Clean up the generated files.
    notinst_deplibs= # not-installed libtool libraries
        func_show_eval '$RM "$output_objdir/$my_dlsyms" "$nlist" "${nlist}S" "${nlist}T"'
    case $linkmode in
 
    lib)
        # Transform the symbol file into the correct name.
        passes="conv link"
        symfileobj="$output_objdir/${my_outputname}S.$objext"
        for file in $dlfiles $dlprefiles; do
        case $host in
          case $file in
        *cygwin* | *mingw* | *cegcc* )
          *.la) ;;
          if test -f "$output_objdir/$my_outputname.def"; then
 
            compile_command=`$ECHO "X$compile_command" | $Xsed -e "s%@SYMFILE@%$output_objdir/$my_outputname.def $symfileobj%"`
 
            finalize_command=`$ECHO "X$finalize_command" | $Xsed -e "s%@SYMFILE@%$output_objdir/$my_outputname.def $symfileobj%"`
 
          else
 
            compile_command=`$ECHO "X$compile_command" | $Xsed -e "s%@SYMFILE@%$symfileobj%"`
 
            finalize_command=`$ECHO "X$finalize_command" | $Xsed -e "s%@SYMFILE@%$symfileobj%"`
 
          fi
 
          ;;
          *)
          *)
            $echo "$modename: libraries can \`-dlopen' only libtool libraries: $file" 1>&2
          compile_command=`$ECHO "X$compile_command" | $Xsed -e "s%@SYMFILE@%$symfileobj%"`
            exit $EXIT_FAILURE
          finalize_command=`$ECHO "X$finalize_command" | $Xsed -e "s%@SYMFILE@%$symfileobj%"`
            ;;
            ;;
          esac
          esac
        done
 
        ;;
 
    prog)
 
        compile_deplibs=
 
        finalize_deplibs=
 
        alldeplibs=no
 
        newdlfiles=
 
        newdlprefiles=
 
        passes="conv scan dlopen dlpreopen link"
 
        ;;
        ;;
    *)  passes="conv"
      *)
 
        func_fatal_error "unknown suffix for \`$my_dlsyms'"
        ;;
        ;;
    esac
    esac
    for pass in $passes; do
 
      if test "$linkmode,$pass" = "lib,link" ||
 
         test "$linkmode,$pass" = "prog,scan"; then
 
        libs="$deplibs"
 
        deplibs=
 
      fi
 
      if test "$linkmode" = prog; then
 
        case $pass in
 
        dlopen) libs="$dlfiles" ;;
 
        dlpreopen) libs="$dlprefiles" ;;
 
        link) libs="$deplibs %DEPLIBS% $dependency_libs" ;;
 
        esac
 
      fi
 
      if test "$pass" = dlopen; then
 
        # Collect dlpreopened libraries
 
        save_deplibs="$deplibs"
 
        deplibs=
 
      fi
 
      for deplib in $libs; do
 
        lib=
 
        found=no
 
        case $deplib in
 
        -mt|-mthreads|-kthread|-Kthread|-pthread|-pthreads|--thread-safe|-threads)
 
          if test "$linkmode,$pass" = "prog,link"; then
 
            compile_deplibs="$deplib $compile_deplibs"
 
            finalize_deplibs="$deplib $finalize_deplibs"
 
          else
          else
            compiler_flags="$compiler_flags $deplib"
      # We keep going just in case the user didn't refer to
 
      # lt_preloaded_symbols.  The linker will fail if global_symbol_pipe
 
      # really was required.
 
 
 
      # Nullify the symbol file.
 
      compile_command=`$ECHO "X$compile_command" | $Xsed -e "s% @SYMFILE@%%"`
 
      finalize_command=`$ECHO "X$finalize_command" | $Xsed -e "s% @SYMFILE@%%"`
          fi
          fi
          continue
}
 
 
 
# func_win32_libid arg
 
# return the library type of file 'arg'
 
#
 
# Need a lot of goo to handle *both* DLLs and import libs
 
# Has to be a shell function in order to 'eat' the argument
 
# that is supplied when $file_magic_command is called.
 
func_win32_libid ()
 
{
 
  $opt_debug
 
  win32_libid_type="unknown"
 
  win32_fileres=`file -L $1 2>/dev/null`
 
  case $win32_fileres in
 
  *ar\ archive\ import\ library*) # definitely import
 
    win32_libid_type="x86 archive import"
          ;;
          ;;
        -l*)
  *ar\ archive*) # could be an import, or static
          if test "$linkmode" != lib && test "$linkmode" != prog; then
    if eval $OBJDUMP -f $1 | $SED -e '10q' 2>/dev/null |
            $echo "$modename: warning: \`-l' is ignored for archives/objects" 1>&2
       $EGREP 'file format pe-i386(.*architecture: i386)?' >/dev/null ; then
            continue
      win32_nmres=`eval $NM -f posix -A $1 |
 
        $SED -n -e '
 
            1,100{
 
                / I /{
 
                    s,.*,import,
 
                    p
 
                    q
 
                }
 
            }'`
 
      case $win32_nmres in
 
      import*)  win32_libid_type="x86 archive import";;
 
      *)        win32_libid_type="x86 archive static";;
 
      esac
          fi
          fi
          name=`$echo "X$deplib" | $Xsed -e 's/^-l//'`
 
          for searchdir in $newlib_search_path $lib_search_path $sys_lib_search_path $shlib_search_path; do
 
            for search_ext in .la $std_shrext .so .a; do
 
              # Search the libtool library
 
              lib="$searchdir/lib${name}${search_ext}"
 
              if test -f "$lib"; then
 
                if test "$search_ext" = ".la"; then
 
                  found=yes
 
                else
 
                  found=no
 
                fi
 
                break 2
 
              fi
 
            done
 
          done
 
          if test "$found" != yes; then
 
            # deplib doesn't seem to be a libtool library
 
            if test "$linkmode,$pass" = "prog,link"; then
 
              compile_deplibs="$deplib $compile_deplibs"
 
              finalize_deplibs="$deplib $finalize_deplibs"
 
            else
 
              deplibs="$deplib $deplibs"
 
              test "$linkmode" = lib && newdependency_libs="$deplib $newdependency_libs"
 
            fi
 
            continue
 
          else # deplib is a libtool library
 
            # If $allow_libtool_libs_with_static_runtimes && $deplib is a stdlib,
 
            # We need to do some special things here, and not later.
 
            if test "X$allow_libtool_libs_with_static_runtimes" = "Xyes" ; then
 
              case " $predeps $postdeps " in
 
              *" $deplib "*)
 
                if (${SED} -e '2q' $lib |
 
                    grep "^# Generated by .*$PACKAGE") >/dev/null 2>&1; then
 
                  library_names=
 
                  old_library=
 
                  case $lib in
 
                  */* | *\\*) . $lib ;;
 
                  *) . ./$lib ;;
 
                  esac
 
                  for l in $old_library $library_names; do
 
                    ll="$l"
 
                  done
 
                  if test "X$ll" = "X$old_library" ; then # only static version available
 
                    found=no
 
                    ladir=`$echo "X$lib" | $Xsed -e 's%/[^/]*$%%'`
 
                    test "X$ladir" = "X$lib" && ladir="."
 
                    lib=$ladir/$old_library
 
                    if test "$linkmode,$pass" = "prog,link"; then
 
                      compile_deplibs="$deplib $compile_deplibs"
 
                      finalize_deplibs="$deplib $finalize_deplibs"
 
                    else
 
                      deplibs="$deplib $deplibs"
 
                      test "$linkmode" = lib && newdependency_libs="$deplib $newdependency_libs"
 
                    fi
 
                    continue
 
                  fi
 
                fi
 
                ;;
 
              *) ;;
 
              esac
 
            fi
 
          fi
 
          ;; # -l
 
        -L*)
 
          case $linkmode in
 
          lib)
 
            deplibs="$deplib $deplibs"
 
            test "$pass" = conv && continue
 
            newdependency_libs="$deplib $newdependency_libs"
 
            newlib_search_path="$newlib_search_path "`$echo "X$deplib" | $Xsed -e 's/^-L//'`
 
            ;;
            ;;
          prog)
  *DLL*)
            if test "$pass" = conv; then
    win32_libid_type="x86 DLL"
              deplibs="$deplib $deplibs"
 
              continue
 
            fi
 
            if test "$pass" = scan; then
 
              deplibs="$deplib $deplibs"
 
            else
 
              compile_deplibs="$deplib $compile_deplibs"
 
              finalize_deplibs="$deplib $finalize_deplibs"
 
            fi
 
            newlib_search_path="$newlib_search_path "`$echo "X$deplib" | $Xsed -e 's/^-L//'`
 
            ;;
            ;;
          *)
  *executable*) # but shell scripts are "executable" too...
            $echo "$modename: warning: \`-L' is ignored for archives/objects" 1>&2
    case $win32_fileres in
 
    *MS\ Windows\ PE\ Intel*)
 
      win32_libid_type="x86 DLL"
            ;;
            ;;
          esac # linkmode
 
          continue
 
          ;; # -L
 
        -R*)
 
          if test "$pass" = link; then
 
            dir=`$echo "X$deplib" | $Xsed -e 's/^-R//'`
 
            # Make sure the xrpath contains only unique directories.
 
            case "$xrpath " in
 
            *" $dir "*) ;;
 
            *) xrpath="$xrpath $dir" ;;
 
            esac
            esac
          fi
 
          deplibs="$deplib $deplibs"
 
          continue
 
          ;;
 
        *.la) lib="$deplib" ;;
 
        *.$libext)
 
          if test "$pass" = conv; then
 
            deplibs="$deplib $deplibs"
 
            continue
 
          fi
 
          case $linkmode in
 
          lib)
 
            valid_a_lib=no
 
            case $deplibs_check_method in
 
              match_pattern*)
 
                set dummy $deplibs_check_method
 
                match_pattern_regex=`expr "$deplibs_check_method" : "$2 \(.*\)"`
 
                if eval $echo \"$deplib\" 2>/dev/null \
 
                    | $SED 10q \
 
                    | $EGREP "$match_pattern_regex" > /dev/null; then
 
                  valid_a_lib=yes
 
                fi
 
                ;;
 
              pass_all)
 
                valid_a_lib=yes
 
                ;;
                ;;
            esac
            esac
            if test "$valid_a_lib" != yes; then
  $ECHO "$win32_libid_type"
              $echo
}
              $echo "*** Warning: Trying to link with static lib archive $deplib."
 
              $echo "*** I have the capability to make that library automatically link in when"
 
              $echo "*** you link to this library.  But I can only do this if you have a"
 
              $echo "*** shared version of the library, which you do not appear to have"
 
              $echo "*** because the file extensions .$libext of this argument makes me believe"
 
              $echo "*** that it is just a static archive that I should not used here."
 
            else
 
              $echo
 
              $echo "*** Warning: Linking the shared library $output against the"
 
              $echo "*** static library $deplib is not portable!"
 
              deplibs="$deplib $deplibs"
 
            fi
 
            continue
 
            ;;
 
          prog)
 
            if test "$pass" != link; then
 
              deplibs="$deplib $deplibs"
 
            else
 
              compile_deplibs="$deplib $compile_deplibs"
 
              finalize_deplibs="$deplib $finalize_deplibs"
 
            fi
 
            continue
 
            ;;
 
          esac # linkmode
 
          ;; # *.$libext
 
        *.lo | *.$objext)
 
          if test "$pass" = conv; then
 
            deplibs="$deplib $deplibs"
 
          elif test "$linkmode" = prog; then
 
            if test "$pass" = dlpreopen || test "$dlopen_support" != yes || test "$build_libtool_libs" = no; then
 
              # If there is no dlopen support or we're linking statically,
 
              # we need to preload.
 
              newdlprefiles="$newdlprefiles $deplib"
 
              compile_deplibs="$deplib $compile_deplibs"
 
              finalize_deplibs="$deplib $finalize_deplibs"
 
            else
 
              newdlfiles="$newdlfiles $deplib"
 
            fi
 
          fi
 
          continue
 
          ;;
 
        %DEPLIBS%)
 
          alldeplibs=yes
 
          continue
 
          ;;
 
        esac # case $deplib
 
        if test "$found" = yes || test -f "$lib"; then :
 
        else
 
          $echo "$modename: cannot find the library \`$lib' or unhandled argument \`$deplib'" 1>&2
 
          exit $EXIT_FAILURE
 
        fi
 
 
 
        # Check to see that this really is a libtool archive.
 
        if (${SED} -e '2q' $lib | grep "^# Generated by .*$PACKAGE") >/dev/null 2>&1; then :
 
 
# func_extract_an_archive dir oldlib
 
func_extract_an_archive ()
 
{
 
    $opt_debug
 
    f_ex_an_ar_dir="$1"; shift
 
    f_ex_an_ar_oldlib="$1"
 
    func_show_eval "(cd \$f_ex_an_ar_dir && $AR x \"\$f_ex_an_ar_oldlib\")" 'exit $?'
 
    if ($AR t "$f_ex_an_ar_oldlib" | sort | sort -uc >/dev/null 2>&1); then
 
     :
        else
        else
          $echo "$modename: \`$lib' is not a valid libtool archive" 1>&2
      func_fatal_error "object name conflicts in archive: $f_ex_an_ar_dir/$f_ex_an_ar_oldlib"
          exit $EXIT_FAILURE
 
        fi
        fi
 
}
 
 
        ladir=`$echo "X$lib" | $Xsed -e 's%/[^/]*$%%'`
 
        test "X$ladir" = "X$lib" && ladir="."
 
 
 
        dlname=
 
        dlopen=
 
        dlpreopen=
 
        libdir=
 
        library_names=
 
        old_library=
 
        # If the library was installed with an old release of libtool,
 
        # it will not redefine variables installed, or shouldnotlink
 
        installed=yes
 
        shouldnotlink=no
 
        avoidtemprpath=
 
 
 
 
# func_extract_archives gentop oldlib ...
 
func_extract_archives ()
 
{
 
    $opt_debug
 
    my_gentop="$1"; shift
 
    my_oldlibs=${1+"$@"}
 
    my_oldobjs=""
 
    my_xlib=""
 
    my_xabs=""
 
    my_xdir=""
 
 
        # Read the .la file
    for my_xlib in $my_oldlibs; do
        case $lib in
      # Extract the objects.
        */* | *\\*) . $lib ;;
      case $my_xlib in
        *) . ./$lib ;;
        [\\/]* | [A-Za-z]:[\\/]*) my_xabs="$my_xlib" ;;
 
        *) my_xabs=`pwd`"/$my_xlib" ;;
 
      esac
 
      func_basename "$my_xlib"
 
      my_xlib="$func_basename_result"
 
      my_xlib_u=$my_xlib
 
      while :; do
 
        case " $extracted_archives " in
 
        *" $my_xlib_u "*)
 
          func_arith $extracted_serial + 1
 
          extracted_serial=$func_arith_result
 
          my_xlib_u=lt$extracted_serial-$my_xlib ;;
 
        *) break ;;
        esac
        esac
 
      done
 
      extracted_archives="$extracted_archives $my_xlib_u"
 
      my_xdir="$my_gentop/$my_xlib_u"
 
 
        if test "$linkmode,$pass" = "lib,link" ||
      func_mkdir_p "$my_xdir"
           test "$linkmode,$pass" = "prog,scan" ||
 
           { test "$linkmode" != prog && test "$linkmode" != lib; }; then
 
          test -n "$dlopen" && dlfiles="$dlfiles $dlopen"
 
          test -n "$dlpreopen" && dlprefiles="$dlprefiles $dlpreopen"
 
        fi
 
 
 
        if test "$pass" = conv; then
      case $host in
          # Only check for convenience libraries
      *-darwin*)
          deplibs="$lib $deplibs"
        func_verbose "Extracting $my_xabs"
          if test -z "$libdir"; then
        # Do not bother doing anything if just a dry run
            if test -z "$old_library"; then
        $opt_dry_run || {
              $echo "$modename: cannot find name of link library for \`$lib'" 1>&2
          darwin_orig_dir=`pwd`
              exit $EXIT_FAILURE
          cd $my_xdir || exit $?
            fi
          darwin_archive=$my_xabs
            # It is a libtool convenience library, so add in its objects.
          darwin_curdir=`pwd`
            convenience="$convenience $ladir/$objdir/$old_library"
          darwin_base_archive=`basename "$darwin_archive"`
            old_convenience="$old_convenience $ladir/$objdir/$old_library"
          darwin_arches=`$LIPO -info "$darwin_archive" 2>/dev/null | $GREP Architectures 2>/dev/null || true`
            tmp_libs=
          if test -n "$darwin_arches"; then
            for deplib in $dependency_libs; do
            darwin_arches=`$ECHO "$darwin_arches" | $SED -e 's/.*are://'`
              deplibs="$deplib $deplibs"
            darwin_arch=
              if test "X$duplicate_deps" = "Xyes" ; then
            func_verbose "$darwin_base_archive has multiple architectures $darwin_arches"
                case "$tmp_libs " in
            for darwin_arch in  $darwin_arches ; do
                *" $deplib "*) specialdeplibs="$specialdeplibs $deplib" ;;
              func_mkdir_p "unfat-$$/${darwin_base_archive}-${darwin_arch}"
 
              $LIPO -thin $darwin_arch -output "unfat-$$/${darwin_base_archive}-${darwin_arch}/${darwin_base_archive}" "${darwin_archive}"
 
              cd "unfat-$$/${darwin_base_archive}-${darwin_arch}"
 
              func_extract_an_archive "`pwd`" "${darwin_base_archive}"
 
              cd "$darwin_curdir"
 
              $RM "unfat-$$/${darwin_base_archive}-${darwin_arch}/${darwin_base_archive}"
 
            done # $darwin_arches
 
            ## Okay now we've a bunch of thin objects, gotta fatten them up :)
 
            darwin_filelist=`find unfat-$$ -type f -name \*.o -print -o -name \*.lo -print | $SED -e "$basename" | sort -u`
 
            darwin_file=
 
            darwin_files=
 
            for darwin_file in $darwin_filelist; do
 
              darwin_files=`find unfat-$$ -name $darwin_file -print | $NL2SP`
 
              $LIPO -create -output "$darwin_file" $darwin_files
 
            done # $darwin_filelist
 
            $RM -rf unfat-$$
 
            cd "$darwin_orig_dir"
 
          else
 
            cd $darwin_orig_dir
 
            func_extract_an_archive "$my_xdir" "$my_xabs"
 
          fi # $darwin_arches
 
        } # !$opt_dry_run
 
        ;;
 
      *)
 
        func_extract_an_archive "$my_xdir" "$my_xabs"
 
        ;;
                esac
                esac
              fi
      my_oldobjs="$my_oldobjs "`find $my_xdir -name \*.$objext -print -o -name \*.lo -print | $NL2SP`
              tmp_libs="$tmp_libs $deplib"
 
            done
            done
          elif test "$linkmode" != prog && test "$linkmode" != lib; then
 
            $echo "$modename: \`$lib' is not a convenience library" 1>&2
 
            exit $EXIT_FAILURE
 
          fi
 
          continue
 
        fi # $pass = conv
 
 
 
 
    func_extract_archives_result="$my_oldobjs"
 
}
 
 
        # Get the name of the library we link against.
 
        linklib=
 
        for l in $old_library $library_names; do
# func_emit_wrapper_part1 [arg=no]
          linklib="$l"
#
        done
# Emit the first part of a libtool wrapper script on stdout.
        if test -z "$linklib"; then
# For more information, see the description associated with
          $echo "$modename: cannot find name of link library for \`$lib'" 1>&2
# func_emit_wrapper(), below.
          exit $EXIT_FAILURE
func_emit_wrapper_part1 ()
 
{
 
        func_emit_wrapper_part1_arg1=no
 
        if test -n "$1" ; then
 
          func_emit_wrapper_part1_arg1=$1
        fi
        fi
 
 
        # This library was specified with -dlopen.
        $ECHO "\
        if test "$pass" = dlopen; then
#! $SHELL
          if test -z "$libdir"; then
 
            $echo "$modename: cannot -dlopen a convenience library: \`$lib'" 1>&2
# $output - temporary wrapper script for $objdir/$outputname
            exit $EXIT_FAILURE
# Generated by $PROGRAM (GNU $PACKAGE$TIMESTAMP) $VERSION
 
#
 
# The $output program cannot be directly executed until all the libtool
 
# libraries that it depends on are installed.
 
#
 
# This wrapper script should never be moved out of the build directory.
 
# If it is, it will not operate correctly.
 
 
 
# Sed substitution that helps us do robust quoting.  It backslashifies
 
# metacharacters that are still active within double-quoted strings.
 
Xsed='${SED} -e 1s/^X//'
 
sed_quote_subst='$sed_quote_subst'
 
 
 
# Be Bourne compatible
 
if test -n \"\${ZSH_VERSION+set}\" && (emulate sh) >/dev/null 2>&1; then
 
  emulate sh
 
  NULLCMD=:
 
  # Zsh 3.x and 4.x performs word splitting on \${1+\"\$@\"}, which
 
  # is contrary to our usage.  Disable this feature.
 
  alias -g '\${1+\"\$@\"}'='\"\$@\"'
 
  setopt NO_GLOB_SUBST
 
else
 
  case \`(set -o) 2>/dev/null\` in *posix*) set -o posix;; esac
          fi
          fi
          if test -z "$dlname" ||
BIN_SH=xpg4; export BIN_SH # for Tru64
             test "$dlopen_support" != yes ||
DUALCASE=1; export DUALCASE # for MKS sh
             test "$build_libtool_libs" = no; then
 
            # If there is no dlname, no dlopen support or we're linking
# The HP-UX ksh and POSIX shell print the target directory to stdout
            # statically, we need to preload.  We also need to preload any
# if CDPATH is set.
            # dependent libraries so libltdl's deplib preloader doesn't
(unset CDPATH) >/dev/null 2>&1 && unset CDPATH
            # bomb out in the load deplibs phase.
 
            dlprefiles="$dlprefiles $lib $dependency_libs"
relink_command=\"$relink_command\"
 
 
 
# This environment variable determines our operation mode.
 
if test \"\$libtool_install_magic\" = \"$magic\"; then
 
  # install mode needs the following variables:
 
  generated_by_libtool_version='$macro_version'
 
  notinst_deplibs='$notinst_deplibs'
          else
          else
            newdlfiles="$newdlfiles $lib"
  # When we are sourced in execute mode, \$file and \$ECHO are already set.
 
  if test \"\$libtool_execute_magic\" != \"$magic\"; then
 
    ECHO=\"$qecho\"
 
    file=\"\$0\"
 
    # Make sure echo works.
 
    if test \"X\$1\" = X--no-reexec; then
 
      # Discard the --no-reexec flag, and continue.
 
      shift
 
    elif test \"X\`{ \$ECHO '\t'; } 2>/dev/null\`\" = 'X\t'; then
 
      # Yippee, \$ECHO works!
 
      :
 
    else
 
      # Restart under the correct shell, and then maybe \$ECHO will work.
 
      exec $SHELL \"\$0\" --no-reexec \${1+\"\$@\"}
          fi
          fi
          continue
  fi\
        fi # $pass = dlopen
"
 
        $ECHO "\
 
 
        # We need an absolute path.
  # Find the directory that this script lives in.
        case $ladir in
  thisdir=\`\$ECHO \"X\$file\" | \$Xsed -e 's%/[^/]*$%%'\`
        [\\/]* | [A-Za-z]:[\\/]*) abs_ladir="$ladir" ;;
  test \"x\$thisdir\" = \"x\$file\" && thisdir=.
        *)
 
          abs_ladir=`cd "$ladir" && pwd`
  # Follow symbolic links until we get to the real thisdir.
          if test -z "$abs_ladir"; then
  file=\`ls -ld \"\$file\" | ${SED} -n 's/.*-> //p'\`
            $echo "$modename: warning: cannot determine absolute directory name of \`$ladir'" 1>&2
  while test -n \"\$file\"; do
            $echo "$modename: passing it literally to the linker, although it might fail" 1>&2
    destdir=\`\$ECHO \"X\$file\" | \$Xsed -e 's%/[^/]*\$%%'\`
            abs_ladir="$ladir"
 
 
    # If there was a directory component, then change thisdir.
 
    if test \"x\$destdir\" != \"x\$file\"; then
 
      case \"\$destdir\" in
 
      [\\\\/]* | [A-Za-z]:[\\\\/]*) thisdir=\"\$destdir\" ;;
 
      *) thisdir=\"\$thisdir/\$destdir\" ;;
 
      esac
          fi
          fi
          ;;
 
 
    file=\`\$ECHO \"X\$file\" | \$Xsed -e 's%^.*/%%'\`
 
    file=\`ls -ld \"\$thisdir/\$file\" | ${SED} -n 's/.*-> //p'\`
 
  done
 
"
 
}
 
# end: func_emit_wrapper_part1
 
 
 
# func_emit_wrapper_part2 [arg=no]
 
#
 
# Emit the second part of a libtool wrapper script on stdout.
 
# For more information, see the description associated with
 
# func_emit_wrapper(), below.
 
func_emit_wrapper_part2 ()
 
{
 
        func_emit_wrapper_part2_arg1=no
 
        if test -n "$1" ; then
 
          func_emit_wrapper_part2_arg1=$1
 
        fi
 
 
 
        $ECHO "\
 
 
 
  # Usually 'no', except on cygwin/mingw when embedded into
 
  # the cwrapper.
 
  WRAPPER_SCRIPT_BELONGS_IN_OBJDIR=$func_emit_wrapper_part2_arg1
 
  if test \"\$WRAPPER_SCRIPT_BELONGS_IN_OBJDIR\" = \"yes\"; then
 
    # special case for '.'
 
    if test \"\$thisdir\" = \".\"; then
 
      thisdir=\`pwd\`
 
    fi
 
    # remove .libs from thisdir
 
    case \"\$thisdir\" in
 
    *[\\\\/]$objdir ) thisdir=\`\$ECHO \"X\$thisdir\" | \$Xsed -e 's%[\\\\/][^\\\\/]*$%%'\` ;;
 
    $objdir )   thisdir=. ;;
        esac
        esac
        laname=`$echo "X$lib" | $Xsed -e 's%^.*/%%'`
  fi
 
 
        # Find the relevant object directory and library name.
  # Try to get the absolute directory name.
        if test "X$installed" = Xyes; then
  absdir=\`cd \"\$thisdir\" && pwd\`
          if test ! -f "$libdir/$linklib" && test -f "$abs_ladir/$linklib"; then
  test -n \"\$absdir\" && thisdir=\"\$absdir\"
            $echo "$modename: warning: library \`$lib' was moved." 1>&2
"
            dir="$ladir"
 
            absdir="$abs_ladir"
        if test "$fast_install" = yes; then
            libdir="$abs_ladir"
          $ECHO "\
 
  program=lt-'$outputname'$exeext
 
  progdir=\"\$thisdir/$objdir\"
 
 
 
  if test ! -f \"\$progdir/\$program\" ||
 
     { file=\`ls -1dt \"\$progdir/\$program\" \"\$progdir/../\$program\" 2>/dev/null | ${SED} 1q\`; \\
 
       test \"X\$file\" != \"X\$progdir/\$program\"; }; then
 
 
 
    file=\"\$\$-\$program\"
 
 
 
    if test ! -d \"\$progdir\"; then
 
      $MKDIR \"\$progdir\"
          else
          else
            dir="$libdir"
      $RM \"\$progdir/\$file\"
            absdir="$libdir"
    fi"
          fi
 
          test "X$hardcode_automatic" = Xyes && avoidtemprpath=yes
          $ECHO "\
 
 
 
    # relink executable if necessary
 
    if test -n \"\$relink_command\"; then
 
      if relink_command_output=\`eval \$relink_command 2>&1\`; then :
        else
        else
          if test ! -f "$ladir/$objdir/$linklib" && test -f "$abs_ladir/$linklib"; then
        $ECHO \"\$relink_command_output\" >&2
            dir="$ladir"
        $RM \"\$progdir/\$file\"
            absdir="$abs_ladir"
        exit 1
            # Remove this search path later
      fi
            notinst_path="$notinst_path $abs_ladir"
    fi
 
 
 
    $MV \"\$progdir/\$file\" \"\$progdir/\$program\" 2>/dev/null ||
 
    { $RM \"\$progdir/\$program\";
 
      $MV \"\$progdir/\$file\" \"\$progdir/\$program\"; }
 
    $RM \"\$progdir/\$file\"
 
  fi"
          else
          else
            dir="$ladir/$objdir"
          $ECHO "\
            absdir="$abs_ladir/$objdir"
  program='$outputname'
            # Remove this search path later
  progdir=\"\$thisdir/$objdir\"
            notinst_path="$notinst_path $abs_ladir"
"
          fi
          fi
        fi # $installed = yes
 
        name=`$echo "X$laname" | $Xsed -e 's/\.la$//' -e 's/^lib//'`
 
 
 
        # This library was specified with -dlpreopen.
        $ECHO "\
        if test "$pass" = dlpreopen; then
 
          if test -z "$libdir"; then
  if test -f \"\$progdir/\$program\"; then"
            $echo "$modename: cannot -dlpreopen a convenience library: \`$lib'" 1>&2
 
            exit $EXIT_FAILURE
        # Export our shlibpath_var if we have one.
 
        if test "$shlibpath_overrides_runpath" = yes && test -n "$shlibpath_var" && test -n "$temp_rpath"; then
 
          $ECHO "\
 
    # Add our own library path to $shlibpath_var
 
    $shlibpath_var=\"$temp_rpath\$$shlibpath_var\"
 
 
 
    # Some systems cannot cope with colon-terminated $shlibpath_var
 
    # The second colon is a workaround for a bug in BeOS R4 sed
 
    $shlibpath_var=\`\$ECHO \"X\$$shlibpath_var\" | \$Xsed -e 's/::*\$//'\`
 
 
 
    export $shlibpath_var
 
"
          fi
          fi
          # Prefer using a static library (so that no silly _DYNAMIC symbols
 
          # are required to link).
        # fixup the dll searchpath if we need to.
          if test -n "$old_library"; then
        if test -n "$dllsearchpath"; then
            newdlprefiles="$newdlprefiles $dir/$old_library"
          $ECHO "\
          # Otherwise, use the dlname, so that lt_dlopen finds it.
    # Add the dll search path components to the executable PATH
          elif test -n "$dlname"; then
    PATH=$dllsearchpath:\$PATH
            newdlprefiles="$newdlprefiles $dir/$dlname"
"
          else
 
            newdlprefiles="$newdlprefiles $dir/$linklib"
 
          fi
          fi
        fi # $pass = dlpreopen
 
 
 
        if test -z "$libdir"; then
        $ECHO "\
          # Link the convenience library
    if test \"\$libtool_execute_magic\" != \"$magic\"; then
          if test "$linkmode" = lib; then
      # Run the actual program with our arguments.
            deplibs="$dir/$old_library $deplibs"
"
          elif test "$linkmode,$pass" = "prog,link"; then
        case $host in
            compile_deplibs="$dir/$old_library $compile_deplibs"
        # Backslashes separate directories on plain windows
            finalize_deplibs="$dir/$old_library $finalize_deplibs"
        *-*-mingw | *-*-os2* | *-cegcc*)
 
          $ECHO "\
 
      exec \"\$progdir\\\\\$program\" \${1+\"\$@\"}
 
"
 
          ;;
 
 
 
        *)
 
          $ECHO "\
 
      exec \"\$progdir/\$program\" \${1+\"\$@\"}
 
"
 
          ;;
 
        esac
 
        $ECHO "\
 
      \$ECHO \"\$0: cannot exec \$program \$*\" 1>&2
 
      exit 1
 
    fi
          else
          else
            deplibs="$lib $deplibs" # used for prog,scan pass
    # The program doesn't exist.
 
    \$ECHO \"\$0: error: \\\`\$progdir/\$program' does not exist\" 1>&2
 
    \$ECHO \"This script is just a wrapper for \$program.\" 1>&2
 
    $ECHO \"See the $PACKAGE documentation for more information.\" 1>&2
 
    exit 1
          fi
          fi
          continue
fi\
 
"
 
}
 
# end: func_emit_wrapper_part2
 
 
 
 
 
# func_emit_wrapper [arg=no]
 
#
 
# Emit a libtool wrapper script on stdout.
 
# Don't directly open a file because we may want to
 
# incorporate the script contents within a cygwin/mingw
 
# wrapper executable.  Must ONLY be called from within
 
# func_mode_link because it depends on a number of variables
 
# set therein.
 
#
 
# ARG is the value that the WRAPPER_SCRIPT_BELONGS_IN_OBJDIR
 
# variable will take.  If 'yes', then the emitted script
 
# will assume that the directory in which it is stored is
 
# the $objdir directory.  This is a cygwin/mingw-specific
 
# behavior.
 
func_emit_wrapper ()
 
{
 
        func_emit_wrapper_arg1=no
 
        if test -n "$1" ; then
 
          func_emit_wrapper_arg1=$1
        fi
        fi
 
 
 
        # split this up so that func_emit_cwrapperexe_src
 
        # can call each part independently.
 
        func_emit_wrapper_part1 "${func_emit_wrapper_arg1}"
 
        func_emit_wrapper_part2 "${func_emit_wrapper_arg1}"
 
}
 
 
        if test "$linkmode" = prog && test "$pass" != link; then
 
          newlib_search_path="$newlib_search_path $ladir"
 
          deplibs="$lib $deplibs"
 
 
 
          linkalldeplibs=no
# func_to_host_path arg
          if test "$link_all_deplibs" != no || test -z "$library_names" ||
#
             test "$build_libtool_libs" = no; then
# Convert paths to host format when used with build tools.
            linkalldeplibs=yes
# Intended for use with "native" mingw (where libtool itself
 
# is running under the msys shell), or in the following cross-
 
# build environments:
 
#    $build          $host
 
#    mingw (msys)    mingw  [e.g. native]
 
#    cygwin          mingw
 
#    *nix + wine     mingw
 
# where wine is equipped with the `winepath' executable.
 
# In the native mingw case, the (msys) shell automatically
 
# converts paths for any non-msys applications it launches,
 
# but that facility isn't available from inside the cwrapper.
 
# Similar accommodations are necessary for $host mingw and
 
# $build cygwin.  Calling this function does no harm for other
 
# $host/$build combinations not listed above.
 
#
 
# ARG is the path (on $build) that should be converted to
 
# the proper representation for $host. The result is stored
 
# in $func_to_host_path_result.
 
func_to_host_path ()
 
{
 
  func_to_host_path_result="$1"
 
  if test -n "$1" ; then
 
    case $host in
 
      *mingw* )
 
        lt_sed_naive_backslashify='s|\\\\*|\\|g;s|/|\\|g;s|\\|\\\\|g'
 
        case $build in
 
          *mingw* ) # actually, msys
 
            # awkward: cmd appends spaces to result
 
            lt_sed_strip_trailing_spaces="s/[ ]*\$//"
 
            func_to_host_path_tmp1=`( cmd //c echo "$1" |\
 
              $SED -e "$lt_sed_strip_trailing_spaces" ) 2>/dev/null || echo ""`
 
            func_to_host_path_result=`echo "$func_to_host_path_tmp1" |\
 
              $SED -e "$lt_sed_naive_backslashify"`
 
            ;;
 
          *cygwin* )
 
            func_to_host_path_tmp1=`cygpath -w "$1"`
 
            func_to_host_path_result=`echo "$func_to_host_path_tmp1" |\
 
              $SED -e "$lt_sed_naive_backslashify"`
 
            ;;
 
          * )
 
            # Unfortunately, winepath does not exit with a non-zero
 
            # error code, so we are forced to check the contents of
 
            # stdout. On the other hand, if the command is not
 
            # found, the shell will set an exit code of 127 and print
 
            # *an error message* to stdout. So we must check for both
 
            # error code of zero AND non-empty stdout, which explains
 
            # the odd construction:
 
            func_to_host_path_tmp1=`winepath -w "$1" 2>/dev/null`
 
            if test "$?" -eq 0 && test -n "${func_to_host_path_tmp1}"; then
 
              func_to_host_path_result=`echo "$func_to_host_path_tmp1" |\
 
                $SED -e "$lt_sed_naive_backslashify"`
 
            else
 
              # Allow warning below.
 
              func_to_host_path_result=""
          fi
          fi
 
            ;;
          tmp_libs=
 
          for deplib in $dependency_libs; do
 
            case $deplib in
 
            -L*) newlib_search_path="$newlib_search_path "`$echo "X$deplib" | $Xsed -e 's/^-L//'`;; ### testsuite: skip nested quoting test
 
            esac
            esac
            # Need to link against all dependency_libs?
        if test -z "$func_to_host_path_result" ; then
            if test "$linkalldeplibs" = yes; then
          func_error "Could not determine host path corresponding to"
              deplibs="$deplib $deplibs"
          func_error "  '$1'"
            else
          func_error "Continuing, but uninstalled executables may not work."
              # Need to hardcode shared library paths
          # Fallback:
              # or/and link against static libraries
          func_to_host_path_result="$1"
              newdependency_libs="$deplib $newdependency_libs"
 
            fi
            fi
            if test "X$duplicate_deps" = "Xyes" ; then
        ;;
              case "$tmp_libs " in
 
              *" $deplib "*) specialdeplibs="$specialdeplibs $deplib" ;;
 
              esac
              esac
            fi
            fi
            tmp_libs="$tmp_libs $deplib"
}
          done # for deplib
# end: func_to_host_path
          continue
 
        fi # $linkmode = prog...
 
 
 
        if test "$linkmode,$pass" = "prog,link"; then
# func_to_host_pathlist arg
          if test -n "$library_names" &&
#
             { { test "$prefer_static_libs" = no ||
# Convert pathlists to host format when used with build tools.
                 test "$prefer_static_libs,$installed" = "built,yes"; } ||
# See func_to_host_path(), above. This function supports the
               test -z "$old_library"; }; then
# following $build/$host combinations (but does no harm for
            # We need to hardcode the library path
# combinations not listed here):
            if test -n "$shlibpath_var" && test -z "$avoidtemprpath" ; then
#    $build          $host
              # Make sure the rpath contains only unique directories.
#    mingw (msys)    mingw  [e.g. native]
              case "$temp_rpath " in
#    cygwin          mingw
              *" $dir "*) ;;
#    *nix + wine     mingw
              *" $absdir "*) ;;
#
              *) temp_rpath="$temp_rpath $absdir" ;;
# Path separators are also converted from $build format to
              esac
# $host format. If ARG begins or ends with a path separator
            fi
# character, it is preserved (but converted to $host format)
 
# on output.
            # Hardcode the library path.
#
            # Skip directories that are in the system default run-time
# ARG is a pathlist (on $build) that should be converted to
            # search path.
# the proper representation on $host. The result is stored
            case " $sys_lib_dlsearch_path " in
# in $func_to_host_pathlist_result.
            *" $absdir "*) ;;
func_to_host_pathlist ()
            *)
{
              case "$compile_rpath " in
  func_to_host_pathlist_result="$1"
              *" $absdir "*) ;;
  if test -n "$1" ; then
              *) compile_rpath="$compile_rpath $absdir"
    case $host in
              esac
      *mingw* )
 
        lt_sed_naive_backslashify='s|\\\\*|\\|g;s|/|\\|g;s|\\|\\\\|g'
 
        # Remove leading and trailing path separator characters from
 
        # ARG. msys behavior is inconsistent here, cygpath turns them
 
        # into '.;' and ';.', and winepath ignores them completely.
 
        func_to_host_pathlist_tmp2="$1"
 
        # Once set for this call, this variable should not be
 
        # reassigned. It is used in tha fallback case.
 
        func_to_host_pathlist_tmp1=`echo "$func_to_host_pathlist_tmp2" |\
 
          $SED -e 's|^:*||' -e 's|:*$||'`
 
        case $build in
 
          *mingw* ) # Actually, msys.
 
            # Awkward: cmd appends spaces to result.
 
            lt_sed_strip_trailing_spaces="s/[ ]*\$//"
 
            func_to_host_pathlist_tmp2=`( cmd //c echo "$func_to_host_pathlist_tmp1" |\
 
              $SED -e "$lt_sed_strip_trailing_spaces" ) 2>/dev/null || echo ""`
 
            func_to_host_pathlist_result=`echo "$func_to_host_pathlist_tmp2" |\
 
              $SED -e "$lt_sed_naive_backslashify"`
              ;;
              ;;
            esac
          *cygwin* )
            case " $sys_lib_dlsearch_path " in
            func_to_host_pathlist_tmp2=`cygpath -w -p "$func_to_host_pathlist_tmp1"`
            *" $libdir "*) ;;
            func_to_host_pathlist_result=`echo "$func_to_host_pathlist_tmp2" |\
            *)
              $SED -e "$lt_sed_naive_backslashify"`
              case "$finalize_rpath " in
 
              *" $libdir "*) ;;
 
              *) finalize_rpath="$finalize_rpath $libdir"
 
              esac
 
              ;;
              ;;
            esac
          * )
          fi # $linkmode,$pass = prog,link...
            # unfortunately, winepath doesn't convert pathlists
 
            func_to_host_pathlist_result=""
          if test "$alldeplibs" = yes &&
            func_to_host_pathlist_oldIFS=$IFS
             { test "$deplibs_check_method" = pass_all ||
            IFS=:
               { test "$build_libtool_libs" = yes &&
            for func_to_host_pathlist_f in $func_to_host_pathlist_tmp1 ; do
                 test -n "$library_names"; }; }; then
              IFS=$func_to_host_pathlist_oldIFS
            # We only need to search for static libraries
              if test -n "$func_to_host_pathlist_f" ; then
            continue
                func_to_host_path "$func_to_host_pathlist_f"
          fi
                if test -n "$func_to_host_path_result" ; then
        fi
                  if test -z "$func_to_host_pathlist_result" ; then
 
                    func_to_host_pathlist_result="$func_to_host_path_result"
        link_static=no # Whether the deplib will be linked statically
 
        use_static_libs=$prefer_static_libs
 
        if test "$use_static_libs" = built && test "$installed" = yes ; then
 
          use_static_libs=no
 
        fi
 
        if test -n "$library_names" &&
 
           { test "$use_static_libs" = no || test -z "$old_library"; }; then
 
          if test "$installed" = no; then
 
            notinst_deplibs="$notinst_deplibs $lib"
 
            need_relink=yes
 
          fi
 
          # This is a shared library
 
 
 
          # Warn about portability, can't link against -module's on
 
          # some systems (darwin)
 
          if test "$shouldnotlink" = yes && test "$pass" = link ; then
 
            $echo
 
            if test "$linkmode" = prog; then
 
              $echo "*** Warning: Linking the executable $output against the loadable module"
 
            else
            else
              $echo "*** Warning: Linking the shared library $output against the loadable module"
                    func_to_host_pathlist_result="$func_to_host_pathlist_result;$func_to_host_path_result"
            fi
            fi
            $echo "*** $linklib is not portable!"
 
          fi
          fi
          if test "$linkmode" = lib &&
              fi
             test "$hardcode_into_libs" = yes; then
              IFS=:
            # Hardcode the library path.
            done
            # Skip directories that are in the system default run-time
            IFS=$func_to_host_pathlist_oldIFS
            # search path.
 
            case " $sys_lib_dlsearch_path " in
 
            *" $absdir "*) ;;
 
            *)
 
              case "$compile_rpath " in
 
              *" $absdir "*) ;;
 
              *) compile_rpath="$compile_rpath $absdir"
 
              esac
 
              ;;
              ;;
            esac
            esac
            case " $sys_lib_dlsearch_path " in
        if test -z "$func_to_host_pathlist_result" ; then
            *" $libdir "*) ;;
          func_error "Could not determine the host path(s) corresponding to"
            *)
          func_error "  '$1'"
              case "$finalize_rpath " in
          func_error "Continuing, but uninstalled executables may not work."
              *" $libdir "*) ;;
          # Fallback. This may break if $1 contains DOS-style drive
              *) finalize_rpath="$finalize_rpath $libdir"
          # specifications. The fix is not to complicate the expression
 
          # below, but for the user to provide a working wine installation
 
          # with winepath so that path translation in the cross-to-mingw
 
          # case works properly.
 
          lt_replace_pathsep_nix_to_dos="s|:|;|g"
 
          func_to_host_pathlist_result=`echo "$func_to_host_pathlist_tmp1" |\
 
            $SED -e "$lt_replace_pathsep_nix_to_dos"`
 
        fi
 
        # Now, add the leading and trailing path separators back
 
        case "$1" in
 
          :* ) func_to_host_pathlist_result=";$func_to_host_pathlist_result"
 
            ;;
              esac
              esac
 
        case "$1" in
 
          *: ) func_to_host_pathlist_result="$func_to_host_pathlist_result;"
              ;;
              ;;
            esac
            esac
          fi
 
 
 
          if test -n "$old_archive_from_expsyms_cmds"; then
 
            # figure out the soname
 
            set dummy $library_names
 
            realname="$2"
 
            shift; shift
 
            libname=`eval \\$echo \"$libname_spec\"`
 
            # use dlname if we got it. it's perfectly good, no?
 
            if test -n "$dlname"; then
 
              soname="$dlname"
 
            elif test -n "$soname_spec"; then
 
              # bleh windows
 
              case $host in
 
              *cygwin* | mingw*)
 
                major=`expr $current - $age`
 
                versuffix="-$major"
 
                ;;
                ;;
              esac
              esac
              eval soname=\"$soname_spec\"
 
            else
 
              soname="$realname"
 
            fi
            fi
 
}
 
# end: func_to_host_pathlist
 
 
            # Make a new name for the extract_expsyms_cmds to use
# func_emit_cwrapperexe_src
            soroot="$soname"
# emit the source code for a wrapper executable on stdout
            soname=`$echo $soroot | ${SED} -e 's/^.*\///'`
# Must ONLY be called from within func_mode_link because
            newlib="libimp-`$echo $soname | ${SED} 's/^lib//;s/\.dll$//'`.a"
# it depends on a number of variable set therein.
 
func_emit_cwrapperexe_src ()
 
{
 
        cat <<EOF
 
 
            # If the library has no export list, then create one now
/* $cwrappersource - temporary wrapper executable for $objdir/$outputname
            if test -f "$output_objdir/$soname-def"; then :
   Generated by $PROGRAM (GNU $PACKAGE$TIMESTAMP) $VERSION
 
 
 
   The $output program cannot be directly executed until all the libtool
 
   libraries that it depends on are installed.
 
 
 
   This wrapper executable should never be moved out of the build directory.
 
   If it is, it will not operate correctly.
 
 
 
   Currently, it simply execs the wrapper *script* "$SHELL $output",
 
   but could eventually absorb all of the scripts functionality and
 
   exec $objdir/$outputname directly.
 
*/
 
EOF
 
            cat <<"EOF"
 
#include <stdio.h>
 
#include <stdlib.h>
 
#ifdef _MSC_VER
 
# include <direct.h>
 
# include <process.h>
 
# include <io.h>
 
# define setmode _setmode
 
#else
 
# include <unistd.h>
 
# include <stdint.h>
 
# ifdef __CYGWIN__
 
#  include <io.h>
 
#  define HAVE_SETENV
 
#  ifdef __STRICT_ANSI__
 
char *realpath (const char *, char *);
 
int putenv (char *);
 
int setenv (const char *, const char *, int);
 
#  endif
 
# endif
 
#endif
 
#include <malloc.h>
 
#include <stdarg.h>
 
#include <assert.h>
 
#include <string.h>
 
#include <ctype.h>
 
#include <errno.h>
 
#include <fcntl.h>
 
#include <sys/stat.h>
 
 
 
#if defined(PATH_MAX)
 
# define LT_PATHMAX PATH_MAX
 
#elif defined(MAXPATHLEN)
 
# define LT_PATHMAX MAXPATHLEN
 
#else
 
# define LT_PATHMAX 1024
 
#endif
 
 
 
#ifndef S_IXOTH
 
# define S_IXOTH 0
 
#endif
 
#ifndef S_IXGRP
 
# define S_IXGRP 0
 
#endif
 
 
 
#ifdef _MSC_VER
 
# define S_IXUSR _S_IEXEC
 
# define stat _stat
 
# ifndef _INTPTR_T_DEFINED
 
#  define intptr_t int
 
# endif
 
#endif
 
 
 
#ifndef DIR_SEPARATOR
 
# define DIR_SEPARATOR '/'
 
# define PATH_SEPARATOR ':'
 
#endif
 
 
 
#if defined (_WIN32) || defined (__MSDOS__) || defined (__DJGPP__) || \
 
  defined (__OS2__)
 
# define HAVE_DOS_BASED_FILE_SYSTEM
 
# define FOPEN_WB "wb"
 
# ifndef DIR_SEPARATOR_2
 
#  define DIR_SEPARATOR_2 '\\'
 
# endif
 
# ifndef PATH_SEPARATOR_2
 
#  define PATH_SEPARATOR_2 ';'
 
# endif
 
#endif
 
 
 
#ifndef DIR_SEPARATOR_2
 
# define IS_DIR_SEPARATOR(ch) ((ch) == DIR_SEPARATOR)
 
#else /* DIR_SEPARATOR_2 */
 
# define IS_DIR_SEPARATOR(ch) \
 
        (((ch) == DIR_SEPARATOR) || ((ch) == DIR_SEPARATOR_2))
 
#endif /* DIR_SEPARATOR_2 */
 
 
 
#ifndef PATH_SEPARATOR_2
 
# define IS_PATH_SEPARATOR(ch) ((ch) == PATH_SEPARATOR)
 
#else /* PATH_SEPARATOR_2 */
 
# define IS_PATH_SEPARATOR(ch) ((ch) == PATH_SEPARATOR_2)
 
#endif /* PATH_SEPARATOR_2 */
 
 
 
#ifdef __CYGWIN__
 
# define FOPEN_WB "wb"
 
#endif
 
 
 
#ifndef FOPEN_WB
 
# define FOPEN_WB "w"
 
#endif
 
#ifndef _O_BINARY
 
# define _O_BINARY 0
 
#endif
 
 
 
#define XMALLOC(type, num)      ((type *) xmalloc ((num) * sizeof(type)))
 
#define XFREE(stale) do { \
 
  if (stale) { free ((void *) stale); stale = 0; } \
 
} while (0)
 
 
 
#undef LTWRAPPER_DEBUGPRINTF
 
#if defined DEBUGWRAPPER
 
# define LTWRAPPER_DEBUGPRINTF(args) ltwrapper_debugprintf args
 
static void
 
ltwrapper_debugprintf (const char *fmt, ...)
 
{
 
    va_list args;
 
    va_start (args, fmt);
 
    (void) vfprintf (stderr, fmt, args);
 
    va_end (args);
 
}
 
#else
 
# define LTWRAPPER_DEBUGPRINTF(args)
 
#endif
 
 
 
const char *program_name = NULL;
 
 
 
void *xmalloc (size_t num);
 
char *xstrdup (const char *string);
 
const char *base_name (const char *name);
 
char *find_executable (const char *wrapper);
 
char *chase_symlinks (const char *pathspec);
 
int make_executable (const char *path);
 
int check_executable (const char *path);
 
char *strendzap (char *str, const char *pat);
 
void lt_fatal (const char *message, ...);
 
void lt_setenv (const char *name, const char *value);
 
char *lt_extend_str (const char *orig_value, const char *add, int to_end);
 
void lt_opt_process_env_set (const char *arg);
 
void lt_opt_process_env_prepend (const char *arg);
 
void lt_opt_process_env_append (const char *arg);
 
int lt_split_name_value (const char *arg, char** name, char** value);
 
void lt_update_exe_path (const char *name, const char *value);
 
void lt_update_lib_path (const char *name, const char *value);
 
 
 
static const char *script_text_part1 =
 
EOF
 
 
 
            func_emit_wrapper_part1 yes |
 
                $SED -e 's/\([\\"]\)/\\\1/g' \
 
                     -e 's/^/  "/' -e 's/$/\\n"/'
 
            echo ";"
 
            cat <<EOF
 
 
 
static const char *script_text_part2 =
 
EOF
 
            func_emit_wrapper_part2 yes |
 
                $SED -e 's/\([\\"]\)/\\\1/g' \
 
                     -e 's/^/  "/' -e 's/$/\\n"/'
 
            echo ";"
 
 
 
            cat <<EOF
 
const char * MAGIC_EXE = "$magic_exe";
 
const char * LIB_PATH_VARNAME = "$shlibpath_var";
 
EOF
 
 
 
            if test "$shlibpath_overrides_runpath" = yes && test -n "$shlibpath_var" && test -n "$temp_rpath"; then
 
              func_to_host_pathlist "$temp_rpath"
 
              cat <<EOF
 
const char * LIB_PATH_VALUE   = "$func_to_host_pathlist_result";
 
EOF
            else
            else
              $show "extracting exported symbol list from \`$soname'"
              cat <<"EOF"
              save_ifs="$IFS"; IFS='~'
const char * LIB_PATH_VALUE   = "";
              cmds=$extract_expsyms_cmds
EOF
              for cmd in $cmds; do
 
                IFS="$save_ifs"
 
                eval cmd=\"$cmd\"
 
                $show "$cmd"
 
                $run eval "$cmd" || exit $?
 
              done
 
              IFS="$save_ifs"
 
            fi
            fi
 
 
            # Create $newlib
            if test -n "$dllsearchpath"; then
            if test -f "$output_objdir/$newlib"; then :; else
              func_to_host_pathlist "$dllsearchpath:"
              $show "generating import library for \`$soname'"
              cat <<EOF
              save_ifs="$IFS"; IFS='~'
const char * EXE_PATH_VARNAME = "PATH";
              cmds=$old_archive_from_expsyms_cmds
const char * EXE_PATH_VALUE   = "$func_to_host_pathlist_result";
              for cmd in $cmds; do
EOF
                IFS="$save_ifs"
            else
                eval cmd=\"$cmd\"
              cat <<"EOF"
                $show "$cmd"
const char * EXE_PATH_VARNAME = "";
                $run eval "$cmd" || exit $?
const char * EXE_PATH_VALUE   = "";
              done
EOF
              IFS="$save_ifs"
 
            fi
            fi
            # make sure the library variables are pointing to the new library
 
            dir=$output_objdir
 
            linklib=$newlib
 
          fi # test -n "$old_archive_from_expsyms_cmds"
 
 
 
          if test "$linkmode" = prog || test "$mode" != relink; then
            if test "$fast_install" = yes; then
            add_shlibpath=
              cat <<EOF
            add_dir=
const char * TARGET_PROGRAM_NAME = "lt-$outputname"; /* hopefully, no .exe */
            add=
EOF
            lib_linked=yes
 
            case $hardcode_action in
 
            immediate | unsupported)
 
              if test "$hardcode_direct" = no; then
 
                add="$dir/$linklib"
 
                case $host in
 
                  *-*-sco3.2v5.0.[024]*) add_dir="-L$dir" ;;
 
                  *-*-sysv4*uw2*) add_dir="-L$dir" ;;
 
                  *-*-sysv5OpenUNIX* | *-*-sysv5UnixWare7.[01].[10]* | \
 
                    *-*-unixware7*) add_dir="-L$dir" ;;
 
                  *-*-darwin* )
 
                    # if the lib is a module then we can not link against
 
                    # it, someone is ignoring the new warnings I added
 
                    if /usr/bin/file -L $add 2> /dev/null |
 
                      $EGREP ": [^:]* bundle" >/dev/null ; then
 
                      $echo "** Warning, lib $linklib is a module, not a shared library"
 
                      if test -z "$old_library" ; then
 
                        $echo
 
                        $echo "** And there doesn't seem to be a static archive available"
 
                        $echo "** The link will probably fail, sorry"
 
                      else
                      else
                        add="$dir/$old_library"
              cat <<EOF
                      fi
const char * TARGET_PROGRAM_NAME = "$outputname"; /* hopefully, no .exe */
                    fi
EOF
                esac
 
              elif test "$hardcode_minus_L" = no; then
 
                case $host in
 
                *-*-sunos*) add_shlibpath="$dir" ;;
 
                esac
 
                add_dir="-L$dir"
 
                add="-l$name"
 
              elif test "$hardcode_shlibpath_var" = no; then
 
                add_shlibpath="$dir"
 
                add="-l$name"
 
              else
 
                lib_linked=no
 
              fi
 
              ;;
 
            relink)
 
              if test "$hardcode_direct" = yes; then
 
                add="$dir/$linklib"
 
              elif test "$hardcode_minus_L" = yes; then
 
                add_dir="-L$dir"
 
                # Try looking first in the location we're being installed to.
 
                if test -n "$inst_prefix_dir"; then
 
                  case $libdir in
 
                    [\\/]*)
 
                      add_dir="$add_dir -L$inst_prefix_dir$libdir"
 
                      ;;
 
                  esac
 
                fi
 
                add="-l$name"
 
              elif test "$hardcode_shlibpath_var" = yes; then
 
                add_shlibpath="$dir"
 
                add="-l$name"
 
              else
 
                lib_linked=no
 
              fi
              fi
 
 
 
 
 
            cat <<"EOF"
 
 
 
#define LTWRAPPER_OPTION_PREFIX         "--lt-"
 
#define LTWRAPPER_OPTION_PREFIX_LENGTH  5
 
 
 
static const size_t opt_prefix_len         = LTWRAPPER_OPTION_PREFIX_LENGTH;
 
static const char *ltwrapper_option_prefix = LTWRAPPER_OPTION_PREFIX;
 
 
 
static const char *dumpscript_opt       = LTWRAPPER_OPTION_PREFIX "dump-script";
 
 
 
static const size_t env_set_opt_len     = LTWRAPPER_OPTION_PREFIX_LENGTH + 7;
 
static const char *env_set_opt          = LTWRAPPER_OPTION_PREFIX "env-set";
 
  /* argument is putenv-style "foo=bar", value of foo is set to bar */
 
 
 
static const size_t env_prepend_opt_len = LTWRAPPER_OPTION_PREFIX_LENGTH + 11;
 
static const char *env_prepend_opt      = LTWRAPPER_OPTION_PREFIX "env-prepend";
 
  /* argument is putenv-style "foo=bar", new value of foo is bar${foo} */
 
 
 
static const size_t env_append_opt_len  = LTWRAPPER_OPTION_PREFIX_LENGTH + 10;
 
static const char *env_append_opt       = LTWRAPPER_OPTION_PREFIX "env-append";
 
  /* argument is putenv-style "foo=bar", new value of foo is ${foo}bar */
 
 
 
int
 
main (int argc, char *argv[])
 
{
 
  char **newargz;
 
  int  newargc;
 
  char *tmp_pathspec;
 
  char *actual_cwrapper_path;
 
  char *actual_cwrapper_name;
 
  char *target_name;
 
  char *lt_argv_zero;
 
  intptr_t rval = 127;
 
 
 
  int i;
 
 
 
  program_name = (char *) xstrdup (base_name (argv[0]));
 
  LTWRAPPER_DEBUGPRINTF (("(main) argv[0]      : %s\n", argv[0]));
 
  LTWRAPPER_DEBUGPRINTF (("(main) program_name : %s\n", program_name));
 
 
 
  /* very simple arg parsing; don't want to rely on getopt */
 
  for (i = 1; i < argc; i++)
 
    {
 
      if (strcmp (argv[i], dumpscript_opt) == 0)
 
        {
 
EOF
 
            case "$host" in
 
              *mingw* | *cygwin* )
 
                # make stdout use "unix" line endings
 
                echo "          setmode(1,_O_BINARY);"
              ;;
              ;;
            *) lib_linked=no ;;
 
            esac
            esac
 
 
            if test "$lib_linked" != yes; then
            cat <<"EOF"
              $echo "$modename: configuration error: unsupported hardcode properties"
          printf ("%s", script_text_part1);
              exit $EXIT_FAILURE
          printf ("%s", script_text_part2);
            fi
          return 0;
 
        }
 
    }
 
 
            if test -n "$add_shlibpath"; then
  newargz = XMALLOC (char *, argc + 1);
              case :$compile_shlibpath: in
  tmp_pathspec = find_executable (argv[0]);
              *":$add_shlibpath:"*) ;;
  if (tmp_pathspec == NULL)
              *) compile_shlibpath="$compile_shlibpath$add_shlibpath:" ;;
    lt_fatal ("Couldn't find %s", argv[0]);
              esac
  LTWRAPPER_DEBUGPRINTF (("(main) found exe (before symlink chase) at : %s\n",
            fi
                          tmp_pathspec));
            if test "$linkmode" = prog; then
 
              test -n "$add_dir" && compile_deplibs="$add_dir $compile_deplibs"
 
              test -n "$add" && compile_deplibs="$add $compile_deplibs"
 
            else
 
              test -n "$add_dir" && deplibs="$add_dir $deplibs"
 
              test -n "$add" && deplibs="$add $deplibs"
 
              if test "$hardcode_direct" != yes && \
 
                 test "$hardcode_minus_L" != yes && \
 
                 test "$hardcode_shlibpath_var" = yes; then
 
                case :$finalize_shlibpath: in
 
                *":$libdir:"*) ;;
 
                *) finalize_shlibpath="$finalize_shlibpath$libdir:" ;;
 
                esac
 
              fi
 
            fi
 
          fi
 
 
 
          if test "$linkmode" = prog || test "$mode" = relink; then
  actual_cwrapper_path = chase_symlinks (tmp_pathspec);
            add_shlibpath=
  LTWRAPPER_DEBUGPRINTF (("(main) found exe (after symlink chase) at : %s\n",
            add_dir=
                          actual_cwrapper_path));
            add=
  XFREE (tmp_pathspec);
            # Finalize command for both is simple: just hardcode it.
 
            if test "$hardcode_direct" = yes; then
  actual_cwrapper_name = xstrdup( base_name (actual_cwrapper_path));
              add="$libdir/$linklib"
  strendzap (actual_cwrapper_path, actual_cwrapper_name);
            elif test "$hardcode_minus_L" = yes; then
 
              add_dir="-L$libdir"
  /* wrapper name transforms */
              add="-l$name"
  strendzap (actual_cwrapper_name, ".exe");
            elif test "$hardcode_shlibpath_var" = yes; then
  tmp_pathspec = lt_extend_str (actual_cwrapper_name, ".exe", 1);
              case :$finalize_shlibpath: in
  XFREE (actual_cwrapper_name);
              *":$libdir:"*) ;;
  actual_cwrapper_name = tmp_pathspec;
              *) finalize_shlibpath="$finalize_shlibpath$libdir:" ;;
  tmp_pathspec = 0;
              esac
 
              add="-l$name"
  /* target_name transforms -- use actual target program name; might have lt- prefix */
            elif test "$hardcode_automatic" = yes; then
  target_name = xstrdup (base_name (TARGET_PROGRAM_NAME));
              if test -n "$inst_prefix_dir" &&
  strendzap (target_name, ".exe");
                 test -f "$inst_prefix_dir$libdir/$linklib" ; then
  tmp_pathspec = lt_extend_str (target_name, ".exe", 1);
                add="$inst_prefix_dir$libdir/$linklib"
  XFREE (target_name);
              else
  target_name = tmp_pathspec;
                add="$libdir/$linklib"
  tmp_pathspec = 0;
              fi
 
            else
  LTWRAPPER_DEBUGPRINTF (("(main) libtool target name: %s\n",
              # We cannot seem to hardcode it, guess we'll fake it.
                          target_name));
              add_dir="-L$libdir"
EOF
              # Try looking first in the location we're being installed to.
 
              if test -n "$inst_prefix_dir"; then
            cat <<EOF
                case $libdir in
  newargz[0] =
                  [\\/]*)
    XMALLOC (char, (strlen (actual_cwrapper_path) +
                    add_dir="$add_dir -L$inst_prefix_dir$libdir"
                    strlen ("$objdir") + 1 + strlen (actual_cwrapper_name) + 1));
 
  strcpy (newargz[0], actual_cwrapper_path);
 
  strcat (newargz[0], "$objdir");
 
  strcat (newargz[0], "/");
 
EOF
 
 
 
            cat <<"EOF"
 
  /* stop here, and copy so we don't have to do this twice */
 
  tmp_pathspec = xstrdup (newargz[0]);
 
 
 
  /* do NOT want the lt- prefix here, so use actual_cwrapper_name */
 
  strcat (newargz[0], actual_cwrapper_name);
 
 
 
  /* DO want the lt- prefix here if it exists, so use target_name */
 
  lt_argv_zero = lt_extend_str (tmp_pathspec, target_name, 1);
 
  XFREE (tmp_pathspec);
 
  tmp_pathspec = NULL;
 
EOF
 
 
 
            case $host_os in
 
              mingw*)
 
            cat <<"EOF"
 
  {
 
    char* p;
 
    while ((p = strchr (newargz[0], '\\')) != NULL)
 
      {
 
        *p = '/';
 
      }
 
    while ((p = strchr (lt_argv_zero, '\\')) != NULL)
 
      {
 
        *p = '/';
 
      }
 
  }
 
EOF
                    ;;
                    ;;
                esac
                esac
              fi
 
              add="-l$name"
 
            fi
 
 
 
            if test "$linkmode" = prog; then
            cat <<"EOF"
              test -n "$add_dir" && finalize_deplibs="$add_dir $finalize_deplibs"
  XFREE (target_name);
              test -n "$add" && finalize_deplibs="$add $finalize_deplibs"
  XFREE (actual_cwrapper_path);
            else
  XFREE (actual_cwrapper_name);
              test -n "$add_dir" && deplibs="$add_dir $deplibs"
 
              test -n "$add" && deplibs="$add $deplibs"
  lt_setenv ("BIN_SH", "xpg4"); /* for Tru64 */
            fi
  lt_setenv ("DUALCASE", "1");  /* for MSK sh */
          fi
  lt_update_lib_path (LIB_PATH_VARNAME, LIB_PATH_VALUE);
        elif test "$linkmode" = prog; then
  lt_update_exe_path (EXE_PATH_VARNAME, EXE_PATH_VALUE);
          # Here we assume that one of hardcode_direct or hardcode_minus_L
 
          # is not unsupported.  This is valid on all known static and
 
          # shared platforms.
 
          if test "$hardcode_direct" != unsupported; then
 
            test -n "$old_library" && linklib="$old_library"
 
            compile_deplibs="$dir/$linklib $compile_deplibs"
 
            finalize_deplibs="$dir/$linklib $finalize_deplibs"
 
          else
 
            compile_deplibs="-l$name -L$dir $compile_deplibs"
 
            finalize_deplibs="-l$name -L$dir $finalize_deplibs"
 
          fi
 
        elif test "$build_libtool_libs" = yes; then
 
          # Not a shared library
 
          if test "$deplibs_check_method" != pass_all; then
 
            # We're trying link a shared library against a static one
 
            # but the system doesn't support it.
 
 
 
            # Just print a warning and add the library to dependency_libs so
  newargc=0;
            # that the program can be linked against the static library.
  for (i = 1; i < argc; i++)
            $echo
    {
            $echo "*** Warning: This system can not link to static lib archive $lib."
      if (strncmp (argv[i], env_set_opt, env_set_opt_len) == 0)
            $echo "*** I have the capability to make that library automatically link in when"
        {
            $echo "*** you link to this library.  But I can only do this if you have a"
          if (argv[i][env_set_opt_len] == '=')
            $echo "*** shared version of the library, which you do not appear to have."
            {
            if test "$module" = yes; then
              const char *p = argv[i] + env_set_opt_len + 1;
              $echo "*** But as you try to build a module library, libtool will still create "
              lt_opt_process_env_set (p);
              $echo "*** a static module, that should work as long as the dlopening application"
            }
              $echo "*** is linked with the -dlopen flag to resolve symbols at runtime."
          else if (argv[i][env_set_opt_len] == '\0' && i + 1 < argc)
              if test -z "$global_symbol_pipe"; then
            {
                $echo
              lt_opt_process_env_set (argv[++i]); /* don't copy */
                $echo "*** However, this would only work if libtool was able to extract symbol"
            }
                $echo "*** lists from a program, using \`nm' or equivalent, but libtool could"
 
                $echo "*** not find such a program.  So, this module is probably useless."
 
                $echo "*** \`nm' from GNU binutils and a full rebuild may help."
 
              fi
 
              if test "$build_old_libs" = no; then
 
                build_libtool_libs=module
 
                build_old_libs=yes
 
              else
              else
                build_libtool_libs=no
            lt_fatal ("%s missing required argument", env_set_opt);
              fi
          continue;
            fi
        }
 
      if (strncmp (argv[i], env_prepend_opt, env_prepend_opt_len) == 0)
 
        {
 
          if (argv[i][env_prepend_opt_len] == '=')
 
            {
 
              const char *p = argv[i] + env_prepend_opt_len + 1;
 
              lt_opt_process_env_prepend (p);
 
            }
 
          else if (argv[i][env_prepend_opt_len] == '\0' && i + 1 < argc)
 
            {
 
              lt_opt_process_env_prepend (argv[++i]); /* don't copy */
 
            }
          else
          else
            deplibs="$dir/$old_library $deplibs"
            lt_fatal ("%s missing required argument", env_prepend_opt);
            link_static=yes
          continue;
          fi
        }
        fi # link shared/static library?
      if (strncmp (argv[i], env_append_opt, env_append_opt_len) == 0)
 
        {
 
          if (argv[i][env_append_opt_len] == '=')
 
            {
 
              const char *p = argv[i] + env_append_opt_len + 1;
 
              lt_opt_process_env_append (p);
 
            }
 
          else if (argv[i][env_append_opt_len] == '\0' && i + 1 < argc)
 
            {
 
              lt_opt_process_env_append (argv[++i]); /* don't copy */
 
            }
 
          else
 
            lt_fatal ("%s missing required argument", env_append_opt);
 
          continue;
 
        }
 
      if (strncmp (argv[i], ltwrapper_option_prefix, opt_prefix_len) == 0)
 
        {
 
          /* however, if there is an option in the LTWRAPPER_OPTION_PREFIX
 
             namespace, but it is not one of the ones we know about and
 
             have already dealt with, above (inluding dump-script), then
 
             report an error. Otherwise, targets might begin to believe
 
             they are allowed to use options in the LTWRAPPER_OPTION_PREFIX
 
             namespace. The first time any user complains about this, we'll
 
             need to make LTWRAPPER_OPTION_PREFIX a configure-time option
 
             or a configure.ac-settable value.
 
           */
 
          lt_fatal ("Unrecognized option in %s namespace: '%s'",
 
                    ltwrapper_option_prefix, argv[i]);
 
        }
 
      /* otherwise ... */
 
      newargz[++newargc] = xstrdup (argv[i]);
 
    }
 
  newargz[++newargc] = NULL;
 
 
        if test "$linkmode" = lib; then
  LTWRAPPER_DEBUGPRINTF     (("(main) lt_argv_zero : %s\n", (lt_argv_zero ? lt_argv_zero : "<NULL>")));
          if test -n "$dependency_libs" &&
  for (i = 0; i < newargc; i++)
             { test "$hardcode_into_libs" != yes ||
    {
               test "$build_old_libs" = yes ||
      LTWRAPPER_DEBUGPRINTF (("(main) newargz[%d]   : %s\n", i, (newargz[i] ? newargz[i] : "<NULL>")));
               test "$link_static" = yes; }; then
    }
            # Extract -R from dependency_libs
 
            temp_deplibs=
 
            for libdir in $dependency_libs; do
 
              case $libdir in
 
              -R*) temp_xrpath=`$echo "X$libdir" | $Xsed -e 's/^-R//'`
 
                   case " $xrpath " in
 
                   *" $temp_xrpath "*) ;;
 
                   *) xrpath="$xrpath $temp_xrpath";;
 
                   esac;;
 
              *) temp_deplibs="$temp_deplibs $libdir";;
 
              esac
 
            done
 
            dependency_libs="$temp_deplibs"
 
          fi
 
 
 
          newlib_search_path="$newlib_search_path $absdir"
EOF
          # Link against this library
 
          test "$link_static" = no && newdependency_libs="$abs_ladir/$laname $newdependency_libs"
 
          # ... and its dependency_libs
 
          tmp_libs=
 
          for deplib in $dependency_libs; do
 
            newdependency_libs="$deplib $newdependency_libs"
 
            if test "X$duplicate_deps" = "Xyes" ; then
 
              case "$tmp_libs " in
 
              *" $deplib "*) specialdeplibs="$specialdeplibs $deplib" ;;
 
              esac
 
            fi
 
            tmp_libs="$tmp_libs $deplib"
 
          done
 
 
 
          if test "$link_all_deplibs" != no; then
            case $host_os in
            # Add the search paths of all dependency libraries
              mingw*)
            for deplib in $dependency_libs; do
                cat <<"EOF"
              case $deplib in
  /* execv doesn't actually work on mingw as expected on unix */
              -L*) path="$deplib" ;;
  rval = _spawnv (_P_WAIT, lt_argv_zero, (const char * const *) newargz);
              *.la)
  if (rval == -1)
                dir=`$echo "X$deplib" | $Xsed -e 's%/[^/]*$%%'`
    {
                test "X$dir" = "X$deplib" && dir="."
      /* failed to start process */
                # We need an absolute path.
      LTWRAPPER_DEBUGPRINTF (("(main) failed to launch target \"%s\": errno = %d\n", lt_argv_zero, errno));
                case $dir in
      return 127;
                [\\/]* | [A-Za-z]:[\\/]*) absdir="$dir" ;;
    }
 
  return rval;
 
EOF
 
                ;;
                *)
                *)
                  absdir=`cd "$dir" && pwd`
                cat <<"EOF"
                  if test -z "$absdir"; then
  execv (lt_argv_zero, newargz);
                    $echo "$modename: warning: cannot determine absolute directory name of \`$dir'" 1>&2
  return rval; /* =127, but avoids unused variable warning */
                    absdir="$dir"
EOF
                  fi
 
                  ;;
                  ;;
                esac
                esac
                if grep "^installed=no" $deplib > /dev/null; then
 
                  path="$absdir/$objdir"
 
                else
 
                  eval libdir=`${SED} -n -e 's/^libdir=\(.*\)$/\1/p' $deplib`
 
                  if test -z "$libdir"; then
 
                    $echo "$modename: \`$deplib' is not a valid libtool archive" 1>&2
 
                    exit $EXIT_FAILURE
 
                  fi
 
                  if test "$absdir" != "$libdir"; then
 
                    $echo "$modename: warning: \`$deplib' seems to be moved" 1>&2
 
                  fi
 
                  path="$absdir"
 
                fi
 
                depdepl=
 
                case $host in
 
                *-*-darwin*)
 
                  # we do not want to link against static libs,
 
                  # but need to link against shared
 
                  eval deplibrary_names=`${SED} -n -e 's/^library_names=\(.*\)$/\1/p' $deplib`
 
                  if test -n "$deplibrary_names" ; then
 
                    for tmp in $deplibrary_names ; do
 
                      depdepl=$tmp
 
                    done
 
                    if test -f "$path/$depdepl" ; then
 
                      depdepl="$path/$depdepl"
 
                    fi
 
                    # do not add paths which are already there
 
                    case " $newlib_search_path " in
 
                    *" $path "*) ;;
 
                    *) newlib_search_path="$newlib_search_path $path";;
 
                    esac
 
                  fi
 
                  path=""
 
                  ;;
 
                *)
 
                  path="-L$path"
 
                  ;;
 
                esac
 
                ;;
 
              -l*)
 
                case $host in
 
                *-*-darwin*)
 
                  # Again, we only want to link against shared libraries
 
                  eval tmp_libs=`$echo "X$deplib" | $Xsed -e "s,^\-l,,"`
 
                  for tmp in $newlib_search_path ; do
 
                    if test -f "$tmp/lib$tmp_libs.dylib" ; then
 
                      eval depdepl="$tmp/lib$tmp_libs.dylib"
 
                      break
 
                    fi
 
                  done
 
                  path=""
 
                  ;;
 
                *) continue ;;
 
                esac
 
                ;;
 
              *) continue ;;
 
              esac
 
              case " $deplibs " in
 
              *" $path "*) ;;
 
              *) deplibs="$path $deplibs" ;;
 
              esac
 
              case " $deplibs " in
 
              *" $depdepl "*) ;;
 
              *) deplibs="$depdepl $deplibs" ;;
 
              esac
 
            done
 
          fi # link_all_deplibs != no
 
        fi # linkmode = lib
 
      done # for deplib in $libs
 
      dependency_libs="$newdependency_libs"
 
      if test "$pass" = dlpreopen; then
 
        # Link the dlpreopened libraries before other libraries
 
        for deplib in $save_deplibs; do
 
          deplibs="$deplib $deplibs"
 
        done
 
      fi
 
      if test "$pass" != dlopen; then
 
        if test "$pass" != conv; then
 
          # Make sure lib_search_path contains only unique directories.
 
          lib_search_path=
 
          for dir in $newlib_search_path; do
 
            case "$lib_search_path " in
 
            *" $dir "*) ;;
 
            *) lib_search_path="$lib_search_path $dir" ;;
 
            esac
 
          done
 
          newlib_search_path=
 
        fi
 
 
 
        if test "$linkmode,$pass" != "prog,link"; then
            cat <<"EOF"
          vars="deplibs"
}
        else
 
          vars="compile_deplibs finalize_deplibs"
 
        fi
 
        for var in $vars dependency_libs; do
 
          # Add libraries to $var in reverse order
 
          eval tmp_libs=\"\$$var\"
 
          new_libs=
 
          for deplib in $tmp_libs; do
 
            # FIXME: Pedantically, this is the right thing to do, so
 
            #        that some nasty dependency loop isn't accidentally
 
            #        broken:
 
            #new_libs="$deplib $new_libs"
 
            # Pragmatically, this seems to cause very few problems in
 
            # practice:
 
            case $deplib in
 
            -L*) new_libs="$deplib $new_libs" ;;
 
            -R*) ;;
 
            *)
 
              # And here is the reason: when a library appears more
 
              # than once as an explicit dependence of a library, or
 
              # is implicitly linked in more than once by the
 
              # compiler, it is considered special, and multiple
 
              # occurrences thereof are not removed.  Compare this
 
              # with having the same library being listed as a
 
              # dependency of multiple other libraries: in this case,
 
              # we know (pedantically, we assume) the library does not
 
              # need to be listed more than once, so we keep only the
 
              # last copy.  This is not always right, but it is rare
 
              # enough that we require users that really mean to play
 
              # such unportable linking tricks to link the library
 
              # using -Wl,-lname, so that libtool does not consider it
 
              # for duplicate removal.
 
              case " $specialdeplibs " in
 
              *" $deplib "*) new_libs="$deplib $new_libs" ;;
 
              *)
 
                case " $new_libs " in
 
                *" $deplib "*) ;;
 
                *) new_libs="$deplib $new_libs" ;;
 
                esac
 
                ;;
 
              esac
 
              ;;
 
            esac
 
          done
 
          tmp_libs=
 
          for deplib in $new_libs; do
 
            case $deplib in
 
            -L*)
 
              case " $tmp_libs " in
 
              *" $deplib "*) ;;
 
              *) tmp_libs="$tmp_libs $deplib" ;;
 
              esac
 
              ;;
 
            *) tmp_libs="$tmp_libs $deplib" ;;
 
            esac
 
          done
 
          eval $var=\"$tmp_libs\"
 
        done # for var
 
      fi
 
      # Last step: remove runtime libs from dependency_libs
 
      # (they stay in deplibs)
 
      tmp_libs=
 
      for i in $dependency_libs ; do
 
        case " $predeps $postdeps $compiler_lib_search_path " in
 
        *" $i "*)
 
          i=""
 
          ;;
 
        esac
 
        if test -n "$i" ; then
 
          tmp_libs="$tmp_libs $i"
 
        fi
 
      done
 
      dependency_libs=$tmp_libs
 
    done # for pass
 
    if test "$linkmode" = prog; then
 
      dlfiles="$newdlfiles"
 
      dlprefiles="$newdlprefiles"
 
    fi
 
 
 
    case $linkmode in
void *
    oldlib)
xmalloc (size_t num)
      if test -n "$deplibs"; then
{
        $echo "$modename: warning: \`-l' and \`-L' are ignored for archives" 1>&2
  void *p = (void *) malloc (num);
      fi
  if (!p)
 
    lt_fatal ("Memory exhausted");
 
 
      if test -n "$dlfiles$dlprefiles" || test "$dlself" != no; then
  return p;
        $echo "$modename: warning: \`-dlopen' is ignored for archives" 1>&2
}
      fi
 
 
 
      if test -n "$rpath"; then
char *
        $echo "$modename: warning: \`-rpath' is ignored for archives" 1>&2
xstrdup (const char *string)
      fi
{
 
  return string ? strcpy ((char *) xmalloc (strlen (string) + 1),
 
                          string) : NULL;
 
}
 
 
      if test -n "$xrpath"; then
const char *
        $echo "$modename: warning: \`-R' is ignored for archives" 1>&2
base_name (const char *name)
      fi
{
 
  const char *base;
 
 
      if test -n "$vinfo"; then
#if defined (HAVE_DOS_BASED_FILE_SYSTEM)
        $echo "$modename: warning: \`-version-info/-version-number' is ignored for archives" 1>&2
  /* Skip over the disk name in MSDOS pathnames. */
      fi
  if (isalpha ((unsigned char) name[0]) && name[1] == ':')
 
    name += 2;
 
#endif
 
 
      if test -n "$release"; then
  for (base = name; *name; name++)
        $echo "$modename: warning: \`-release' is ignored for archives" 1>&2
    if (IS_DIR_SEPARATOR (*name))
      fi
      base = name + 1;
 
  return base;
 
}
 
 
      if test -n "$export_symbols" || test -n "$export_symbols_regex"; then
int
        $echo "$modename: warning: \`-export-symbols' is ignored for archives" 1>&2
check_executable (const char *path)
      fi
{
 
  struct stat st;
 
 
      # Now set the variables for building old libraries.
  LTWRAPPER_DEBUGPRINTF (("(check_executable)  : %s\n",
      build_libtool_libs=no
                          path ? (*path ? path : "EMPTY!") : "NULL!"));
      oldlibs="$output"
  if ((!path) || (!*path))
      objs="$objs$old_deplibs"
    return 0;
      ;;
 
 
 
    lib)
  if ((stat (path, &st) >= 0)
      # Make sure we only generate libraries of the form `libNAME.la'.
      && (st.st_mode & (S_IXUSR | S_IXGRP | S_IXOTH)))
      case $outputname in
    return 1;
      lib*)
 
        name=`$echo "X$outputname" | $Xsed -e 's/\.la$//' -e 's/^lib//'`
 
        eval shared_ext=\"$shrext_cmds\"
 
        eval libname=\"$libname_spec\"
 
        ;;
 
      *)
 
        if test "$module" = no; then
 
          $echo "$modename: libtool library \`$output' must begin with \`lib'" 1>&2
 
          $echo "$help" 1>&2
 
          exit $EXIT_FAILURE
 
        fi
 
        if test "$need_lib_prefix" != no; then
 
          # Add the "lib" prefix for modules if required
 
          name=`$echo "X$outputname" | $Xsed -e 's/\.la$//'`
 
          eval shared_ext=\"$shrext_cmds\"
 
          eval libname=\"$libname_spec\"
 
        else
        else
          libname=`$echo "X$outputname" | $Xsed -e 's/\.la$//'`
    return 0;
        fi
}
        ;;
 
      esac
 
 
 
      if test -n "$objs"; then
int
        if test "$deplibs_check_method" != pass_all; then
make_executable (const char *path)
          $echo "$modename: cannot build libtool library \`$output' from non-libtool objects on this host:$objs" 2>&1
{
          exit $EXIT_FAILURE
  int rval = 0;
        else
  struct stat st;
          $echo
 
          $echo "*** Warning: Linking the shared library $output against the non-libtool"
 
          $echo "*** objects $objs is not portable!"
 
          libobjs="$libobjs $objs"
 
        fi
 
      fi
 
 
 
      if test "$dlself" != no; then
  LTWRAPPER_DEBUGPRINTF (("(make_executable)   : %s\n",
        $echo "$modename: warning: \`-dlopen self' is ignored for libtool libraries" 1>&2
                          path ? (*path ? path : "EMPTY!") : "NULL!"));
      fi
  if ((!path) || (!*path))
 
    return 0;
 
 
      set dummy $rpath
  if (stat (path, &st) >= 0)
      if test "$#" -gt 2; then
    {
        $echo "$modename: warning: ignoring multiple \`-rpath's for a libtool library" 1>&2
      rval = chmod (path, st.st_mode | S_IXOTH | S_IXGRP | S_IXUSR);
      fi
    }
      install_libdir="$2"
  return rval;
 
}
 
 
      oldlibs=
/* Searches for the full path of the wrapper.  Returns
      if test -z "$rpath"; then
   newly allocated full path name if found, NULL otherwise
        if test "$build_libtool_libs" = yes; then
   Does not chase symlinks, even on platforms that support them.
          # Building a libtool convenience library.
*/
          # Some compilers have problems with a `.al' extension so
char *
          # convenience libraries should have the same extension an
find_executable (const char *wrapper)
          # archive normally would.
{
          oldlibs="$output_objdir/$libname.$libext $oldlibs"
  int has_slash = 0;
          build_libtool_libs=convenience
  const char *p;
          build_old_libs=yes
  const char *p_next;
        fi
  /* static buffer for getcwd */
 
  char tmp[LT_PATHMAX + 1];
 
  int tmp_len;
 
  char *concat_name;
 
 
        if test -n "$vinfo"; then
  LTWRAPPER_DEBUGPRINTF (("(find_executable)   : %s\n",
          $echo "$modename: warning: \`-version-info/-version-number' is ignored for convenience libraries" 1>&2
                          wrapper ? (*wrapper ? wrapper : "EMPTY!") : "NULL!"));
        fi
 
 
 
        if test -n "$release"; then
  if ((wrapper == NULL) || (*wrapper == '\0'))
          $echo "$modename: warning: \`-release' is ignored for convenience libraries" 1>&2
    return NULL;
        fi
 
      else
 
 
 
        # Parse the version information argument.
  /* Absolute path? */
        save_ifs="$IFS"; IFS=':'
#if defined (HAVE_DOS_BASED_FILE_SYSTEM)
        set dummy $vinfo 0 0 0
  if (isalpha ((unsigned char) wrapper[0]) && wrapper[1] == ':')
        IFS="$save_ifs"
    {
 
      concat_name = xstrdup (wrapper);
        if test -n "$8"; then
      if (check_executable (concat_name))
          $echo "$modename: too many parameters to \`-version-info'" 1>&2
        return concat_name;
          $echo "$help" 1>&2
      XFREE (concat_name);
          exit $EXIT_FAILURE
    }
        fi
  else
 
    {
        # convert absolute version numbers to libtool ages
#endif
        # this retains compatibility with .la files and attempts
      if (IS_DIR_SEPARATOR (wrapper[0]))
        # to make the code below a bit more comprehensible
        {
 
          concat_name = xstrdup (wrapper);
        case $vinfo_number in
          if (check_executable (concat_name))
        yes)
            return concat_name;
          number_major="$2"
          XFREE (concat_name);
          number_minor="$3"
        }
          number_revision="$4"
#if defined (HAVE_DOS_BASED_FILE_SYSTEM)
          #
    }
          # There are really only two kinds -- those that
#endif
          # use the current revision as the major version
 
          # and those that subtract age and use age as
 
          # a minor version.  But, then there is irix
 
          # which has an extra 1 added just for fun
 
          #
 
          case $version_type in
 
          darwin|linux|osf|windows|none)
 
            current=`expr $number_major + $number_minor`
 
            age="$number_minor"
 
            revision="$number_revision"
 
            ;;
 
          freebsd-aout|freebsd-elf|sunos)
 
            current="$number_major"
 
            revision="$number_minor"
 
            age="0"
 
            ;;
 
          irix|nonstopux)
 
            current=`expr $number_major + $number_minor`
 
            age="$number_minor"
 
            revision="$number_minor"
 
            lt_irix_increment=no
 
            ;;
 
          esac
 
          ;;
 
        no)
 
          current="$2"
 
          revision="$3"
 
          age="$4"
 
          ;;
 
        esac
 
 
 
        # Check that each of the things are valid numbers.
  for (p = wrapper; *p; p++)
        case $current in
    if (*p == '/')
        0|[1-9]|[1-9][0-9]|[1-9][0-9][0-9]|[1-9][0-9][0-9][0-9]|[1-9][0-9][0-9][0-9][0-9]) ;;
      {
        *)
        has_slash = 1;
          $echo "$modename: CURRENT \`$current' must be a nonnegative integer" 1>&2
        break;
          $echo "$modename: \`$vinfo' is not valid version information" 1>&2
      }
          exit $EXIT_FAILURE
  if (!has_slash)
          ;;
    {
        esac
      /* no slashes; search PATH */
 
      const char *path = getenv ("PATH");
 
      if (path != NULL)
 
        {
 
          for (p = path; *p; p = p_next)
 
            {
 
              const char *q;
 
              size_t p_len;
 
              for (q = p; *q; q++)
 
                if (IS_PATH_SEPARATOR (*q))
 
                  break;
 
              p_len = q - p;
 
              p_next = (*q == '\0' ? q : q + 1);
 
              if (p_len == 0)
 
                {
 
                  /* empty path: current directory */
 
                  if (getcwd (tmp, LT_PATHMAX) == NULL)
 
                    lt_fatal ("getcwd failed");
 
                  tmp_len = strlen (tmp);
 
                  concat_name =
 
                    XMALLOC (char, tmp_len + 1 + strlen (wrapper) + 1);
 
                  memcpy (concat_name, tmp, tmp_len);
 
                  concat_name[tmp_len] = '/';
 
                  strcpy (concat_name + tmp_len + 1, wrapper);
 
                }
 
              else
 
                {
 
                  concat_name =
 
                    XMALLOC (char, p_len + 1 + strlen (wrapper) + 1);
 
                  memcpy (concat_name, p, p_len);
 
                  concat_name[p_len] = '/';
 
                  strcpy (concat_name + p_len + 1, wrapper);
 
                }
 
              if (check_executable (concat_name))
 
                return concat_name;
 
              XFREE (concat_name);
 
            }
 
        }
 
      /* not found in PATH; assume curdir */
 
    }
 
  /* Relative path | not found in path: prepend cwd */
 
  if (getcwd (tmp, LT_PATHMAX) == NULL)
 
    lt_fatal ("getcwd failed");
 
  tmp_len = strlen (tmp);
 
  concat_name = XMALLOC (char, tmp_len + 1 + strlen (wrapper) + 1);
 
  memcpy (concat_name, tmp, tmp_len);
 
  concat_name[tmp_len] = '/';
 
  strcpy (concat_name + tmp_len + 1, wrapper);
 
 
        case $revision in
  if (check_executable (concat_name))
        0|[1-9]|[1-9][0-9]|[1-9][0-9][0-9]|[1-9][0-9][0-9][0-9]|[1-9][0-9][0-9][0-9][0-9]) ;;
    return concat_name;
        *)
  XFREE (concat_name);
          $echo "$modename: REVISION \`$revision' must be a nonnegative integer" 1>&2
  return NULL;
          $echo "$modename: \`$vinfo' is not valid version information" 1>&2
}
          exit $EXIT_FAILURE
 
          ;;
 
        esac
 
 
 
        case $age in
char *
        0|[1-9]|[1-9][0-9]|[1-9][0-9][0-9]|[1-9][0-9][0-9][0-9]|[1-9][0-9][0-9][0-9][0-9]) ;;
chase_symlinks (const char *pathspec)
        *)
{
          $echo "$modename: AGE \`$age' must be a nonnegative integer" 1>&2
#ifndef S_ISLNK
          $echo "$modename: \`$vinfo' is not valid version information" 1>&2
  return xstrdup (pathspec);
          exit $EXIT_FAILURE
#else
          ;;
  char buf[LT_PATHMAX];
        esac
  struct stat s;
 
  char *tmp_pathspec = xstrdup (pathspec);
 
  char *p;
 
  int has_symlinks = 0;
 
  while (strlen (tmp_pathspec) && !has_symlinks)
 
    {
 
      LTWRAPPER_DEBUGPRINTF (("checking path component for symlinks: %s\n",
 
                              tmp_pathspec));
 
      if (lstat (tmp_pathspec, &s) == 0)
 
        {
 
          if (S_ISLNK (s.st_mode) != 0)
 
            {
 
              has_symlinks = 1;
 
              break;
 
            }
 
 
        if test "$age" -gt "$current"; then
          /* search backwards for last DIR_SEPARATOR */
          $echo "$modename: AGE \`$age' is greater than the current interface number \`$current'" 1>&2
          p = tmp_pathspec + strlen (tmp_pathspec) - 1;
          $echo "$modename: \`$vinfo' is not valid version information" 1>&2
          while ((p > tmp_pathspec) && (!IS_DIR_SEPARATOR (*p)))
          exit $EXIT_FAILURE
            p--;
        fi
          if ((p == tmp_pathspec) && (!IS_DIR_SEPARATOR (*p)))
 
            {
 
              /* no more DIR_SEPARATORS left */
 
              break;
 
            }
 
          *p = '\0';
 
        }
 
      else
 
        {
 
          char *errstr = strerror (errno);
 
          lt_fatal ("Error accessing file %s (%s)", tmp_pathspec, errstr);
 
        }
 
    }
 
  XFREE (tmp_pathspec);
 
 
        # Calculate the version variables.
  if (!has_symlinks)
        major=
    {
        versuffix=
      return xstrdup (pathspec);
        verstring=
    }
        case $version_type in
 
        none) ;;
 
 
 
        darwin)
  tmp_pathspec = realpath (pathspec, buf);
          # Like Linux, but with the current version available in
  if (tmp_pathspec == 0)
          # verstring for coding it into the library header
    {
          major=.`expr $current - $age`
      lt_fatal ("Could not follow symlinks for %s", pathspec);
          versuffix="$major.$age.$revision"
    }
          # Darwin ld doesn't like 0 for these options...
  return xstrdup (tmp_pathspec);
          minor_current=`expr $current + 1`
#endif
          xlcverstring="${wl}-compatibility_version ${wl}$minor_current ${wl}-current_version ${wl}$minor_current.$revision"
}
          verstring="-compatibility_version $minor_current -current_version $minor_current.$revision"
 
          ;;
 
 
 
        freebsd-aout)
char *
          major=".$current"
strendzap (char *str, const char *pat)
          versuffix=".$current.$revision";
{
          ;;
  size_t len, patlen;
 
 
        freebsd-elf)
  assert (str != NULL);
          major=".$current"
  assert (pat != NULL);
          versuffix=".$current";
 
          ;;
 
 
 
        irix | nonstopux)
  len = strlen (str);
          if test "X$lt_irix_increment" = "Xno"; then
  patlen = strlen (pat);
            major=`expr $current - $age`
 
          else
 
            major=`expr $current - $age + 1`
 
          fi
 
          case $version_type in
 
            nonstopux) verstring_prefix=nonstopux ;;
 
            *)         verstring_prefix=sgi ;;
 
          esac
 
          verstring="$verstring_prefix$major.$revision"
 
 
 
          # Add in all the interfaces that we are compatible with.
  if (patlen <= len)
          loop=$revision
    {
          while test "$loop" -ne 0; do
      str += len - patlen;
            iface=`expr $revision - $loop`
      if (strcmp (str, pat) == 0)
            loop=`expr $loop - 1`
        *str = '\0';
            verstring="$verstring_prefix$major.$iface:$verstring"
    }
          done
  return str;
 
}
 
 
          # Before this point, $major must not contain `.'.
static void
          major=.$major
lt_error_core (int exit_status, const char *mode,
          versuffix="$major.$revision"
               const char *message, va_list ap)
          ;;
{
 
  fprintf (stderr, "%s: %s: ", program_name, mode);
 
  vfprintf (stderr, message, ap);
 
  fprintf (stderr, ".\n");
 
 
        linux)
  if (exit_status >= 0)
          major=.`expr $current - $age`
    exit (exit_status);
          versuffix="$major.$age.$revision"
}
          ;;
 
 
 
        osf)
void
          major=.`expr $current - $age`
lt_fatal (const char *message, ...)
          versuffix=".$current.$age.$revision"
{
          verstring="$current.$age.$revision"
  va_list ap;
 
  va_start (ap, message);
 
  lt_error_core (EXIT_FAILURE, "FATAL", message, ap);
 
  va_end (ap);
 
}
 
 
          # Add in all the interfaces that we are compatible with.
void
          loop=$age
lt_setenv (const char *name, const char *value)
          while test "$loop" -ne 0; do
{
            iface=`expr $current - $loop`
  LTWRAPPER_DEBUGPRINTF (("(lt_setenv) setting '%s' to '%s'\n",
            loop=`expr $loop - 1`
                          (name ? name : "<NULL>"),
            verstring="$verstring:${iface}.0"
                          (value ? value : "<NULL>")));
          done
  {
 
#ifdef HAVE_SETENV
 
    /* always make a copy, for consistency with !HAVE_SETENV */
 
    char *str = xstrdup (value);
 
    setenv (name, str, 1);
 
#else
 
    int len = strlen (name) + 1 + strlen (value) + 1;
 
    char *str = XMALLOC (char, len);
 
    sprintf (str, "%s=%s", name, value);
 
    if (putenv (str) != EXIT_SUCCESS)
 
      {
 
        XFREE (str);
 
      }
 
#endif
 
  }
 
}
 
 
          # Make executables depend on our current version.
char *
          verstring="$verstring:${current}.0"
lt_extend_str (const char *orig_value, const char *add, int to_end)
          ;;
{
 
  char *new_value;
 
  if (orig_value && *orig_value)
 
    {
 
      int orig_value_len = strlen (orig_value);
 
      int add_len = strlen (add);
 
      new_value = XMALLOC (char, add_len + orig_value_len + 1);
 
      if (to_end)
 
        {
 
          strcpy (new_value, orig_value);
 
          strcpy (new_value + orig_value_len, add);
 
        }
 
      else
 
        {
 
          strcpy (new_value, add);
 
          strcpy (new_value + add_len, orig_value);
 
        }
 
    }
 
  else
 
    {
 
      new_value = xstrdup (add);
 
    }
 
  return new_value;
 
}
 
 
        sunos)
int
          major=".$current"
lt_split_name_value (const char *arg, char** name, char** value)
          versuffix=".$current.$revision"
{
          ;;
  const char *p;
 
  int len;
 
  if (!arg || !*arg)
 
    return 1;
 
 
        windows)
  p = strchr (arg, (int)'=');
          # Use '-' rather than '.', since we only want one
 
          # extension on DOS 8.3 filesystems.
 
          major=`expr $current - $age`
 
          versuffix="-$major"
 
          ;;
 
 
 
        *)
  if (!p)
          $echo "$modename: unknown library version type \`$version_type'" 1>&2
    return 1;
          $echo "Fatal configuration error.  See the $PACKAGE docs for more information." 1>&2
 
          exit $EXIT_FAILURE
 
          ;;
 
        esac
 
 
 
        # Clear the version info if we defaulted, and they specified a release.
  *value = xstrdup (++p);
        if test -z "$vinfo" && test -n "$release"; then
 
          major=
  len = strlen (arg) - strlen (*value);
          case $version_type in
  *name = XMALLOC (char, len);
          darwin)
  strncpy (*name, arg, len-1);
            # we can't check for "0.0" in archive_cmds due to quoting
  (*name)[len - 1] = '\0';
            # problems, so we reset it completely
 
            verstring=
  return 0;
 
}
 
 
 
void
 
lt_opt_process_env_set (const char *arg)
 
{
 
  char *name = NULL;
 
  char *value = NULL;
 
 
 
  if (lt_split_name_value (arg, &name, &value) != 0)
 
    {
 
      XFREE (name);
 
      XFREE (value);
 
      lt_fatal ("bad argument for %s: '%s'", env_set_opt, arg);
 
    }
 
 
 
  lt_setenv (name, value);
 
  XFREE (name);
 
  XFREE (value);
 
}
 
 
 
void
 
lt_opt_process_env_prepend (const char *arg)
 
{
 
  char *name = NULL;
 
  char *value = NULL;
 
  char *new_value = NULL;
 
 
 
  if (lt_split_name_value (arg, &name, &value) != 0)
 
    {
 
      XFREE (name);
 
      XFREE (value);
 
      lt_fatal ("bad argument for %s: '%s'", env_prepend_opt, arg);
 
    }
 
 
 
  new_value = lt_extend_str (getenv (name), value, 0);
 
  lt_setenv (name, new_value);
 
  XFREE (new_value);
 
  XFREE (name);
 
  XFREE (value);
 
}
 
 
 
void
 
lt_opt_process_env_append (const char *arg)
 
{
 
  char *name = NULL;
 
  char *value = NULL;
 
  char *new_value = NULL;
 
 
 
  if (lt_split_name_value (arg, &name, &value) != 0)
 
    {
 
      XFREE (name);
 
      XFREE (value);
 
      lt_fatal ("bad argument for %s: '%s'", env_append_opt, arg);
 
    }
 
 
 
  new_value = lt_extend_str (getenv (name), value, 1);
 
  lt_setenv (name, new_value);
 
  XFREE (new_value);
 
  XFREE (name);
 
  XFREE (value);
 
}
 
 
 
void
 
lt_update_exe_path (const char *name, const char *value)
 
{
 
  LTWRAPPER_DEBUGPRINTF (("(lt_update_exe_path) modifying '%s' by prepending '%s'\n",
 
                          (name ? name : "<NULL>"),
 
                          (value ? value : "<NULL>")));
 
 
 
  if (name && *name && value && *value)
 
    {
 
      char *new_value = lt_extend_str (getenv (name), value, 0);
 
      /* some systems can't cope with a ':'-terminated path #' */
 
      int len = strlen (new_value);
 
      while (((len = strlen (new_value)) > 0) && IS_PATH_SEPARATOR (new_value[len-1]))
 
        {
 
          new_value[len-1] = '\0';
 
        }
 
      lt_setenv (name, new_value);
 
      XFREE (new_value);
 
    }
 
}
 
 
 
void
 
lt_update_lib_path (const char *name, const char *value)
 
{
 
  LTWRAPPER_DEBUGPRINTF (("(lt_update_lib_path) modifying '%s' by prepending '%s'\n",
 
                          (name ? name : "<NULL>"),
 
                          (value ? value : "<NULL>")));
 
 
 
  if (name && *name && value && *value)
 
    {
 
      char *new_value = lt_extend_str (getenv (name), value, 0);
 
      lt_setenv (name, new_value);
 
      XFREE (new_value);
 
    }
 
}
 
 
 
 
 
EOF
 
}
 
# end: func_emit_cwrapperexe_src
 
 
 
# func_mode_link arg...
 
func_mode_link ()
 
{
 
    $opt_debug
 
    case $host in
 
    *-*-cygwin* | *-*-mingw* | *-*-pw32* | *-*-os2* | *-cegcc*)
 
      # It is impossible to link a dll without this setting, and
 
      # we shouldn't force the makefile maintainer to figure out
 
      # which system we are compiling for in order to pass an extra
 
      # flag for every libtool invocation.
 
      # allow_undefined=no
 
 
 
      # FIXME: Unfortunately, there are problems with the above when trying
 
      # to make a dll which has undefined symbols, in which case not
 
      # even a static library is built.  For now, we need to specify
 
      # -no-undefined on the libtool link line when we can be certain
 
      # that all symbols are satisfied, otherwise we get a static library.
 
      allow_undefined=yes
            ;;
            ;;
          *)
          *)
            verstring="0.0"
      allow_undefined=yes
            ;;
            ;;
          esac
          esac
          if test "$need_version" = no; then
    libtool_args=$nonopt
            versuffix=
    base_compile="$nonopt $@"
          else
    compile_command=$nonopt
            versuffix=".0.0"
    finalize_command=$nonopt
          fi
 
        fi
 
 
 
        # Remove version info from name if versioning should be avoided
    compile_rpath=
        if test "$avoid_version" = yes && test "$need_version" = no; then
    finalize_rpath=
          major=
    compile_shlibpath=
          versuffix=
    finalize_shlibpath=
          verstring=""
    convenience=
        fi
    old_convenience=
 
    deplibs=
 
    old_deplibs=
 
    compiler_flags=
 
    linker_flags=
 
    dllsearchpath=
 
    lib_search_path=`pwd`
 
    inst_prefix_dir=
 
    new_inherited_linker_flags=
 
 
        # Check to see if the archive will have undefined symbols.
    avoid_version=no
        if test "$allow_undefined" = yes; then
    dlfiles=
          if test "$allow_undefined_flag" = unsupported; then
    dlprefiles=
            $echo "$modename: warning: undefined symbols not allowed in $host shared libraries" 1>&2
    dlself=no
            build_libtool_libs=no
    export_dynamic=no
            build_old_libs=yes
    export_symbols=
          fi
    export_symbols_regex=
        else
    generated=
          # Don't allow undefined symbols.
    libobjs=
          allow_undefined_flag="$no_undefined_flag"
    ltlibs=
 
    module=no
 
    no_install=no
 
    objs=
 
    non_pic_objects=
 
    precious_files_regex=
 
    prefer_static_libs=no
 
    preload=no
 
    prev=
 
    prevarg=
 
    release=
 
    rpath=
 
    xrpath=
 
    perm_rpath=
 
    temp_rpath=
 
    thread_safe=no
 
    vinfo=
 
    vinfo_number=no
 
    weak_libs=
 
    single_module="${wl}-single_module"
 
    func_infer_tag $base_compile
 
 
 
    # We need to know -static, to get the right output filenames.
 
    for arg
 
    do
 
      case $arg in
 
      -shared)
 
        test "$build_libtool_libs" != yes && \
 
          func_fatal_configuration "can not build a shared library"
 
        build_old_libs=no
 
        break
 
        ;;
 
      -all-static | -static | -static-libtool-libs)
 
        case $arg in
 
        -all-static)
 
          if test "$build_libtool_libs" = yes && test -z "$link_static_flag"; then
 
            func_warning "complete static linking is impossible in this configuration"
        fi
        fi
 
          if test -n "$link_static_flag"; then
 
            dlopen_self=$dlopen_self_static
      fi
      fi
 
          prefer_static_libs=yes
      if test "$mode" != relink; then
 
        # Remove our outputs, but don't remove object files since they
 
        # may have been created when compiling PIC objects.
 
        removelist=
 
        tempremovelist=`$echo "$output_objdir/*"`
 
        for p in $tempremovelist; do
 
          case $p in
 
            *.$objext)
 
               ;;
               ;;
            $output_objdir/$outputname | $output_objdir/$libname.* | $output_objdir/${libname}${release}.*)
        -static)
               if test "X$precious_files_regex" != "X"; then
          if test -z "$pic_flag" && test -n "$link_static_flag"; then
                 if echo $p | $EGREP -e "$precious_files_regex" >/dev/null 2>&1
            dlopen_self=$dlopen_self_static
                 then
 
                   continue
 
                 fi
                 fi
 
          prefer_static_libs=built
 
          ;;
 
        -static-libtool-libs)
 
          if test -z "$pic_flag" && test -n "$link_static_flag"; then
 
            dlopen_self=$dlopen_self_static
               fi
               fi
               removelist="$removelist $p"
          prefer_static_libs=yes
 
          ;;
 
        esac
 
        build_libtool_libs=no
 
        build_old_libs=yes
 
        break
               ;;
               ;;
            *) ;;
 
          esac
          esac
        done
        done
        if test -n "$removelist"; then
 
          $show "${rm}r $removelist"
 
          $run ${rm}r $removelist
 
        fi
 
      fi
 
 
 
      # Now set the variables for building old libraries.
 
      if test "$build_old_libs" = yes && test "$build_libtool_libs" != convenience ; then
 
        oldlibs="$oldlibs $output_objdir/$libname.$libext"
 
 
 
        # Transform .lo files to .o files.
    # See if our shared archives depend on static archives.
        oldobjs="$objs "`$echo "X$libobjs" | $SP2NL | $Xsed -e '/\.'${libext}'$/d' -e "$lo2o" | $NL2SP`
    test -n "$old_archive_from_new_cmds" && build_old_libs=yes
      fi
 
 
 
      # Eliminate all temporary directories.
    # Go through the arguments, transforming them on the way.
      #for path in $notinst_path; do
    while test "$#" -gt 0; do
      # lib_search_path=`$echo "$lib_search_path " | ${SED} -e "s% $path % %g"`
      arg="$1"
      # deplibs=`$echo "$deplibs " | ${SED} -e "s% -L$path % %g"`
      shift
      # dependency_libs=`$echo "$dependency_libs " | ${SED} -e "s% -L$path % %g"`
      func_quote_for_eval "$arg"
      #done
      qarg=$func_quote_for_eval_unquoted_result
 
      func_append libtool_args " $func_quote_for_eval_result"
 
 
      if test -n "$xrpath"; then
      # If the previous option needs an argument, assign it.
        # If the user specified any rpath flags, then add them.
      if test -n "$prev"; then
        temp_xrpath=
        case $prev in
        for libdir in $xrpath; do
        output)
          temp_xrpath="$temp_xrpath -R$libdir"
          func_append compile_command " @OUTPUT@"
          case "$finalize_rpath " in
          func_append finalize_command " @OUTPUT@"
          *" $libdir "*) ;;
          ;;
          *) finalize_rpath="$finalize_rpath $libdir" ;;
 
          esac
          esac
        done
 
        if test "$hardcode_into_libs" != yes || test "$build_old_libs" = yes; then
 
          dependency_libs="$temp_xrpath $dependency_libs"
 
        fi
 
      fi
 
 
 
      # Make sure dlfiles contains only unique files that won't be dlpreopened
        case $prev in
      old_dlfiles="$dlfiles"
        dlfiles|dlprefiles)
      dlfiles=
          if test "$preload" = no; then
      for lib in $old_dlfiles; do
            # Add the symbol object into the linking commands.
        case " $dlprefiles $dlfiles " in
            func_append compile_command " @SYMFILE@"
        *" $lib "*) ;;
            func_append finalize_command " @SYMFILE@"
        *) dlfiles="$dlfiles $lib" ;;
            preload=yes
        esac
          fi
      done
          case $arg in
 
          *.la | *.lo) ;;  # We handle these cases below.
      # Make sure dlprefiles contains only unique files
          force)
      old_dlprefiles="$dlprefiles"
            if test "$dlself" = no; then
      dlprefiles=
              dlself=needless
      for lib in $old_dlprefiles; do
              export_dynamic=yes
        case "$dlprefiles " in
            fi
        *" $lib "*) ;;
            prev=
        *) dlprefiles="$dlprefiles $lib" ;;
            continue
        esac
 
      done
 
 
 
      if test "$build_libtool_libs" = yes; then
 
        if test -n "$rpath"; then
 
          case $host in
 
          *-*-cygwin* | *-*-mingw* | *-*-pw32* | *-*-os2* | *-*-beos*)
 
            # these systems don't actually have a c library (as such)!
 
            ;;
            ;;
          *-*-rhapsody* | *-*-darwin1.[012])
          self)
            # Rhapsody C library is in the System framework
            if test "$prev" = dlprefiles; then
            deplibs="$deplibs -framework System"
              dlself=yes
 
            elif test "$prev" = dlfiles && test "$dlopen_self" != yes; then
 
              dlself=yes
 
            else
 
              dlself=needless
 
              export_dynamic=yes
 
            fi
 
            prev=
 
            continue
            ;;
            ;;
          *-*-netbsd*)
          *)
            # Don't link with libc until the a.out ld.so is fixed.
            if test "$prev" = dlfiles; then
 
              dlfiles="$dlfiles $arg"
 
            else
 
              dlprefiles="$dlprefiles $arg"
 
            fi
 
            prev=
 
            continue
            ;;
            ;;
          *-*-openbsd* | *-*-freebsd* | *-*-dragonfly*)
          esac
            # Do not include libc due to us having libc/libc_r.
 
            ;;
            ;;
          *-*-sco3.2v5* | *-*-sco5v6*)
        expsyms)
            # Causes problems with __ctype
          export_symbols="$arg"
 
          test -f "$arg" \
 
            || func_fatal_error "symbol file \`$arg' does not exist"
 
          prev=
 
          continue
            ;;
            ;;
          *-*-sysv4.2uw2* | *-*-sysv5* | *-*-unixware* | *-*-OpenUNIX*)
        expsyms_regex)
            # Compiler inserts libc in the correct place for threads to work
          export_symbols_regex="$arg"
 
          prev=
 
          continue
            ;;
            ;;
          *)
        framework)
            # Add libc to deplibs on all other systems if necessary.
          case $host in
            if test "$build_libtool_need_lc" = "yes"; then
            *-*-darwin*)
              deplibs="$deplibs -lc"
              case "$deplibs " in
            fi
                *" $qarg.ltframework "*) ;;
 
                *) deplibs="$deplibs $qarg.ltframework" # this is fixed later
            ;;
            ;;
          esac
          esac
        fi
 
 
 
        # Transform deplibs into only deplibs that can be linked in shared.
 
        name_save=$name
 
        libname_save=$libname
 
        release_save=$release
 
        versuffix_save=$versuffix
 
        major_save=$major
 
        # I'm not sure if I'm treating the release correctly.  I think
 
        # release should show up in the -l (ie -lgmp5) so we don't want to
 
        # add it in twice.  Is that correct?
 
        release=""
 
        versuffix=""
 
        major=""
 
        newdeplibs=
 
        droppeddeps=no
 
        case $deplibs_check_method in
 
        pass_all)
 
          # Don't check for shared/static.  Everything works.
 
          # This might be a little naive.  We might want to check
 
          # whether the library exists or not.  But this is on
 
          # osf3 & osf4 and I'm not really sure... Just
 
          # implementing what was already the behavior.
 
          newdeplibs=$deplibs
 
          ;;
 
        test_compile)
 
          # This code stresses the "libraries are programs" paradigm to its
 
          # limits. Maybe even breaks it.  We compile a program, linking it
 
          # against the deplibs as a proxy for the library.  Then we can check
 
          # whether they linked in statically or dynamically with ldd.
 
          $rm conftest.c
 
          cat > conftest.c <<EOF
 
          int main() { return 0; }
 
EOF
 
          $rm conftest
 
          if $LTCC $LTCFLAGS -o conftest conftest.c $deplibs; then
 
            ldd_output=`ldd conftest`
 
            for i in $deplibs; do
 
              name=`expr $i : '-l\(.*\)'`
 
              # If $name is empty we are operating on a -L argument.
 
              if test "$name" != "" && test "$name" != "0"; then
 
                if test "X$allow_libtool_libs_with_static_runtimes" = "Xyes" ; then
 
                  case " $predeps $postdeps " in
 
                  *" $i "*)
 
                    newdeplibs="$newdeplibs $i"
 
                    i=""
 
                    ;;
                    ;;
                  esac
                  esac
 
          prev=
 
          continue
 
          ;;
 
        inst_prefix)
 
          inst_prefix_dir="$arg"
 
          prev=
 
          continue
 
          ;;
 
        objectlist)
 
          if test -f "$arg"; then
 
            save_arg=$arg
 
            moreargs=
 
            for fil in `cat "$save_arg"`
 
            do
 
#             moreargs="$moreargs $fil"
 
              arg=$fil
 
              # A libtool-controlled object.
 
 
 
              # Check to see that this really is a libtool object.
 
              if func_lalib_unsafe_p "$arg"; then
 
                pic_object=
 
                non_pic_object=
 
 
 
                # Read the .lo file
 
                func_source "$arg"
 
 
 
                if test -z "$pic_object" ||
 
                   test -z "$non_pic_object" ||
 
                   test "$pic_object" = none &&
 
                   test "$non_pic_object" = none; then
 
                  func_fatal_error "cannot find name of object for \`$arg'"
                fi
                fi
                if test -n "$i" ; then
 
                  libname=`eval \\$echo \"$libname_spec\"`
                # Extract subdirectory from the argument.
                  deplib_matches=`eval \\$echo \"$library_names_spec\"`
                func_dirname "$arg" "/" ""
                  set dummy $deplib_matches
                xdir="$func_dirname_result"
                  deplib_match=$2
 
                  if test `expr "$ldd_output" : ".*$deplib_match"` -ne 0 ; then
                if test "$pic_object" != none; then
                    newdeplibs="$newdeplibs $i"
                  # Prepend the subdirectory the object is found in.
 
                  pic_object="$xdir$pic_object"
 
 
 
                  if test "$prev" = dlfiles; then
 
                    if test "$build_libtool_libs" = yes && test "$dlopen_support" = yes; then
 
                      dlfiles="$dlfiles $pic_object"
 
                      prev=
 
                      continue
                  else
                  else
                    droppeddeps=yes
                      # If libtool objects are unsupported, then we need to preload.
                    $echo
                      prev=dlprefiles
                    $echo "*** Warning: dynamic linker does not accept needed library $i."
 
                    $echo "*** I have the capability to make that library automatically link in when"
 
                    $echo "*** you link to this library.  But I can only do this if you have a"
 
                    $echo "*** shared version of the library, which I believe you do not have"
 
                    $echo "*** because a test_compile did reveal that the linker did not use it for"
 
                    $echo "*** its dynamic dependency list that programs get resolved with at runtime."
 
                  fi
 
                fi
                fi
              else
 
                newdeplibs="$newdeplibs $i"
 
              fi
              fi
            done
 
          else
                  # CHECK ME:  I think I busted this.  -Ossama
            # Error occurred in the first compile.  Let's try to salvage
                  if test "$prev" = dlprefiles; then
            # the situation: Compile a separate program for each library.
                    # Preload the old-style object.
            for i in $deplibs; do
                    dlprefiles="$dlprefiles $pic_object"
              name=`expr $i : '-l\(.*\)'`
                    prev=
              # If $name is empty we are operating on a -L argument.
 
              if test "$name" != "" && test "$name" != "0"; then
 
                $rm conftest
 
                if $LTCC $LTCFLAGS -o conftest conftest.c $i; then
 
                  ldd_output=`ldd conftest`
 
                  if test "X$allow_libtool_libs_with_static_runtimes" = "Xyes" ; then
 
                    case " $predeps $postdeps " in
 
                    *" $i "*)
 
                      newdeplibs="$newdeplibs $i"
 
                      i=""
 
                      ;;
 
                    esac
 
                  fi
                  fi
                  if test -n "$i" ; then
 
                    libname=`eval \\$echo \"$libname_spec\"`
                  # A PIC object.
                    deplib_matches=`eval \\$echo \"$library_names_spec\"`
                  func_append libobjs " $pic_object"
                    set dummy $deplib_matches
                  arg="$pic_object"
                    deplib_match=$2
 
                    if test `expr "$ldd_output" : ".*$deplib_match"` -ne 0 ; then
 
                      newdeplibs="$newdeplibs $i"
 
                    else
 
                      droppeddeps=yes
 
                      $echo
 
                      $echo "*** Warning: dynamic linker does not accept needed library $i."
 
                      $echo "*** I have the capability to make that library automatically link in when"
 
                      $echo "*** you link to this library.  But I can only do this if you have a"
 
                      $echo "*** shared version of the library, which you do not appear to have"
 
                      $echo "*** because a test_compile did reveal that the linker did not use this one"
 
                      $echo "*** as a dynamic dependency that programs can get resolved with at runtime."
 
                    fi
                    fi
 
 
 
                # Non-PIC object.
 
                if test "$non_pic_object" != none; then
 
                  # Prepend the subdirectory the object is found in.
 
                  non_pic_object="$xdir$non_pic_object"
 
 
 
                  # A standard non-PIC object
 
                  func_append non_pic_objects " $non_pic_object"
 
                  if test -z "$pic_object" || test "$pic_object" = none ; then
 
                    arg="$non_pic_object"
                  fi
                  fi
                else
                else
                  droppeddeps=yes
                  # If the PIC object exists, use it instead.
                  $echo
                  # $xdir was prepended to $pic_object above.
                  $echo "*** Warning!  Library $i is needed by this library but I was not able to"
                  non_pic_object="$pic_object"
                  $echo "*** make it link in!  You will probably need to install it or some"
                  func_append non_pic_objects " $non_pic_object"
                  $echo "*** library that it depends on before this library will be fully"
 
                  $echo "*** functional.  Installing it before continuing would be even better."
 
                fi
                fi
              else
              else
                newdeplibs="$newdeplibs $i"
                # Only an error if not doing a dry-run.
 
                if $opt_dry_run; then
 
                  # Extract subdirectory from the argument.
 
                  func_dirname "$arg" "/" ""
 
                  xdir="$func_dirname_result"
 
 
 
                  func_lo2o "$arg"
 
                  pic_object=$xdir$objdir/$func_lo2o_result
 
                  non_pic_object=$xdir$func_lo2o_result
 
                  func_append libobjs " $pic_object"
 
                  func_append non_pic_objects " $non_pic_object"
 
                else
 
                  func_fatal_error "\`$arg' is not a valid libtool object"
 
                fi
              fi
              fi
            done
            done
 
          else
 
            func_fatal_error "link input file \`$arg' does not exist"
          fi
          fi
 
          arg=$save_arg
 
          prev=
 
          continue
          ;;
          ;;
        file_magic*)
        precious_regex)
          set dummy $deplibs_check_method
          precious_files_regex="$arg"
          file_magic_regex=`expr "$deplibs_check_method" : "$2 \(.*\)"`
          prev=
          for a_deplib in $deplibs; do
          continue
            name=`expr $a_deplib : '-l\(.*\)'`
          ;;
            # If $name is empty we are operating on a -L argument.
        release)
            if test "$name" != "" && test  "$name" != "0"; then
          release="-$arg"
              if test "X$allow_libtool_libs_with_static_runtimes" = "Xyes" ; then
          prev=
                case " $predeps $postdeps " in
          continue
                *" $a_deplib "*)
          ;;
                  newdeplibs="$newdeplibs $a_deplib"
        rpath | xrpath)
                  a_deplib=""
          # We need an absolute path.
 
          case $arg in
 
          [\\/]* | [A-Za-z]:[\\/]*) ;;
 
          *)
 
            func_fatal_error "only absolute run-paths are allowed"
                  ;;
                  ;;
                esac
                esac
 
          if test "$prev" = rpath; then
 
            case "$rpath " in
 
            *" $arg "*) ;;
 
            *) rpath="$rpath $arg" ;;
 
            esac
 
          else
 
            case "$xrpath " in
 
            *" $arg "*) ;;
 
            *) xrpath="$xrpath $arg" ;;
 
            esac
              fi
              fi
              if test -n "$a_deplib" ; then
          prev=
                libname=`eval \\$echo \"$libname_spec\"`
 
                for i in $lib_search_path $sys_lib_search_path $shlib_search_path; do
 
                  potential_libs=`ls $i/$libname[.-]* 2>/dev/null`
 
                  for potent_lib in $potential_libs; do
 
                      # Follow soft links.
 
                      if ls -lLd "$potent_lib" 2>/dev/null \
 
                         | grep " -> " >/dev/null; then
 
                        continue
                        continue
                      fi
 
                      # The statement above tries to avoid entering an
 
                      # endless loop below, in case of cyclic links.
 
                      # We might still enter an endless loop, since a link
 
                      # loop can be closed while we follow links,
 
                      # but so what?
 
                      potlib="$potent_lib"
 
                      while test -h "$potlib" 2>/dev/null; do
 
                        potliblink=`ls -ld $potlib | ${SED} 's/.* -> //'`
 
                        case $potliblink in
 
                        [\\/]* | [A-Za-z]:[\\/]*) potlib="$potliblink";;
 
                        *) potlib=`$echo "X$potlib" | $Xsed -e 's,[^/]*$,,'`"$potliblink";;
 
                        esac
 
                      done
 
                      if eval $file_magic_cmd \"\$potlib\" 2>/dev/null \
 
                         | ${SED} 10q \
 
                         | $EGREP "$file_magic_regex" > /dev/null; then
 
                        newdeplibs="$newdeplibs $a_deplib"
 
                        a_deplib=""
 
                        break 2
 
                      fi
 
                  done
 
                done
 
              fi
 
              if test -n "$a_deplib" ; then
 
                droppeddeps=yes
 
                $echo
 
                $echo "*** Warning: linker path does not have real file for library $a_deplib."
 
                $echo "*** I have the capability to make that library automatically link in when"
 
                $echo "*** you link to this library.  But I can only do this if you have a"
 
                $echo "*** shared version of the library, which you do not appear to have"
 
                $echo "*** because I did check the linker path looking for a file starting"
 
                if test -z "$potlib" ; then
 
                  $echo "*** with $libname but no candidates were found. (...for file magic test)"
 
                else
 
                  $echo "*** with $libname and none of the candidates passed a file format test"
 
                  $echo "*** using a file magic. Last file checked: $potlib"
 
                fi
 
              fi
 
            else
 
              # Add a -L argument.
 
              newdeplibs="$newdeplibs $a_deplib"
 
            fi
 
          done # Gone through all deplibs.
 
          ;;
          ;;
        match_pattern*)
        shrext)
          set dummy $deplibs_check_method
          shrext_cmds="$arg"
          match_pattern_regex=`expr "$deplibs_check_method" : "$2 \(.*\)"`
          prev=
          for a_deplib in $deplibs; do
          continue
            name=`expr $a_deplib : '-l\(.*\)'`
          ;;
            # If $name is empty we are operating on a -L argument.
        weak)
            if test -n "$name" && test "$name" != "0"; then
          weak_libs="$weak_libs $arg"
              if test "X$allow_libtool_libs_with_static_runtimes" = "Xyes" ; then
          prev=
                case " $predeps $postdeps " in
          continue
                *" $a_deplib "*)
          ;;
                  newdeplibs="$newdeplibs $a_deplib"
        xcclinker)
                  a_deplib=""
          linker_flags="$linker_flags $qarg"
 
          compiler_flags="$compiler_flags $qarg"
 
          prev=
 
          func_append compile_command " $qarg"
 
          func_append finalize_command " $qarg"
 
          continue
 
          ;;
 
        xcompiler)
 
          compiler_flags="$compiler_flags $qarg"
 
          prev=
 
          func_append compile_command " $qarg"
 
          func_append finalize_command " $qarg"
 
          continue
 
          ;;
 
        xlinker)
 
          linker_flags="$linker_flags $qarg"
 
          compiler_flags="$compiler_flags $wl$qarg"
 
          prev=
 
          func_append compile_command " $wl$qarg"
 
          func_append finalize_command " $wl$qarg"
 
          continue
 
          ;;
 
        *)
 
          eval "$prev=\"\$arg\""
 
          prev=
 
          continue
                  ;;
                  ;;
                esac
                esac
 
      fi # test -n "$prev"
 
 
 
      prevarg="$arg"
 
 
 
      case $arg in
 
      -all-static)
 
        if test -n "$link_static_flag"; then
 
          # See comment for -static flag below, for more details.
 
          func_append compile_command " $link_static_flag"
 
          func_append finalize_command " $link_static_flag"
              fi
              fi
              if test -n "$a_deplib" ; then
        continue
                libname=`eval \\$echo \"$libname_spec\"`
 
                for i in $lib_search_path $sys_lib_search_path $shlib_search_path; do
 
                  potential_libs=`ls $i/$libname[.-]* 2>/dev/null`
 
                  for potent_lib in $potential_libs; do
 
                    potlib="$potent_lib" # see symlink-check above in file_magic test
 
                    if eval $echo \"$potent_lib\" 2>/dev/null \
 
                        | ${SED} 10q \
 
                        | $EGREP "$match_pattern_regex" > /dev/null; then
 
                      newdeplibs="$newdeplibs $a_deplib"
 
                      a_deplib=""
 
                      break 2
 
                    fi
 
                  done
 
                done
 
              fi
 
              if test -n "$a_deplib" ; then
 
                droppeddeps=yes
 
                $echo
 
                $echo "*** Warning: linker path does not have real file for library $a_deplib."
 
                $echo "*** I have the capability to make that library automatically link in when"
 
                $echo "*** you link to this library.  But I can only do this if you have a"
 
                $echo "*** shared version of the library, which you do not appear to have"
 
                $echo "*** because I did check the linker path looking for a file starting"
 
                if test -z "$potlib" ; then
 
                  $echo "*** with $libname but no candidates were found. (...for regex pattern test)"
 
                else
 
                  $echo "*** with $libname and none of the candidates passed a file format test"
 
                  $echo "*** using a regex pattern. Last file checked: $potlib"
 
                fi
 
              fi
 
            else
 
              # Add a -L argument.
 
              newdeplibs="$newdeplibs $a_deplib"
 
            fi
 
          done # Gone through all deplibs.
 
          ;;
          ;;
        none | unknown | *)
 
          newdeplibs=""
      -allow-undefined)
          tmp_deplibs=`$echo "X $deplibs" | $Xsed -e 's/ -lc$//' \
        # FIXME: remove this flag sometime in the future.
            -e 's/ -[LR][^ ]*//g'`
        func_fatal_error "\`-allow-undefined' must not be used because it is the default"
          if test "X$allow_libtool_libs_with_static_runtimes" = "Xyes" ; then
 
            for i in $predeps $postdeps ; do
 
              # can't use Xsed below, because $i might contain '/'
 
              tmp_deplibs=`$echo "X $tmp_deplibs" | ${SED} -e "1s,^X,," -e "s,$i,,"`
 
            done
 
          fi
 
          if $echo "X $tmp_deplibs" | $Xsed -e 's/[     ]//g' \
 
            | grep . >/dev/null; then
 
            $echo
 
            if test "X$deplibs_check_method" = "Xnone"; then
 
              $echo "*** Warning: inter-library dependencies are not supported in this platform."
 
            else
 
              $echo "*** Warning: inter-library dependencies are not known to be supported."
 
            fi
 
            $echo "*** All declared inter-library dependencies are being dropped."
 
            droppeddeps=yes
 
          fi
 
          ;;
          ;;
        esac
 
        versuffix=$versuffix_save
 
        major=$major_save
 
        release=$release_save
 
        libname=$libname_save
 
        name=$name_save
 
 
 
        case $host in
      -avoid-version)
        *-*-rhapsody* | *-*-darwin1.[012])
        avoid_version=yes
          # On Rhapsody replace the C library is the System framework
        continue
          newdeplibs=`$echo "X $newdeplibs" | $Xsed -e 's/ -lc / -framework System /'`
 
          ;;
          ;;
        esac
 
 
 
        if test "$droppeddeps" = yes; then
      -dlopen)
          if test "$module" = yes; then
        prev=dlfiles
            $echo
        continue
            $echo "*** Warning: libtool could not satisfy all declared inter-library"
        ;;
            $echo "*** dependencies of module $libname.  Therefore, libtool will create"
 
            $echo "*** a static module, that should work as long as the dlopening"
      -dlpreopen)
            $echo "*** application is linked with the -dlopen flag."
        prev=dlprefiles
            if test -z "$global_symbol_pipe"; then
        continue
              $echo
        ;;
              $echo "*** However, this would only work if libtool was able to extract symbol"
 
              $echo "*** lists from a program, using \`nm' or equivalent, but libtool could"
      -export-dynamic)
              $echo "*** not find such a program.  So, this module is probably useless."
        export_dynamic=yes
              $echo "*** \`nm' from GNU binutils and a full rebuild may help."
        continue
 
        ;;
 
 
 
      -export-symbols | -export-symbols-regex)
 
        if test -n "$export_symbols" || test -n "$export_symbols_regex"; then
 
          func_fatal_error "more than one -exported-symbols argument is not allowed"
            fi
            fi
            if test "$build_old_libs" = no; then
        if test "X$arg" = "X-export-symbols"; then
              oldlibs="$output_objdir/$libname.$libext"
          prev=expsyms
              build_libtool_libs=module
 
              build_old_libs=yes
 
            else
            else
              build_libtool_libs=no
          prev=expsyms_regex
            fi
            fi
          else
        continue
            $echo "*** The inter-library dependencies that have been dropped here will be"
        ;;
            $echo "*** automatically added whenever a program is linked with this library"
 
            $echo "*** or is declared to -dlopen it."
 
 
 
            if test "$allow_undefined" = no; then
      -framework)
              $echo
        prev=framework
              $echo "*** Since this library must not contain undefined symbols,"
        continue
              $echo "*** because either the platform does not support them or"
        ;;
              $echo "*** it was explicitly requested with -no-undefined,"
 
              $echo "*** libtool will only create a static version of it."
 
              if test "$build_old_libs" = no; then
 
                oldlibs="$output_objdir/$libname.$libext"
 
                build_libtool_libs=module
 
                build_old_libs=yes
 
              else
 
                build_libtool_libs=no
 
              fi
 
            fi
 
          fi
 
        fi
 
        # Done checking deplibs!
 
        deplibs=$newdeplibs
 
      fi
 
 
 
 
      -inst-prefix-dir)
 
        prev=inst_prefix
 
        continue
 
        ;;
 
 
      # move library search paths that coincide with paths to not yet
      # The native IRIX linker understands -LANG:*, -LIST:* and -LNO:*
      # installed libraries to the beginning of the library search list
      # so, if we see these flags be careful not to treat them like -L
      new_libs=
      -L[A-Z][A-Z]*:*)
      for path in $notinst_path; do
        case $with_gcc/$host in
        case " $new_libs " in
        no/*-*-irix* | /*-*-irix*)
        *" -L$path/$objdir "*) ;;
          func_append compile_command " $arg"
        *)
          func_append finalize_command " $arg"
          case " $deplibs " in
 
          *" -L$path/$objdir "*)
 
            new_libs="$new_libs -L$path/$objdir" ;;
 
          esac
 
          ;;
          ;;
        esac
        esac
      done
        continue
      for deplib in $deplibs; do
 
        case $deplib in
 
        -L*)
 
          case " $new_libs " in
 
          *" $deplib "*) ;;
 
          *) new_libs="$new_libs $deplib" ;;
 
          esac
 
          ;;
          ;;
        *) new_libs="$new_libs $deplib" ;;
 
        esac
 
      done
 
      deplibs="$new_libs"
 
 
 
 
 
      # All the library-specific variables (install_libdir is set above).
 
      library_names=
 
      old_library=
 
      dlname=
 
 
 
      # Test again, we may have decided not to build it any more
      -L*)
      if test "$build_libtool_libs" = yes; then
        func_stripname '-L' '' "$arg"
        if test "$hardcode_into_libs" = yes; then
        dir=$func_stripname_result
          # Hardcode the library paths
        if test -z "$dir"; then
          hardcode_libdirs=
          if test "$#" -gt 0; then
          dep_rpath=
            func_fatal_error "require no space between \`-L' and \`$1'"
          rpath="$finalize_rpath"
 
          test "$mode" != relink && rpath="$compile_rpath$rpath"
 
          for libdir in $rpath; do
 
            if test -n "$hardcode_libdir_flag_spec"; then
 
              if test -n "$hardcode_libdir_separator"; then
 
                if test -z "$hardcode_libdirs"; then
 
                  hardcode_libdirs="$libdir"
 
                else
                else
                  # Just accumulate the unique libdirs.
            func_fatal_error "need path for \`-L' option"
                  case $hardcode_libdir_separator$hardcode_libdirs$hardcode_libdir_separator in
          fi
                  *"$hardcode_libdir_separator$libdir$hardcode_libdir_separator"*)
        fi
 
        # We need an absolute path.
 
        case $dir in
 
        [\\/]* | [A-Za-z]:[\\/]*) ;;
 
        *)
 
          absdir=`cd "$dir" && pwd`
 
          test -z "$absdir" && \
 
            func_fatal_error "cannot determine absolute directory name of \`$dir'"
 
          dir="$absdir"
                    ;;
                    ;;
 
        esac
 
        case "$deplibs " in
 
        *" -L$dir "*) ;;
                  *)
                  *)
                    hardcode_libdirs="$hardcode_libdirs$hardcode_libdir_separator$libdir"
          deplibs="$deplibs -L$dir"
 
          lib_search_path="$lib_search_path $dir"
                    ;;
                    ;;
                  esac
                  esac
                fi
        case $host in
              else
        *-*-cygwin* | *-*-mingw* | *-*-pw32* | *-*-os2* | *-cegcc*)
                eval flag=\"$hardcode_libdir_flag_spec\"
          testbindir=`$ECHO "X$dir" | $Xsed -e 's*/lib$*/bin*'`
                dep_rpath="$dep_rpath $flag"
          case :$dllsearchpath: in
              fi
          *":$dir:"*) ;;
            elif test -n "$runpath_var"; then
          ::) dllsearchpath=$dir;;
              case "$perm_rpath " in
          *) dllsearchpath="$dllsearchpath:$dir";;
              *" $libdir "*) ;;
 
              *) perm_rpath="$perm_rpath $libdir" ;;
 
              esac
              esac
            fi
          case :$dllsearchpath: in
          done
          *":$testbindir:"*) ;;
          # Substitute the hardcoded libdirs into the rpath.
          ::) dllsearchpath=$testbindir;;
          if test -n "$hardcode_libdir_separator" &&
          *) dllsearchpath="$dllsearchpath:$testbindir";;
             test -n "$hardcode_libdirs"; then
 
            libdir="$hardcode_libdirs"
 
            if test -n "$hardcode_libdir_flag_spec_ld"; then
 
              case $archive_cmds in
 
              *\$LD*) eval dep_rpath=\"$hardcode_libdir_flag_spec_ld\" ;;
 
              *)      eval dep_rpath=\"$hardcode_libdir_flag_spec\" ;;
 
              esac
              esac
            else
          ;;
              eval dep_rpath=\"$hardcode_libdir_flag_spec\"
        esac
            fi
        continue
          fi
        ;;
          if test -n "$runpath_var" && test -n "$perm_rpath"; then
 
            # We should set the runpath_var.
 
            rpath=
 
            for dir in $perm_rpath; do
 
              rpath="$rpath$dir:"
 
            done
 
            eval "$runpath_var='$rpath\$$runpath_var'; export $runpath_var"
 
          fi
 
          test -n "$dep_rpath" && deplibs="$dep_rpath $deplibs"
 
        fi
 
 
 
        shlibpath="$finalize_shlibpath"
      -l*)
        test "$mode" != relink && shlibpath="$compile_shlibpath$shlibpath"
        if test "X$arg" = "X-lc" || test "X$arg" = "X-lm"; then
        if test -n "$shlibpath"; then
          case $host in
          eval "$shlibpath_var='$shlibpath\$$shlibpath_var'; export $shlibpath_var"
          *-*-cygwin* | *-*-mingw* | *-*-pw32* | *-*-beos* | *-cegcc*)
 
            # These systems don't actually have a C or math library (as such)
 
            continue
 
            ;;
 
          *-*-os2*)
 
            # These systems don't actually have a C library (as such)
 
            test "X$arg" = "X-lc" && continue
 
            ;;
 
          *-*-openbsd* | *-*-freebsd* | *-*-dragonfly*)
 
            # Do not include libc due to us having libc/libc_r.
 
            test "X$arg" = "X-lc" && continue
 
            ;;
 
          *-*-rhapsody* | *-*-darwin1.[012])
 
            # Rhapsody C and math libraries are in the System framework
 
            deplibs="$deplibs System.ltframework"
 
            continue
 
            ;;
 
          *-*-sco3.2v5* | *-*-sco5v6*)
 
            # Causes problems with __ctype
 
            test "X$arg" = "X-lc" && continue
 
            ;;
 
          *-*-sysv4.2uw2* | *-*-sysv5* | *-*-unixware* | *-*-OpenUNIX*)
 
            # Compiler inserts libc in the correct place for threads to work
 
            test "X$arg" = "X-lc" && continue
 
            ;;
 
          esac
 
        elif test "X$arg" = "X-lc_r"; then
 
         case $host in
 
         *-*-openbsd* | *-*-freebsd* | *-*-dragonfly*)
 
           # Do not include libc_r directly, use -pthread flag.
 
           continue
 
           ;;
 
         esac
        fi
        fi
 
        deplibs="$deplibs $arg"
 
        continue
 
        ;;
 
 
        # Get the real and link names of the library.
      -module)
        eval shared_ext=\"$shrext_cmds\"
        module=yes
        eval library_names=\"$library_names_spec\"
        continue
        set dummy $library_names
        ;;
        realname="$2"
 
        shift; shift
 
 
 
        if test -n "$soname_spec"; then
 
          eval soname=\"$soname_spec\"
 
        else
 
          soname="$realname"
 
        fi
 
        if test -z "$dlname"; then
 
          dlname=$soname
 
        fi
 
 
 
        lib="$output_objdir/$realname"
      # Tru64 UNIX uses -model [arg] to determine the layout of C++
        linknames=
      # classes, name mangling, and exception handling.
        for link
      # Darwin uses the -arch flag to determine output architecture.
        do
      -model|-arch|-isysroot)
          linknames="$linknames $link"
        compiler_flags="$compiler_flags $arg"
        done
        func_append compile_command " $arg"
 
        func_append finalize_command " $arg"
 
        prev=xcompiler
 
        continue
 
        ;;
 
 
        # Use standard objects if they are pic
      -mt|-mthreads|-kthread|-Kthread|-pthread|-pthreads|--thread-safe|-threads)
        test -z "$pic_flag" && libobjs=`$echo "X$libobjs" | $SP2NL | $Xsed -e "$lo2o" | $NL2SP`
        compiler_flags="$compiler_flags $arg"
 
        func_append compile_command " $arg"
 
        func_append finalize_command " $arg"
 
        case "$new_inherited_linker_flags " in
 
            *" $arg "*) ;;
 
            * ) new_inherited_linker_flags="$new_inherited_linker_flags $arg" ;;
 
        esac
 
        continue
 
        ;;
 
 
        # Prepare the list of exported symbols
      -multi_module)
        if test -z "$export_symbols"; then
        single_module="${wl}-multi_module"
          if test "$always_export_symbols" = yes || test -n "$export_symbols_regex"; then
        continue
            $show "generating symbol list for \`$libname.la'"
        ;;
            export_symbols="$output_objdir/$libname.exp"
 
            $run $rm $export_symbols
 
            cmds=$export_symbols_cmds
 
            save_ifs="$IFS"; IFS='~'
 
            for cmd in $cmds; do
 
              IFS="$save_ifs"
 
              eval cmd=\"$cmd\"
 
              if len=`expr "X$cmd" : ".*"` &&
 
               test "$len" -le "$max_cmd_len" || test "$max_cmd_len" -le -1; then
 
                $show "$cmd"
 
                $run eval "$cmd" || exit $?
 
                skipped_export=false
 
              else
 
                # The command line is too long to execute in one step.
 
                $show "using reloadable object file for export list..."
 
                skipped_export=:
 
                # Break out early, otherwise skipped_export may be
 
                # set to false by a later but shorter cmd.
 
                break
 
              fi
 
            done
 
            IFS="$save_ifs"
 
            if test -n "$export_symbols_regex"; then
 
              $show "$EGREP -e \"$export_symbols_regex\" \"$export_symbols\" > \"${export_symbols}T\""
 
              $run eval '$EGREP -e "$export_symbols_regex" "$export_symbols" > "${export_symbols}T"'
 
              $show "$mv \"${export_symbols}T\" \"$export_symbols\""
 
              $run eval '$mv "${export_symbols}T" "$export_symbols"'
 
            fi
 
          fi
 
        fi
 
 
 
        if test -n "$export_symbols" && test -n "$include_expsyms"; then
      -no-fast-install)
          $run eval '$echo "X$include_expsyms" | $SP2NL >> "$export_symbols"'
        fast_install=no
        fi
        continue
 
        ;;
 
 
        tmp_deplibs=
      -no-install)
        for test_deplib in $deplibs; do
        case $host in
                case " $convenience " in
        *-*-cygwin* | *-*-mingw* | *-*-pw32* | *-*-os2* | *-*-darwin* | *-cegcc*)
                *" $test_deplib "*) ;;
          # The PATH hackery in wrapper scripts is required on Windows
                *)
          # and Darwin in order for the loader to find any dlls it needs.
                        tmp_deplibs="$tmp_deplibs $test_deplib"
          func_warning "\`-no-install' is ignored for $host"
 
          func_warning "assuming \`-no-fast-install' instead"
 
          fast_install=no
                        ;;
                        ;;
 
        *) no_install=yes ;;
                esac
                esac
        done
        continue
        deplibs="$tmp_deplibs"
        ;;
 
 
        if test -n "$convenience"; then
      -no-undefined)
          if test -n "$whole_archive_flag_spec"; then
        allow_undefined=no
            save_libobjs=$libobjs
        continue
            eval libobjs=\"\$libobjs $whole_archive_flag_spec\"
        ;;
          else
 
            gentop="$output_objdir/${outputname}x"
 
            generated="$generated $gentop"
 
 
 
            func_extract_archives $gentop $convenience
      -objectlist)
            libobjs="$libobjs $func_extract_archives_result"
        prev=objectlist
          fi
        continue
        fi
        ;;
 
 
        if test "$thread_safe" = yes && test -n "$thread_safe_flag_spec"; then
      -o) prev=output ;;
          eval flag=\"$thread_safe_flag_spec\"
 
          linker_flags="$linker_flags $flag"
 
        fi
 
 
 
        # Make a backup of the uninstalled library when relinking
      -precious-files-regex)
        if test "$mode" = relink; then
        prev=precious_regex
          $run eval '(cd $output_objdir && $rm ${realname}U && $mv $realname ${realname}U)' || exit $?
        continue
        fi
        ;;
 
 
        # Do each of the archive commands.
      -release)
        if test "$module" = yes && test -n "$module_cmds" ; then
        prev=release
          if test -n "$export_symbols" && test -n "$module_expsym_cmds"; then
        continue
            eval test_cmds=\"$module_expsym_cmds\"
        ;;
            cmds=$module_expsym_cmds
 
          else
 
            eval test_cmds=\"$module_cmds\"
 
            cmds=$module_cmds
 
          fi
 
        else
 
        if test -n "$export_symbols" && test -n "$archive_expsym_cmds"; then
 
          eval test_cmds=\"$archive_expsym_cmds\"
 
          cmds=$archive_expsym_cmds
 
        else
 
          eval test_cmds=\"$archive_cmds\"
 
          cmds=$archive_cmds
 
          fi
 
        fi
 
 
 
        if test "X$skipped_export" != "X:" &&
      -rpath)
           len=`expr "X$test_cmds" : ".*" 2>/dev/null` &&
        prev=rpath
           test "$len" -le "$max_cmd_len" || test "$max_cmd_len" -le -1; then
        continue
          :
        ;;
        else
 
          # The command line is too long to link in one step, link piecewise.
 
          $echo "creating reloadable object files..."
 
 
 
          # Save the value of $output and $libobjs because we want to
      -R)
          # use them later.  If we have whole_archive_flag_spec, we
        prev=xrpath
          # want to use save_libobjs as it was before
        continue
          # whole_archive_flag_spec was expanded, because we can't
        ;;
          # assume the linker understands whole_archive_flag_spec.
 
          # This may have to be revisited, in case too many
 
          # convenience libraries get linked in and end up exceeding
 
          # the spec.
 
          if test -z "$convenience" || test -z "$whole_archive_flag_spec"; then
 
            save_libobjs=$libobjs
 
          fi
 
          save_output=$output
 
          output_la=`$echo "X$output" | $Xsed -e "$basename"`
 
 
 
          # Clear the reloadable object creation command queue and
      -R*)
          # initialize k to one.
        func_stripname '-R' '' "$arg"
          test_cmds=
        dir=$func_stripname_result
          concat_cmds=
        # We need an absolute path.
          objlist=
        case $dir in
          delfiles=
        [\\/]* | [A-Za-z]:[\\/]*) ;;
          last_robj=
        *)
          k=1
          func_fatal_error "only absolute run-paths are allowed"
          output=$output_objdir/$output_la-${k}.$objext
          ;;
          # Loop over the list of objects to be linked.
        esac
          for obj in $save_libobjs
        case "$xrpath " in
          do
        *" $dir "*) ;;
            eval test_cmds=\"$reload_cmds $objlist $last_robj\"
        *) xrpath="$xrpath $dir" ;;
            if test "X$objlist" = X ||
        esac
               { len=`expr "X$test_cmds" : ".*" 2>/dev/null` &&
        continue
                 test "$len" -le "$max_cmd_len"; }; then
        ;;
              objlist="$objlist $obj"
 
            else
 
              # The command $test_cmds is almost too long, add a
 
              # command to the queue.
 
              if test "$k" -eq 1 ; then
 
                # The first file doesn't have a previous command to add.
 
                eval concat_cmds=\"$reload_cmds $objlist $last_robj\"
 
              else
 
                # All subsequent reloadable object files will link in
 
                # the last one created.
 
                eval concat_cmds=\"\$concat_cmds~$reload_cmds $objlist $last_robj\"
 
              fi
 
              last_robj=$output_objdir/$output_la-${k}.$objext
 
              k=`expr $k + 1`
 
              output=$output_objdir/$output_la-${k}.$objext
 
              objlist=$obj
 
              len=1
 
            fi
 
          done
 
          # Handle the remaining objects by creating one last
 
          # reloadable object file.  All subsequent reloadable object
 
          # files will link in the last one created.
 
          test -z "$concat_cmds" || concat_cmds=$concat_cmds~
 
          eval concat_cmds=\"\${concat_cmds}$reload_cmds $objlist $last_robj\"
 
 
 
          if ${skipped_export-false}; then
      -shared)
            $show "generating symbol list for \`$libname.la'"
        # The effects of -shared are defined in a previous loop.
            export_symbols="$output_objdir/$libname.exp"
        continue
            $run $rm $export_symbols
        ;;
            libobjs=$output
 
            # Append the command to create the export file.
 
            eval concat_cmds=\"\$concat_cmds~$export_symbols_cmds\"
 
          fi
 
 
 
          # Set up a command to remove the reloadable object files
      -shrext)
          # after they are used.
        prev=shrext
          i=0
        continue
          while test "$i" -lt "$k"
        ;;
          do
 
            i=`expr $i + 1`
 
            delfiles="$delfiles $output_objdir/$output_la-${i}.$objext"
 
          done
 
 
 
          $echo "creating a temporary reloadable object file: $output"
      -static | -static-libtool-libs)
 
        # The effects of -static are defined in a previous loop.
 
        # We used to do the same as -all-static on platforms that
 
        # didn't have a PIC flag, but the assumption that the effects
 
        # would be equivalent was wrong.  It would break on at least
 
        # Digital Unix and AIX.
 
        continue
 
        ;;
 
 
          # Loop through the commands generated above and execute them.
      -thread-safe)
          save_ifs="$IFS"; IFS='~'
        thread_safe=yes
          for cmd in $concat_cmds; do
        continue
            IFS="$save_ifs"
        ;;
            $show "$cmd"
 
            $run eval "$cmd" || exit $?
 
          done
 
          IFS="$save_ifs"
 
 
 
          libobjs=$output
      -version-info)
          # Restore the value of output.
        prev=vinfo
          output=$save_output
        continue
 
        ;;
 
 
          if test -n "$convenience" && test -n "$whole_archive_flag_spec"; then
      -version-number)
            eval libobjs=\"\$libobjs $whole_archive_flag_spec\"
        prev=vinfo
          fi
        vinfo_number=yes
          # Expand the library linking commands again to reset the
        continue
          # value of $libobjs for piecewise linking.
        ;;
 
 
          # Do each of the archive commands.
      -weak)
          if test "$module" = yes && test -n "$module_cmds" ; then
        prev=weak
            if test -n "$export_symbols" && test -n "$module_expsym_cmds"; then
        continue
              cmds=$module_expsym_cmds
        ;;
            else
 
              cmds=$module_cmds
 
            fi
 
          else
 
          if test -n "$export_symbols" && test -n "$archive_expsym_cmds"; then
 
            cmds=$archive_expsym_cmds
 
          else
 
            cmds=$archive_cmds
 
            fi
 
          fi
 
 
 
          # Append the command to remove the reloadable object files
      -Wc,*)
          # to the just-reset $cmds.
        func_stripname '-Wc,' '' "$arg"
          eval cmds=\"\$cmds~\$rm $delfiles\"
        args=$func_stripname_result
        fi
        arg=
        save_ifs="$IFS"; IFS='~'
        save_ifs="$IFS"; IFS=','
        for cmd in $cmds; do
        for flag in $args; do
          IFS="$save_ifs"
          IFS="$save_ifs"
          eval cmd=\"$cmd\"
          func_quote_for_eval "$flag"
          $show "$cmd"
          arg="$arg $wl$func_quote_for_eval_result"
          $run eval "$cmd" || {
          compiler_flags="$compiler_flags $func_quote_for_eval_result"
            lt_exit=$?
 
 
 
            # Restore the uninstalled library and exit
 
            if test "$mode" = relink; then
 
              $run eval '(cd $output_objdir && $rm ${realname}T && $mv ${realname}U $realname)'
 
            fi
 
 
 
            exit $lt_exit
 
          }
 
        done
        done
        IFS="$save_ifs"
        IFS="$save_ifs"
 
        func_stripname ' ' '' "$arg"
 
        arg=$func_stripname_result
 
        ;;
 
 
        # Restore the uninstalled library and exit
      -Wl,*)
        if test "$mode" = relink; then
        func_stripname '-Wl,' '' "$arg"
          $run eval '(cd $output_objdir && $rm ${realname}T && $mv $realname ${realname}T && $mv "$realname"U $realname)' || exit $?
        args=$func_stripname_result
 
        arg=
 
        save_ifs="$IFS"; IFS=','
 
        for flag in $args; do
 
          IFS="$save_ifs"
 
          func_quote_for_eval "$flag"
 
          arg="$arg $wl$func_quote_for_eval_result"
 
          compiler_flags="$compiler_flags $wl$func_quote_for_eval_result"
 
          linker_flags="$linker_flags $func_quote_for_eval_result"
 
        done
 
        IFS="$save_ifs"
 
        func_stripname ' ' '' "$arg"
 
        arg=$func_stripname_result
 
        ;;
 
 
          if test -n "$convenience"; then
      -Xcompiler)
            if test -z "$whole_archive_flag_spec"; then
        prev=xcompiler
              $show "${rm}r $gentop"
        continue
              $run ${rm}r "$gentop"
        ;;
            fi
 
          fi
 
 
 
          exit $EXIT_SUCCESS
      -Xlinker)
        fi
        prev=xlinker
 
        continue
 
        ;;
 
 
        # Create links to the real library.
      -XCClinker)
        for linkname in $linknames; do
        prev=xcclinker
          if test "$realname" != "$linkname"; then
        continue
            $show "(cd $output_objdir && $rm $linkname && $LN_S $realname $linkname)"
        ;;
            $run eval '(cd $output_objdir && $rm $linkname && $LN_S $realname $linkname)' || exit $?
 
          fi
 
        done
 
 
 
        # If -module or -export-dynamic was specified, set the dlname.
      # -msg_* for osf cc
        if test "$module" = yes || test "$export_dynamic" = yes; then
      -msg_*)
          # On all known operating systems, these are identical.
        func_quote_for_eval "$arg"
          dlname="$soname"
        arg="$func_quote_for_eval_result"
        fi
 
      fi
 
      ;;
      ;;
 
 
    obj)
      # -64, -mips[0-9] enable 64-bit mode on the SGI compiler
      if test -n "$deplibs"; then
      # -r[0-9][0-9]* specifies the processor on the SGI compiler
        $echo "$modename: warning: \`-l' and \`-L' are ignored for objects" 1>&2
      # -xarch=*, -xtarget=* enable 64-bit mode on the Sun compiler
      fi
      # +DA*, +DD* enable 64-bit mode on the HP compiler
 
      # -q* pass through compiler args for the IBM compiler
 
      # -m*, -t[45]*, -txscale* pass through architecture-specific
 
      # compiler args for GCC
 
      # -F/path gives path to uninstalled frameworks, gcc on darwin
 
      # -p, -pg, --coverage, -fprofile-* pass through profiling flag for GCC
 
      # @file GCC response files
 
      -64|-mips[0-9]|-r[0-9][0-9]*|-xarch=*|-xtarget=*|+DA*|+DD*|-q*|-m*| \
 
      -t[45]*|-txscale*|-p|-pg|--coverage|-fprofile-*|-F*|@*)
 
        func_quote_for_eval "$arg"
 
        arg="$func_quote_for_eval_result"
 
        func_append compile_command " $arg"
 
        func_append finalize_command " $arg"
 
        compiler_flags="$compiler_flags $arg"
 
        continue
 
        ;;
 
 
      if test -n "$dlfiles$dlprefiles" || test "$dlself" != no; then
      # Some other compiler flag.
        $echo "$modename: warning: \`-dlopen' is ignored for objects" 1>&2
      -* | +*)
      fi
        func_quote_for_eval "$arg"
 
        arg="$func_quote_for_eval_result"
 
        ;;
 
 
      if test -n "$rpath"; then
      *.$objext)
        $echo "$modename: warning: \`-rpath' is ignored for objects" 1>&2
        # A standard object.
      fi
        objs="$objs $arg"
 
        ;;
 
 
      if test -n "$xrpath"; then
      *.lo)
        $echo "$modename: warning: \`-R' is ignored for objects" 1>&2
        # A libtool-controlled object.
      fi
 
 
 
      if test -n "$vinfo"; then
        # Check to see that this really is a libtool object.
        $echo "$modename: warning: \`-version-info' is ignored for objects" 1>&2
        if func_lalib_unsafe_p "$arg"; then
      fi
          pic_object=
 
          non_pic_object=
 
 
      if test -n "$release"; then
          # Read the .lo file
        $echo "$modename: warning: \`-release' is ignored for objects" 1>&2
          func_source "$arg"
      fi
 
 
 
      case $output in
          if test -z "$pic_object" ||
      *.lo)
             test -z "$non_pic_object" ||
        if test -n "$objs$old_deplibs"; then
             test "$pic_object" = none &&
          $echo "$modename: cannot build library object \`$output' from non-libtool objects" 1>&2
             test "$non_pic_object" = none; then
          exit $EXIT_FAILURE
            func_fatal_error "cannot find name of object for \`$arg'"
        fi
        fi
        libobj="$output"
 
        obj=`$echo "X$output" | $Xsed -e "$lo2o"`
 
        ;;
 
      *)
 
        libobj=
 
        obj="$output"
 
        ;;
 
      esac
 
 
 
      # Delete the old objects.
          # Extract subdirectory from the argument.
      $run $rm $obj $libobj
          func_dirname "$arg" "/" ""
 
          xdir="$func_dirname_result"
 
 
      # Objects from convenience libraries.  This assumes
          if test "$pic_object" != none; then
      # single-version convenience libraries.  Whenever we create
            # Prepend the subdirectory the object is found in.
      # different ones for PIC/non-PIC, this we'll have to duplicate
            pic_object="$xdir$pic_object"
      # the extraction.
 
      reload_conv_objs=
 
      gentop=
 
      # reload_cmds runs $LD directly, so let us get rid of
 
      # -Wl from whole_archive_flag_spec and hope we can get by with
 
      # turning comma into space..
 
      wl=
 
 
 
      if test -n "$convenience"; then
            if test "$prev" = dlfiles; then
        if test -n "$whole_archive_flag_spec"; then
              if test "$build_libtool_libs" = yes && test "$dlopen_support" = yes; then
          eval tmp_whole_archive_flags=\"$whole_archive_flag_spec\"
                dlfiles="$dlfiles $pic_object"
          reload_conv_objs=$reload_objs\ `$echo "X$tmp_whole_archive_flags" | $Xsed -e 's|,| |g'`
                prev=
 
                continue
        else
        else
          gentop="$output_objdir/${obj}x"
                # If libtool objects are unsupported, then we need to preload.
          generated="$generated $gentop"
                prev=dlprefiles
 
 
          func_extract_archives $gentop $convenience
 
          reload_conv_objs="$reload_objs $func_extract_archives_result"
 
        fi
        fi
      fi
      fi
 
 
      # Create the old-style object.
            # CHECK ME:  I think I busted this.  -Ossama
      reload_objs="$objs$old_deplibs "`$echo "X$libobjs" | $SP2NL | $Xsed -e '/\.'${libext}$'/d' -e '/\.lib$/d' -e "$lo2o" | $NL2SP`" $reload_conv_objs" ### testsuite: skip nested quoting test
            if test "$prev" = dlprefiles; then
 
              # Preload the old-style object.
      output="$obj"
              dlprefiles="$dlprefiles $pic_object"
      cmds=$reload_cmds
              prev=
      save_ifs="$IFS"; IFS='~'
 
      for cmd in $cmds; do
 
        IFS="$save_ifs"
 
        eval cmd=\"$cmd\"
 
        $show "$cmd"
 
        $run eval "$cmd" || exit $?
 
      done
 
      IFS="$save_ifs"
 
 
 
      # Exit if we aren't doing a library object file.
 
      if test -z "$libobj"; then
 
        if test -n "$gentop"; then
 
          $show "${rm}r $gentop"
 
          $run ${rm}r $gentop
 
        fi
        fi
 
 
        exit $EXIT_SUCCESS
            # A PIC object.
 
            func_append libobjs " $pic_object"
 
            arg="$pic_object"
      fi
      fi
 
 
      if test "$build_libtool_libs" != yes; then
          # Non-PIC object.
        if test -n "$gentop"; then
          if test "$non_pic_object" != none; then
          $show "${rm}r $gentop"
            # Prepend the subdirectory the object is found in.
          $run ${rm}r $gentop
            non_pic_object="$xdir$non_pic_object"
        fi
 
 
 
        # Create an invalid libtool object if no PIC, so that we don't
            # A standard non-PIC object
        # accidentally link it into a program.
            func_append non_pic_objects " $non_pic_object"
        # $show "echo timestamp > $libobj"
            if test -z "$pic_object" || test "$pic_object" = none ; then
        # $run eval "echo timestamp > $libobj" || exit $?
              arg="$non_pic_object"
        exit $EXIT_SUCCESS
 
      fi
      fi
 
          else
      if test -n "$pic_flag" || test "$pic_mode" != default; then
            # If the PIC object exists, use it instead.
        # Only do commands if we really have different PIC objects.
            # $xdir was prepended to $pic_object above.
        reload_objs="$libobjs $reload_conv_objs"
            non_pic_object="$pic_object"
        output="$libobj"
            func_append non_pic_objects " $non_pic_object"
        cmds=$reload_cmds
 
        save_ifs="$IFS"; IFS='~'
 
        for cmd in $cmds; do
 
          IFS="$save_ifs"
 
          eval cmd=\"$cmd\"
 
          $show "$cmd"
 
          $run eval "$cmd" || exit $?
 
        done
 
        IFS="$save_ifs"
 
      fi
      fi
 
        else
 
          # Only an error if not doing a dry-run.
 
          if $opt_dry_run; then
 
            # Extract subdirectory from the argument.
 
            func_dirname "$arg" "/" ""
 
            xdir="$func_dirname_result"
 
 
      if test -n "$gentop"; then
            func_lo2o "$arg"
        $show "${rm}r $gentop"
            pic_object=$xdir$objdir/$func_lo2o_result
        $run ${rm}r $gentop
            non_pic_object=$xdir$func_lo2o_result
 
            func_append libobjs " $pic_object"
 
            func_append non_pic_objects " $non_pic_object"
 
          else
 
            func_fatal_error "\`$arg' is not a valid libtool object"
 
          fi
      fi
      fi
 
        ;;
 
 
      exit $EXIT_SUCCESS
      *.$libext)
 
        # An archive.
 
        deplibs="$deplibs $arg"
 
        old_deplibs="$old_deplibs $arg"
 
        continue
      ;;
      ;;
 
 
    prog)
      *.la)
      case $host in
        # A libtool-controlled library.
        *cygwin*) output=`$echo $output | ${SED} -e 's,.exe$,,;s,$,.exe,'` ;;
 
      esac
 
      if test -n "$vinfo"; then
 
        $echo "$modename: warning: \`-version-info' is ignored for programs" 1>&2
 
      fi
 
 
 
      if test -n "$release"; then
        if test "$prev" = dlfiles; then
        $echo "$modename: warning: \`-release' is ignored for programs" 1>&2
          # This library was specified with -dlopen.
 
          dlfiles="$dlfiles $arg"
 
          prev=
 
        elif test "$prev" = dlprefiles; then
 
          # The library was specified with -dlpreopen.
 
          dlprefiles="$dlprefiles $arg"
 
          prev=
 
        else
 
          deplibs="$deplibs $arg"
      fi
      fi
 
        continue
 
        ;;
 
 
 
      # Some other compiler argument.
 
      *)
 
        # Unknown arguments in both finalize_command and compile_command need
 
        # to be aesthetically quoted because they are evaled later.
 
        func_quote_for_eval "$arg"
 
        arg="$func_quote_for_eval_result"
 
        ;;
 
      esac # arg
 
 
      if test "$preload" = yes; then
      # Now actually substitute the argument into the commands.
        if test "$dlopen_support" = unknown && test "$dlopen_self" = unknown &&
      if test -n "$arg"; then
           test "$dlopen_self_static" = unknown; then
        func_append compile_command " $arg"
          $echo "$modename: warning: \`AC_LIBTOOL_DLOPEN' not used. Assuming no dlopen support."
        func_append finalize_command " $arg"
        fi
        fi
 
    done # argument parsing loop
 
 
 
    test -n "$prev" && \
 
      func_fatal_help "the \`$prevarg' option requires an argument"
 
 
 
    if test "$export_dynamic" = yes && test -n "$export_dynamic_flag_spec"; then
 
      eval arg=\"$export_dynamic_flag_spec\"
 
      func_append compile_command " $arg"
 
      func_append finalize_command " $arg"
      fi
      fi
 
 
      case $host in
    oldlibs=
      *-*-rhapsody* | *-*-darwin1.[012])
    # calculate the name of the file, without its directory
        # On Rhapsody replace the C library is the System framework
    func_basename "$output"
        compile_deplibs=`$echo "X $compile_deplibs" | $Xsed -e 's/ -lc / -framework System /'`
    outputname="$func_basename_result"
        finalize_deplibs=`$echo "X $finalize_deplibs" | $Xsed -e 's/ -lc / -framework System /'`
    libobjs_save="$libobjs"
        ;;
 
      esac
 
 
 
      case $host in
    if test -n "$shlibpath_var"; then
      *darwin*)
      # get the directories listed in $shlibpath_var
        # Don't allow lazy linking, it breaks C++ global constructors
      eval shlib_search_path=\`\$ECHO \"X\${$shlibpath_var}\" \| \$Xsed -e \'s/:/ /g\'\`
        if test "$tagname" = CXX ; then
    else
        compile_command="$compile_command ${wl}-bind_at_load"
      shlib_search_path=
        finalize_command="$finalize_command ${wl}-bind_at_load"
 
        fi
        fi
        ;;
    eval sys_lib_search_path=\"$sys_lib_search_path_spec\"
      esac
    eval sys_lib_dlsearch_path=\"$sys_lib_dlsearch_path_spec\"
 
 
 
    func_dirname "$output" "/" ""
 
    output_objdir="$func_dirname_result$objdir"
 
    # Create the object directory.
 
    func_mkdir_p "$output_objdir"
 
 
      # move library search paths that coincide with paths to not yet
    # Determine the type of output
      # installed libraries to the beginning of the library search list
    case $output in
      new_libs=
    "")
      for path in $notinst_path; do
      func_fatal_help "you must specify an output file"
        case " $new_libs " in
 
        *" -L$path/$objdir "*) ;;
 
        *)
 
          case " $compile_deplibs " in
 
          *" -L$path/$objdir "*)
 
            new_libs="$new_libs -L$path/$objdir" ;;
 
          esac
 
          ;;
          ;;
 
    *.$libext) linkmode=oldlib ;;
 
    *.lo | *.$objext) linkmode=obj ;;
 
    *.la) linkmode=lib ;;
 
    *) linkmode=prog ;; # Anything else should be a program.
        esac
        esac
      done
 
      for deplib in $compile_deplibs; do
    specialdeplibs=
        case $deplib in
 
        -L*)
    libs=
          case " $new_libs " in
    # Find all interdependent deplibs by searching for libraries
          *" $deplib "*) ;;
    # that are linked more than once (e.g. -la -lb -la)
          *) new_libs="$new_libs $deplib" ;;
    for deplib in $deplibs; do
          esac
      if $opt_duplicate_deps ; then
          ;;
        case "$libs " in
        *) new_libs="$new_libs $deplib" ;;
        *" $deplib "*) specialdeplibs="$specialdeplibs $deplib" ;;
        esac
        esac
 
      fi
 
      libs="$libs $deplib"
      done
      done
      compile_deplibs="$new_libs"
 
 
 
 
 
      compile_command="$compile_command $compile_deplibs"
    if test "$linkmode" = lib; then
      finalize_command="$finalize_command $finalize_deplibs"
      libs="$predeps $libs $compiler_lib_search_path $postdeps"
 
 
      if test -n "$rpath$xrpath"; then
      # Compute libraries that are listed more than once in $predeps
        # If the user specified any rpath flags, then add them.
      # $postdeps and mark them as special (i.e., whose duplicates are
        for libdir in $rpath $xrpath; do
      # not to be eliminated).
          # This is the magic to use -rpath.
      pre_post_deps=
          case "$finalize_rpath " in
      if $opt_duplicate_compiler_generated_deps; then
          *" $libdir "*) ;;
        for pre_post_dep in $predeps $postdeps; do
          *) finalize_rpath="$finalize_rpath $libdir" ;;
          case "$pre_post_deps " in
 
          *" $pre_post_dep "*) specialdeplibs="$specialdeplibs $pre_post_deps" ;;
          esac
          esac
 
          pre_post_deps="$pre_post_deps $pre_post_dep"
        done
        done
      fi
      fi
 
      pre_post_deps=
 
    fi
 
 
      # Now hardcode the library paths
    deplibs=
      rpath=
    newdependency_libs=
      hardcode_libdirs=
    newlib_search_path=
      for libdir in $compile_rpath $finalize_rpath; do
    need_relink=no # whether we're linking any uninstalled libtool libraries
        if test -n "$hardcode_libdir_flag_spec"; then
    notinst_deplibs= # not-installed libtool libraries
          if test -n "$hardcode_libdir_separator"; then
    notinst_path= # paths that contain not-installed libtool libraries
            if test -z "$hardcode_libdirs"; then
 
              hardcode_libdirs="$libdir"
    case $linkmode in
            else
    lib)
              # Just accumulate the unique libdirs.
        passes="conv dlpreopen link"
              case $hardcode_libdir_separator$hardcode_libdirs$hardcode_libdir_separator in
        for file in $dlfiles $dlprefiles; do
              *"$hardcode_libdir_separator$libdir$hardcode_libdir_separator"*)
          case $file in
                ;;
          *.la) ;;
              *)
              *)
                hardcode_libdirs="$hardcode_libdirs$hardcode_libdir_separator$libdir"
            func_fatal_help "libraries can \`-dlopen' only libtool libraries: $file"
 
            ;;
 
          esac
 
        done
 
        ;;
 
    prog)
 
        compile_deplibs=
 
        finalize_deplibs=
 
        alldeplibs=no
 
        newdlfiles=
 
        newdlprefiles=
 
        passes="conv scan dlopen dlpreopen link"
 
        ;;
 
    *)  passes="conv"
                ;;
                ;;
              esac
              esac
 
 
 
    for pass in $passes; do
 
      # The preopen pass in lib mode reverses $deplibs; put it back here
 
      # so that -L comes before libs that need it for instance...
 
      if test "$linkmode,$pass" = "lib,link"; then
 
        ## FIXME: Find the place where the list is rebuilt in the wrong
 
        ##        order, and fix it there properly
 
        tmp_deplibs=
 
        for deplib in $deplibs; do
 
          tmp_deplibs="$deplib $tmp_deplibs"
 
        done
 
        deplibs="$tmp_deplibs"
            fi
            fi
          else
 
            eval flag=\"$hardcode_libdir_flag_spec\"
      if test "$linkmode,$pass" = "lib,link" ||
            rpath="$rpath $flag"
         test "$linkmode,$pass" = "prog,scan"; then
 
        libs="$deplibs"
 
        deplibs=
          fi
          fi
        elif test -n "$runpath_var"; then
      if test "$linkmode" = prog; then
          case "$perm_rpath " in
        case $pass in
          *" $libdir "*) ;;
        dlopen) libs="$dlfiles" ;;
          *) perm_rpath="$perm_rpath $libdir" ;;
        dlpreopen) libs="$dlprefiles" ;;
 
        link)
 
          libs="$deplibs %DEPLIBS%"
 
          test "X$link_all_deplibs" != Xno && libs="$libs $dependency_libs"
 
          ;;
          esac
          esac
        fi
        fi
        case $host in
      if test "$linkmode,$pass" = "lib,dlpreopen"; then
        *-*-cygwin* | *-*-mingw* | *-*-pw32* | *-*-os2*)
        # Collect and forward deplibs of preopened libtool libs
          testbindir=`$echo "X$libdir" | $Xsed -e 's*/lib$*/bin*'`
        for lib in $dlprefiles; do
          case :$dllsearchpath: in
          # Ignore non-libtool-libs
          *":$libdir:"*) ;;
          dependency_libs=
          *) dllsearchpath="$dllsearchpath:$libdir";;
          case $lib in
          esac
          *.la) func_source "$lib" ;;
          case :$dllsearchpath: in
 
          *":$testbindir:"*) ;;
 
          *) dllsearchpath="$dllsearchpath:$testbindir";;
 
          esac
          esac
          ;;
 
 
          # Collect preopened libtool deplibs, except any this library
 
          # has declared as weak libs
 
          for deplib in $dependency_libs; do
 
            deplib_base=`$ECHO "X$deplib" | $Xsed -e "$basename"`
 
            case " $weak_libs " in
 
            *" $deplib_base "*) ;;
 
            *) deplibs="$deplibs $deplib" ;;
        esac
        esac
      done
      done
      # Substitute the hardcoded libdirs into the rpath.
        done
      if test -n "$hardcode_libdir_separator" &&
        libs="$dlprefiles"
         test -n "$hardcode_libdirs"; then
      fi
        libdir="$hardcode_libdirs"
      if test "$pass" = dlopen; then
        eval rpath=\" $hardcode_libdir_flag_spec\"
        # Collect dlpreopened libraries
 
        save_deplibs="$deplibs"
 
        deplibs=
      fi
      fi
      compile_rpath="$rpath"
 
 
 
      rpath=
      for deplib in $libs; do
      hardcode_libdirs=
        lib=
      for libdir in $finalize_rpath; do
        found=no
        if test -n "$hardcode_libdir_flag_spec"; then
        case $deplib in
          if test -n "$hardcode_libdir_separator"; then
        -mt|-mthreads|-kthread|-Kthread|-pthread|-pthreads|--thread-safe|-threads)
            if test -z "$hardcode_libdirs"; then
          if test "$linkmode,$pass" = "prog,link"; then
              hardcode_libdirs="$libdir"
            compile_deplibs="$deplib $compile_deplibs"
 
            finalize_deplibs="$deplib $finalize_deplibs"
            else
            else
              # Just accumulate the unique libdirs.
            compiler_flags="$compiler_flags $deplib"
              case $hardcode_libdir_separator$hardcode_libdirs$hardcode_libdir_separator in
            if test "$linkmode" = lib ; then
              *"$hardcode_libdir_separator$libdir$hardcode_libdir_separator"*)
                case "$new_inherited_linker_flags " in
                ;;
                    *" $deplib "*) ;;
              *)
                    * ) new_inherited_linker_flags="$new_inherited_linker_flags $deplib" ;;
                hardcode_libdirs="$hardcode_libdirs$hardcode_libdir_separator$libdir"
 
                ;;
 
              esac
              esac
            fi
            fi
          else
 
            eval flag=\"$hardcode_libdir_flag_spec\"
 
            rpath="$rpath $flag"
 
          fi
          fi
        elif test -n "$runpath_var"; then
          continue
          case "$finalize_perm_rpath " in
          ;;
          *" $libdir "*) ;;
        -l*)
          *) finalize_perm_rpath="$finalize_perm_rpath $libdir" ;;
          if test "$linkmode" != lib && test "$linkmode" != prog; then
          esac
            func_warning "\`-l' is ignored for archives/objects"
        fi
            continue
      done
 
      # Substitute the hardcoded libdirs into the rpath.
 
      if test -n "$hardcode_libdir_separator" &&
 
         test -n "$hardcode_libdirs"; then
 
        libdir="$hardcode_libdirs"
 
        eval rpath=\" $hardcode_libdir_flag_spec\"
 
      fi
      fi
      finalize_rpath="$rpath"
          func_stripname '-l' '' "$deplib"
 
          name=$func_stripname_result
      if test -n "$libobjs" && test "$build_old_libs" = yes; then
          if test "$linkmode" = lib; then
        # Transform all the library objects into standard objects.
            searchdirs="$newlib_search_path $lib_search_path $compiler_lib_search_dirs $sys_lib_search_path $shlib_search_path"
        compile_command=`$echo "X$compile_command" | $SP2NL | $Xsed -e "$lo2o" | $NL2SP`
          else
        finalize_command=`$echo "X$finalize_command" | $SP2NL | $Xsed -e "$lo2o" | $NL2SP`
            searchdirs="$newlib_search_path $lib_search_path $sys_lib_search_path $shlib_search_path"
      fi
      fi
 
          for searchdir in $searchdirs; do
      dlsyms=
            for search_ext in .la $std_shrext .so .a; do
      if test -n "$dlfiles$dlprefiles" || test "$dlself" != no; then
              # Search the libtool library
        if test -n "$NM" && test -n "$global_symbol_pipe"; then
              lib="$searchdir/lib${name}${search_ext}"
          dlsyms="${outputname}S.c"
              if test -f "$lib"; then
 
                if test "$search_ext" = ".la"; then
 
                  found=yes
        else
        else
          $echo "$modename: not configured to extract global symbols from dlpreopened files" 1>&2
                  found=no
        fi
        fi
 
                break 2
      fi
      fi
 
 
      if test -n "$dlsyms"; then
 
        case $dlsyms in
 
        "") ;;
 
        *.c)
 
          # Discover the nlist of each of the dlfiles.
 
          nlist="$output_objdir/${outputname}.nm"
 
 
 
          $show "$rm $nlist ${nlist}S ${nlist}T"
 
          $run $rm "$nlist" "${nlist}S" "${nlist}T"
 
 
 
          # Parse the name list into a source file.
 
          $show "creating $output_objdir/$dlsyms"
 
 
 
          test -z "$run" && $echo > "$output_objdir/$dlsyms" "\
 
/* $dlsyms - symbol resolution table for \`$outputname' dlsym emulation. */
 
/* Generated by $PROGRAM - GNU $PACKAGE $VERSION$TIMESTAMP */
 
 
 
#ifdef __cplusplus
 
extern \"C\" {
 
#endif
 
 
 
/* Prevent the only kind of declaration conflicts we can make. */
 
#define lt_preloaded_symbols some_other_symbol
 
 
 
/* External symbol declarations for the compiler. */\
 
"
 
 
 
          if test "$dlself" = yes; then
 
            $show "generating symbol list for \`$output'"
 
 
 
            test -z "$run" && $echo ': @PROGRAM@ ' > "$nlist"
 
 
 
            # Add our own program objects to the symbol list.
 
            progfiles=`$echo "X$objs$old_deplibs" | $SP2NL | $Xsed -e "$lo2o" | $NL2SP`
 
            for arg in $progfiles; do
 
              $show "extracting global C symbols from \`$arg'"
 
              $run eval "$NM $arg | $global_symbol_pipe >> '$nlist'"
 
            done
            done
 
          done
            if test -n "$exclude_expsyms"; then
          if test "$found" != yes; then
              $run eval '$EGREP -v " ($exclude_expsyms)$" "$nlist" > "$nlist"T'
            # deplib doesn't seem to be a libtool library
              $run eval '$mv "$nlist"T "$nlist"'
            if test "$linkmode,$pass" = "prog,link"; then
            fi
              compile_deplibs="$deplib $compile_deplibs"
 
              finalize_deplibs="$deplib $finalize_deplibs"
            if test -n "$export_symbols_regex"; then
            else
              $run eval '$EGREP -e "$export_symbols_regex" "$nlist" > "$nlist"T'
              deplibs="$deplib $deplibs"
              $run eval '$mv "$nlist"T "$nlist"'
              test "$linkmode" = lib && newdependency_libs="$deplib $newdependency_libs"
            fi
            fi
 
            continue
            # Prepare the list of exported symbols
          else # deplib is a libtool library
            if test -z "$export_symbols"; then
            # If $allow_libtool_libs_with_static_runtimes && $deplib is a stdlib,
              export_symbols="$output_objdir/$outputname.exp"
            # We need to do some special things here, and not later.
              $run $rm $export_symbols
            if test "X$allow_libtool_libs_with_static_runtimes" = "Xyes" ; then
              $run eval "${SED} -n -e '/^: @PROGRAM@ $/d' -e 's/^.* \(.*\)$/\1/p' "'< "$nlist" > "$export_symbols"'
              case " $predeps $postdeps " in
              case $host in
              *" $deplib "*)
              *cygwin* | *mingw* )
                if func_lalib_p "$lib"; then
                $run eval "echo EXPORTS "'> "$output_objdir/$outputname.def"'
                  library_names=
                $run eval 'cat "$export_symbols" >> "$output_objdir/$outputname.def"'
                  old_library=
                ;;
                  func_source "$lib"
              esac
                  for l in $old_library $library_names; do
 
                    ll="$l"
 
                  done
 
                  if test "X$ll" = "X$old_library" ; then # only static version available
 
                    found=no
 
                    func_dirname "$lib" "" "."
 
                    ladir="$func_dirname_result"
 
                    lib=$ladir/$old_library
 
                    if test "$linkmode,$pass" = "prog,link"; then
 
                      compile_deplibs="$deplib $compile_deplibs"
 
                      finalize_deplibs="$deplib $finalize_deplibs"
            else
            else
              $run eval "${SED} -e 's/\([].[*^$]\)/\\\\\1/g' -e 's/^/ /' -e 's/$/$/'"' < "$export_symbols" > "$output_objdir/$outputname.exp"'
                      deplibs="$deplib $deplibs"
              $run eval 'grep -f "$output_objdir/$outputname.exp" < "$nlist" > "$nlist"T'
                      test "$linkmode" = lib && newdependency_libs="$deplib $newdependency_libs"
              $run eval 'mv "$nlist"T "$nlist"'
                    fi
              case $host in
                    continue
              *cygwin* | *mingw* )
                  fi
                $run eval "echo EXPORTS "'> "$output_objdir/$outputname.def"'
                fi
                $run eval 'cat "$nlist" >> "$output_objdir/$outputname.def"'
 
                ;;
                ;;
 
              *) ;;
              esac
              esac
            fi
            fi
          fi
          fi
 
          ;; # -l
          for arg in $dlprefiles; do
        *.ltframework)
            $show "extracting global C symbols from \`$arg'"
          if test "$linkmode,$pass" = "prog,link"; then
            name=`$echo "$arg" | ${SED} -e 's%^.*/%%'`
            compile_deplibs="$deplib $compile_deplibs"
            $run eval '$echo ": $name " >> "$nlist"'
            finalize_deplibs="$deplib $finalize_deplibs"
            $run eval "$NM $arg | $global_symbol_pipe >> '$nlist'"
 
          done
 
 
 
          if test -z "$run"; then
 
            # Make sure we have at least an empty file.
 
            test -f "$nlist" || : > "$nlist"
 
 
 
            if test -n "$exclude_expsyms"; then
 
              $EGREP -v " ($exclude_expsyms)$" "$nlist" > "$nlist"T
 
              $mv "$nlist"T "$nlist"
 
            fi
 
 
 
            # Try sorting and uniquifying the output.
 
            if grep -v "^: " < "$nlist" |
 
                if sort -k 3 </dev/null >/dev/null 2>&1; then
 
                  sort -k 3
 
                else
 
                  sort +2
 
                fi |
 
                uniq > "$nlist"S; then
 
              :
 
            else
            else
              grep -v "^: " < "$nlist" > "$nlist"S
            deplibs="$deplib $deplibs"
 
            if test "$linkmode" = lib ; then
 
                case "$new_inherited_linker_flags " in
 
                    *" $deplib "*) ;;
 
                    * ) new_inherited_linker_flags="$new_inherited_linker_flags $deplib" ;;
 
                esac
            fi
            fi
 
 
            if test -f "$nlist"S; then
 
              eval "$global_symbol_to_cdecl"' < "$nlist"S >> "$output_objdir/$dlsyms"'
 
            else
 
              $echo '/* NONE */' >> "$output_objdir/$dlsyms"
 
            fi
            fi
 
          continue
            $echo >> "$output_objdir/$dlsyms" "\
 
 
 
#undef lt_preloaded_symbols
 
 
 
#if defined (__STDC__) && __STDC__
 
# define lt_ptr void *
 
#else
 
# define lt_ptr char *
 
# define const
 
#endif
 
 
 
/* The mapping between symbol names and symbols. */
 
"
 
 
 
            case $host in
 
            *cygwin* | *mingw* )
 
          $echo >> "$output_objdir/$dlsyms" "\
 
/* DATA imports from DLLs on WIN32 can't be const, because
 
   runtime relocations are performed -- see ld's documentation
 
   on pseudo-relocs */
 
struct {
 
"
 
              ;;
              ;;
            * )
        -L*)
          $echo >> "$output_objdir/$dlsyms" "\
          case $linkmode in
const struct {
          lib)
"
            deplibs="$deplib $deplibs"
 
            test "$pass" = conv && continue
 
            newdependency_libs="$deplib $newdependency_libs"
 
            func_stripname '-L' '' "$deplib"
 
            newlib_search_path="$newlib_search_path $func_stripname_result"
              ;;
              ;;
            esac
          prog)
 
            if test "$pass" = conv; then
 
              deplibs="$deplib $deplibs"
          $echo >> "$output_objdir/$dlsyms" "\
              continue
  const char *name;
 
  lt_ptr address;
 
}
 
lt_preloaded_symbols[] =
 
{\
 
"
 
 
 
            eval "$global_symbol_to_c_name_address" < "$nlist" >> "$output_objdir/$dlsyms"
 
 
 
            $echo >> "$output_objdir/$dlsyms" "\
 
  {0, (lt_ptr) 0}
 
};
 
 
 
/* This works around a problem in FreeBSD linker */
 
#ifdef FREEBSD_WORKAROUND
 
static const void *lt_preloaded_setup() {
 
  return lt_preloaded_symbols;
 
}
 
#endif
 
 
 
#ifdef __cplusplus
 
}
 
#endif\
 
"
 
          fi
          fi
 
            if test "$pass" = scan; then
          pic_flag_for_symtable=
              deplibs="$deplib $deplibs"
          case $host in
 
          # compiling the symbol table file with pic_flag works around
 
          # a FreeBSD bug that causes programs to crash when -lm is
 
          # linked before any other PIC object.  But we must not use
 
          # pic_flag when linking with -static.  The problem exists in
 
          # FreeBSD 2.2.6 and is fixed in FreeBSD 3.1.
 
          *-*-freebsd2*|*-*-freebsd3.0*|*-*-freebsdelf3.0*)
 
            case "$compile_command " in
 
            *" -static "*) ;;
 
            *) pic_flag_for_symtable=" $pic_flag -DFREEBSD_WORKAROUND";;
 
            esac;;
 
          *-*-hpux*)
 
            case "$compile_command " in
 
            *" -static "*) ;;
 
            *) pic_flag_for_symtable=" $pic_flag";;
 
            esac
 
          esac
 
 
 
          # Now compile the dynamic symbol file.
 
          $show "(cd $output_objdir && $LTCC  $LTCFLAGS -c$no_builtin_flag$pic_flag_for_symtable \"$dlsyms\")"
 
          $run eval '(cd $output_objdir && $LTCC  $LTCFLAGS -c$no_builtin_flag$pic_flag_for_symtable "$dlsyms")' || exit $?
 
 
 
          # Clean up the generated files.
 
          $show "$rm $output_objdir/$dlsyms $nlist ${nlist}S ${nlist}T"
 
          $run $rm "$output_objdir/$dlsyms" "$nlist" "${nlist}S" "${nlist}T"
 
 
 
          # Transform the symbol file into the correct name.
 
          case $host in
 
          *cygwin* | *mingw* )
 
            if test -f "$output_objdir/${outputname}.def" ; then
 
              compile_command=`$echo "X$compile_command" | $SP2NL | $Xsed -e "s%@SYMFILE@%$output_objdir/${outputname}.def $output_objdir/${outputname}S.${objext}%" | $NL2SP`
 
              finalize_command=`$echo "X$finalize_command" | $SP2NL | $Xsed -e "s%@SYMFILE@%$output_objdir/${outputname}.def $output_objdir/${outputname}S.${objext}%" | $NL2SP`
 
            else
            else
              compile_command=`$echo "X$compile_command" | $SP2NL | $Xsed -e "s%@SYMFILE@%$output_objdir/${outputname}S.${objext}%" | $NL2SP`
              compile_deplibs="$deplib $compile_deplibs"
              finalize_command=`$echo "X$finalize_command" | $SP2NL | $Xsed -e "s%@SYMFILE@%$output_objdir/${outputname}S.${objext}%" | $NL2SP`
              finalize_deplibs="$deplib $finalize_deplibs"
             fi
             fi
 
            func_stripname '-L' '' "$deplib"
 
            newlib_search_path="$newlib_search_path $func_stripname_result"
            ;;
            ;;
          * )
          * )
            compile_command=`$echo "X$compile_command" | $SP2NL | $Xsed -e "s%@SYMFILE@%$output_objdir/${outputname}S.${objext}%" | $NL2SP`
            func_warning "\`-L' is ignored for archives/objects"
            finalize_command=`$echo "X$finalize_command" | $SP2NL | $Xsed -e "s%@SYMFILE@%$output_objdir/${outputname}S.${objext}%" | $NL2SP`
 
            ;;
            ;;
 
          esac # linkmode
 
          continue
 
          ;; # -L
 
        -R*)
 
          if test "$pass" = link; then
 
            func_stripname '-R' '' "$deplib"
 
            dir=$func_stripname_result
 
            # Make sure the xrpath contains only unique directories.
 
            case "$xrpath " in
 
            *" $dir "*) ;;
 
            *) xrpath="$xrpath $dir" ;;
          esac
          esac
 
          fi
 
          deplibs="$deplib $deplibs"
 
          continue
          ;;
          ;;
 
        *.la) lib="$deplib" ;;
 
        *.$libext)
 
          if test "$pass" = conv; then
 
            deplibs="$deplib $deplibs"
 
            continue
 
          fi
 
          case $linkmode in
 
          lib)
 
            # Linking convenience modules into shared libraries is allowed,
 
            # but linking other static libraries is non-portable.
 
            case " $dlpreconveniencelibs " in
 
            *" $deplib "*) ;;
        *)
        *)
          $echo "$modename: unknown suffix for \`$dlsyms'" 1>&2
              valid_a_lib=no
          exit $EXIT_FAILURE
              case $deplibs_check_method in
 
                match_pattern*)
 
                  set dummy $deplibs_check_method; shift
 
                  match_pattern_regex=`expr "$deplibs_check_method" : "$1 \(.*\)"`
 
                  if eval "\$ECHO \"X$deplib\"" 2>/dev/null | $Xsed -e 10q \
 
                    | $EGREP "$match_pattern_regex" > /dev/null; then
 
                    valid_a_lib=yes
 
                  fi
 
                ;;
 
                pass_all)
 
                  valid_a_lib=yes
 
                ;;
 
              esac
 
              if test "$valid_a_lib" != yes; then
 
                $ECHO
 
                $ECHO "*** Warning: Trying to link with static lib archive $deplib."
 
                $ECHO "*** I have the capability to make that library automatically link in when"
 
                $ECHO "*** you link to this library.  But I can only do this if you have a"
 
                $ECHO "*** shared version of the library, which you do not appear to have"
 
                $ECHO "*** because the file extensions .$libext of this argument makes me believe"
 
                $ECHO "*** that it is just a static archive that I should not use here."
 
              else
 
                $ECHO
 
                $ECHO "*** Warning: Linking the shared library $output against the"
 
                $ECHO "*** static library $deplib is not portable!"
 
                deplibs="$deplib $deplibs"
 
              fi
          ;;
          ;;
        esac
        esac
 
            continue
 
            ;;
 
          prog)
 
            if test "$pass" != link; then
 
              deplibs="$deplib $deplibs"
      else
      else
        # We keep going just in case the user didn't refer to
              compile_deplibs="$deplib $compile_deplibs"
        # lt_preloaded_symbols.  The linker will fail if global_symbol_pipe
              finalize_deplibs="$deplib $finalize_deplibs"
        # really was required.
 
 
 
        # Nullify the symbol file.
 
        compile_command=`$echo "X$compile_command" | $SP2NL | $Xsed -e "s% @SYMFILE@%%" | $NL2SP`
 
        finalize_command=`$echo "X$finalize_command" | $SP2NL | $Xsed -e "s% @SYMFILE@%%" | $NL2SP`
 
      fi
      fi
 
            continue
 
            ;;
 
          esac # linkmode
 
          ;; # *.$libext
 
        *.lo | *.$objext)
 
          if test "$pass" = conv; then
 
            deplibs="$deplib $deplibs"
 
          elif test "$linkmode" = prog; then
 
            if test "$pass" = dlpreopen || test "$dlopen_support" != yes || test "$build_libtool_libs" = no; then
 
              # If there is no dlopen support or we're linking statically,
 
              # we need to preload.
 
              newdlprefiles="$newdlprefiles $deplib"
 
              compile_deplibs="$deplib $compile_deplibs"
 
              finalize_deplibs="$deplib $finalize_deplibs"
 
            else
 
              newdlfiles="$newdlfiles $deplib"
 
            fi
 
          fi
 
          continue
 
          ;;
 
        %DEPLIBS%)
 
          alldeplibs=yes
 
          continue
 
          ;;
 
        esac # case $deplib
 
 
      if test "$need_relink" = no || test "$build_libtool_libs" != yes; then
        if test "$found" = yes || test -f "$lib"; then :
        # Replace the output file specification.
        else
        compile_command=`$echo "X$compile_command" | $SP2NL | $Xsed -e 's%@OUTPUT@%'"$output"'%g' | $NL2SP`
          func_fatal_error "cannot find the library \`$lib' or unhandled argument \`$deplib'"
        link_command="$compile_command$compile_rpath"
        fi
 
 
        # We have no uninstalled library dependencies, so finalize right now.
        # Check to see that this really is a libtool archive.
        $show "$link_command"
        func_lalib_unsafe_p "$lib" \
        $run eval "$link_command"
          || func_fatal_error "\`$lib' is not a valid libtool archive"
        exit_status=$?
 
 
 
        # Delete the generated files.
        func_dirname "$lib" "" "."
        if test -n "$dlsyms"; then
        ladir="$func_dirname_result"
          $show "$rm $output_objdir/${outputname}S.${objext}"
 
          $run $rm "$output_objdir/${outputname}S.${objext}"
 
        fi
 
 
 
        exit $exit_status
        dlname=
      fi
        dlopen=
 
        dlpreopen=
 
        libdir=
 
        library_names=
 
        old_library=
 
        inherited_linker_flags=
 
        # If the library was installed with an old release of libtool,
 
        # it will not redefine variables installed, or shouldnotlink
 
        installed=yes
 
        shouldnotlink=no
 
        avoidtemprpath=
 
 
      if test -n "$shlibpath_var"; then
 
        # We should set the shlibpath_var
        # Read the .la file
        rpath=
        func_source "$lib"
        for dir in $temp_rpath; do
 
          case $dir in
        # Convert "-framework foo" to "foo.ltframework"
          [\\/]* | [A-Za-z]:[\\/]*)
        if test -n "$inherited_linker_flags"; then
            # Absolute path.
          tmp_inherited_linker_flags=`$ECHO "X$inherited_linker_flags" | $Xsed -e 's/-framework \([^ $]*\)/\1.ltframework/g'`
            rpath="$rpath$dir:"
          for tmp_inherited_linker_flag in $tmp_inherited_linker_flags; do
            ;;
            case " $new_inherited_linker_flags " in
          *)
              *" $tmp_inherited_linker_flag "*) ;;
            # Relative path: add a thisdir entry.
              *) new_inherited_linker_flags="$new_inherited_linker_flags $tmp_inherited_linker_flag";;
            rpath="$rpath\$thisdir/$dir:"
 
            ;;
 
          esac
          esac
        done
        done
        temp_rpath="$rpath"
        fi
 
        dependency_libs=`$ECHO "X $dependency_libs" | $Xsed -e 's% \([^ $]*\).ltframework% -framework \1%g'`
 
        if test "$linkmode,$pass" = "lib,link" ||
 
           test "$linkmode,$pass" = "prog,scan" ||
 
           { test "$linkmode" != prog && test "$linkmode" != lib; }; then
 
          test -n "$dlopen" && dlfiles="$dlfiles $dlopen"
 
          test -n "$dlpreopen" && dlprefiles="$dlprefiles $dlpreopen"
      fi
      fi
 
 
      if test -n "$compile_shlibpath$finalize_shlibpath"; then
        if test "$pass" = conv; then
        compile_command="$shlibpath_var=\"$compile_shlibpath$finalize_shlibpath\$$shlibpath_var\" $compile_command"
          # Only check for convenience libraries
 
          deplibs="$lib $deplibs"
 
          if test -z "$libdir"; then
 
            if test -z "$old_library"; then
 
              func_fatal_error "cannot find name of link library for \`$lib'"
      fi
      fi
      if test -n "$finalize_shlibpath"; then
            # It is a libtool convenience library, so add in its objects.
        finalize_command="$shlibpath_var=\"$finalize_shlibpath\$$shlibpath_var\" $finalize_command"
            convenience="$convenience $ladir/$objdir/$old_library"
 
            old_convenience="$old_convenience $ladir/$objdir/$old_library"
 
            tmp_libs=
 
            for deplib in $dependency_libs; do
 
              deplibs="$deplib $deplibs"
 
              if $opt_duplicate_deps ; then
 
                case "$tmp_libs " in
 
                *" $deplib "*) specialdeplibs="$specialdeplibs $deplib" ;;
 
                esac
      fi
      fi
 
              tmp_libs="$tmp_libs $deplib"
      compile_var=
 
      finalize_var=
 
      if test -n "$runpath_var"; then
 
        if test -n "$perm_rpath"; then
 
          # We should set the runpath_var.
 
          rpath=
 
          for dir in $perm_rpath; do
 
            rpath="$rpath$dir:"
 
          done
          done
          compile_var="$runpath_var=\"$rpath\$$runpath_var\" "
          elif test "$linkmode" != prog && test "$linkmode" != lib; then
 
            func_fatal_error "\`$lib' is not a convenience library"
        fi
        fi
        if test -n "$finalize_perm_rpath"; then
          continue
          # We should set the runpath_var.
        fi # $pass = conv
          rpath=
 
          for dir in $finalize_perm_rpath; do
 
            rpath="$rpath$dir:"
        # Get the name of the library we link against.
 
        linklib=
 
        for l in $old_library $library_names; do
 
          linklib="$l"
          done
          done
          finalize_var="$runpath_var=\"$rpath\$$runpath_var\" "
        if test -z "$linklib"; then
        fi
          func_fatal_error "cannot find name of link library for \`$lib'"
      fi
      fi
 
 
      if test "$no_install" = yes; then
        # This library was specified with -dlopen.
        # We don't need to create a wrapper script.
        if test "$pass" = dlopen; then
        link_command="$compile_var$compile_command$compile_rpath"
          if test -z "$libdir"; then
        # Replace the output file specification.
            func_fatal_error "cannot -dlopen a convenience library: \`$lib'"
        link_command=`$echo "X$link_command" | $Xsed -e 's%@OUTPUT@%'"$output"'%g'`
          fi
        # Delete the old output file.
          if test -z "$dlname" ||
        $run $rm $output
             test "$dlopen_support" != yes ||
        # Link the executable and exit
             test "$build_libtool_libs" = no; then
        $show "$link_command"
            # If there is no dlname, no dlopen support or we're linking
        $run eval "$link_command" || exit $?
            # statically, we need to preload.  We also need to preload any
        exit $EXIT_SUCCESS
            # dependent libraries so libltdl's deplib preloader doesn't
 
            # bomb out in the load deplibs phase.
 
            dlprefiles="$dlprefiles $lib $dependency_libs"
 
          else
 
            newdlfiles="$newdlfiles $lib"
      fi
      fi
 
          continue
 
        fi # $pass = dlopen
 
 
      if test "$hardcode_action" = relink; then
        # We need an absolute path.
        # Fast installation is not supported
        case $ladir in
        link_command="$compile_var$compile_command$compile_rpath"
        [\\/]* | [A-Za-z]:[\\/]*) abs_ladir="$ladir" ;;
        relink_command="$finalize_var$finalize_command$finalize_rpath"
        *)
 
          abs_ladir=`cd "$ladir" && pwd`
 
          if test -z "$abs_ladir"; then
 
            func_warning "cannot determine absolute directory name of \`$ladir'"
 
            func_warning "passing it literally to the linker, although it might fail"
 
            abs_ladir="$ladir"
 
          fi
 
          ;;
 
        esac
 
        func_basename "$lib"
 
        laname="$func_basename_result"
 
 
        $echo "$modename: warning: this platform does not like uninstalled shared libraries" 1>&2
        # Find the relevant object directory and library name.
        $echo "$modename: \`$output' will be relinked during installation" 1>&2
        if test "X$installed" = Xyes; then
      else
          if test ! -f "$libdir/$linklib" && test -f "$abs_ladir/$linklib"; then
        if test "$fast_install" != no; then
            func_warning "library \`$lib' was moved."
          link_command="$finalize_var$compile_command$finalize_rpath"
            dir="$ladir"
          if test "$fast_install" = yes; then
            absdir="$abs_ladir"
            relink_command=`$echo "X$compile_var$compile_command$compile_rpath" | $SP2NL | $Xsed -e 's%@OUTPUT@%\$progdir/\$file%g' | $NL2SP`
            libdir="$abs_ladir"
          else
          else
            # fast_install is set to needless
            dir="$libdir"
            relink_command=
            absdir="$libdir"
          fi
          fi
 
          test "X$hardcode_automatic" = Xyes && avoidtemprpath=yes
        else
        else
          link_command="$compile_var$compile_command$compile_rpath"
          if test ! -f "$ladir/$objdir/$linklib" && test -f "$abs_ladir/$linklib"; then
          relink_command="$finalize_var$finalize_command$finalize_rpath"
            dir="$ladir"
 
            absdir="$abs_ladir"
 
            # Remove this search path later
 
            notinst_path="$notinst_path $abs_ladir"
 
          else
 
            dir="$ladir/$objdir"
 
            absdir="$abs_ladir/$objdir"
 
            # Remove this search path later
 
            notinst_path="$notinst_path $abs_ladir"
 
          fi
 
        fi # $installed = yes
 
        func_stripname 'lib' '.la' "$laname"
 
        name=$func_stripname_result
 
 
 
        # This library was specified with -dlpreopen.
 
        if test "$pass" = dlpreopen; then
 
          if test -z "$libdir" && test "$linkmode" = prog; then
 
            func_fatal_error "only libraries may -dlpreopen a convenience library: \`$lib'"
        fi
        fi
 
          # Prefer using a static library (so that no silly _DYNAMIC symbols
 
          # are required to link).
 
          if test -n "$old_library"; then
 
            newdlprefiles="$newdlprefiles $dir/$old_library"
 
            # Keep a list of preopened convenience libraries to check
 
            # that they are being used correctly in the link pass.
 
            test -z "$libdir" && \
 
                dlpreconveniencelibs="$dlpreconveniencelibs $dir/$old_library"
 
          # Otherwise, use the dlname, so that lt_dlopen finds it.
 
          elif test -n "$dlname"; then
 
            newdlprefiles="$newdlprefiles $dir/$dlname"
 
          else
 
            newdlprefiles="$newdlprefiles $dir/$linklib"
      fi
      fi
 
        fi # $pass = dlpreopen
 
 
      # Replace the output file specification.
        if test -z "$libdir"; then
      link_command=`$echo "X$link_command" | $Xsed -e 's%@OUTPUT@%'"$output_objdir/$outputname"'%g'`
          # Link the convenience library
 
          if test "$linkmode" = lib; then
 
            deplibs="$dir/$old_library $deplibs"
 
          elif test "$linkmode,$pass" = "prog,link"; then
 
            compile_deplibs="$dir/$old_library $compile_deplibs"
 
            finalize_deplibs="$dir/$old_library $finalize_deplibs"
 
          else
 
            deplibs="$lib $deplibs" # used for prog,scan pass
 
          fi
 
          continue
 
        fi
 
 
      # Delete the old output files.
 
      $run $rm $output $output_objdir/$outputname $output_objdir/lt-$outputname
 
 
 
      $show "$link_command"
        if test "$linkmode" = prog && test "$pass" != link; then
      $run eval "$link_command" || exit $?
          newlib_search_path="$newlib_search_path $ladir"
 
          deplibs="$lib $deplibs"
 
 
      # Now create the wrapper script.
          linkalldeplibs=no
      $show "creating $output"
          if test "$link_all_deplibs" != no || test -z "$library_names" ||
 
             test "$build_libtool_libs" = no; then
 
            linkalldeplibs=yes
 
          fi
 
 
      # Quote the relink command for shipping.
          tmp_libs=
      if test -n "$relink_command"; then
          for deplib in $dependency_libs; do
        # Preserve any variables that may affect compiler behavior
            case $deplib in
        for var in $variables_saved_for_relink; do
            -L*) func_stripname '-L' '' "$deplib"
          if eval test -z \"\${$var+set}\"; then
                 newlib_search_path="$newlib_search_path $func_stripname_result"
            relink_command="{ test -z \"\${$var+set}\" || unset $var || { $var=; export $var; }; }; $relink_command"
                 ;;
          elif eval var_value=\$$var; test -z "$var_value"; then
            esac
            relink_command="$var=; export $var; $relink_command"
            # Need to link against all dependency_libs?
 
            if test "$linkalldeplibs" = yes; then
 
              deplibs="$deplib $deplibs"
          else
          else
            var_value=`$echo "X$var_value" | $Xsed -e "$sed_quote_subst"`
              # Need to hardcode shared library paths
            relink_command="$var=\"$var_value\"; export $var; $relink_command"
              # or/and link against static libraries
 
              newdependency_libs="$deplib $newdependency_libs"
          fi
          fi
        done
            if $opt_duplicate_deps ; then
        relink_command="(cd `pwd`; $relink_command)"
              case "$tmp_libs " in
        relink_command=`$echo "X$relink_command" | $SP2NL | $Xsed -e "$sed_quote_subst" | $NL2SP`
              *" $deplib "*) specialdeplibs="$specialdeplibs $deplib" ;;
 
              esac
      fi
      fi
 
            tmp_libs="$tmp_libs $deplib"
 
          done # for deplib
 
          continue
 
        fi # $linkmode = prog...
 
 
      # Quote $echo for shipping.
        if test "$linkmode,$pass" = "prog,link"; then
      if test "X$echo" = "X$SHELL $progpath --fallback-echo"; then
          if test -n "$library_names" &&
        case $progpath in
             { { test "$prefer_static_libs" = no ||
        [\\/]* | [A-Za-z]:[\\/]*) qecho="$SHELL $progpath --fallback-echo";;
                 test "$prefer_static_libs,$installed" = "built,yes"; } ||
        *) qecho="$SHELL `pwd`/$progpath --fallback-echo";;
               test -z "$old_library"; }; then
 
            # We need to hardcode the library path
 
            if test -n "$shlibpath_var" && test -z "$avoidtemprpath" ; then
 
              # Make sure the rpath contains only unique directories.
 
              case "$temp_rpath:" in
 
              *"$absdir:"*) ;;
 
              *) temp_rpath="$temp_rpath$absdir:" ;;
        esac
        esac
        qecho=`$echo "X$qecho" | $Xsed -e "$sed_quote_subst"`
 
      else
 
        qecho=`$echo "X$echo" | $Xsed -e "$sed_quote_subst"`
 
      fi
      fi
 
 
      # Only actually do things if our run command is non-null.
            # Hardcode the library path.
      if test -z "$run"; then
            # Skip directories that are in the system default run-time
        # win32 will think the script is a binary if it has
            # search path.
        # a .exe suffix, so we strip it off here.
            case " $sys_lib_dlsearch_path " in
        case $output in
            *" $absdir "*) ;;
          *.exe) output=`$echo $output|${SED} 's,.exe$,,'` ;;
            *)
        esac
              case "$compile_rpath " in
        # test for cygwin because mv fails w/o .exe extensions
              *" $absdir "*) ;;
        case $host in
              *) compile_rpath="$compile_rpath $absdir"
          *cygwin*)
 
            exeext=.exe
 
            outputname=`$echo $outputname|${SED} 's,.exe$,,'` ;;
 
          *) exeext= ;;
 
        esac
        esac
        case $host in
 
          *cygwin* | *mingw* )
 
            output_name=`basename $output`
 
            output_path=`dirname $output`
 
            cwrappersource="$output_path/$objdir/lt-$output_name.c"
 
            cwrapper="$output_path/$output_name.exe"
 
            $rm $cwrappersource $cwrapper
 
            trap "$rm $cwrappersource $cwrapper; exit $EXIT_FAILURE" 1 2 15
 
 
 
            cat > $cwrappersource <<EOF
 
 
 
/* $cwrappersource - temporary wrapper executable for $objdir/$outputname
 
   Generated by $PROGRAM - GNU $PACKAGE $VERSION$TIMESTAMP
 
 
 
   The $output program cannot be directly executed until all the libtool
 
   libraries that it depends on are installed.
 
 
 
   This wrapper executable should never be moved out of the build directory.
 
   If it is, it will not operate correctly.
 
 
 
   Currently, it simply execs the wrapper *script* "/bin/sh $output",
 
   but could eventually absorb all of the scripts functionality and
 
   exec $objdir/$outputname directly.
 
*/
 
EOF
 
            cat >> $cwrappersource<<"EOF"
 
#include <stdio.h>
 
#include <stdlib.h>
 
#include <unistd.h>
 
#include <malloc.h>
 
#include <stdarg.h>
 
#include <assert.h>
 
#include <string.h>
 
#include <ctype.h>
 
#include <sys/stat.h>
 
 
 
#if defined(PATH_MAX)
 
# define LT_PATHMAX PATH_MAX
 
#elif defined(MAXPATHLEN)
 
# define LT_PATHMAX MAXPATHLEN
 
#else
 
# define LT_PATHMAX 1024
 
#endif
 
 
 
#ifndef DIR_SEPARATOR
 
# define DIR_SEPARATOR '/'
 
# define PATH_SEPARATOR ':'
 
#endif
 
 
 
#if defined (_WIN32) || defined (__MSDOS__) || defined (__DJGPP__) || \
 
  defined (__OS2__)
 
# define HAVE_DOS_BASED_FILE_SYSTEM
 
# ifndef DIR_SEPARATOR_2
 
#  define DIR_SEPARATOR_2 '\\'
 
# endif
 
# ifndef PATH_SEPARATOR_2
 
#  define PATH_SEPARATOR_2 ';'
 
# endif
 
#endif
 
 
 
#ifndef DIR_SEPARATOR_2
 
# define IS_DIR_SEPARATOR(ch) ((ch) == DIR_SEPARATOR)
 
#else /* DIR_SEPARATOR_2 */
 
# define IS_DIR_SEPARATOR(ch) \
 
        (((ch) == DIR_SEPARATOR) || ((ch) == DIR_SEPARATOR_2))
 
#endif /* DIR_SEPARATOR_2 */
 
 
 
#ifndef PATH_SEPARATOR_2
 
# define IS_PATH_SEPARATOR(ch) ((ch) == PATH_SEPARATOR)
 
#else /* PATH_SEPARATOR_2 */
 
# define IS_PATH_SEPARATOR(ch) ((ch) == PATH_SEPARATOR_2)
 
#endif /* PATH_SEPARATOR_2 */
 
 
 
#define XMALLOC(type, num)      ((type *) xmalloc ((num) * sizeof(type)))
 
#define XFREE(stale) do { \
 
  if (stale) { free ((void *) stale); stale = 0; } \
 
} while (0)
 
 
 
/* -DDEBUG is fairly common in CFLAGS.  */
 
#undef DEBUG
 
#if defined DEBUGWRAPPER
 
# define DEBUG(format, ...) fprintf(stderr, format, __VA_ARGS__)
 
#else
 
# define DEBUG(format, ...)
 
#endif
 
 
 
const char *program_name = NULL;
 
 
 
void * xmalloc (size_t num);
 
char * xstrdup (const char *string);
 
const char * base_name (const char *name);
 
char * find_executable(const char *wrapper);
 
int    check_executable(const char *path);
 
char * strendzap(char *str, const char *pat);
 
void lt_fatal (const char *message, ...);
 
 
 
int
 
main (int argc, char *argv[])
 
{
 
  char **newargz;
 
  int i;
 
 
 
  program_name = (char *) xstrdup (base_name (argv[0]));
 
  DEBUG("(main) argv[0]      : %s\n",argv[0]);
 
  DEBUG("(main) program_name : %s\n",program_name);
 
  newargz = XMALLOC(char *, argc+2);
 
EOF
 
 
 
            cat >> $cwrappersource <<EOF
 
  newargz[0] = (char *) xstrdup("$SHELL");
 
EOF
 
 
 
            cat >> $cwrappersource <<"EOF"
 
  newargz[1] = find_executable(argv[0]);
 
  if (newargz[1] == NULL)
 
    lt_fatal("Couldn't find %s", argv[0]);
 
  DEBUG("(main) found exe at : %s\n",newargz[1]);
 
  /* we know the script has the same name, without the .exe */
 
  /* so make sure newargz[1] doesn't end in .exe */
 
  strendzap(newargz[1],".exe");
 
  for (i = 1; i < argc; i++)
 
    newargz[i+1] = xstrdup(argv[i]);
 
  newargz[argc+1] = NULL;
 
 
 
  for (i=0; i<argc+1; i++)
 
  {
 
    DEBUG("(main) newargz[%d]   : %s\n",i,newargz[i]);
 
    ;
 
  }
 
 
 
EOF
 
 
 
            case $host_os in
 
              mingw*)
 
                cat >> $cwrappersource <<EOF
 
  execv("$SHELL",(char const **)newargz);
 
EOF
 
              ;;
              ;;
 
            esac
 
            case " $sys_lib_dlsearch_path " in
 
            *" $libdir "*) ;;
              *)
              *)
                cat >> $cwrappersource <<EOF
              case "$finalize_rpath " in
  execv("$SHELL",newargz);
              *" $libdir "*) ;;
EOF
              *) finalize_rpath="$finalize_rpath $libdir"
 
              esac
              ;;
              ;;
            esac
            esac
 
          fi # $linkmode,$pass = prog,link...
 
 
            cat >> $cwrappersource <<"EOF"
          if test "$alldeplibs" = yes &&
  return 127;
             { test "$deplibs_check_method" = pass_all ||
}
               { test "$build_libtool_libs" = yes &&
 
                 test -n "$library_names"; }; }; then
void *
            # We only need to search for static libraries
xmalloc (size_t num)
            continue
{
          fi
  void * p = (void *) malloc (num);
        fi
  if (!p)
 
    lt_fatal ("Memory exhausted");
 
 
 
  return p;
 
}
 
 
 
char *
 
xstrdup (const char *string)
 
{
 
  return string ? strcpy ((char *) xmalloc (strlen (string) + 1), string) : NULL
 
;
 
}
 
 
 
const char *
 
base_name (const char *name)
 
{
 
  const char *base;
 
 
 
#if defined (HAVE_DOS_BASED_FILE_SYSTEM)
        link_static=no # Whether the deplib will be linked statically
  /* Skip over the disk name in MSDOS pathnames. */
        use_static_libs=$prefer_static_libs
  if (isalpha ((unsigned char)name[0]) && name[1] == ':')
        if test "$use_static_libs" = built && test "$installed" = yes; then
    name += 2;
          use_static_libs=no
#endif
        fi
 
        if test -n "$library_names" &&
 
           { test "$use_static_libs" = no || test -z "$old_library"; }; then
 
          case $host in
 
          *cygwin* | *mingw* | *cegcc*)
 
              # No point in relinking DLLs because paths are not encoded
 
              notinst_deplibs="$notinst_deplibs $lib"
 
              need_relink=no
 
            ;;
 
          *)
 
            if test "$installed" = no; then
 
              notinst_deplibs="$notinst_deplibs $lib"
 
              need_relink=yes
 
            fi
 
            ;;
 
          esac
 
          # This is a shared library
 
 
  for (base = name; *name; name++)
          # Warn about portability, can't link against -module's on some
    if (IS_DIR_SEPARATOR (*name))
          # systems (darwin).  Don't bleat about dlopened modules though!
      base = name + 1;
          dlopenmodule=""
  return base;
          for dlpremoduletest in $dlprefiles; do
}
            if test "X$dlpremoduletest" = "X$lib"; then
 
              dlopenmodule="$dlpremoduletest"
 
              break
 
            fi
 
          done
 
          if test -z "$dlopenmodule" && test "$shouldnotlink" = yes && test "$pass" = link; then
 
            $ECHO
 
            if test "$linkmode" = prog; then
 
              $ECHO "*** Warning: Linking the executable $output against the loadable module"
 
            else
 
              $ECHO "*** Warning: Linking the shared library $output against the loadable module"
 
            fi
 
            $ECHO "*** $linklib is not portable!"
 
          fi
 
          if test "$linkmode" = lib &&
 
             test "$hardcode_into_libs" = yes; then
 
            # Hardcode the library path.
 
            # Skip directories that are in the system default run-time
 
            # search path.
 
            case " $sys_lib_dlsearch_path " in
 
            *" $absdir "*) ;;
 
            *)
 
              case "$compile_rpath " in
 
              *" $absdir "*) ;;
 
              *) compile_rpath="$compile_rpath $absdir"
 
              esac
 
              ;;
 
            esac
 
            case " $sys_lib_dlsearch_path " in
 
            *" $libdir "*) ;;
 
            *)
 
              case "$finalize_rpath " in
 
              *" $libdir "*) ;;
 
              *) finalize_rpath="$finalize_rpath $libdir"
 
              esac
 
              ;;
 
            esac
 
          fi
 
 
int
          if test -n "$old_archive_from_expsyms_cmds"; then
check_executable(const char * path)
            # figure out the soname
{
            set dummy $library_names
  struct stat st;
            shift
 
            realname="$1"
 
            shift
 
            libname=`eval "\\$ECHO \"$libname_spec\""`
 
            # use dlname if we got it. it's perfectly good, no?
 
            if test -n "$dlname"; then
 
              soname="$dlname"
 
            elif test -n "$soname_spec"; then
 
              # bleh windows
 
              case $host in
 
              *cygwin* | mingw* | *cegcc*)
 
                func_arith $current - $age
 
                major=$func_arith_result
 
                versuffix="-$major"
 
                ;;
 
              esac
 
              eval soname=\"$soname_spec\"
 
            else
 
              soname="$realname"
 
            fi
 
 
  DEBUG("(check_executable)  : %s\n", path ? (*path ? path : "EMPTY!") : "NULL!");
            # Make a new name for the extract_expsyms_cmds to use
  if ((!path) || (!*path))
            soroot="$soname"
    return 0;
            func_basename "$soroot"
 
            soname="$func_basename_result"
 
            func_stripname 'lib' '.dll' "$soname"
 
            newlib=libimp-$func_stripname_result.a
 
 
  if ((stat (path, &st) >= 0) &&
            # If the library has no export list, then create one now
      (
            if test -f "$output_objdir/$soname-def"; then :
        /* MinGW & native WIN32 do not support S_IXOTH or S_IXGRP */
 
#if defined (S_IXOTH)
 
       ((st.st_mode & S_IXOTH) == S_IXOTH) ||
 
#endif
 
#if defined (S_IXGRP)
 
       ((st.st_mode & S_IXGRP) == S_IXGRP) ||
 
#endif
 
       ((st.st_mode & S_IXUSR) == S_IXUSR))
 
      )
 
    return 1;
 
  else
  else
    return 0;
              func_verbose "extracting exported symbol list from \`$soname'"
}
              func_execute_cmds "$extract_expsyms_cmds" 'exit $?'
 
            fi
 
 
/* Searches for the full path of the wrapper.  Returns
            # Create $newlib
   newly allocated full path name if found, NULL otherwise */
            if test -f "$output_objdir/$newlib"; then :; else
char *
              func_verbose "generating import library for \`$soname'"
find_executable (const char* wrapper)
              func_execute_cmds "$old_archive_from_expsyms_cmds" 'exit $?'
{
            fi
  int has_slash = 0;
            # make sure the library variables are pointing to the new library
  const char* p;
            dir=$output_objdir
  const char* p_next;
            linklib=$newlib
  /* static buffer for getcwd */
          fi # test -n "$old_archive_from_expsyms_cmds"
  char tmp[LT_PATHMAX + 1];
 
  int tmp_len;
          if test "$linkmode" = prog || test "$mode" != relink; then
  char* concat_name;
            add_shlibpath=
 
            add_dir=
 
            add=
 
            lib_linked=yes
 
            case $hardcode_action in
 
            immediate | unsupported)
 
              if test "$hardcode_direct" = no; then
 
                add="$dir/$linklib"
 
                case $host in
 
                  *-*-sco3.2v5.0.[024]*) add_dir="-L$dir" ;;
 
                  *-*-sysv4*uw2*) add_dir="-L$dir" ;;
 
                  *-*-sysv5OpenUNIX* | *-*-sysv5UnixWare7.[01].[10]* | \
 
                    *-*-unixware7*) add_dir="-L$dir" ;;
 
                  *-*-darwin* )
 
                    # if the lib is a (non-dlopened) module then we can not
 
                    # link against it, someone is ignoring the earlier warnings
 
                    if /usr/bin/file -L $add 2> /dev/null |
 
                         $GREP ": [^:]* bundle" >/dev/null ; then
 
                      if test "X$dlopenmodule" != "X$lib"; then
 
                        $ECHO "*** Warning: lib $linklib is a module, not a shared library"
 
                        if test -z "$old_library" ; then
 
                          $ECHO
 
                          $ECHO "*** And there doesn't seem to be a static archive available"
 
                          $ECHO "*** The link will probably fail, sorry"
 
                        else
 
                          add="$dir/$old_library"
 
                        fi
 
                      elif test -n "$old_library"; then
 
                        add="$dir/$old_library"
 
                      fi
 
                    fi
 
                esac
 
              elif test "$hardcode_minus_L" = no; then
 
                case $host in
 
                *-*-sunos*) add_shlibpath="$dir" ;;
 
                esac
 
                add_dir="-L$dir"
 
                add="-l$name"
 
              elif test "$hardcode_shlibpath_var" = no; then
 
                add_shlibpath="$dir"
 
                add="-l$name"
 
              else
 
                lib_linked=no
 
              fi
 
              ;;
 
            relink)
 
              if test "$hardcode_direct" = yes &&
 
                 test "$hardcode_direct_absolute" = no; then
 
                add="$dir/$linklib"
 
              elif test "$hardcode_minus_L" = yes; then
 
                add_dir="-L$dir"
 
                # Try looking first in the location we're being installed to.
 
                if test -n "$inst_prefix_dir"; then
 
                  case $libdir in
 
                    [\\/]*)
 
                      add_dir="$add_dir -L$inst_prefix_dir$libdir"
 
                      ;;
 
                  esac
 
                fi
 
                add="-l$name"
 
              elif test "$hardcode_shlibpath_var" = yes; then
 
                add_shlibpath="$dir"
 
                add="-l$name"
 
              else
 
                lib_linked=no
 
              fi
 
              ;;
 
            *) lib_linked=no ;;
 
            esac
 
 
 
            if test "$lib_linked" != yes; then
 
              func_fatal_configuration "unsupported hardcode properties"
 
            fi
 
 
 
            if test -n "$add_shlibpath"; then
 
              case :$compile_shlibpath: in
 
              *":$add_shlibpath:"*) ;;
 
              *) compile_shlibpath="$compile_shlibpath$add_shlibpath:" ;;
 
              esac
 
            fi
 
            if test "$linkmode" = prog; then
 
              test -n "$add_dir" && compile_deplibs="$add_dir $compile_deplibs"
 
              test -n "$add" && compile_deplibs="$add $compile_deplibs"
 
            else
 
              test -n "$add_dir" && deplibs="$add_dir $deplibs"
 
              test -n "$add" && deplibs="$add $deplibs"
 
              if test "$hardcode_direct" != yes &&
 
                 test "$hardcode_minus_L" != yes &&
 
                 test "$hardcode_shlibpath_var" = yes; then
 
                case :$finalize_shlibpath: in
 
                *":$libdir:"*) ;;
 
                *) finalize_shlibpath="$finalize_shlibpath$libdir:" ;;
 
                esac
 
              fi
 
            fi
 
          fi
 
 
 
          if test "$linkmode" = prog || test "$mode" = relink; then
 
            add_shlibpath=
 
            add_dir=
 
            add=
 
            # Finalize command for both is simple: just hardcode it.
 
            if test "$hardcode_direct" = yes &&
 
               test "$hardcode_direct_absolute" = no; then
 
              add="$libdir/$linklib"
 
            elif test "$hardcode_minus_L" = yes; then
 
              add_dir="-L$libdir"
 
              add="-l$name"
 
            elif test "$hardcode_shlibpath_var" = yes; then
 
              case :$finalize_shlibpath: in
 
              *":$libdir:"*) ;;
 
              *) finalize_shlibpath="$finalize_shlibpath$libdir:" ;;
 
              esac
 
              add="-l$name"
 
            elif test "$hardcode_automatic" = yes; then
 
              if test -n "$inst_prefix_dir" &&
 
                 test -f "$inst_prefix_dir$libdir/$linklib" ; then
 
                add="$inst_prefix_dir$libdir/$linklib"
 
              else
 
                add="$libdir/$linklib"
 
              fi
 
            else
 
              # We cannot seem to hardcode it, guess we'll fake it.
 
              add_dir="-L$libdir"
 
              # Try looking first in the location we're being installed to.
 
              if test -n "$inst_prefix_dir"; then
 
                case $libdir in
 
                  [\\/]*)
 
                    add_dir="$add_dir -L$inst_prefix_dir$libdir"
 
                    ;;
 
                esac
 
              fi
 
              add="-l$name"
 
            fi
 
 
 
            if test "$linkmode" = prog; then
 
              test -n "$add_dir" && finalize_deplibs="$add_dir $finalize_deplibs"
 
              test -n "$add" && finalize_deplibs="$add $finalize_deplibs"
 
            else
 
              test -n "$add_dir" && deplibs="$add_dir $deplibs"
 
              test -n "$add" && deplibs="$add $deplibs"
 
            fi
 
          fi
 
        elif test "$linkmode" = prog; then
 
          # Here we assume that one of hardcode_direct or hardcode_minus_L
 
          # is not unsupported.  This is valid on all known static and
 
          # shared platforms.
 
          if test "$hardcode_direct" != unsupported; then
 
            test -n "$old_library" && linklib="$old_library"
 
            compile_deplibs="$dir/$linklib $compile_deplibs"
 
            finalize_deplibs="$dir/$linklib $finalize_deplibs"
 
          else
 
            compile_deplibs="-l$name -L$dir $compile_deplibs"
 
            finalize_deplibs="-l$name -L$dir $finalize_deplibs"
 
          fi
 
        elif test "$build_libtool_libs" = yes; then
 
          # Not a shared library
 
          if test "$deplibs_check_method" != pass_all; then
 
            # We're trying link a shared library against a static one
 
            # but the system doesn't support it.
 
 
 
            # Just print a warning and add the library to dependency_libs so
 
            # that the program can be linked against the static library.
 
            $ECHO
 
            $ECHO "*** Warning: This system can not link to static lib archive $lib."
 
            $ECHO "*** I have the capability to make that library automatically link in when"
 
            $ECHO "*** you link to this library.  But I can only do this if you have a"
 
            $ECHO "*** shared version of the library, which you do not appear to have."
 
            if test "$module" = yes; then
 
              $ECHO "*** But as you try to build a module library, libtool will still create "
 
              $ECHO "*** a static module, that should work as long as the dlopening application"
 
              $ECHO "*** is linked with the -dlopen flag to resolve symbols at runtime."
 
              if test -z "$global_symbol_pipe"; then
 
                $ECHO
 
                $ECHO "*** However, this would only work if libtool was able to extract symbol"
 
                $ECHO "*** lists from a program, using \`nm' or equivalent, but libtool could"
 
                $ECHO "*** not find such a program.  So, this module is probably useless."
 
                $ECHO "*** \`nm' from GNU binutils and a full rebuild may help."
 
              fi
 
              if test "$build_old_libs" = no; then
 
                build_libtool_libs=module
 
                build_old_libs=yes
 
              else
 
                build_libtool_libs=no
 
              fi
 
            fi
 
          else
 
            deplibs="$dir/$old_library $deplibs"
 
            link_static=yes
 
          fi
 
        fi # link shared/static library?
 
 
 
        if test "$linkmode" = lib; then
 
          if test -n "$dependency_libs" &&
 
             { test "$hardcode_into_libs" != yes ||
 
               test "$build_old_libs" = yes ||
 
               test "$link_static" = yes; }; then
 
            # Extract -R from dependency_libs
 
            temp_deplibs=
 
            for libdir in $dependency_libs; do
 
              case $libdir in
 
              -R*) func_stripname '-R' '' "$libdir"
 
                   temp_xrpath=$func_stripname_result
 
                   case " $xrpath " in
 
                   *" $temp_xrpath "*) ;;
 
                   *) xrpath="$xrpath $temp_xrpath";;
 
                   esac;;
 
              *) temp_deplibs="$temp_deplibs $libdir";;
 
              esac
 
            done
 
            dependency_libs="$temp_deplibs"
 
          fi
 
 
 
          newlib_search_path="$newlib_search_path $absdir"
 
          # Link against this library
 
          test "$link_static" = no && newdependency_libs="$abs_ladir/$laname $newdependency_libs"
 
          # ... and its dependency_libs
 
          tmp_libs=
 
          for deplib in $dependency_libs; do
 
            newdependency_libs="$deplib $newdependency_libs"
 
            if $opt_duplicate_deps ; then
 
              case "$tmp_libs " in
 
              *" $deplib "*) specialdeplibs="$specialdeplibs $deplib" ;;
 
              esac
 
            fi
 
            tmp_libs="$tmp_libs $deplib"
 
          done
 
 
 
          if test "$link_all_deplibs" != no; then
 
            # Add the search paths of all dependency libraries
 
            for deplib in $dependency_libs; do
 
              path=
 
              case $deplib in
 
              -L*) path="$deplib" ;;
 
              *.la)
 
                func_dirname "$deplib" "" "."
 
                dir="$func_dirname_result"
 
                # We need an absolute path.
 
                case $dir in
 
                [\\/]* | [A-Za-z]:[\\/]*) absdir="$dir" ;;
 
                *)
 
                  absdir=`cd "$dir" && pwd`
 
                  if test -z "$absdir"; then
 
                    func_warning "cannot determine absolute directory name of \`$dir'"
 
                    absdir="$dir"
 
                  fi
 
                  ;;
 
                esac
 
                if $GREP "^installed=no" $deplib > /dev/null; then
 
                case $host in
 
                *-*-darwin*)
 
                  depdepl=
 
                  eval deplibrary_names=`${SED} -n -e 's/^library_names=\(.*\)$/\1/p' $deplib`
 
                  if test -n "$deplibrary_names" ; then
 
                    for tmp in $deplibrary_names ; do
 
                      depdepl=$tmp
 
                    done
 
                    if test -f "$absdir/$objdir/$depdepl" ; then
 
                      depdepl="$absdir/$objdir/$depdepl"
 
                      darwin_install_name=`${OTOOL} -L $depdepl | awk '{if (NR == 2) {print $1;exit}}'`
 
                      if test -z "$darwin_install_name"; then
 
                          darwin_install_name=`${OTOOL64} -L $depdepl  | awk '{if (NR == 2) {print $1;exit}}'`
 
                      fi
 
                      compiler_flags="$compiler_flags ${wl}-dylib_file ${wl}${darwin_install_name}:${depdepl}"
 
                      linker_flags="$linker_flags -dylib_file ${darwin_install_name}:${depdepl}"
 
                      path=
 
                    fi
 
                  fi
 
                  ;;
 
                *)
 
                  path="-L$absdir/$objdir"
 
                  ;;
 
                esac
 
                else
 
                  eval libdir=`${SED} -n -e 's/^libdir=\(.*\)$/\1/p' $deplib`
 
                  test -z "$libdir" && \
 
                    func_fatal_error "\`$deplib' is not a valid libtool archive"
 
                  test "$absdir" != "$libdir" && \
 
                    func_warning "\`$deplib' seems to be moved"
 
 
 
                  path="-L$absdir"
 
                fi
 
                ;;
 
              esac
 
              case " $deplibs " in
 
              *" $path "*) ;;
 
              *) deplibs="$path $deplibs" ;;
 
              esac
 
            done
 
          fi # link_all_deplibs != no
 
        fi # linkmode = lib
 
      done # for deplib in $libs
 
      if test "$pass" = link; then
 
        if test "$linkmode" = "prog"; then
 
          compile_deplibs="$new_inherited_linker_flags $compile_deplibs"
 
          finalize_deplibs="$new_inherited_linker_flags $finalize_deplibs"
 
        else
 
          compiler_flags="$compiler_flags "`$ECHO "X $new_inherited_linker_flags" | $Xsed -e 's% \([^ $]*\).ltframework% -framework \1%g'`
 
        fi
 
      fi
 
      dependency_libs="$newdependency_libs"
 
      if test "$pass" = dlpreopen; then
 
        # Link the dlpreopened libraries before other libraries
 
        for deplib in $save_deplibs; do
 
          deplibs="$deplib $deplibs"
 
        done
 
      fi
 
      if test "$pass" != dlopen; then
 
        if test "$pass" != conv; then
 
          # Make sure lib_search_path contains only unique directories.
 
          lib_search_path=
 
          for dir in $newlib_search_path; do
 
            case "$lib_search_path " in
 
            *" $dir "*) ;;
 
            *) lib_search_path="$lib_search_path $dir" ;;
 
            esac
 
          done
 
          newlib_search_path=
 
        fi
 
 
 
        if test "$linkmode,$pass" != "prog,link"; then
 
          vars="deplibs"
 
        else
 
          vars="compile_deplibs finalize_deplibs"
 
        fi
 
        for var in $vars dependency_libs; do
 
          # Add libraries to $var in reverse order
 
          eval tmp_libs=\"\$$var\"
 
          new_libs=
 
          for deplib in $tmp_libs; do
 
            # FIXME: Pedantically, this is the right thing to do, so
 
            #        that some nasty dependency loop isn't accidentally
 
            #        broken:
 
            #new_libs="$deplib $new_libs"
 
            # Pragmatically, this seems to cause very few problems in
 
            # practice:
 
            case $deplib in
 
            -L*) new_libs="$deplib $new_libs" ;;
 
            -R*) ;;
 
            *)
 
              # And here is the reason: when a library appears more
 
              # than once as an explicit dependence of a library, or
 
              # is implicitly linked in more than once by the
 
              # compiler, it is considered special, and multiple
 
              # occurrences thereof are not removed.  Compare this
 
              # with having the same library being listed as a
 
              # dependency of multiple other libraries: in this case,
 
              # we know (pedantically, we assume) the library does not
 
              # need to be listed more than once, so we keep only the
 
              # last copy.  This is not always right, but it is rare
 
              # enough that we require users that really mean to play
 
              # such unportable linking tricks to link the library
 
              # using -Wl,-lname, so that libtool does not consider it
 
              # for duplicate removal.
 
              case " $specialdeplibs " in
 
              *" $deplib "*) new_libs="$deplib $new_libs" ;;
 
              *)
 
                case " $new_libs " in
 
                *" $deplib "*) ;;
 
                *) new_libs="$deplib $new_libs" ;;
 
                esac
 
                ;;
 
              esac
 
              ;;
 
            esac
 
          done
 
          tmp_libs=
 
          for deplib in $new_libs; do
 
            case $deplib in
 
            -L*)
 
              case " $tmp_libs " in
 
              *" $deplib "*) ;;
 
              *) tmp_libs="$tmp_libs $deplib" ;;
 
              esac
 
              ;;
 
            *) tmp_libs="$tmp_libs $deplib" ;;
 
            esac
 
          done
 
          eval $var=\"$tmp_libs\"
 
        done # for var
 
      fi
 
      # Last step: remove runtime libs from dependency_libs
 
      # (they stay in deplibs)
 
      tmp_libs=
 
      for i in $dependency_libs ; do
 
        case " $predeps $postdeps $compiler_lib_search_path " in
 
        *" $i "*)
 
          i=""
 
          ;;
 
        esac
 
        if test -n "$i" ; then
 
          tmp_libs="$tmp_libs $i"
 
        fi
 
      done
 
      dependency_libs=$tmp_libs
 
    done # for pass
 
    if test "$linkmode" = prog; then
 
      dlfiles="$newdlfiles"
 
    fi
 
    if test "$linkmode" = prog || test "$linkmode" = lib; then
 
      dlprefiles="$newdlprefiles"
 
    fi
 
 
 
    case $linkmode in
 
    oldlib)
 
      if test -n "$dlfiles$dlprefiles" || test "$dlself" != no; then
 
        func_warning "\`-dlopen' is ignored for archives"
 
      fi
 
 
 
      case " $deplibs" in
 
      *\ -l* | *\ -L*)
 
        func_warning "\`-l' and \`-L' are ignored for archives" ;;
 
      esac
 
 
 
      test -n "$rpath" && \
 
        func_warning "\`-rpath' is ignored for archives"
 
 
 
      test -n "$xrpath" && \
 
        func_warning "\`-R' is ignored for archives"
 
 
 
      test -n "$vinfo" && \
 
        func_warning "\`-version-info/-version-number' is ignored for archives"
 
 
 
      test -n "$release" && \
 
        func_warning "\`-release' is ignored for archives"
 
 
 
      test -n "$export_symbols$export_symbols_regex" && \
 
        func_warning "\`-export-symbols' is ignored for archives"
 
 
 
      # Now set the variables for building old libraries.
 
      build_libtool_libs=no
 
      oldlibs="$output"
 
      objs="$objs$old_deplibs"
 
      ;;
 
 
 
    lib)
 
      # Make sure we only generate libraries of the form `libNAME.la'.
 
      case $outputname in
 
      lib*)
 
        func_stripname 'lib' '.la' "$outputname"
 
        name=$func_stripname_result
 
        eval shared_ext=\"$shrext_cmds\"
 
        eval libname=\"$libname_spec\"
 
        ;;
 
      *)
 
        test "$module" = no && \
 
          func_fatal_help "libtool library \`$output' must begin with \`lib'"
 
 
 
        if test "$need_lib_prefix" != no; then
 
          # Add the "lib" prefix for modules if required
 
          func_stripname '' '.la' "$outputname"
 
          name=$func_stripname_result
 
          eval shared_ext=\"$shrext_cmds\"
 
          eval libname=\"$libname_spec\"
 
        else
 
          func_stripname '' '.la' "$outputname"
 
          libname=$func_stripname_result
 
        fi
 
        ;;
 
      esac
 
 
 
      if test -n "$objs"; then
 
        if test "$deplibs_check_method" != pass_all; then
 
          func_fatal_error "cannot build libtool library \`$output' from non-libtool objects on this host:$objs"
 
        else
 
          $ECHO
 
          $ECHO "*** Warning: Linking the shared library $output against the non-libtool"
 
          $ECHO "*** objects $objs is not portable!"
 
          libobjs="$libobjs $objs"
 
        fi
 
      fi
 
 
 
      test "$dlself" != no && \
 
        func_warning "\`-dlopen self' is ignored for libtool libraries"
 
 
 
      set dummy $rpath
 
      shift
 
      test "$#" -gt 1 && \
 
        func_warning "ignoring multiple \`-rpath's for a libtool library"
 
 
 
      install_libdir="$1"
 
 
 
      oldlibs=
 
      if test -z "$rpath"; then
 
        if test "$build_libtool_libs" = yes; then
 
          # Building a libtool convenience library.
 
          # Some compilers have problems with a `.al' extension so
 
          # convenience libraries should have the same extension an
 
          # archive normally would.
 
          oldlibs="$output_objdir/$libname.$libext $oldlibs"
 
          build_libtool_libs=convenience
 
          build_old_libs=yes
 
        fi
 
 
 
        test -n "$vinfo" && \
 
          func_warning "\`-version-info/-version-number' is ignored for convenience libraries"
 
 
 
        test -n "$release" && \
 
          func_warning "\`-release' is ignored for convenience libraries"
 
      else
 
 
 
        # Parse the version information argument.
 
        save_ifs="$IFS"; IFS=':'
 
        set dummy $vinfo 0 0 0
 
        shift
 
        IFS="$save_ifs"
 
 
 
        test -n "$7" && \
 
          func_fatal_help "too many parameters to \`-version-info'"
 
 
  DEBUG("(find_executable)  : %s\n", wrapper ? (*wrapper ? wrapper : "EMPTY!") : "NULL!");
        # convert absolute version numbers to libtool ages
 
        # this retains compatibility with .la files and attempts
 
        # to make the code below a bit more comprehensible
 
 
  if ((wrapper == NULL) || (*wrapper == '\0'))
        case $vinfo_number in
    return NULL;
        yes)
 
          number_major="$1"
 
          number_minor="$2"
 
          number_revision="$3"
 
          #
 
          # There are really only two kinds -- those that
 
          # use the current revision as the major version
 
          # and those that subtract age and use age as
 
          # a minor version.  But, then there is irix
 
          # which has an extra 1 added just for fun
 
          #
 
          case $version_type in
 
          darwin|linux|osf|windows|none)
 
            func_arith $number_major + $number_minor
 
            current=$func_arith_result
 
            age="$number_minor"
 
            revision="$number_revision"
 
            ;;
 
          freebsd-aout|freebsd-elf|sunos)
 
            current="$number_major"
 
            revision="$number_minor"
 
            age="0"
 
            ;;
 
          irix|nonstopux)
 
            func_arith $number_major + $number_minor
 
            current=$func_arith_result
 
            age="$number_minor"
 
            revision="$number_minor"
 
            lt_irix_increment=no
 
            ;;
 
          *)
 
            func_fatal_configuration "$modename: unknown library version type \`$version_type'"
 
            ;;
 
          esac
 
          ;;
 
        no)
 
          current="$1"
 
          revision="$2"
 
          age="$3"
 
          ;;
 
        esac
 
 
  /* Absolute path? */
        # Check that each of the things are valid numbers.
#if defined (HAVE_DOS_BASED_FILE_SYSTEM)
        case $current in
  if (isalpha ((unsigned char)wrapper[0]) && wrapper[1] == ':')
        0|[1-9]|[1-9][0-9]|[1-9][0-9][0-9]|[1-9][0-9][0-9][0-9]|[1-9][0-9][0-9][0-9][0-9]) ;;
  {
        *)
    concat_name = xstrdup (wrapper);
          func_error "CURRENT \`$current' must be a nonnegative integer"
    if (check_executable(concat_name))
          func_fatal_error "\`$vinfo' is not valid version information"
      return concat_name;
          ;;
    XFREE(concat_name);
        esac
  }
 
 
        case $revision in
 
        0|[1-9]|[1-9][0-9]|[1-9][0-9][0-9]|[1-9][0-9][0-9][0-9]|[1-9][0-9][0-9][0-9][0-9]) ;;
 
        *)
 
          func_error "REVISION \`$revision' must be a nonnegative integer"
 
          func_fatal_error "\`$vinfo' is not valid version information"
 
          ;;
 
        esac
 
 
 
        case $age in
 
        0|[1-9]|[1-9][0-9]|[1-9][0-9][0-9]|[1-9][0-9][0-9][0-9]|[1-9][0-9][0-9][0-9][0-9]) ;;
 
        *)
 
          func_error "AGE \`$age' must be a nonnegative integer"
 
          func_fatal_error "\`$vinfo' is not valid version information"
 
          ;;
 
        esac
 
 
 
        if test "$age" -gt "$current"; then
 
          func_error "AGE \`$age' is greater than the current interface number \`$current'"
 
          func_fatal_error "\`$vinfo' is not valid version information"
 
        fi
 
 
 
        # Calculate the version variables.
 
        major=
 
        versuffix=
 
        verstring=
 
        case $version_type in
 
        none) ;;
 
 
 
        darwin)
 
          # Like Linux, but with the current version available in
 
          # verstring for coding it into the library header
 
          func_arith $current - $age
 
          major=.$func_arith_result
 
          versuffix="$major.$age.$revision"
 
          # Darwin ld doesn't like 0 for these options...
 
          func_arith $current + 1
 
          minor_current=$func_arith_result
 
          xlcverstring="${wl}-compatibility_version ${wl}$minor_current ${wl}-current_version ${wl}$minor_current.$revision"
 
          verstring="-compatibility_version $minor_current -current_version $minor_current.$revision"
 
          ;;
 
 
 
        freebsd-aout)
 
          major=".$current"
 
          versuffix=".$current.$revision";
 
          ;;
 
 
 
        freebsd-elf)
 
          major=".$current"
 
          versuffix=".$current"
 
          ;;
 
 
 
        irix | nonstopux)
 
          if test "X$lt_irix_increment" = "Xno"; then
 
            func_arith $current - $age
  else
  else
  {
            func_arith $current - $age + 1
#endif
          fi
    if (IS_DIR_SEPARATOR (wrapper[0]))
          major=$func_arith_result
    {
 
      concat_name = xstrdup (wrapper);
 
      if (check_executable(concat_name))
 
        return concat_name;
 
      XFREE(concat_name);
 
    }
 
#if defined (HAVE_DOS_BASED_FILE_SYSTEM)
 
  }
 
#endif
 
 
 
  for (p = wrapper; *p; p++)
          case $version_type in
    if (*p == '/')
            nonstopux) verstring_prefix=nonstopux ;;
    {
            *)         verstring_prefix=sgi ;;
      has_slash = 1;
          esac
      break;
          verstring="$verstring_prefix$major.$revision"
    }
 
  if (!has_slash)
          # Add in all the interfaces that we are compatible with.
  {
          loop=$revision
    /* no slashes; search PATH */
          while test "$loop" -ne 0; do
    const char* path = getenv ("PATH");
            func_arith $revision - $loop
    if (path != NULL)
            iface=$func_arith_result
    {
            func_arith $loop - 1
      for (p = path; *p; p = p_next)
            loop=$func_arith_result
      {
            verstring="$verstring_prefix$major.$iface:$verstring"
        const char* q;
          done
        size_t p_len;
 
        for (q = p; *q; q++)
          # Before this point, $major must not contain `.'.
          if (IS_PATH_SEPARATOR(*q))
          major=.$major
            break;
          versuffix="$major.$revision"
        p_len = q - p;
          ;;
        p_next = (*q == '\0' ? q : q + 1);
 
        if (p_len == 0)
        linux)
        {
          func_arith $current - $age
          /* empty path: current directory */
          major=.$func_arith_result
          if (getcwd (tmp, LT_PATHMAX) == NULL)
          versuffix="$major.$age.$revision"
            lt_fatal ("getcwd failed");
          ;;
          tmp_len = strlen(tmp);
 
          concat_name = XMALLOC(char, tmp_len + 1 + strlen(wrapper) + 1);
        osf)
          memcpy (concat_name, tmp, tmp_len);
          func_arith $current - $age
          concat_name[tmp_len] = '/';
          major=.$func_arith_result
          strcpy (concat_name + tmp_len + 1, wrapper);
          versuffix=".$current.$age.$revision"
        }
          verstring="$current.$age.$revision"
 
 
 
          # Add in all the interfaces that we are compatible with.
 
          loop=$age
 
          while test "$loop" -ne 0; do
 
            func_arith $current - $loop
 
            iface=$func_arith_result
 
            func_arith $loop - 1
 
            loop=$func_arith_result
 
            verstring="$verstring:${iface}.0"
 
          done
 
 
 
          # Make executables depend on our current version.
 
          verstring="$verstring:${current}.0"
 
          ;;
 
 
 
        qnx)
 
          major=".$current"
 
          versuffix=".$current"
 
          ;;
 
 
 
        sunos)
 
          major=".$current"
 
          versuffix=".$current.$revision"
 
          ;;
 
 
 
        windows)
 
          # Use '-' rather than '.', since we only want one
 
          # extension on DOS 8.3 filesystems.
 
          func_arith $current - $age
 
          major=$func_arith_result
 
          versuffix="-$major"
 
          ;;
 
 
 
        *)
 
          func_fatal_configuration "unknown library version type \`$version_type'"
 
          ;;
 
        esac
 
 
 
        # Clear the version info if we defaulted, and they specified a release.
 
        if test -z "$vinfo" && test -n "$release"; then
 
          major=
 
          case $version_type in
 
          darwin)
 
            # we can't check for "0.0" in archive_cmds due to quoting
 
            # problems, so we reset it completely
 
            verstring=
 
            ;;
 
          *)
 
            verstring="0.0"
 
            ;;
 
          esac
 
          if test "$need_version" = no; then
 
            versuffix=
        else
        else
        {
            versuffix=".0.0"
          concat_name = XMALLOC(char, p_len + 1 + strlen(wrapper) + 1);
          fi
          memcpy (concat_name, p, p_len);
        fi
          concat_name[p_len] = '/';
 
          strcpy (concat_name + p_len + 1, wrapper);
        # Remove version info from name if versioning should be avoided
        }
        if test "$avoid_version" = yes && test "$need_version" = no; then
        if (check_executable(concat_name))
          major=
          return concat_name;
          versuffix=
        XFREE(concat_name);
          verstring=""
      }
        fi
    }
 
    /* not found in PATH; assume curdir */
        # Check to see if the archive will have undefined symbols.
  }
        if test "$allow_undefined" = yes; then
  /* Relative path | not found in path: prepend cwd */
          if test "$allow_undefined_flag" = unsupported; then
  if (getcwd (tmp, LT_PATHMAX) == NULL)
            func_warning "undefined symbols not allowed in $host shared libraries"
    lt_fatal ("getcwd failed");
            build_libtool_libs=no
  tmp_len = strlen(tmp);
            build_old_libs=yes
  concat_name = XMALLOC(char, tmp_len + 1 + strlen(wrapper) + 1);
          fi
  memcpy (concat_name, tmp, tmp_len);
        else
  concat_name[tmp_len] = '/';
          # Don't allow undefined symbols.
  strcpy (concat_name + tmp_len + 1, wrapper);
          allow_undefined_flag="$no_undefined_flag"
 
        fi
 
 
 
      fi
 
 
 
      func_generate_dlsyms "$libname" "$libname" "yes"
 
      libobjs="$libobjs $symfileobj"
 
      test "X$libobjs" = "X " && libobjs=
 
 
 
      if test "$mode" != relink; then
 
        # Remove our outputs, but don't remove object files since they
 
        # may have been created when compiling PIC objects.
 
        removelist=
 
        tempremovelist=`$ECHO "$output_objdir/*"`
 
        for p in $tempremovelist; do
 
          case $p in
 
            *.$objext | *.gcno)
 
               ;;
 
            $output_objdir/$outputname | $output_objdir/$libname.* | $output_objdir/${libname}${release}.*)
 
               if test "X$precious_files_regex" != "X"; then
 
                 if $ECHO "$p" | $EGREP -e "$precious_files_regex" >/dev/null 2>&1
 
                 then
 
                   continue
 
                 fi
 
               fi
 
               removelist="$removelist $p"
 
               ;;
 
            *) ;;
 
          esac
 
        done
 
        test -n "$removelist" && \
 
          func_show_eval "${RM}r \$removelist"
 
      fi
 
 
  if (check_executable(concat_name))
      # Now set the variables for building old libraries.
    return concat_name;
      if test "$build_old_libs" = yes && test "$build_libtool_libs" != convenience ; then
  XFREE(concat_name);
        oldlibs="$oldlibs $output_objdir/$libname.$libext"
  return NULL;
 
}
 
 
 
char *
        # Transform .lo files to .o files.
strendzap(char *str, const char *pat)
        oldobjs="$objs "`$ECHO "X$libobjs" | $SP2NL | $Xsed -e '/\.'${libext}'$/d' -e "$lo2o" | $NL2SP`
{
      fi
  size_t len, patlen;
 
 
 
  assert(str != NULL);
      # Eliminate all temporary directories.
  assert(pat != NULL);
      #for path in $notinst_path; do
 
      # lib_search_path=`$ECHO "X$lib_search_path " | $Xsed -e "s% $path % %g"`
 
      # deplibs=`$ECHO "X$deplibs " | $Xsed -e "s% -L$path % %g"`
 
      # dependency_libs=`$ECHO "X$dependency_libs " | $Xsed -e "s% -L$path % %g"`
 
      #done
 
 
  len = strlen(str);
      if test -n "$xrpath"; then
  patlen = strlen(pat);
        # If the user specified any rpath flags, then add them.
 
        temp_xrpath=
 
        for libdir in $xrpath; do
 
          temp_xrpath="$temp_xrpath -R$libdir"
 
          case "$finalize_rpath " in
 
          *" $libdir "*) ;;
 
          *) finalize_rpath="$finalize_rpath $libdir" ;;
 
          esac
 
        done
 
        if test "$hardcode_into_libs" != yes || test "$build_old_libs" = yes; then
 
          dependency_libs="$temp_xrpath $dependency_libs"
 
        fi
 
      fi
 
 
  if (patlen <= len)
      # Make sure dlfiles contains only unique files that won't be dlpreopened
  {
      old_dlfiles="$dlfiles"
    str += len - patlen;
      dlfiles=
    if (strcmp(str, pat) == 0)
      for lib in $old_dlfiles; do
      *str = '\0';
        case " $dlprefiles $dlfiles " in
  }
        *" $lib "*) ;;
  return str;
        *) dlfiles="$dlfiles $lib" ;;
}
        esac
 
      done
 
 
static void
      # Make sure dlprefiles contains only unique files
lt_error_core (int exit_status, const char * mode,
      old_dlprefiles="$dlprefiles"
          const char * message, va_list ap)
      dlprefiles=
{
      for lib in $old_dlprefiles; do
  fprintf (stderr, "%s: %s: ", program_name, mode);
        case "$dlprefiles " in
  vfprintf (stderr, message, ap);
        *" $lib "*) ;;
  fprintf (stderr, ".\n");
        *) dlprefiles="$dlprefiles $lib" ;;
 
        esac
 
      done
 
 
  if (exit_status >= 0)
      if test "$build_libtool_libs" = yes; then
    exit (exit_status);
        if test -n "$rpath"; then
}
          case $host in
 
          *-*-cygwin* | *-*-mingw* | *-*-pw32* | *-*-os2* | *-*-beos* | *-cegcc*)
 
            # these systems don't actually have a c library (as such)!
 
            ;;
 
          *-*-rhapsody* | *-*-darwin1.[012])
 
            # Rhapsody C library is in the System framework
 
            deplibs="$deplibs System.ltframework"
 
            ;;
 
          *-*-netbsd*)
 
            # Don't link with libc until the a.out ld.so is fixed.
 
            ;;
 
          *-*-openbsd* | *-*-freebsd* | *-*-dragonfly*)
 
            # Do not include libc due to us having libc/libc_r.
 
            ;;
 
          *-*-sco3.2v5* | *-*-sco5v6*)
 
            # Causes problems with __ctype
 
            ;;
 
          *-*-sysv4.2uw2* | *-*-sysv5* | *-*-unixware* | *-*-OpenUNIX*)
 
            # Compiler inserts libc in the correct place for threads to work
 
            ;;
 
          *)
 
            # Add libc to deplibs on all other systems if necessary.
 
            if test "$build_libtool_need_lc" = "yes"; then
 
              deplibs="$deplibs -lc"
 
            fi
 
            ;;
 
          esac
 
        fi
 
 
void
        # Transform deplibs into only deplibs that can be linked in shared.
lt_fatal (const char *message, ...)
        name_save=$name
{
        libname_save=$libname
  va_list ap;
        release_save=$release
  va_start (ap, message);
        versuffix_save=$versuffix
  lt_error_core (EXIT_FAILURE, "FATAL", message, ap);
        major_save=$major
  va_end (ap);
        # I'm not sure if I'm treating the release correctly.  I think
}
        # release should show up in the -l (ie -lgmp5) so we don't want to
 
        # add it in twice.  Is that correct?
 
        release=""
 
        versuffix=""
 
        major=""
 
        newdeplibs=
 
        droppeddeps=no
 
        case $deplibs_check_method in
 
        pass_all)
 
          # Don't check for shared/static.  Everything works.
 
          # This might be a little naive.  We might want to check
 
          # whether the library exists or not.  But this is on
 
          # osf3 & osf4 and I'm not really sure... Just
 
          # implementing what was already the behavior.
 
          newdeplibs=$deplibs
 
          ;;
 
        test_compile)
 
          # This code stresses the "libraries are programs" paradigm to its
 
          # limits. Maybe even breaks it.  We compile a program, linking it
 
          # against the deplibs as a proxy for the library.  Then we can check
 
          # whether they linked in statically or dynamically with ldd.
 
          $opt_dry_run || $RM conftest.c
 
          cat > conftest.c <<EOF
 
          int main() { return 0; }
EOF
EOF
          # we should really use a build-platform specific compiler
          $opt_dry_run || $RM conftest
          # here, but OTOH, the wrappers (shell script and this C one)
          if $LTCC $LTCFLAGS -o conftest conftest.c $deplibs; then
          # are only useful if you want to execute the "real" binary.
            ldd_output=`ldd conftest`
          # Since the "real" binary is built for $host, then this
            for i in $deplibs; do
          # wrapper might as well be built for $host, too.
              case $i in
          $run $LTCC $LTCFLAGS -s -o $cwrapper $cwrappersource
              -l*)
 
                func_stripname -l '' "$i"
 
                name=$func_stripname_result
 
                if test "X$allow_libtool_libs_with_static_runtimes" = "Xyes" ; then
 
                  case " $predeps $postdeps " in
 
                  *" $i "*)
 
                    newdeplibs="$newdeplibs $i"
 
                    i=""
 
                    ;;
 
                  esac
 
                fi
 
                if test -n "$i" ; then
 
                  libname=`eval "\\$ECHO \"$libname_spec\""`
 
                  deplib_matches=`eval "\\$ECHO \"$library_names_spec\""`
 
                  set dummy $deplib_matches; shift
 
                  deplib_match=$1
 
                  if test `expr "$ldd_output" : ".*$deplib_match"` -ne 0 ; then
 
                    newdeplibs="$newdeplibs $i"
 
                  else
 
                    droppeddeps=yes
 
                    $ECHO
 
                    $ECHO "*** Warning: dynamic linker does not accept needed library $i."
 
                    $ECHO "*** I have the capability to make that library automatically link in when"
 
                    $ECHO "*** you link to this library.  But I can only do this if you have a"
 
                    $ECHO "*** shared version of the library, which I believe you do not have"
 
                    $ECHO "*** because a test_compile did reveal that the linker did not use it for"
 
                    $ECHO "*** its dynamic dependency list that programs get resolved with at runtime."
 
                  fi
 
                fi
 
                ;;
 
              *)
 
                newdeplibs="$newdeplibs $i"
 
                ;;
 
              esac
 
            done
 
          else
 
            # Error occurred in the first compile.  Let's try to salvage
 
            # the situation: Compile a separate program for each library.
 
            for i in $deplibs; do
 
              case $i in
 
              -l*)
 
                func_stripname -l '' "$i"
 
                name=$func_stripname_result
 
                $opt_dry_run || $RM conftest
 
                if $LTCC $LTCFLAGS -o conftest conftest.c $i; then
 
                  ldd_output=`ldd conftest`
 
                  if test "X$allow_libtool_libs_with_static_runtimes" = "Xyes" ; then
 
                    case " $predeps $postdeps " in
 
                    *" $i "*)
 
                      newdeplibs="$newdeplibs $i"
 
                      i=""
 
                      ;;
 
                    esac
 
                  fi
 
                  if test -n "$i" ; then
 
                    libname=`eval "\\$ECHO \"$libname_spec\""`
 
                    deplib_matches=`eval "\\$ECHO \"$library_names_spec\""`
 
                    set dummy $deplib_matches; shift
 
                    deplib_match=$1
 
                    if test `expr "$ldd_output" : ".*$deplib_match"` -ne 0 ; then
 
                      newdeplibs="$newdeplibs $i"
 
                    else
 
                      droppeddeps=yes
 
                      $ECHO
 
                      $ECHO "*** Warning: dynamic linker does not accept needed library $i."
 
                      $ECHO "*** I have the capability to make that library automatically link in when"
 
                      $ECHO "*** you link to this library.  But I can only do this if you have a"
 
                      $ECHO "*** shared version of the library, which you do not appear to have"
 
                      $ECHO "*** because a test_compile did reveal that the linker did not use this one"
 
                      $ECHO "*** as a dynamic dependency that programs can get resolved with at runtime."
 
                    fi
 
                  fi
 
                else
 
                  droppeddeps=yes
 
                  $ECHO
 
                  $ECHO "*** Warning!  Library $i is needed by this library but I was not able to"
 
                  $ECHO "*** make it link in!  You will probably need to install it or some"
 
                  $ECHO "*** library that it depends on before this library will be fully"
 
                  $ECHO "*** functional.  Installing it before continuing would be even better."
 
                fi
 
                ;;
 
              *)
 
                newdeplibs="$newdeplibs $i"
 
                ;;
 
              esac
 
            done
 
          fi
 
          ;;
 
        file_magic*)
 
          set dummy $deplibs_check_method; shift
 
          file_magic_regex=`expr "$deplibs_check_method" : "$1 \(.*\)"`
 
          for a_deplib in $deplibs; do
 
            case $a_deplib in
 
            -l*)
 
              func_stripname -l '' "$a_deplib"
 
              name=$func_stripname_result
 
              if test "X$allow_libtool_libs_with_static_runtimes" = "Xyes" ; then
 
                case " $predeps $postdeps " in
 
                *" $a_deplib "*)
 
                  newdeplibs="$newdeplibs $a_deplib"
 
                  a_deplib=""
 
                  ;;
 
                esac
 
              fi
 
              if test -n "$a_deplib" ; then
 
                libname=`eval "\\$ECHO \"$libname_spec\""`
 
                for i in $lib_search_path $sys_lib_search_path $shlib_search_path; do
 
                  potential_libs=`ls $i/$libname[.-]* 2>/dev/null`
 
                  for potent_lib in $potential_libs; do
 
                      # Follow soft links.
 
                      if ls -lLd "$potent_lib" 2>/dev/null |
 
                         $GREP " -> " >/dev/null; then
 
                        continue
 
                      fi
 
                      # The statement above tries to avoid entering an
 
                      # endless loop below, in case of cyclic links.
 
                      # We might still enter an endless loop, since a link
 
                      # loop can be closed while we follow links,
 
                      # but so what?
 
                      potlib="$potent_lib"
 
                      while test -h "$potlib" 2>/dev/null; do
 
                        potliblink=`ls -ld $potlib | ${SED} 's/.* -> //'`
 
                        case $potliblink in
 
                        [\\/]* | [A-Za-z]:[\\/]*) potlib="$potliblink";;
 
                        *) potlib=`$ECHO "X$potlib" | $Xsed -e 's,[^/]*$,,'`"$potliblink";;
 
                        esac
 
                      done
 
                      if eval $file_magic_cmd \"\$potlib\" 2>/dev/null |
 
                         $SED -e 10q |
 
                         $EGREP "$file_magic_regex" > /dev/null; then
 
                        newdeplibs="$newdeplibs $a_deplib"
 
                        a_deplib=""
 
                        break 2
 
                      fi
 
                  done
 
                done
 
              fi
 
              if test -n "$a_deplib" ; then
 
                droppeddeps=yes
 
                $ECHO
 
                $ECHO "*** Warning: linker path does not have real file for library $a_deplib."
 
                $ECHO "*** I have the capability to make that library automatically link in when"
 
                $ECHO "*** you link to this library.  But I can only do this if you have a"
 
                $ECHO "*** shared version of the library, which you do not appear to have"
 
                $ECHO "*** because I did check the linker path looking for a file starting"
 
                if test -z "$potlib" ; then
 
                  $ECHO "*** with $libname but no candidates were found. (...for file magic test)"
 
                else
 
                  $ECHO "*** with $libname and none of the candidates passed a file format test"
 
                  $ECHO "*** using a file magic. Last file checked: $potlib"
 
                fi
 
              fi
 
              ;;
 
            *)
 
              # Add a -L argument.
 
              newdeplibs="$newdeplibs $a_deplib"
          ;;
          ;;
        esac
        esac
        $rm $output
          done # Gone through all deplibs.
        trap "$rm $output; exit $EXIT_FAILURE" 1 2 15
          ;;
 
        match_pattern*)
        $echo > $output "\
          set dummy $deplibs_check_method; shift
#! $SHELL
          match_pattern_regex=`expr "$deplibs_check_method" : "$1 \(.*\)"`
 
          for a_deplib in $deplibs; do
 
            case $a_deplib in
 
            -l*)
 
              func_stripname -l '' "$a_deplib"
 
              name=$func_stripname_result
 
              if test "X$allow_libtool_libs_with_static_runtimes" = "Xyes" ; then
 
                case " $predeps $postdeps " in
 
                *" $a_deplib "*)
 
                  newdeplibs="$newdeplibs $a_deplib"
 
                  a_deplib=""
 
                  ;;
 
                esac
 
              fi
 
              if test -n "$a_deplib" ; then
 
                libname=`eval "\\$ECHO \"$libname_spec\""`
 
                for i in $lib_search_path $sys_lib_search_path $shlib_search_path; do
 
                  potential_libs=`ls $i/$libname[.-]* 2>/dev/null`
 
                  for potent_lib in $potential_libs; do
 
                    potlib="$potent_lib" # see symlink-check above in file_magic test
 
                    if eval "\$ECHO \"X$potent_lib\"" 2>/dev/null | $Xsed -e 10q | \
 
                       $EGREP "$match_pattern_regex" > /dev/null; then
 
                      newdeplibs="$newdeplibs $a_deplib"
 
                      a_deplib=""
 
                      break 2
 
                    fi
 
                  done
 
                done
 
              fi
 
              if test -n "$a_deplib" ; then
 
                droppeddeps=yes
 
                $ECHO
 
                $ECHO "*** Warning: linker path does not have real file for library $a_deplib."
 
                $ECHO "*** I have the capability to make that library automatically link in when"
 
                $ECHO "*** you link to this library.  But I can only do this if you have a"
 
                $ECHO "*** shared version of the library, which you do not appear to have"
 
                $ECHO "*** because I did check the linker path looking for a file starting"
 
                if test -z "$potlib" ; then
 
                  $ECHO "*** with $libname but no candidates were found. (...for regex pattern test)"
 
                else
 
                  $ECHO "*** with $libname and none of the candidates passed a file format test"
 
                  $ECHO "*** using a regex pattern. Last file checked: $potlib"
 
                fi
 
              fi
 
              ;;
 
            *)
 
              # Add a -L argument.
 
              newdeplibs="$newdeplibs $a_deplib"
 
              ;;
 
            esac
 
          done # Gone through all deplibs.
 
          ;;
 
        none | unknown | *)
 
          newdeplibs=""
 
          tmp_deplibs=`$ECHO "X $deplibs" | $Xsed \
 
              -e 's/ -lc$//' -e 's/ -[LR][^ ]*//g'`
 
          if test "X$allow_libtool_libs_with_static_runtimes" = "Xyes" ; then
 
            for i in $predeps $postdeps ; do
 
              # can't use Xsed below, because $i might contain '/'
 
              tmp_deplibs=`$ECHO "X $tmp_deplibs" | $Xsed -e "s,$i,,"`
 
            done
 
          fi
 
          if $ECHO "X $tmp_deplibs" | $Xsed -e 's/[      ]//g' |
 
             $GREP . >/dev/null; then
 
            $ECHO
 
            if test "X$deplibs_check_method" = "Xnone"; then
 
              $ECHO "*** Warning: inter-library dependencies are not supported in this platform."
 
            else
 
              $ECHO "*** Warning: inter-library dependencies are not known to be supported."
 
            fi
 
            $ECHO "*** All declared inter-library dependencies are being dropped."
 
            droppeddeps=yes
 
          fi
 
          ;;
 
        esac
 
        versuffix=$versuffix_save
 
        major=$major_save
 
        release=$release_save
 
        libname=$libname_save
 
        name=$name_save
 
 
# $output - temporary wrapper script for $objdir/$outputname
        case $host in
# Generated by $PROGRAM - GNU $PACKAGE $VERSION$TIMESTAMP
        *-*-rhapsody* | *-*-darwin1.[012])
#
          # On Rhapsody replace the C library with the System framework
# The $output program cannot be directly executed until all the libtool
          newdeplibs=`$ECHO "X $newdeplibs" | $Xsed -e 's/ -lc / System.ltframework /'`
# libraries that it depends on are installed.
          ;;
#
        esac
# This wrapper script should never be moved out of the build directory.
 
# If it is, it will not operate correctly.
 
 
 
# Sed substitution that helps us do robust quoting.  It backslashifies
        if test "$droppeddeps" = yes; then
# metacharacters that are still active within double-quoted strings.
          if test "$module" = yes; then
Xsed='${SED} -e 1s/^X//'
            $ECHO
sed_quote_subst='$sed_quote_subst'
            $ECHO "*** Warning: libtool could not satisfy all declared inter-library"
 
            $ECHO "*** dependencies of module $libname.  Therefore, libtool will create"
 
            $ECHO "*** a static module, that should work as long as the dlopening"
 
            $ECHO "*** application is linked with the -dlopen flag."
 
            if test -z "$global_symbol_pipe"; then
 
              $ECHO
 
              $ECHO "*** However, this would only work if libtool was able to extract symbol"
 
              $ECHO "*** lists from a program, using \`nm' or equivalent, but libtool could"
 
              $ECHO "*** not find such a program.  So, this module is probably useless."
 
              $ECHO "*** \`nm' from GNU binutils and a full rebuild may help."
 
            fi
 
            if test "$build_old_libs" = no; then
 
              oldlibs="$output_objdir/$libname.$libext"
 
              build_libtool_libs=module
 
              build_old_libs=yes
 
            else
 
              build_libtool_libs=no
 
            fi
 
          else
 
            $ECHO "*** The inter-library dependencies that have been dropped here will be"
 
            $ECHO "*** automatically added whenever a program is linked with this library"
 
            $ECHO "*** or is declared to -dlopen it."
 
 
# Be Bourne compatible (taken from Autoconf:_AS_BOURNE_COMPATIBLE).
            if test "$allow_undefined" = no; then
if test -n \"\${ZSH_VERSION+set}\" && (emulate sh) >/dev/null 2>&1; then
              $ECHO
  emulate sh
              $ECHO "*** Since this library must not contain undefined symbols,"
  NULLCMD=:
              $ECHO "*** because either the platform does not support them or"
  # Zsh 3.x and 4.x performs word splitting on \${1+\"\$@\"}, which
              $ECHO "*** it was explicitly requested with -no-undefined,"
  # is contrary to our usage.  Disable this feature.
              $ECHO "*** libtool will only create a static version of it."
  alias -g '\${1+\"\$@\"}'='\"\$@\"'
              if test "$build_old_libs" = no; then
  setopt NO_GLOB_SUBST
                oldlibs="$output_objdir/$libname.$libext"
 
                build_libtool_libs=module
 
                build_old_libs=yes
else
else
  case \`(set -o) 2>/dev/null\` in *posix*) set -o posix;; esac
                build_libtool_libs=no
fi
fi
BIN_SH=xpg4; export BIN_SH # for Tru64
            fi
DUALCASE=1; export DUALCASE # for MKS sh
          fi
 
        fi
 
        # Done checking deplibs!
 
        deplibs=$newdeplibs
 
      fi
 
      # Time to change all our "foo.ltframework" stuff back to "-framework foo"
 
      case $host in
 
        *-*-darwin*)
 
          newdeplibs=`$ECHO "X $newdeplibs" | $Xsed -e 's% \([^ $]*\).ltframework% -framework \1%g'`
 
          new_inherited_linker_flags=`$ECHO "X $new_inherited_linker_flags" | $Xsed -e 's% \([^ $]*\).ltframework% -framework \1%g'`
 
          deplibs=`$ECHO "X $deplibs" | $Xsed -e 's% \([^ $]*\).ltframework% -framework \1%g'`
 
          ;;
 
      esac
 
 
# The HP-UX ksh and POSIX shell print the target directory to stdout
      # move library search paths that coincide with paths to not yet
# if CDPATH is set.
      # installed libraries to the beginning of the library search list
(unset CDPATH) >/dev/null 2>&1 && unset CDPATH
      new_libs=
 
      for path in $notinst_path; do
 
        case " $new_libs " in
 
        *" -L$path/$objdir "*) ;;
 
        *)
 
          case " $deplibs " in
 
          *" -L$path/$objdir "*)
 
            new_libs="$new_libs -L$path/$objdir" ;;
 
          esac
 
          ;;
 
        esac
 
      done
 
      for deplib in $deplibs; do
 
        case $deplib in
 
        -L*)
 
          case " $new_libs " in
 
          *" $deplib "*) ;;
 
          *) new_libs="$new_libs $deplib" ;;
 
          esac
 
          ;;
 
        *) new_libs="$new_libs $deplib" ;;
 
        esac
 
      done
 
      deplibs="$new_libs"
 
 
relink_command=\"$relink_command\"
      # All the library-specific variables (install_libdir is set above).
 
      library_names=
 
      old_library=
 
      dlname=
 
 
# This environment variable determines our operation mode.
      # Test again, we may have decided not to build it any more
if test \"\$libtool_install_magic\" = \"$magic\"; then
      if test "$build_libtool_libs" = yes; then
  # install mode needs the following variable:
        if test "$hardcode_into_libs" = yes; then
  notinst_deplibs='$notinst_deplibs'
          # Hardcode the library paths
 
          hardcode_libdirs=
 
          dep_rpath=
 
          rpath="$finalize_rpath"
 
          test "$mode" != relink && rpath="$compile_rpath$rpath"
 
          for libdir in $rpath; do
 
            if test -n "$hardcode_libdir_flag_spec"; then
 
              if test -n "$hardcode_libdir_separator"; then
 
                if test -z "$hardcode_libdirs"; then
 
                  hardcode_libdirs="$libdir"
else
else
  # When we are sourced in execute mode, \$file and \$echo are already set.
                  # Just accumulate the unique libdirs.
  if test \"\$libtool_execute_magic\" != \"$magic\"; then
                  case $hardcode_libdir_separator$hardcode_libdirs$hardcode_libdir_separator in
    echo=\"$qecho\"
                  *"$hardcode_libdir_separator$libdir$hardcode_libdir_separator"*)
    file=\"\$0\"
                    ;;
    # Make sure echo works.
                  *)
    if test \"X\$1\" = X--no-reexec; then
                    hardcode_libdirs="$hardcode_libdirs$hardcode_libdir_separator$libdir"
      # Discard the --no-reexec flag, and continue.
                    ;;
      shift
                  esac
    elif test \"X\`(\$echo '\t') 2>/dev/null\`\" = 'X\t'; then
                fi
      # Yippee, \$echo works!
 
      :
 
    else
    else
      # Restart under the correct shell, and then maybe \$echo will work.
                eval flag=\"$hardcode_libdir_flag_spec\"
      exec $SHELL \"\$0\" --no-reexec \${1+\"\$@\"}
                dep_rpath="$dep_rpath $flag"
    fi
    fi
  fi\
            elif test -n "$runpath_var"; then
"
              case "$perm_rpath " in
        $echo >> $output "\
              *" $libdir "*) ;;
 
              *) perm_rpath="$perm_rpath $libdir" ;;
  # Find the directory that this script lives in.
 
  thisdir=\`\$echo \"X\$file\" | \$Xsed -e 's%/[^/]*$%%'\`
 
  test \"x\$thisdir\" = \"x\$file\" && thisdir=.
 
 
 
  # Follow symbolic links until we get to the real thisdir.
 
  file=\`ls -ld \"\$file\" | ${SED} -n 's/.*-> //p'\`
 
  while test -n \"\$file\"; do
 
    destdir=\`\$echo \"X\$file\" | \$Xsed -e 's%/[^/]*\$%%'\`
 
 
 
    # If there was a directory component, then change thisdir.
 
    if test \"x\$destdir\" != \"x\$file\"; then
 
      case \"\$destdir\" in
 
      [\\\\/]* | [A-Za-z]:[\\\\/]*) thisdir=\"\$destdir\" ;;
 
      *) thisdir=\"\$thisdir/\$destdir\" ;;
 
      esac
      esac
    fi
    fi
 
 
    file=\`\$echo \"X\$file\" | \$Xsed -e 's%^.*/%%'\`
 
    file=\`ls -ld \"\$thisdir/\$file\" | ${SED} -n 's/.*-> //p'\`
 
  done
  done
 
          # Substitute the hardcoded libdirs into the rpath.
 
          if test -n "$hardcode_libdir_separator" &&
 
             test -n "$hardcode_libdirs"; then
 
            libdir="$hardcode_libdirs"
 
            if test -n "$hardcode_libdir_flag_spec_ld"; then
 
              eval dep_rpath=\"$hardcode_libdir_flag_spec_ld\"
 
            else
 
              eval dep_rpath=\"$hardcode_libdir_flag_spec\"
 
            fi
 
          fi
 
          if test -n "$runpath_var" && test -n "$perm_rpath"; then
 
            # We should set the runpath_var.
 
            rpath=
 
            for dir in $perm_rpath; do
 
              rpath="$rpath$dir:"
 
            done
 
            eval "$runpath_var='$rpath\$$runpath_var'; export $runpath_var"
 
          fi
 
          test -n "$dep_rpath" && deplibs="$dep_rpath $deplibs"
 
        fi
 
 
  # Try to get the absolute directory name.
        shlibpath="$finalize_shlibpath"
  absdir=\`cd \"\$thisdir\" && pwd\`
        test "$mode" != relink && shlibpath="$compile_shlibpath$shlibpath"
  test -n \"\$absdir\" && thisdir=\"\$absdir\"
        if test -n "$shlibpath"; then
"
          eval "$shlibpath_var='$shlibpath\$$shlibpath_var'; export $shlibpath_var"
 
        fi
 
 
        if test "$fast_install" = yes; then
        # Get the real and link names of the library.
          $echo >> $output "\
        eval shared_ext=\"$shrext_cmds\"
  program=lt-'$outputname'$exeext
        eval library_names=\"$library_names_spec\"
  progdir=\"\$thisdir/$objdir\"
        set dummy $library_names
 
        shift
 
        realname="$1"
 
        shift
 
 
  if test ! -f \"\$progdir/\$program\" || \\
        if test -n "$soname_spec"; then
     { file=\`ls -1dt \"\$progdir/\$program\" \"\$progdir/../\$program\" 2>/dev/null | ${SED} 1q\`; \\
          eval soname=\"$soname_spec\"
       test \"X\$file\" != \"X\$progdir/\$program\"; }; then
        else
 
          soname="$realname"
 
        fi
 
        if test -z "$dlname"; then
 
          dlname=$soname
 
        fi
 
 
    file=\"\$\$-\$program\"
        lib="$output_objdir/$realname"
 
        linknames=
 
        for link
 
        do
 
          linknames="$linknames $link"
 
        done
 
 
    if test ! -d \"\$progdir\"; then
        # Use standard objects if they are pic
      $mkdir \"\$progdir\"
        test -z "$pic_flag" && libobjs=`$ECHO "X$libobjs" | $SP2NL | $Xsed -e "$lo2o" | $NL2SP`
    else
        test "X$libobjs" = "X " && libobjs=
      $rm \"\$progdir/\$file\"
 
    fi"
 
 
 
          $echo >> $output "\
        delfiles=
 
        if test -n "$export_symbols" && test -n "$include_expsyms"; then
 
          $opt_dry_run || cp "$export_symbols" "$output_objdir/$libname.uexp"
 
          export_symbols="$output_objdir/$libname.uexp"
 
          delfiles="$delfiles $export_symbols"
 
        fi
 
 
    # relink executable if necessary
        orig_export_symbols=
    if test -n \"\$relink_command\"; then
        case $host_os in
      if relink_command_output=\`eval \$relink_command 2>&1\`; then :
        cygwin* | mingw* | cegcc*)
      else
          if test -n "$export_symbols" && test -z "$export_symbols_regex"; then
        $echo \"\$relink_command_output\" >&2
            # exporting using user supplied symfile
        $rm \"\$progdir/\$file\"
            if test "x`$SED 1q $export_symbols`" != xEXPORTS; then
        exit $EXIT_FAILURE
              # and it's NOT already a .def file. Must figure out
 
              # which of the given symbols are data symbols and tag
 
              # them as such. So, trigger use of export_symbols_cmds.
 
              # export_symbols gets reassigned inside the "prepare
 
              # the list of exported symbols" if statement, so the
 
              # include_expsyms logic still works.
 
              orig_export_symbols="$export_symbols"
 
              export_symbols=
 
              always_export_symbols=yes
      fi
      fi
    fi
    fi
 
          ;;
 
        esac
 
 
    $mv \"\$progdir/\$file\" \"\$progdir/\$program\" 2>/dev/null ||
        # Prepare the list of exported symbols
    { $rm \"\$progdir/\$program\";
        if test -z "$export_symbols"; then
      $mv \"\$progdir/\$file\" \"\$progdir/\$program\"; }
          if test "$always_export_symbols" = yes || test -n "$export_symbols_regex"; then
    $rm \"\$progdir/\$file\"
            func_verbose "generating symbol list for \`$libname.la'"
  fi"
            export_symbols="$output_objdir/$libname.exp"
 
            $opt_dry_run || $RM $export_symbols
 
            cmds=$export_symbols_cmds
 
            save_ifs="$IFS"; IFS='~'
 
            for cmd in $cmds; do
 
              IFS="$save_ifs"
 
              eval cmd=\"$cmd\"
 
              func_len " $cmd"
 
              len=$func_len_result
 
              if test "$len" -lt "$max_cmd_len" || test "$max_cmd_len" -le -1; then
 
                func_show_eval "$cmd" 'exit $?'
 
                skipped_export=false
        else
        else
          $echo >> $output "\
                # The command line is too long to execute in one step.
  program='$outputname'
                func_verbose "using reloadable object file for export list..."
  progdir=\"\$thisdir/$objdir\"
                skipped_export=:
"
                # Break out early, otherwise skipped_export may be
 
                # set to false by a later but shorter cmd.
 
                break
 
              fi
 
            done
 
            IFS="$save_ifs"
 
            if test -n "$export_symbols_regex" && test "X$skipped_export" != "X:"; then
 
              func_show_eval '$EGREP -e "$export_symbols_regex" "$export_symbols" > "${export_symbols}T"'
 
              func_show_eval '$MV "${export_symbols}T" "$export_symbols"'
        fi
        fi
 
 
        $echo >> $output "\
 
 
 
  if test -f \"\$progdir/\$program\"; then"
 
 
 
        # Export our shlibpath_var if we have one.
 
        if test "$shlibpath_overrides_runpath" = yes && test -n "$shlibpath_var" && test -n "$temp_rpath"; then
 
          $echo >> $output "\
 
    # Add our own library path to $shlibpath_var
 
    $shlibpath_var=\"$temp_rpath\$$shlibpath_var\"
 
 
 
    # Some systems cannot cope with colon-terminated $shlibpath_var
 
    # The second colon is a workaround for a bug in BeOS R4 sed
 
    $shlibpath_var=\`\$echo \"X\$$shlibpath_var\" | \$Xsed -e 's/::*\$//'\`
 
 
 
    export $shlibpath_var
 
"
 
        fi
        fi
 
 
        # fixup the dll searchpath if we need to.
 
        if test -n "$dllsearchpath"; then
 
          $echo >> $output "\
 
    # Add the dll search path components to the executable PATH
 
    PATH=$dllsearchpath:\$PATH
 
"
 
        fi
        fi
 
 
        $echo >> $output "\
        if test -n "$export_symbols" && test -n "$include_expsyms"; then
    if test \"\$libtool_execute_magic\" != \"$magic\"; then
          tmp_export_symbols="$export_symbols"
      # Run the actual program with our arguments.
          test -n "$orig_export_symbols" && tmp_export_symbols="$orig_export_symbols"
"
          $opt_dry_run || eval '$ECHO "X$include_expsyms" | $Xsed | $SP2NL >> "$tmp_export_symbols"'
        case $host in
        fi
        # Backslashes separate directories on plain windows
 
        *-*-mingw | *-*-os2*)
        if test "X$skipped_export" != "X:" && test -n "$orig_export_symbols"; then
          $echo >> $output "\
          # The given exports_symbols file has to be filtered, so filter it.
      exec \"\$progdir\\\\\$program\" \${1+\"\$@\"}
          func_verbose "filter symbol list for \`$libname.la' to tag DATA exports"
"
          # FIXME: $output_objdir/$libname.filter potentially contains lots of
          ;;
          # 's' commands which not all seds can handle. GNU sed should be fine
 
          # though. Also, the filter scales superlinearly with the number of
 
          # global variables. join(1) would be nice here, but unfortunately
 
          # isn't a blessed tool.
 
          $opt_dry_run || $SED -e '/[ ,]DATA/!d;s,\(.*\)\([ \,].*\),s|^\1$|\1\2|,' < $export_symbols > $output_objdir/$libname.filter
 
          delfiles="$delfiles $export_symbols $output_objdir/$libname.filter"
 
          export_symbols=$output_objdir/$libname.def
 
          $opt_dry_run || $SED -f $output_objdir/$libname.filter < $orig_export_symbols > $export_symbols
 
        fi
 
 
 
        tmp_deplibs=
 
        for test_deplib in $deplibs; do
 
          case " $convenience " in
 
          *" $test_deplib "*) ;;
        *)
        *)
          $echo >> $output "\
            tmp_deplibs="$tmp_deplibs $test_deplib"
      exec \"\$progdir/\$program\" \${1+\"\$@\"}
 
"
 
          ;;
          ;;
        esac
        esac
        $echo >> $output "\
        done
      \$echo \"\$0: cannot exec \$program \$*\"
        deplibs="$tmp_deplibs"
      exit $EXIT_FAILURE
 
 
        if test -n "$convenience"; then
 
          if test -n "$whole_archive_flag_spec" &&
 
            test "$compiler_needs_object" = yes &&
 
            test -z "$libobjs"; then
 
            # extract the archives, so we have objects to list.
 
            # TODO: could optimize this to just extract one archive.
 
            whole_archive_flag_spec=
    fi
    fi
 
          if test -n "$whole_archive_flag_spec"; then
 
            save_libobjs=$libobjs
 
            eval libobjs=\"\$libobjs $whole_archive_flag_spec\"
 
            test "X$libobjs" = "X " && libobjs=
  else
  else
    # The program doesn't exist.
            gentop="$output_objdir/${outputname}x"
    \$echo \"\$0: error: \\\`\$progdir/\$program' does not exist\" 1>&2
            generated="$generated $gentop"
    \$echo \"This script is just a wrapper for \$program.\" 1>&2
 
    $echo \"See the $PACKAGE documentation for more information.\" 1>&2
            func_extract_archives $gentop $convenience
    exit $EXIT_FAILURE
            libobjs="$libobjs $func_extract_archives_result"
 
            test "X$libobjs" = "X " && libobjs=
  fi
  fi
fi\
 
"
 
        chmod +x $output
 
      fi
      fi
      exit $EXIT_SUCCESS
 
      ;;
 
    esac
 
 
 
    # See if we need to build an old-fashioned archive.
        if test "$thread_safe" = yes && test -n "$thread_safe_flag_spec"; then
    for oldlib in $oldlibs; do
          eval flag=\"$thread_safe_flag_spec\"
 
          linker_flags="$linker_flags $flag"
 
        fi
 
 
      if test "$build_libtool_libs" = convenience; then
        # Make a backup of the uninstalled library when relinking
        oldobjs="$libobjs_save"
        if test "$mode" = relink; then
        addlibs="$convenience"
          $opt_dry_run || eval '(cd $output_objdir && $RM ${realname}U && $MV $realname ${realname}U)' || exit $?
        build_libtool_libs=no
        fi
      else
 
        if test "$build_libtool_libs" = module; then
        # Do each of the archive commands.
          oldobjs="$libobjs_save"
        if test "$module" = yes && test -n "$module_cmds" ; then
          build_libtool_libs=no
          if test -n "$export_symbols" && test -n "$module_expsym_cmds"; then
 
            eval test_cmds=\"$module_expsym_cmds\"
 
            cmds=$module_expsym_cmds
        else
        else
          oldobjs="$old_deplibs $non_pic_objects"
            eval test_cmds=\"$module_cmds\"
 
            cmds=$module_cmds
        fi
        fi
        addlibs="$old_convenience"
        else
 
          if test -n "$export_symbols" && test -n "$archive_expsym_cmds"; then
 
            eval test_cmds=\"$archive_expsym_cmds\"
 
            cmds=$archive_expsym_cmds
 
          else
 
            eval test_cmds=\"$archive_cmds\"
 
            cmds=$archive_cmds
      fi
      fi
 
 
      if test -n "$addlibs"; then
 
        gentop="$output_objdir/${outputname}x"
 
        generated="$generated $gentop"
 
 
 
        func_extract_archives $gentop $addlibs
 
        oldobjs="$oldobjs $func_extract_archives_result"
 
      fi
      fi
 
 
      # Do each command in the archive commands.
        if test "X$skipped_export" != "X:" &&
      if test -n "$old_archive_from_new_cmds" && test "$build_libtool_libs" = yes; then
           func_len " $test_cmds" &&
       cmds=$old_archive_from_new_cmds
           len=$func_len_result &&
      else
           test "$len" -lt "$max_cmd_len" || test "$max_cmd_len" -le -1; then
        # POSIX demands no paths to be encoded in archives.  We have
 
        # to avoid creating archives with duplicate basenames if we
 
        # might have to extract them afterwards, e.g., when creating a
 
        # static archive out of a convenience library, or when linking
 
        # the entirety of a libtool archive into another (currently
 
        # not supported by libtool).
 
        if (for obj in $oldobjs
 
            do
 
              $echo "X$obj" | $Xsed -e 's%^.*/%%'
 
            done | sort | sort -uc >/dev/null 2>&1); then
 
          :
          :
        else
        else
          $echo "copying selected object files to avoid basename conflicts..."
          # The command line is too long to link in one step, link piecewise
 
          # or, if using GNU ld and skipped_export is not :, use a linker
          if test -z "$gentop"; then
          # script.
            gentop="$output_objdir/${outputname}x"
 
            generated="$generated $gentop"
 
 
 
            $show "${rm}r $gentop"
          # Save the value of $output and $libobjs because we want to
            $run ${rm}r "$gentop"
          # use them later.  If we have whole_archive_flag_spec, we
            $show "$mkdir $gentop"
          # want to use save_libobjs as it was before
            $run $mkdir "$gentop"
          # whole_archive_flag_spec was expanded, because we can't
            exit_status=$?
          # assume the linker understands whole_archive_flag_spec.
            if test "$exit_status" -ne 0 && test ! -d "$gentop"; then
          # This may have to be revisited, in case too many
              exit $exit_status
          # convenience libraries get linked in and end up exceeding
            fi
          # the spec.
 
          if test -z "$convenience" || test -z "$whole_archive_flag_spec"; then
 
            save_libobjs=$libobjs
          fi
          fi
 
          save_output=$output
 
          output_la=`$ECHO "X$output" | $Xsed -e "$basename"`
 
 
          save_oldobjs=$oldobjs
          # Clear the reloadable object creation command queue and
          oldobjs=
          # initialize k to one.
          counter=1
          test_cmds=
          for obj in $save_oldobjs
          concat_cmds=
 
          objlist=
 
          last_robj=
 
          k=1
 
 
 
          if test -n "$save_libobjs" && test "X$skipped_export" != "X:" && test "$with_gnu_ld" = yes; then
 
            output=${output_objdir}/${output_la}.lnkscript
 
            func_verbose "creating GNU ld script: $output"
 
            $ECHO 'INPUT (' > $output
 
            for obj in $save_libobjs
          do
          do
            objbase=`$echo "X$obj" | $Xsed -e 's%^.*/%%'`
              $ECHO "$obj" >> $output
            case " $oldobjs " in
 
            " ") oldobjs=$obj ;;
 
            *[\ /]"$objbase "*)
 
              while :; do
 
                # Make sure we don't pick an alternate name that also
 
                # overlaps.
 
                newobj=lt$counter-$objbase
 
                counter=`expr $counter + 1`
 
                case " $oldobjs " in
 
                *[\ /]"$newobj "*) ;;
 
                *) if test ! -f "$gentop/$newobj"; then break; fi ;;
 
                esac
 
              done
 
              $show "ln $obj $gentop/$newobj || cp $obj $gentop/$newobj"
 
              $run ln "$obj" "$gentop/$newobj" ||
 
              $run cp "$obj" "$gentop/$newobj"
 
              oldobjs="$oldobjs $gentop/$newobj"
 
              ;;
 
            *) oldobjs="$oldobjs $obj" ;;
 
            esac
 
          done
          done
 
            $ECHO ')' >> $output
 
            delfiles="$delfiles $output"
 
          elif test -n "$save_libobjs" && test "X$skipped_export" != "X:" && test "X$file_list_spec" != X; then
 
            output=${output_objdir}/${output_la}.lnk
 
            func_verbose "creating linker input file list: $output"
 
            : > $output
 
            set x $save_libobjs
 
            shift
 
            firstobj=
 
            if test "$compiler_needs_object" = yes; then
 
              firstobj="$1 "
 
              shift
        fi
        fi
 
            for obj
        eval cmds=\"$old_archive_cmds\"
 
 
 
        if len=`expr "X$cmds" : ".*"` &&
 
             test "$len" -le "$max_cmd_len" || test "$max_cmd_len" -le -1; then
 
          cmds=$old_archive_cmds
 
        else
 
          # the command line is too long to link in one step, link in parts
 
          $echo "using piecewise archive linking..."
 
          save_RANLIB=$RANLIB
 
          RANLIB=:
 
          objlist=
 
          concat_cmds=
 
          save_oldobjs=$oldobjs
 
 
 
          # Is there a better way of finding the last object in the list?
 
          for obj in $save_oldobjs
 
          do
          do
            last_oldobj=$obj
              $ECHO "$obj" >> $output
          done
          done
          for obj in $save_oldobjs
            delfiles="$delfiles $output"
 
            output=$firstobj\"$file_list_spec$output\"
 
          else
 
            if test -n "$save_libobjs"; then
 
              func_verbose "creating reloadable object files..."
 
              output=$output_objdir/$output_la-${k}.$objext
 
              eval test_cmds=\"$reload_cmds\"
 
              func_len " $test_cmds"
 
              len0=$func_len_result
 
              len=$len0
 
 
 
              # Loop over the list of objects to be linked.
 
              for obj in $save_libobjs
          do
          do
            oldobjs="$objlist $obj"
                func_len " $obj"
            objlist="$objlist $obj"
                func_arith $len + $func_len_result
            eval test_cmds=\"$old_archive_cmds\"
                len=$func_arith_result
            if len=`expr "X$test_cmds" : ".*" 2>/dev/null` &&
                if test "X$objlist" = X ||
               test "$len" -le "$max_cmd_len"; then
                   test "$len" -lt "$max_cmd_len"; then
              :
                  func_append objlist " $obj"
            else
            else
              # the above command should be used before it gets too long
                  # The command $test_cmds is almost too long, add a
              oldobjs=$objlist
                  # command to the queue.
              if test "$obj" = "$last_oldobj" ; then
                  if test "$k" -eq 1 ; then
                RANLIB=$save_RANLIB
                    # The first file doesn't have a previous command to add.
 
                    eval concat_cmds=\"$reload_cmds $objlist $last_robj\"
 
                  else
 
                    # All subsequent reloadable object files will link in
 
                    # the last one created.
 
                    eval concat_cmds=\"\$concat_cmds~$reload_cmds $objlist $last_robj~\$RM $last_robj\"
              fi
              fi
              test -z "$concat_cmds" || concat_cmds=$concat_cmds~
                  last_robj=$output_objdir/$output_la-${k}.$objext
              eval concat_cmds=\"\${concat_cmds}$old_archive_cmds\"
                  func_arith $k + 1
              objlist=
                  k=$func_arith_result
 
                  output=$output_objdir/$output_la-${k}.$objext
 
                  objlist=$obj
 
                  func_len " $last_robj"
 
                  func_arith $len0 + $func_len_result
 
                  len=$func_arith_result
            fi
            fi
          done
          done
          RANLIB=$save_RANLIB
              # Handle the remaining objects by creating one last
          oldobjs=$objlist
              # reloadable object file.  All subsequent reloadable object
          if test "X$oldobjs" = "X" ; then
              # files will link in the last one created.
            eval cmds=\"\$concat_cmds\"
              test -z "$concat_cmds" || concat_cmds=$concat_cmds~
 
              eval concat_cmds=\"\${concat_cmds}$reload_cmds $objlist $last_robj\"
 
              if test -n "$last_robj"; then
 
                eval concat_cmds=\"\${concat_cmds}~\$RM $last_robj\"
 
              fi
 
              delfiles="$delfiles $output"
 
 
          else
          else
            eval cmds=\"\$concat_cmds~\$old_archive_cmds\"
              output=
          fi
          fi
 
 
 
            if ${skipped_export-false}; then
 
              func_verbose "generating symbol list for \`$libname.la'"
 
              export_symbols="$output_objdir/$libname.exp"
 
              $opt_dry_run || $RM $export_symbols
 
              libobjs=$output
 
              # Append the command to create the export file.
 
              test -z "$concat_cmds" || concat_cmds=$concat_cmds~
 
              eval concat_cmds=\"\$concat_cmds$export_symbols_cmds\"
 
              if test -n "$last_robj"; then
 
                eval concat_cmds=\"\$concat_cmds~\$RM $last_robj\"
        fi
        fi
      fi
      fi
 
 
 
            test -n "$save_libobjs" &&
 
              func_verbose "creating a temporary reloadable object file: $output"
 
 
 
            # Loop through the commands generated above and execute them.
      save_ifs="$IFS"; IFS='~'
      save_ifs="$IFS"; IFS='~'
      for cmd in $cmds; do
            for cmd in $concat_cmds; do
        eval cmd=\"$cmd\"
 
        IFS="$save_ifs"
        IFS="$save_ifs"
        $show "$cmd"
              $opt_silent || {
        $run eval "$cmd" || exit $?
                  func_quote_for_expand "$cmd"
 
                  eval "func_echo $func_quote_for_expand_result"
 
              }
 
              $opt_dry_run || eval "$cmd" || {
 
                lt_exit=$?
 
 
 
                # Restore the uninstalled library and exit
 
                if test "$mode" = relink; then
 
                  ( cd "$output_objdir" && \
 
                    $RM "${realname}T" && \
 
                    $MV "${realname}U" "$realname" )
 
                fi
 
 
 
                exit $lt_exit
 
              }
      done
      done
      IFS="$save_ifs"
      IFS="$save_ifs"
    done
 
 
 
    if test -n "$generated"; then
            if test -n "$export_symbols_regex" && ${skipped_export-false}; then
      $show "${rm}r$generated"
              func_show_eval '$EGREP -e "$export_symbols_regex" "$export_symbols" > "${export_symbols}T"'
      $run ${rm}r$generated
              func_show_eval '$MV "${export_symbols}T" "$export_symbols"'
 
            fi
    fi
    fi
 
 
    # Now create the libtool archive.
          if ${skipped_export-false}; then
    case $output in
            if test -n "$export_symbols" && test -n "$include_expsyms"; then
    *.la)
              tmp_export_symbols="$export_symbols"
      old_library=
              test -n "$orig_export_symbols" && tmp_export_symbols="$orig_export_symbols"
      test "$build_old_libs" = yes && old_library="$libname.$libext"
              $opt_dry_run || eval '$ECHO "X$include_expsyms" | $Xsed | $SP2NL >> "$tmp_export_symbols"'
      $show "creating $output"
            fi
 
 
      # Preserve any variables that may affect compiler behavior
            if test -n "$orig_export_symbols"; then
      for var in $variables_saved_for_relink; do
              # The given exports_symbols file has to be filtered, so filter it.
        if eval test -z \"\${$var+set}\"; then
              func_verbose "filter symbol list for \`$libname.la' to tag DATA exports"
          relink_command="{ test -z \"\${$var+set}\" || unset $var || { $var=; export $var; }; }; $relink_command"
              # FIXME: $output_objdir/$libname.filter potentially contains lots of
        elif eval var_value=\$$var; test -z "$var_value"; then
              # 's' commands which not all seds can handle. GNU sed should be fine
          relink_command="$var=; export $var; $relink_command"
              # though. Also, the filter scales superlinearly with the number of
        else
              # global variables. join(1) would be nice here, but unfortunately
          var_value=`$echo "X$var_value" | $Xsed -e "$sed_quote_subst"`
              # isn't a blessed tool.
          relink_command="$var=\"$var_value\"; export $var; $relink_command"
              $opt_dry_run || $SED -e '/[ ,]DATA/!d;s,\(.*\)\([ \,].*\),s|^\1$|\1\2|,' < $export_symbols > $output_objdir/$libname.filter
 
              delfiles="$delfiles $export_symbols $output_objdir/$libname.filter"
 
              export_symbols=$output_objdir/$libname.def
 
              $opt_dry_run || $SED -f $output_objdir/$libname.filter < $orig_export_symbols > $export_symbols
        fi
        fi
      done
 
      # Quote the link command for shipping.
 
      relink_command="(cd `pwd`; $SHELL $progpath $preserve_args --mode=relink $libtool_args @inst_prefix_dir@)"
 
      relink_command=`$echo "X$relink_command" | $SP2NL | $Xsed -e "$sed_quote_subst" | $NL2SP`
 
      if test "$hardcode_automatic" = yes ; then
 
        relink_command=
 
      fi
      fi
 
 
 
          libobjs=$output
 
          # Restore the value of output.
 
          output=$save_output
 
 
      # Only create the output if not a dry run.
          if test -n "$convenience" && test -n "$whole_archive_flag_spec"; then
      if test -z "$run"; then
            eval libobjs=\"\$libobjs $whole_archive_flag_spec\"
        for installed in no yes; do
            test "X$libobjs" = "X " && libobjs=
          if test "$installed" = yes; then
 
            if test -z "$install_libdir"; then
 
              break
 
            fi
            fi
            output="$output_objdir/$outputname"i
          # Expand the library linking commands again to reset the
            # Replace all uninstalled libtool libraries with the installed ones
          # value of $libobjs for piecewise linking.
            newdependency_libs=
 
            for deplib in $dependency_libs; do
          # Do each of the archive commands.
              case $deplib in
          if test "$module" = yes && test -n "$module_cmds" ; then
              *.la)
            if test -n "$export_symbols" && test -n "$module_expsym_cmds"; then
                name=`$echo "X$deplib" | $Xsed -e 's%^.*/%%'`
              cmds=$module_expsym_cmds
                eval libdir=`${SED} -n -e 's/^libdir=\(.*\)$/\1/p' $deplib`
            else
                if test -z "$libdir"; then
              cmds=$module_cmds
                  $echo "$modename: \`$deplib' is not a valid libtool archive" 1>&2
 
                  exit $EXIT_FAILURE
 
                fi
                fi
                newdependency_libs="$newdependency_libs $libdir/$name"
          else
                ;;
            if test -n "$export_symbols" && test -n "$archive_expsym_cmds"; then
              *) newdependency_libs="$newdependency_libs $deplib" ;;
              cmds=$archive_expsym_cmds
              esac
            else
            done
              cmds=$archive_cmds
            dependency_libs="$newdependency_libs"
 
            newdlfiles=
 
            for lib in $dlfiles; do
 
              name=`$echo "X$lib" | $Xsed -e 's%^.*/%%'`
 
              eval libdir=`${SED} -n -e 's/^libdir=\(.*\)$/\1/p' $lib`
 
              if test -z "$libdir"; then
 
                $echo "$modename: \`$lib' is not a valid libtool archive" 1>&2
 
                exit $EXIT_FAILURE
 
              fi
              fi
              newdlfiles="$newdlfiles $libdir/$name"
 
            done
 
            dlfiles="$newdlfiles"
 
            newdlprefiles=
 
            for lib in $dlprefiles; do
 
              name=`$echo "X$lib" | $Xsed -e 's%^.*/%%'`
 
              eval libdir=`${SED} -n -e 's/^libdir=\(.*\)$/\1/p' $lib`
 
              if test -z "$libdir"; then
 
                $echo "$modename: \`$lib' is not a valid libtool archive" 1>&2
 
                exit $EXIT_FAILURE
 
              fi
              fi
              newdlprefiles="$newdlprefiles $libdir/$name"
 
            done
 
            dlprefiles="$newdlprefiles"
 
          else
 
            newdlfiles=
 
            for lib in $dlfiles; do
 
              case $lib in
 
                [\\/]* | [A-Za-z]:[\\/]*) abs="$lib" ;;
 
                *) abs=`pwd`"/$lib" ;;
 
              esac
 
              newdlfiles="$newdlfiles $abs"
 
            done
 
            dlfiles="$newdlfiles"
 
            newdlprefiles=
 
            for lib in $dlprefiles; do
 
              case $lib in
 
                [\\/]* | [A-Za-z]:[\\/]*) abs="$lib" ;;
 
                *) abs=`pwd`"/$lib" ;;
 
              esac
 
              newdlprefiles="$newdlprefiles $abs"
 
            done
 
            dlprefiles="$newdlprefiles"
 
          fi
          fi
          $rm $output
 
          # place dlname in correct position for cygwin
 
          tdlname=$dlname
 
          case $host,$output,$installed,$module,$dlname in
 
            *cygwin*,*lai,yes,no,*.dll | *mingw*,*lai,yes,no,*.dll) tdlname=../bin/$dlname ;;
 
          esac
 
          $echo > $output "\
 
# $outputname - a libtool library file
 
# Generated by $PROGRAM - GNU $PACKAGE $VERSION$TIMESTAMP
 
#
 
# Please DO NOT delete this file!
 
# It is necessary for linking the library.
 
 
 
# The name that we can dlopen(3).
 
dlname='$tdlname'
 
 
 
# Names of this library.
        if test -n "$delfiles"; then
library_names='$library_names'
          # Append the command to remove temporary files to $cmds.
 
          eval cmds=\"\$cmds~\$RM $delfiles\"
 
        fi
 
 
# The name of the static archive.
        # Add any objects from preloaded convenience libraries
old_library='$old_library'
        if test -n "$dlprefiles"; then
 
          gentop="$output_objdir/${outputname}x"
 
          generated="$generated $gentop"
 
 
# Libraries that this one depends upon.
          func_extract_archives $gentop $dlprefiles
dependency_libs='$dependency_libs'
          libobjs="$libobjs $func_extract_archives_result"
 
          test "X$libobjs" = "X " && libobjs=
 
        fi
 
 
# Version information for $libname.
        save_ifs="$IFS"; IFS='~'
current=$current
        for cmd in $cmds; do
age=$age
          IFS="$save_ifs"
revision=$revision
          eval cmd=\"$cmd\"
 
          $opt_silent || {
 
            func_quote_for_expand "$cmd"
 
            eval "func_echo $func_quote_for_expand_result"
 
          }
 
          $opt_dry_run || eval "$cmd" || {
 
            lt_exit=$?
 
 
# Is this an already installed library?
            # Restore the uninstalled library and exit
installed=$installed
            if test "$mode" = relink; then
 
              ( cd "$output_objdir" && \
 
                $RM "${realname}T" && \
 
                $MV "${realname}U" "$realname" )
 
            fi
 
 
# Should we warn about portability when linking against -modules?
            exit $lt_exit
shouldnotlink=$module
          }
 
        done
 
        IFS="$save_ifs"
 
 
# Files to dlopen/dlpreopen
        # Restore the uninstalled library and exit
dlopen='$dlfiles'
        if test "$mode" = relink; then
dlpreopen='$dlprefiles'
          $opt_dry_run || eval '(cd $output_objdir && $RM ${realname}T && $MV $realname ${realname}T && $MV ${realname}U $realname)' || exit $?
 
 
# Directory that this library needs to be installed in:
          if test -n "$convenience"; then
libdir='$install_libdir'"
            if test -z "$whole_archive_flag_spec"; then
          if test "$installed" = no && test "$need_relink" = yes; then
              func_show_eval '${RM}r "$gentop"'
            $echo >> $output "\
 
relink_command=\"$relink_command\""
 
          fi
          fi
        done
 
      fi
      fi
 
 
      # Do a symbolic link so that the libtool archive can be found in
 
      # LD_LIBRARY_PATH before the program is installed.
 
      $show "(cd $output_objdir && $rm $outputname && $LN_S ../$outputname $outputname)"
 
      $run eval '(cd $output_objdir && $rm $outputname && $LN_S ../$outputname $outputname)' || exit $?
 
      ;;
 
    esac
 
    exit $EXIT_SUCCESS
    exit $EXIT_SUCCESS
    ;;
 
 
 
  # libtool install mode
 
  install)
 
    modename="$modename: install"
 
 
 
    # There may be an optional sh(1) argument at the beginning of
 
    # install_prog (especially on Windows NT).
 
    if test "$nonopt" = "$SHELL" || test "$nonopt" = /bin/sh ||
 
       # Allow the use of GNU shtool's install command.
 
       $echo "X$nonopt" | grep shtool > /dev/null; then
 
      # Aesthetically quote it.
 
      arg=`$echo "X$nonopt" | $Xsed -e "$sed_quote_subst"`
 
      case $arg in
 
      *[\[\~\#\^\&\*\(\)\{\}\|\;\<\>\?\'\ \     ]*|*]*|"")
 
        arg="\"$arg\""
 
        ;;
 
      esac
 
      install_prog="$arg "
 
      arg="$1"
 
      shift
 
    else
 
      install_prog=
 
      arg=$nonopt
 
    fi
    fi
 
 
    # The real first argument should be the name of the installation program.
        # Create links to the real library.
    # Aesthetically quote it.
        for linkname in $linknames; do
    arg=`$echo "X$arg" | $Xsed -e "$sed_quote_subst"`
          if test "$realname" != "$linkname"; then
    case $arg in
            func_show_eval '(cd "$output_objdir" && $RM "$linkname" && $LN_S "$realname" "$linkname")' 'exit $?'
    *[\[\~\#\^\&\*\(\)\{\}\|\;\<\>\?\'\ \       ]*|*]*|"")
 
      arg="\"$arg\""
 
      ;;
 
    esac
 
    install_prog="$install_prog$arg"
 
 
 
    # We need to accept at least all the BSD install flags.
 
    dest=
 
    files=
 
    opts=
 
    prev=
 
    install_type=
 
    isdir=no
 
    stripme=
 
    for arg
 
    do
 
      if test -n "$dest"; then
 
        files="$files $dest"
 
        dest=$arg
 
        continue
 
      fi
      fi
 
        done
 
 
      case $arg in
        # If -module or -export-dynamic was specified, set the dlname.
      -d) isdir=yes ;;
        if test "$module" = yes || test "$export_dynamic" = yes; then
      -f)
          # On all known operating systems, these are identical.
        case " $install_prog " in
          dlname="$soname"
        *[\\\ /]cp\ *) ;;
        fi
        *) prev=$arg ;;
 
        esac
 
        ;;
 
      -g | -m | -o) prev=$arg ;;
 
      -s)
 
        stripme=" -s"
 
        continue
 
        ;;
 
      -*)
 
        ;;
 
      *)
 
        # If the previous option needed an argument, then skip it.
 
        if test -n "$prev"; then
 
          prev=
 
        else
 
          dest=$arg
 
          continue
 
        fi
        fi
        ;;
        ;;
      esac
 
 
 
      # Aesthetically quote the argument.
 
      arg=`$echo "X$arg" | $Xsed -e "$sed_quote_subst"`
 
      case $arg in
 
      *[\[\~\#\^\&\*\(\)\{\}\|\;\<\>\?\'\ \     ]*|*]*|"")
 
        arg="\"$arg\""
 
        ;;
 
      esac
 
      install_prog="$install_prog $arg"
 
    done
 
 
 
    if test -z "$install_prog"; then
    obj)
      $echo "$modename: you must specify an install program" 1>&2
      if test -n "$dlfiles$dlprefiles" || test "$dlself" != no; then
      $echo "$help" 1>&2
        func_warning "\`-dlopen' is ignored for objects"
      exit $EXIT_FAILURE
 
    fi
    fi
 
 
    if test -n "$prev"; then
      case " $deplibs" in
      $echo "$modename: the \`$prev' option requires an argument" 1>&2
      *\ -l* | *\ -L*)
      $echo "$help" 1>&2
        func_warning "\`-l' and \`-L' are ignored for objects" ;;
      exit $EXIT_FAILURE
      esac
    fi
 
 
      test -n "$rpath" && \
 
        func_warning "\`-rpath' is ignored for objects"
 
 
    if test -z "$files"; then
      test -n "$xrpath" && \
      if test -z "$dest"; then
        func_warning "\`-R' is ignored for objects"
        $echo "$modename: no file or destination specified" 1>&2
 
      else
 
        $echo "$modename: you must specify a destination" 1>&2
 
      fi
 
      $echo "$help" 1>&2
 
      exit $EXIT_FAILURE
 
    fi
 
 
 
    # Strip any trailing slash from the destination.
      test -n "$vinfo" && \
    dest=`$echo "X$dest" | $Xsed -e 's%/$%%'`
        func_warning "\`-version-info' is ignored for objects"
 
 
    # Check to see that the destination is a directory.
      test -n "$release" && \
    test -d "$dest" && isdir=yes
        func_warning "\`-release' is ignored for objects"
    if test "$isdir" = yes; then
 
      destdir="$dest"
 
      destname=
 
    else
 
      destdir=`$echo "X$dest" | $Xsed -e 's%/[^/]*$%%'`
 
      test "X$destdir" = "X$dest" && destdir=.
 
      destname=`$echo "X$dest" | $Xsed -e 's%^.*/%%'`
 
 
 
      # Not a directory, so check to see that there is only one file specified.
      case $output in
      set dummy $files
      *.lo)
      if test "$#" -gt 2; then
        test -n "$objs$old_deplibs" && \
        $echo "$modename: \`$dest' is not a directory" 1>&2
          func_fatal_error "cannot build library object \`$output' from non-libtool objects"
        $echo "$help" 1>&2
 
        exit $EXIT_FAILURE
        libobj=$output
      fi
        func_lo2o "$libobj"
    fi
        obj=$func_lo2o_result
    case $destdir in
 
    [\\/]* | [A-Za-z]:[\\/]*) ;;
 
    *)
 
      for file in $files; do
 
        case $file in
 
        *.lo) ;;
 
        *)
 
          $echo "$modename: \`$destdir' must be an absolute directory name" 1>&2
 
          $echo "$help" 1>&2
 
          exit $EXIT_FAILURE
 
          ;;
          ;;
        esac
      *)
      done
        libobj=
 
        obj="$output"
      ;;
      ;;
    esac
    esac
 
 
    # This variable tells wrapper scripts just to set variables rather
      # Delete the old objects.
    # than running their programs.
      $opt_dry_run || $RM $obj $libobj
    libtool_install_magic="$magic"
 
 
 
    staticlibs=
 
    future_libdirs=
 
    current_libdirs=
 
    for file in $files; do
 
 
 
      # Do each installation.
      # Objects from convenience libraries.  This assumes
      case $file in
      # single-version convenience libraries.  Whenever we create
      *.$libext)
      # different ones for PIC/non-PIC, this we'll have to duplicate
        # Do the static libraries later.
      # the extraction.
        staticlibs="$staticlibs $file"
      reload_conv_objs=
        ;;
      gentop=
 
      # reload_cmds runs $LD directly, so let us get rid of
 
      # -Wl from whole_archive_flag_spec and hope we can get by with
 
      # turning comma into space..
 
      wl=
 
 
      *.la)
      if test -n "$convenience"; then
        # Check to see that this really is a libtool archive.
        if test -n "$whole_archive_flag_spec"; then
        if (${SED} -e '2q' $file | grep "^# Generated by .*$PACKAGE") >/dev/null 2>&1; then :
          eval tmp_whole_archive_flags=\"$whole_archive_flag_spec\"
 
          reload_conv_objs=$reload_objs\ `$ECHO "X$tmp_whole_archive_flags" | $Xsed -e 's|,| |g'`
        else
        else
          $echo "$modename: \`$file' is not a valid libtool archive" 1>&2
          gentop="$output_objdir/${obj}x"
          $echo "$help" 1>&2
          generated="$generated $gentop"
          exit $EXIT_FAILURE
 
 
          func_extract_archives $gentop $convenience
 
          reload_conv_objs="$reload_objs $func_extract_archives_result"
 
        fi
        fi
        fi
 
 
        library_names=
      # Create the old-style object.
        old_library=
      reload_objs="$objs$old_deplibs "`$ECHO "X$libobjs" | $SP2NL | $Xsed -e '/\.'${libext}$'/d' -e '/\.lib$/d' -e "$lo2o" | $NL2SP`" $reload_conv_objs" ### testsuite: skip nested quoting test
        relink_command=
 
        # If there is no directory component, then add one.
 
        case $file in
 
        */* | *\\*) . $file ;;
 
        *) . ./$file ;;
 
        esac
 
 
 
        # Add the libdir to current_libdirs if it is the destination.
      output="$obj"
        if test "X$destdir" = "X$libdir"; then
      func_execute_cmds "$reload_cmds" 'exit $?'
          case "$current_libdirs " in
 
          *" $libdir "*) ;;
 
          *) current_libdirs="$current_libdirs $libdir" ;;
 
          esac
 
        else
 
          # Note the libdir as a future libdir.
 
          case "$future_libdirs " in
 
          *" $libdir "*) ;;
 
          *) future_libdirs="$future_libdirs $libdir" ;;
 
          esac
 
        fi
 
 
 
        dir=`$echo "X$file" | $Xsed -e 's%/[^/]*$%%'`/
      # Exit if we aren't doing a library object file.
        test "X$dir" = "X$file/" && dir=
      if test -z "$libobj"; then
        dir="$dir$objdir"
        if test -n "$gentop"; then
 
          func_show_eval '${RM}r "$gentop"'
 
        fi
 
 
        if test -n "$relink_command"; then
        exit $EXIT_SUCCESS
          # Determine the prefix the user has applied to our future dir.
      fi
          inst_prefix_dir=`$echo "$destdir" | $SED "s%$libdir\$%%"`
 
 
 
          # Don't allow the user to place us outside of our expected
      if test "$build_libtool_libs" != yes; then
          # location b/c this prevents finding dependent libraries that
        if test -n "$gentop"; then
          # are installed to the same prefix.
          func_show_eval '${RM}r "$gentop"'
          # At present, this check doesn't affect windows .dll's that
 
          # are installed into $libdir/../bin (currently, that works fine)
 
          # but it's something to keep an eye on.
 
          if test "$inst_prefix_dir" = "$destdir"; then
 
            $echo "$modename: error: cannot install \`$file' to a directory not ending in $libdir" 1>&2
 
            exit $EXIT_FAILURE
 
          fi
          fi
 
 
          if test -n "$inst_prefix_dir"; then
        # Create an invalid libtool object if no PIC, so that we don't
            # Stick the inst_prefix_dir data into the link command.
        # accidentally link it into a program.
            relink_command=`$echo "$relink_command" | $SP2NL | $SED "s%@inst_prefix_dir@%-inst-prefix-dir $inst_prefix_dir%" | $NL2SP`
        # $show "echo timestamp > $libobj"
          else
        # $opt_dry_run || eval "echo timestamp > $libobj" || exit $?
            relink_command=`$echo "$relink_command" | $SP2NL | $SED "s%@inst_prefix_dir@%%" | $NL2SP`
        exit $EXIT_SUCCESS
          fi
          fi
 
 
          $echo "$modename: warning: relinking \`$file'" 1>&2
      if test -n "$pic_flag" || test "$pic_mode" != default; then
          $show "$relink_command"
        # Only do commands if we really have different PIC objects.
          if $run eval "$relink_command"; then :
        reload_objs="$libobjs $reload_conv_objs"
          else
        output="$libobj"
            $echo "$modename: error: relink \`$file' with the above command before installing it" 1>&2
        func_execute_cmds "$reload_cmds" 'exit $?'
            exit $EXIT_FAILURE
 
          fi
          fi
 
 
 
      if test -n "$gentop"; then
 
        func_show_eval '${RM}r "$gentop"'
        fi
        fi
 
 
        # See the names of the shared library.
      exit $EXIT_SUCCESS
        set dummy $library_names
      ;;
        if test -n "$2"; then
 
          realname="$2"
 
          shift
 
          shift
 
 
 
          srcname="$realname"
    prog)
          test -n "$relink_command" && srcname="$realname"T
      case $host in
 
        *cygwin*) func_stripname '' '.exe' "$output"
 
                  output=$func_stripname_result.exe;;
 
      esac
 
      test -n "$vinfo" && \
 
        func_warning "\`-version-info' is ignored for programs"
 
 
          # Install the shared library and build the symlinks.
      test -n "$release" && \
          $show "$install_prog $dir/$srcname $destdir/$realname"
        func_warning "\`-release' is ignored for programs"
          $run eval "$install_prog $dir/$srcname $destdir/$realname" || exit $?
 
          if test -n "$stripme" && test -n "$striplib"; then
 
            $show "$striplib $destdir/$realname"
 
            $run eval "$striplib $destdir/$realname" || exit $?
 
          fi
 
 
 
          if test "$#" -gt 0; then
      test "$preload" = yes \
            # Delete the old symlinks, and create new ones.
        && test "$dlopen_support" = unknown \
            # Try `ln -sf' first, because the `ln' binary might depend on
        && test "$dlopen_self" = unknown \
            # the symlink we replace!  Solaris /bin/ln does not understand -f,
        && test "$dlopen_self_static" = unknown && \
            # so we also need to try rm && ln -s.
          func_warning "\`LT_INIT([dlopen])' not used. Assuming no dlopen support."
            for linkname
 
            do
 
              if test "$linkname" != "$realname"; then
 
                $show "(cd $destdir && { $LN_S -f $realname $linkname || { $rm $linkname && $LN_S $realname $linkname; }; })"
 
                $run eval "(cd $destdir && { $LN_S -f $realname $linkname || { $rm $linkname && $LN_S $realname $linkname; }; })"
 
              fi
 
            done
 
          fi
 
 
 
          # Do each command in the postinstall commands.
      case $host in
          lib="$destdir/$realname"
      *-*-rhapsody* | *-*-darwin1.[012])
          cmds=$postinstall_cmds
        # On Rhapsody replace the C library is the System framework
          save_ifs="$IFS"; IFS='~'
        compile_deplibs=`$ECHO "X $compile_deplibs" | $Xsed -e 's/ -lc / System.ltframework /'`
          for cmd in $cmds; do
        finalize_deplibs=`$ECHO "X $finalize_deplibs" | $Xsed -e 's/ -lc / System.ltframework /'`
            IFS="$save_ifs"
        ;;
            eval cmd=\"$cmd\"
      esac
            $show "$cmd"
 
            $run eval "$cmd" || {
 
              lt_exit=$?
 
 
 
              # Restore the uninstalled library and exit
      case $host in
              if test "$mode" = relink; then
      *-*-darwin*)
                $run eval '(cd $output_objdir && $rm ${realname}T && $mv ${realname}U $realname)'
        # Don't allow lazy linking, it breaks C++ global constructors
 
        # But is supposedly fixed on 10.4 or later (yay!).
 
        if test "$tagname" = CXX ; then
 
          case ${MACOSX_DEPLOYMENT_TARGET-10.0} in
 
            10.[0123])
 
              compile_command="$compile_command ${wl}-bind_at_load"
 
              finalize_command="$finalize_command ${wl}-bind_at_load"
 
            ;;
 
          esac
              fi
              fi
 
        # Time to change all our "foo.ltframework" stuff back to "-framework foo"
 
        compile_deplibs=`$ECHO "X $compile_deplibs" | $Xsed -e 's% \([^ $]*\).ltframework% -framework \1%g'`
 
        finalize_deplibs=`$ECHO "X $finalize_deplibs" | $Xsed -e 's% \([^ $]*\).ltframework% -framework \1%g'`
 
        ;;
 
      esac
 
 
              exit $lt_exit
 
            }
      # move library search paths that coincide with paths to not yet
 
      # installed libraries to the beginning of the library search list
 
      new_libs=
 
      for path in $notinst_path; do
 
        case " $new_libs " in
 
        *" -L$path/$objdir "*) ;;
 
        *)
 
          case " $compile_deplibs " in
 
          *" -L$path/$objdir "*)
 
            new_libs="$new_libs -L$path/$objdir" ;;
 
          esac
 
          ;;
 
        esac
          done
          done
          IFS="$save_ifs"
      for deplib in $compile_deplibs; do
        fi
        case $deplib in
 
        -L*)
 
          case " $new_libs " in
 
          *" $deplib "*) ;;
 
          *) new_libs="$new_libs $deplib" ;;
 
          esac
 
          ;;
 
        *) new_libs="$new_libs $deplib" ;;
 
        esac
 
      done
 
      compile_deplibs="$new_libs"
 
 
        # Install the pseudo-library for information purposes.
 
        name=`$echo "X$file" | $Xsed -e 's%^.*/%%'`
 
        instname="$dir/$name"i
 
        $show "$install_prog $instname $destdir/$name"
 
        $run eval "$install_prog $instname $destdir/$name" || exit $?
 
 
 
        # Maybe install the static library, too.
      compile_command="$compile_command $compile_deplibs"
        test -n "$old_library" && staticlibs="$staticlibs $dir/$old_library"
      finalize_command="$finalize_command $finalize_deplibs"
        ;;
 
 
 
      *.lo)
      if test -n "$rpath$xrpath"; then
        # Install (i.e. copy) a libtool object.
        # If the user specified any rpath flags, then add them.
 
        for libdir in $rpath $xrpath; do
 
          # This is the magic to use -rpath.
 
          case "$finalize_rpath " in
 
          *" $libdir "*) ;;
 
          *) finalize_rpath="$finalize_rpath $libdir" ;;
 
          esac
 
        done
 
      fi
 
 
        # Figure out destination file name, if it wasn't already specified.
      # Now hardcode the library paths
        if test -n "$destname"; then
      rpath=
          destfile="$destdir/$destname"
      hardcode_libdirs=
 
      for libdir in $compile_rpath $finalize_rpath; do
 
        if test -n "$hardcode_libdir_flag_spec"; then
 
          if test -n "$hardcode_libdir_separator"; then
 
            if test -z "$hardcode_libdirs"; then
 
              hardcode_libdirs="$libdir"
        else
        else
          destfile=`$echo "X$file" | $Xsed -e 's%^.*/%%'`
              # Just accumulate the unique libdirs.
          destfile="$destdir/$destfile"
              case $hardcode_libdir_separator$hardcode_libdirs$hardcode_libdir_separator in
 
              *"$hardcode_libdir_separator$libdir$hardcode_libdir_separator"*)
 
                ;;
 
              *)
 
                hardcode_libdirs="$hardcode_libdirs$hardcode_libdir_separator$libdir"
 
                ;;
 
              esac
 
            fi
 
          else
 
            eval flag=\"$hardcode_libdir_flag_spec\"
 
            rpath="$rpath $flag"
 
          fi
 
        elif test -n "$runpath_var"; then
 
          case "$perm_rpath " in
 
          *" $libdir "*) ;;
 
          *) perm_rpath="$perm_rpath $libdir" ;;
 
          esac
 
        fi
 
        case $host in
 
        *-*-cygwin* | *-*-mingw* | *-*-pw32* | *-*-os2* | *-cegcc*)
 
          testbindir=`${ECHO} "$libdir" | ${SED} -e 's*/lib$*/bin*'`
 
          case :$dllsearchpath: in
 
          *":$libdir:"*) ;;
 
          ::) dllsearchpath=$libdir;;
 
          *) dllsearchpath="$dllsearchpath:$libdir";;
 
          esac
 
          case :$dllsearchpath: in
 
          *":$testbindir:"*) ;;
 
          ::) dllsearchpath=$testbindir;;
 
          *) dllsearchpath="$dllsearchpath:$testbindir";;
 
          esac
 
          ;;
 
        esac
 
      done
 
      # Substitute the hardcoded libdirs into the rpath.
 
      if test -n "$hardcode_libdir_separator" &&
 
         test -n "$hardcode_libdirs"; then
 
        libdir="$hardcode_libdirs"
 
        eval rpath=\" $hardcode_libdir_flag_spec\"
        fi
        fi
 
      compile_rpath="$rpath"
 
 
        # Deduce the name of the destination old-style object file.
      rpath=
        case $destfile in
      hardcode_libdirs=
        *.lo)
      for libdir in $finalize_rpath; do
          staticdest=`$echo "X$destfile" | $Xsed -e "$lo2o"`
        if test -n "$hardcode_libdir_flag_spec"; then
          ;;
          if test -n "$hardcode_libdir_separator"; then
        *.$objext)
            if test -z "$hardcode_libdirs"; then
          staticdest="$destfile"
              hardcode_libdirs="$libdir"
          destfile=
            else
 
              # Just accumulate the unique libdirs.
 
              case $hardcode_libdir_separator$hardcode_libdirs$hardcode_libdir_separator in
 
              *"$hardcode_libdir_separator$libdir$hardcode_libdir_separator"*)
          ;;
          ;;
        *)
        *)
          $echo "$modename: cannot copy a libtool object to \`$destfile'" 1>&2
                hardcode_libdirs="$hardcode_libdirs$hardcode_libdir_separator$libdir"
          $echo "$help" 1>&2
 
          exit $EXIT_FAILURE
 
          ;;
          ;;
        esac
        esac
 
 
        # Install the libtool object if requested.
 
        if test -n "$destfile"; then
 
          $show "$install_prog $file $destfile"
 
          $run eval "$install_prog $file $destfile" || exit $?
 
        fi
        fi
 
          else
        # Install the old object if enabled.
            eval flag=\"$hardcode_libdir_flag_spec\"
        if test "$build_old_libs" = yes; then
            rpath="$rpath $flag"
          # Deduce the name of the old-style object file.
 
          staticobj=`$echo "X$file" | $Xsed -e "$lo2o"`
 
 
 
          $show "$install_prog $staticobj $staticdest"
 
          $run eval "$install_prog \$staticobj \$staticdest" || exit $?
 
        fi
        fi
        exit $EXIT_SUCCESS
        elif test -n "$runpath_var"; then
        ;;
          case "$finalize_perm_rpath " in
 
          *" $libdir "*) ;;
 
          *) finalize_perm_rpath="$finalize_perm_rpath $libdir" ;;
 
          esac
 
        fi
 
      done
 
      # Substitute the hardcoded libdirs into the rpath.
 
      if test -n "$hardcode_libdir_separator" &&
 
         test -n "$hardcode_libdirs"; then
 
        libdir="$hardcode_libdirs"
 
        eval rpath=\" $hardcode_libdir_flag_spec\"
 
      fi
 
      finalize_rpath="$rpath"
 
 
      *)
      if test -n "$libobjs" && test "$build_old_libs" = yes; then
        # Figure out destination file name, if it wasn't already specified.
        # Transform all the library objects into standard objects.
        if test -n "$destname"; then
        compile_command=`$ECHO "X$compile_command" | $SP2NL | $Xsed -e "$lo2o" | $NL2SP`
          destfile="$destdir/$destname"
        finalize_command=`$ECHO "X$finalize_command" | $SP2NL | $Xsed -e "$lo2o" | $NL2SP`
        else
 
          destfile=`$echo "X$file" | $Xsed -e 's%^.*/%%'`
 
          destfile="$destdir/$destfile"
 
        fi
        fi
 
 
        # If the file is missing, and there is a .exe on the end, strip it
      func_generate_dlsyms "$outputname" "@PROGRAM@" "no"
        # because it is most likely a libtool script we actually want to
 
        # install
      # template prelinking step
        stripped_ext=""
      if test -n "$prelink_cmds"; then
        case $file in
        func_execute_cmds "$prelink_cmds" 'exit $?'
          *.exe)
 
            if test ! -f "$file"; then
 
              file=`$echo $file|${SED} 's,.exe$,,'`
 
              stripped_ext=".exe"
 
            fi
            fi
            ;;
 
        esac
 
 
 
        # Do a test to see if this is really a libtool program.
      wrappers_required=yes
        case $host in
        case $host in
        *cygwin*|*mingw*)
        *cygwin*|*mingw*)
            wrapper=`$echo $file | ${SED} -e 's,.exe$,,'`
        if test "$build_libtool_libs" != yes; then
 
          wrappers_required=no
 
        fi
 
        ;;
 
      *cegcc)
 
        # Disable wrappers for cegcc, we are cross compiling anyway.
 
        wrappers_required=no
            ;;
            ;;
        *)
        *)
            wrapper=$file
        if test "$need_relink" = no || test "$build_libtool_libs" != yes; then
 
          wrappers_required=no
 
        fi
            ;;
            ;;
        esac
        esac
        if (${SED} -e '4q' $wrapper | grep "^# Generated by .*$PACKAGE")>/dev/null 2>&1; then
      if test "$wrappers_required" = no; then
          notinst_deplibs=
        # Replace the output file specification.
          relink_command=
        compile_command=`$ECHO "X$compile_command" | $Xsed -e 's%@OUTPUT@%'"$output"'%g'`
 
        link_command="$compile_command$compile_rpath"
 
 
          # Note that it is not necessary on cygwin/mingw to append a dot to
        # We have no uninstalled library dependencies, so finalize right now.
          # foo even if both foo and FILE.exe exist: automatic-append-.exe
        exit_status=0
          # behavior happens only for exec(3), not for open(2)!  Also, sourcing
        func_show_eval "$link_command" 'exit_status=$?'
          # `FILE.' does not work on cygwin managed mounts.
 
          #
 
          # If there is no directory component, then add one.
 
          case $wrapper in
 
          */* | *\\*) . ${wrapper} ;;
 
          *) . ./${wrapper} ;;
 
          esac
 
 
 
          # Check the variables that should have been set.
        # Delete the generated files.
          if test -z "$notinst_deplibs"; then
        if test -f "$output_objdir/${outputname}S.${objext}"; then
            $echo "$modename: invalid libtool wrapper script \`$wrapper'" 1>&2
          func_show_eval '$RM "$output_objdir/${outputname}S.${objext}"'
            exit $EXIT_FAILURE
 
          fi
          fi
 
 
          finalize=yes
        exit $exit_status
          for lib in $notinst_deplibs; do
 
            # Check to see that each library is installed.
 
            libdir=
 
            if test -f "$lib"; then
 
              # If there is no directory component, then add one.
 
              case $lib in
 
              */* | *\\*) . $lib ;;
 
              *) . ./$lib ;;
 
              esac
 
            fi
            fi
            libfile="$libdir/"`$echo "X$lib" | $Xsed -e 's%^.*/%%g'` ### testsuite: skip nested quoting test
 
            if test -n "$libdir" && test ! -f "$libfile"; then
      if test -n "$compile_shlibpath$finalize_shlibpath"; then
              $echo "$modename: warning: \`$lib' has not been installed in \`$libdir'" 1>&2
        compile_command="$shlibpath_var=\"$compile_shlibpath$finalize_shlibpath\$$shlibpath_var\" $compile_command"
              finalize=no
      fi
 
      if test -n "$finalize_shlibpath"; then
 
        finalize_command="$shlibpath_var=\"$finalize_shlibpath\$$shlibpath_var\" $finalize_command"
            fi
            fi
          done
 
 
 
          relink_command=
      compile_var=
          # Note that it is not necessary on cygwin/mingw to append a dot to
      finalize_var=
          # foo even if both foo and FILE.exe exist: automatic-append-.exe
      if test -n "$runpath_var"; then
          # behavior happens only for exec(3), not for open(2)!  Also, sourcing
        if test -n "$perm_rpath"; then
          # `FILE.' does not work on cygwin managed mounts.
          # We should set the runpath_var.
          #
          rpath=
          # If there is no directory component, then add one.
          for dir in $perm_rpath; do
          case $wrapper in
            rpath="$rpath$dir:"
          */* | *\\*) . ${wrapper} ;;
          done
          *) . ./${wrapper} ;;
          compile_var="$runpath_var=\"$rpath\$$runpath_var\" "
          esac
        fi
 
        if test -n "$finalize_perm_rpath"; then
 
          # We should set the runpath_var.
 
          rpath=
 
          for dir in $finalize_perm_rpath; do
 
            rpath="$rpath$dir:"
 
          done
 
          finalize_var="$runpath_var=\"$rpath\$$runpath_var\" "
 
        fi
 
      fi
 
 
          outputname=
      if test "$no_install" = yes; then
          if test "$fast_install" = no && test -n "$relink_command"; then
        # We don't need to create a wrapper script.
            if test "$finalize" = yes && test -z "$run"; then
        link_command="$compile_var$compile_command$compile_rpath"
              tmpdir=`func_mktempdir`
 
              file=`$echo "X$file$stripped_ext" | $Xsed -e 's%^.*/%%'`
 
              outputname="$tmpdir/$file"
 
              # Replace the output file specification.
              # Replace the output file specification.
              relink_command=`$echo "X$relink_command" | $SP2NL | $Xsed -e 's%@OUTPUT@%'"$outputname"'%g' | $NL2SP`
        link_command=`$ECHO "X$link_command" | $Xsed -e 's%@OUTPUT@%'"$output"'%g'`
 
        # Delete the old output file.
 
        $opt_dry_run || $RM $output
 
        # Link the executable and exit
 
        func_show_eval "$link_command" 'exit $?'
 
        exit $EXIT_SUCCESS
 
      fi
 
 
 
      if test "$hardcode_action" = relink; then
 
        # Fast installation is not supported
 
        link_command="$compile_var$compile_command$compile_rpath"
 
        relink_command="$finalize_var$finalize_command$finalize_rpath"
 
 
              $show "$relink_command"
        func_warning "this platform does not like uninstalled shared libraries"
              if $run eval "$relink_command"; then :
        func_warning "\`$output' will be relinked during installation"
              else
              else
                $echo "$modename: error: relink \`$file' with the above command before installing it" 1>&2
        if test "$fast_install" != no; then
                ${rm}r "$tmpdir"
          link_command="$finalize_var$compile_command$finalize_rpath"
                continue
          if test "$fast_install" = yes; then
 
            relink_command=`$ECHO "X$compile_var$compile_command$compile_rpath" | $Xsed -e 's%@OUTPUT@%\$progdir/\$file%g'`
 
          else
 
            # fast_install is set to needless
 
            relink_command=
              fi
              fi
              file="$outputname"
 
            else
            else
              $echo "$modename: warning: cannot relink \`$file'" 1>&2
          link_command="$compile_var$compile_command$compile_rpath"
 
          relink_command="$finalize_var$finalize_command$finalize_rpath"
            fi
            fi
 
      fi
 
 
 
      # Replace the output file specification.
 
      link_command=`$ECHO "X$link_command" | $Xsed -e 's%@OUTPUT@%'"$output_objdir/$outputname"'%g'`
 
 
 
      # Delete the old output files.
 
      $opt_dry_run || $RM $output $output_objdir/$outputname $output_objdir/lt-$outputname
 
 
 
      func_show_eval "$link_command" 'exit $?'
 
 
 
      # Now create the wrapper script.
 
      func_verbose "creating $output"
 
 
 
      # Quote the relink command for shipping.
 
      if test -n "$relink_command"; then
 
        # Preserve any variables that may affect compiler behavior
 
        for var in $variables_saved_for_relink; do
 
          if eval test -z \"\${$var+set}\"; then
 
            relink_command="{ test -z \"\${$var+set}\" || $lt_unset $var || { $var=; export $var; }; }; $relink_command"
 
          elif eval var_value=\$$var; test -z "$var_value"; then
 
            relink_command="$var=; export $var; $relink_command"
          else
          else
            # Install the binary that we compiled earlier.
            func_quote_for_eval "$var_value"
            file=`$echo "X$file$stripped_ext" | $Xsed -e "s%\([^/]*\)$%$objdir/\1%"`
            relink_command="$var=$func_quote_for_eval_result; export $var; $relink_command"
          fi
          fi
 
        done
 
        relink_command="(cd `pwd`; $relink_command)"
 
        relink_command=`$ECHO "X$relink_command" | $Xsed -e "$sed_quote_subst"`
        fi
        fi
 
 
        # remove .exe since cygwin /usr/bin/install will append another
      # Quote $ECHO for shipping.
        # one anyway
      if test "X$ECHO" = "X$SHELL $progpath --fallback-echo"; then
        case $install_prog,$host in
        case $progpath in
        */usr/bin/install*,*cygwin*)
        [\\/]* | [A-Za-z]:[\\/]*) qecho="$SHELL $progpath --fallback-echo";;
          case $file:$destfile in
        *) qecho="$SHELL `pwd`/$progpath --fallback-echo";;
          *.exe:*.exe)
 
            # this is ok
 
            ;;
 
          *.exe:*)
 
            destfile=$destfile.exe
 
            ;;
 
          *:*.exe)
 
            destfile=`$echo $destfile | ${SED} -e 's,.exe$,,'`
 
            ;;
 
          esac
          esac
          ;;
        qecho=`$ECHO "X$qecho" | $Xsed -e "$sed_quote_subst"`
 
      else
 
        qecho=`$ECHO "X$ECHO" | $Xsed -e "$sed_quote_subst"`
 
      fi
 
 
 
      # Only actually do things if not in dry run mode.
 
      $opt_dry_run || {
 
        # win32 will think the script is a binary if it has
 
        # a .exe suffix, so we strip it off here.
 
        case $output in
 
          *.exe) func_stripname '' '.exe' "$output"
 
                 output=$func_stripname_result ;;
        esac
        esac
        $show "$install_prog$stripme $file $destfile"
        # test for cygwin because mv fails w/o .exe extensions
        $run eval "$install_prog\$stripme \$file \$destfile" || exit $?
        case $host in
        test -n "$outputname" && ${rm}r "$tmpdir"
          *cygwin*)
        ;;
            exeext=.exe
 
            func_stripname '' '.exe' "$outputname"
 
            outputname=$func_stripname_result ;;
 
          *) exeext= ;;
      esac
      esac
    done
        case $host in
 
          *cygwin* | *mingw* )
 
            func_dirname_and_basename "$output" "" "."
 
            output_name=$func_basename_result
 
            output_path=$func_dirname_result
 
            cwrappersource="$output_path/$objdir/lt-$output_name.c"
 
            cwrapper="$output_path/$output_name.exe"
 
            $RM $cwrappersource $cwrapper
 
            trap "$RM $cwrappersource $cwrapper; exit $EXIT_FAILURE" 1 2 15
 
 
    for file in $staticlibs; do
            func_emit_cwrapperexe_src > $cwrappersource
      name=`$echo "X$file" | $Xsed -e 's%^.*/%%'`
 
 
 
      # Set up the ranlib parameters.
            # The wrapper executable is built using the $host compiler,
      oldlib="$destdir/$name"
            # because it contains $host paths and files. If cross-
 
            # compiling, it, like the target executable, must be
 
            # executed on the $host or under an emulation environment.
 
            $opt_dry_run || {
 
              $LTCC $LTCFLAGS -o $cwrapper $cwrappersource
 
              $STRIP $cwrapper
 
            }
 
 
      $show "$install_prog $file $oldlib"
            # Now, create the wrapper script for func_source use:
      $run eval "$install_prog \$file \$oldlib" || exit $?
            func_ltwrapper_scriptname $cwrapper
 
            $RM $func_ltwrapper_scriptname_result
 
            trap "$RM $func_ltwrapper_scriptname_result; exit $EXIT_FAILURE" 1 2 15
 
            $opt_dry_run || {
 
              # note: this script will not be executed, so do not chmod.
 
              if test "x$build" = "x$host" ; then
 
                $cwrapper --lt-dump-script > $func_ltwrapper_scriptname_result
 
              else
 
                func_emit_wrapper no > $func_ltwrapper_scriptname_result
 
              fi
 
            }
 
          ;;
 
          * )
 
            $RM $output
 
            trap "$RM $output; exit $EXIT_FAILURE" 1 2 15
 
 
      if test -n "$stripme" && test -n "$old_striplib"; then
            func_emit_wrapper no > $output
        $show "$old_striplib $oldlib"
            chmod +x $output
        $run eval "$old_striplib $oldlib" || exit $?
          ;;
 
        esac
 
      }
 
      exit $EXIT_SUCCESS
 
      ;;
 
    esac
 
 
 
    # See if we need to build an old-fashioned archive.
 
    for oldlib in $oldlibs; do
 
 
 
      if test "$build_libtool_libs" = convenience; then
 
        oldobjs="$libobjs_save $symfileobj"
 
        addlibs="$convenience"
 
        build_libtool_libs=no
 
      else
 
        if test "$build_libtool_libs" = module; then
 
          oldobjs="$libobjs_save"
 
          build_libtool_libs=no
 
        else
 
          oldobjs="$old_deplibs $non_pic_objects"
 
          if test "$preload" = yes && test -f "$symfileobj"; then
 
            oldobjs="$oldobjs $symfileobj"
 
          fi
 
        fi
 
        addlibs="$old_convenience"
      fi
      fi
 
 
      # Do each command in the postinstall commands.
      if test -n "$addlibs"; then
      cmds=$old_postinstall_cmds
        gentop="$output_objdir/${outputname}x"
      save_ifs="$IFS"; IFS='~'
        generated="$generated $gentop"
      for cmd in $cmds; do
 
        IFS="$save_ifs"
 
        eval cmd=\"$cmd\"
 
        $show "$cmd"
 
        $run eval "$cmd" || exit $?
 
      done
 
      IFS="$save_ifs"
 
    done
 
 
 
    if test -n "$future_libdirs"; then
        func_extract_archives $gentop $addlibs
      $echo "$modename: warning: remember to run \`$progname --finish$future_libdirs'" 1>&2
        oldobjs="$oldobjs $func_extract_archives_result"
    fi
    fi
 
 
    if test -n "$current_libdirs"; then
      # Do each command in the archive commands.
      # Maybe just do a dry run.
      if test -n "$old_archive_from_new_cmds" && test "$build_libtool_libs" = yes; then
      test -n "$run" && current_libdirs=" -n$current_libdirs"
        cmds=$old_archive_from_new_cmds
      exec_cmd='$SHELL $progpath $preserve_args --finish$current_libdirs'
 
    else
    else
      exit $EXIT_SUCCESS
 
    fi
 
    ;;
 
 
 
  # libtool finish mode
        # Add any objects from preloaded convenience libraries
  finish)
        if test -n "$dlprefiles"; then
    modename="$modename: finish"
          gentop="$output_objdir/${outputname}x"
    libdirs="$nonopt"
          generated="$generated $gentop"
    admincmds=
 
 
 
    if test -n "$finish_cmds$finish_eval" && test -n "$libdirs"; then
          func_extract_archives $gentop $dlprefiles
      for dir
          oldobjs="$oldobjs $func_extract_archives_result"
      do
        fi
        libdirs="$libdirs $dir"
 
      done
 
 
 
      for libdir in $libdirs; do
        # POSIX demands no paths to be encoded in archives.  We have
        if test -n "$finish_cmds"; then
        # to avoid creating archives with duplicate basenames if we
          # Do each command in the finish commands.
        # might have to extract them afterwards, e.g., when creating a
          cmds=$finish_cmds
        # static archive out of a convenience library, or when linking
          save_ifs="$IFS"; IFS='~'
        # the entirety of a libtool archive into another (currently
          for cmd in $cmds; do
        # not supported by libtool).
            IFS="$save_ifs"
        if (for obj in $oldobjs
            eval cmd=\"$cmd\"
            do
            $show "$cmd"
              func_basename "$obj"
            $run eval "$cmd" || admincmds="$admincmds
              $ECHO "$func_basename_result"
       $cmd"
            done | sort | sort -uc >/dev/null 2>&1); then
 
          :
 
        else
 
          $ECHO "copying selected object files to avoid basename conflicts..."
 
          gentop="$output_objdir/${outputname}x"
 
          generated="$generated $gentop"
 
          func_mkdir_p "$gentop"
 
          save_oldobjs=$oldobjs
 
          oldobjs=
 
          counter=1
 
          for obj in $save_oldobjs
 
          do
 
            func_basename "$obj"
 
            objbase="$func_basename_result"
 
            case " $oldobjs " in
 
            " ") oldobjs=$obj ;;
 
            *[\ /]"$objbase "*)
 
              while :; do
 
                # Make sure we don't pick an alternate name that also
 
                # overlaps.
 
                newobj=lt$counter-$objbase
 
                func_arith $counter + 1
 
                counter=$func_arith_result
 
                case " $oldobjs " in
 
                *[\ /]"$newobj "*) ;;
 
                *) if test ! -f "$gentop/$newobj"; then break; fi ;;
 
                esac
          done
          done
          IFS="$save_ifs"
              func_show_eval "ln $obj $gentop/$newobj || cp $obj $gentop/$newobj"
        fi
              oldobjs="$oldobjs $gentop/$newobj"
        if test -n "$finish_eval"; then
              ;;
          # Do the single finish_eval.
            *) oldobjs="$oldobjs $obj" ;;
          eval cmds=\"$finish_eval\"
            esac
          $run eval "$cmds" || admincmds="$admincmds
 
       $cmds"
 
        fi
 
      done
      done
    fi
    fi
 
        eval cmds=\"$old_archive_cmds\"
 
 
    # Exit here if they wanted silent mode.
        func_len " $cmds"
    test "$show" = : && exit $EXIT_SUCCESS
        len=$func_len_result
 
        if test "$len" -lt "$max_cmd_len" || test "$max_cmd_len" -le -1; then
    $echo "X----------------------------------------------------------------------" | $Xsed
          cmds=$old_archive_cmds
    $echo "Libraries have been installed in:"
        else
    for libdir in $libdirs; do
          # the command line is too long to link in one step, link in parts
      $echo "   $libdir"
          func_verbose "using piecewise archive linking..."
 
          save_RANLIB=$RANLIB
 
          RANLIB=:
 
          objlist=
 
          concat_cmds=
 
          save_oldobjs=$oldobjs
 
          oldobjs=
 
          # Is there a better way of finding the last object in the list?
 
          for obj in $save_oldobjs
 
          do
 
            last_oldobj=$obj
    done
    done
    $echo
          eval test_cmds=\"$old_archive_cmds\"
    $echo "If you ever happen to want to link against installed libraries"
          func_len " $test_cmds"
    $echo "in a given directory, LIBDIR, you must either use libtool, and"
          len0=$func_len_result
    $echo "specify the full pathname of the library, or use the \`-LLIBDIR'"
          len=$len0
    $echo "flag during linking and do at least one of the following:"
          for obj in $save_oldobjs
    if test -n "$shlibpath_var"; then
          do
      $echo "   - add LIBDIR to the \`$shlibpath_var' environment variable"
            func_len " $obj"
      $echo "     during execution"
            func_arith $len + $func_len_result
 
            len=$func_arith_result
 
            func_append objlist " $obj"
 
            if test "$len" -lt "$max_cmd_len"; then
 
              :
 
            else
 
              # the above command should be used before it gets too long
 
              oldobjs=$objlist
 
              if test "$obj" = "$last_oldobj" ; then
 
                RANLIB=$save_RANLIB
    fi
    fi
    if test -n "$runpath_var"; then
              test -z "$concat_cmds" || concat_cmds=$concat_cmds~
      $echo "   - add LIBDIR to the \`$runpath_var' environment variable"
              eval concat_cmds=\"\${concat_cmds}$old_archive_cmds\"
      $echo "     during linking"
              objlist=
 
              len=$len0
    fi
    fi
    if test -n "$hardcode_libdir_flag_spec"; then
          done
      libdir=LIBDIR
          RANLIB=$save_RANLIB
      eval flag=\"$hardcode_libdir_flag_spec\"
          oldobjs=$objlist
 
          if test "X$oldobjs" = "X" ; then
      $echo "   - use the \`$flag' linker flag"
            eval cmds=\"\$concat_cmds\"
 
          else
 
            eval cmds=\"\$concat_cmds~\$old_archive_cmds\"
    fi
    fi
    if test -n "$admincmds"; then
 
      $echo "   - have your system administrator run these commands:$admincmds"
 
    fi
    fi
    if test -f /etc/ld.so.conf; then
 
      $echo "   - have your system administrator add LIBDIR to \`/etc/ld.so.conf'"
 
    fi
    fi
    $echo
      func_execute_cmds "$cmds" 'exit $?'
    $echo "See any operating system documentation about shared libraries for"
    done
    $echo "more information, such as the ld(1) and ld.so(8) manual pages."
 
    $echo "X----------------------------------------------------------------------" | $Xsed
 
    exit $EXIT_SUCCESS
 
    ;;
 
 
 
  # libtool execute mode
    test -n "$generated" && \
  execute)
      func_show_eval "${RM}r$generated"
    modename="$modename: execute"
 
 
 
    # The first argument is the command name.
    # Now create the libtool archive.
    cmd="$nonopt"
    case $output in
    if test -z "$cmd"; then
    *.la)
      $echo "$modename: you must specify a COMMAND" 1>&2
      old_library=
      $echo "$help"
      test "$build_old_libs" = yes && old_library="$libname.$libext"
      exit $EXIT_FAILURE
      func_verbose "creating $output"
 
 
 
      # Preserve any variables that may affect compiler behavior
 
      for var in $variables_saved_for_relink; do
 
        if eval test -z \"\${$var+set}\"; then
 
          relink_command="{ test -z \"\${$var+set}\" || $lt_unset $var || { $var=; export $var; }; }; $relink_command"
 
        elif eval var_value=\$$var; test -z "$var_value"; then
 
          relink_command="$var=; export $var; $relink_command"
 
        else
 
          func_quote_for_eval "$var_value"
 
          relink_command="$var=$func_quote_for_eval_result; export $var; $relink_command"
 
        fi
 
      done
 
      # Quote the link command for shipping.
 
      relink_command="(cd `pwd`; $SHELL $progpath $preserve_args --mode=relink $libtool_args @inst_prefix_dir@)"
 
      relink_command=`$ECHO "X$relink_command" | $Xsed -e "$sed_quote_subst"`
 
      if test "$hardcode_automatic" = yes ; then
 
        relink_command=
    fi
    fi
 
 
    # Handle -dlopen flags immediately.
      # Only create the output if not a dry run.
    for file in $execute_dlfiles; do
      $opt_dry_run || {
      if test ! -f "$file"; then
        for installed in no yes; do
        $echo "$modename: \`$file' is not a file" 1>&2
          if test "$installed" = yes; then
        $echo "$help" 1>&2
            if test -z "$install_libdir"; then
        exit $EXIT_FAILURE
              break
      fi
      fi
 
            output="$output_objdir/$outputname"i
 
            # Replace all uninstalled libtool libraries with the installed ones
 
            newdependency_libs=
 
            for deplib in $dependency_libs; do
 
              case $deplib in
 
              *.la)
 
                func_basename "$deplib"
 
                name="$func_basename_result"
 
                eval libdir=`${SED} -n -e 's/^libdir=\(.*\)$/\1/p' $deplib`
 
                test -z "$libdir" && \
 
                  func_fatal_error "\`$deplib' is not a valid libtool archive"
 
                newdependency_libs="$newdependency_libs $libdir/$name"
 
                ;;
 
              *) newdependency_libs="$newdependency_libs $deplib" ;;
 
              esac
 
            done
 
            dependency_libs="$newdependency_libs"
 
            newdlfiles=
 
 
      dir=
            for lib in $dlfiles; do
      case $file in
              case $lib in
      *.la)
      *.la)
        # Check to see that this really is a libtool archive.
                func_basename "$lib"
        if (${SED} -e '2q' $file | grep "^# Generated by .*$PACKAGE") >/dev/null 2>&1; then :
                name="$func_basename_result"
 
                eval libdir=`${SED} -n -e 's/^libdir=\(.*\)$/\1/p' $lib`
 
                test -z "$libdir" && \
 
                  func_fatal_error "\`$lib' is not a valid libtool archive"
 
                newdlfiles="$newdlfiles $libdir/$name"
 
                ;;
 
              *) newdlfiles="$newdlfiles $lib" ;;
 
              esac
 
            done
 
            dlfiles="$newdlfiles"
 
            newdlprefiles=
 
            for lib in $dlprefiles; do
 
              case $lib in
 
              *.la)
 
                # Only pass preopened files to the pseudo-archive (for
 
                # eventual linking with the app. that links it) if we
 
                # didn't already link the preopened objects directly into
 
                # the library:
 
                func_basename "$lib"
 
                name="$func_basename_result"
 
                eval libdir=`${SED} -n -e 's/^libdir=\(.*\)$/\1/p' $lib`
 
                test -z "$libdir" && \
 
                  func_fatal_error "\`$lib' is not a valid libtool archive"
 
                newdlprefiles="$newdlprefiles $libdir/$name"
 
                ;;
 
              esac
 
            done
 
            dlprefiles="$newdlprefiles"
        else
        else
          $echo "$modename: \`$lib' is not a valid libtool archive" 1>&2
            newdlfiles=
          $echo "$help" 1>&2
            for lib in $dlfiles; do
          exit $EXIT_FAILURE
              case $lib in
 
                [\\/]* | [A-Za-z]:[\\/]*) abs="$lib" ;;
 
                *) abs=`pwd`"/$lib" ;;
 
              esac
 
              newdlfiles="$newdlfiles $abs"
 
            done
 
            dlfiles="$newdlfiles"
 
            newdlprefiles=
 
            for lib in $dlprefiles; do
 
              case $lib in
 
                [\\/]* | [A-Za-z]:[\\/]*) abs="$lib" ;;
 
                *) abs=`pwd`"/$lib" ;;
 
              esac
 
              newdlprefiles="$newdlprefiles $abs"
 
            done
 
            dlprefiles="$newdlprefiles"
        fi
        fi
 
          $RM $output
 
          # place dlname in correct position for cygwin
 
          tdlname=$dlname
 
          case $host,$output,$installed,$module,$dlname in
 
            *cygwin*,*lai,yes,no,*.dll | *mingw*,*lai,yes,no,*.dll | *cegcc*,*lai,yes,no,*.dll) tdlname=../bin/$dlname ;;
 
          esac
 
          $ECHO > $output "\
 
# $outputname - a libtool library file
 
# Generated by $PROGRAM (GNU $PACKAGE$TIMESTAMP) $VERSION
 
#
 
# Please DO NOT delete this file!
 
# It is necessary for linking the library.
 
 
        # Read the libtool library.
# The name that we can dlopen(3).
        dlname=
dlname='$tdlname'
        library_names=
 
 
 
        # If there is no directory component, then add one.
# Names of this library.
        case $file in
library_names='$library_names'
        */* | *\\*) . $file ;;
 
        *) . ./$file ;;
 
        esac
 
 
 
        # Skip this library if it cannot be dlopened.
# The name of the static archive.
        if test -z "$dlname"; then
old_library='$old_library'
          # Warn if it was a shared library.
 
          test -n "$library_names" && $echo "$modename: warning: \`$file' was not linked with \`-export-dynamic'"
 
          continue
 
        fi
 
 
 
        dir=`$echo "X$file" | $Xsed -e 's%/[^/]*$%%'`
# Linker flags that can not go in dependency_libs.
        test "X$dir" = "X$file" && dir=.
inherited_linker_flags='$new_inherited_linker_flags'
 
 
        if test -f "$dir/$objdir/$dlname"; then
# Libraries that this one depends upon.
          dir="$dir/$objdir"
dependency_libs='$dependency_libs'
        else
 
          if test ! -f "$dir/$dlname"; then
 
            $echo "$modename: cannot find \`$dlname' in \`$dir' or \`$dir/$objdir'" 1>&2
 
            exit $EXIT_FAILURE
 
          fi
 
        fi
 
        ;;
 
 
 
      *.lo)
# Names of additional weak libraries provided by this library
        # Just add the directory containing the .lo file.
weak_library_names='$weak_libs'
        dir=`$echo "X$file" | $Xsed -e 's%/[^/]*$%%'`
 
        test "X$dir" = "X$file" && dir=.
# Version information for $libname.
        ;;
current=$current
 
age=$age
 
revision=$revision
 
 
 
# Is this an already installed library?
 
installed=$installed
 
 
      *)
# Should we warn about portability when linking against -modules?
        $echo "$modename: warning \`-dlopen' is ignored for non-libtool libraries and objects" 1>&2
shouldnotlink=$module
        continue
 
        ;;
 
      esac
 
 
 
      # Get the absolute pathname.
# Files to dlopen/dlpreopen
      absdir=`cd "$dir" && pwd`
dlopen='$dlfiles'
      test -n "$absdir" && dir="$absdir"
dlpreopen='$dlprefiles'
 
 
      # Now add the directory to shlibpath_var.
# Directory that this library needs to be installed in:
      if eval "test -z \"\$$shlibpath_var\""; then
libdir='$install_libdir'"
        eval "$shlibpath_var=\"\$dir\""
          if test "$installed" = no && test "$need_relink" = yes; then
      else
            $ECHO >> $output "\
        eval "$shlibpath_var=\"\$dir:\$$shlibpath_var\""
relink_command=\"$relink_command\""
      fi
      fi
    done
    done
 
      }
 
 
    # This variable tells wrapper scripts just to set shlibpath_var
      # Do a symbolic link so that the libtool archive can be found in
    # rather than running their programs.
      # LD_LIBRARY_PATH before the program is installed.
    libtool_execute_magic="$magic"
      func_show_eval '( cd "$output_objdir" && $RM "$outputname" && $LN_S "../$outputname" "$outputname" )' 'exit $?'
 
 
    # Check if any of the arguments is a wrapper script.
 
    args=
 
    for file
 
    do
 
      case $file in
 
      -*) ;;
 
      *)
 
        # Do a test to see if this is really a libtool program.
 
        if (${SED} -e '4q' $file | grep "^# Generated by .*$PACKAGE") >/dev/null 2>&1; then
 
          # If there is no directory component, then add one.
 
          case $file in
 
          */* | *\\*) . $file ;;
 
          *) . ./$file ;;
 
          esac
 
 
 
          # Transform arg to wrapped name.
 
          file="$progdir/$program"
 
        fi
 
        ;;
        ;;
      esac
      esac
      # Quote arguments (to preserve shell metacharacters).
    exit $EXIT_SUCCESS
      file=`$echo "X$file" | $Xsed -e "$sed_quote_subst"`
}
      args="$args \"$file\""
 
    done
 
 
 
    if test -z "$run"; then
 
      if test -n "$shlibpath_var"; then
 
        # Export the shlibpath_var.
 
        eval "export $shlibpath_var"
 
      fi
 
 
 
      # Restore saved environment variables
{ test "$mode" = link || test "$mode" = relink; } &&
      for lt_var in LANG LC_ALL LC_CTYPE LC_COLLATE LC_MESSAGES
    func_mode_link ${1+"$@"}
      do
 
        eval "if test \"\${save_$lt_var+set}\" = set; then
 
                $lt_var=\$save_$lt_var; export $lt_var
 
              fi"
 
      done
 
 
 
      # Now prepare to actually exec the command.
 
      exec_cmd="\$cmd$args"
 
    else
 
      # Display what would be done.
 
      if test -n "$shlibpath_var"; then
 
        eval "\$echo \"\$shlibpath_var=\$$shlibpath_var\""
 
        $echo "export $shlibpath_var"
 
      fi
 
      $echo "$cmd$args"
 
      exit $EXIT_SUCCESS
 
    fi
 
    ;;
 
 
 
  # libtool clean and uninstall mode
# func_mode_uninstall arg...
  clean | uninstall)
func_mode_uninstall ()
    modename="$modename: $mode"
{
    rm="$nonopt"
    $opt_debug
 
    RM="$nonopt"
    files=
    files=
    rmforce=
    rmforce=
    exit_status=0
    exit_status=0
 
 
    # This variable tells wrapper scripts just to set variables rather
    # This variable tells wrapper scripts just to set variables rather
Line 6511... Line 8207...
    libtool_install_magic="$magic"
    libtool_install_magic="$magic"
 
 
    for arg
    for arg
    do
    do
      case $arg in
      case $arg in
      -f) rm="$rm $arg"; rmforce=yes ;;
      -f) RM="$RM $arg"; rmforce=yes ;;
      -*) rm="$rm $arg" ;;
      -*) RM="$RM $arg" ;;
      *) files="$files $arg" ;;
      *) files="$files $arg" ;;
      esac
      esac
    done
    done
 
 
    if test -z "$rm"; then
    test -z "$RM" && \
      $echo "$modename: you must specify an RM program" 1>&2
      func_fatal_help "you must specify an RM program"
      $echo "$help" 1>&2
 
      exit $EXIT_FAILURE
 
    fi
 
 
 
    rmdirs=
    rmdirs=
 
 
    origobjdir="$objdir"
    origobjdir="$objdir"
    for file in $files; do
    for file in $files; do
      dir=`$echo "X$file" | $Xsed -e 's%/[^/]*$%%'`
      func_dirname "$file" "" "."
      if test "X$dir" = "X$file"; then
      dir="$func_dirname_result"
        dir=.
      if test "X$dir" = X.; then
        objdir="$origobjdir"
        objdir="$origobjdir"
      else
      else
        objdir="$dir/$origobjdir"
        objdir="$dir/$origobjdir"
      fi
      fi
      name=`$echo "X$file" | $Xsed -e 's%^.*/%%'`
      func_basename "$file"
 
      name="$func_basename_result"
      test "$mode" = uninstall && objdir="$dir"
      test "$mode" = uninstall && objdir="$dir"
 
 
      # Remember objdir for removal later, being careful to avoid duplicates
      # Remember objdir for removal later, being careful to avoid duplicates
      if test "$mode" = clean; then
      if test "$mode" = clean; then
        case " $rmdirs " in
        case " $rmdirs " in
Line 6546... Line 8240...
          *) rmdirs="$rmdirs $objdir" ;;
          *) rmdirs="$rmdirs $objdir" ;;
        esac
        esac
      fi
      fi
 
 
      # Don't error if the file doesn't exist and rm -f was used.
      # Don't error if the file doesn't exist and rm -f was used.
      if (test -L "$file") >/dev/null 2>&1 \
      if { test -L "$file"; } >/dev/null 2>&1 ||
        || (test -h "$file") >/dev/null 2>&1 \
         { test -h "$file"; } >/dev/null 2>&1 ||
        || test -f "$file"; then
         test -f "$file"; then
        :
        :
      elif test -d "$file"; then
      elif test -d "$file"; then
        exit_status=1
        exit_status=1
        continue
        continue
      elif test "$rmforce" = yes; then
      elif test "$rmforce" = yes; then
Line 6562... Line 8256...
      rmfiles="$file"
      rmfiles="$file"
 
 
      case $name in
      case $name in
      *.la)
      *.la)
        # Possibly a libtool archive, so verify it.
        # Possibly a libtool archive, so verify it.
        if (${SED} -e '2q' $file | grep "^# Generated by .*$PACKAGE") >/dev/null 2>&1; then
        if func_lalib_p "$file"; then
          . $dir/$name
          func_source $dir/$name
 
 
          # Delete the libtool libraries and symlinks.
          # Delete the libtool libraries and symlinks.
          for n in $library_names; do
          for n in $library_names; do
            rmfiles="$rmfiles $objdir/$n"
            rmfiles="$rmfiles $objdir/$n"
          done
          done
Line 6583... Line 8277...
             test -n "$libdir" && rmfiles="$rmfiles $objdir/$name $objdir/${name}i"
             test -n "$libdir" && rmfiles="$rmfiles $objdir/$name $objdir/${name}i"
            ;;
            ;;
          uninstall)
          uninstall)
            if test -n "$library_names"; then
            if test -n "$library_names"; then
              # Do each command in the postuninstall commands.
              # Do each command in the postuninstall commands.
              cmds=$postuninstall_cmds
              func_execute_cmds "$postuninstall_cmds" 'test "$rmforce" = yes || exit_status=1'
              save_ifs="$IFS"; IFS='~'
 
              for cmd in $cmds; do
 
                IFS="$save_ifs"
 
                eval cmd=\"$cmd\"
 
                $show "$cmd"
 
                $run eval "$cmd"
 
                if test "$?" -ne 0 && test "$rmforce" != yes; then
 
                  exit_status=1
 
                fi
 
              done
 
              IFS="$save_ifs"
 
            fi
            fi
 
 
            if test -n "$old_library"; then
            if test -n "$old_library"; then
              # Do each command in the old_postuninstall commands.
              # Do each command in the old_postuninstall commands.
              cmds=$old_postuninstall_cmds
              func_execute_cmds "$old_postuninstall_cmds" 'test "$rmforce" = yes || exit_status=1'
              save_ifs="$IFS"; IFS='~'
 
              for cmd in $cmds; do
 
                IFS="$save_ifs"
 
                eval cmd=\"$cmd\"
 
                $show "$cmd"
 
                $run eval "$cmd"
 
                if test "$?" -ne 0 && test "$rmforce" != yes; then
 
                  exit_status=1
 
                fi
 
              done
 
              IFS="$save_ifs"
 
            fi
            fi
            # FIXME: should reinstall the best remaining shared library.
            # FIXME: should reinstall the best remaining shared library.
            ;;
            ;;
          esac
          esac
        fi
        fi
        ;;
        ;;
 
 
      *.lo)
      *.lo)
        # Possibly a libtool object, so verify it.
        # Possibly a libtool object, so verify it.
        if (${SED} -e '2q' $file | grep "^# Generated by .*$PACKAGE") >/dev/null 2>&1; then
        if func_lalib_p "$file"; then
 
 
          # Read the .lo file
          # Read the .lo file
          . $dir/$name
          func_source $dir/$name
 
 
          # Add PIC object to the list of files to remove.
          # Add PIC object to the list of files to remove.
          if test -n "$pic_object" \
          if test -n "$pic_object" &&
             && test "$pic_object" != none; then
             test "$pic_object" != none; then
            rmfiles="$rmfiles $dir/$pic_object"
            rmfiles="$rmfiles $dir/$pic_object"
          fi
          fi
 
 
          # Add non-PIC object to the list of files to remove.
          # Add non-PIC object to the list of files to remove.
          if test -n "$non_pic_object" \
          if test -n "$non_pic_object" &&
             && test "$non_pic_object" != none; then
             test "$non_pic_object" != none; then
            rmfiles="$rmfiles $dir/$non_pic_object"
            rmfiles="$rmfiles $dir/$non_pic_object"
          fi
          fi
        fi
        fi
        ;;
        ;;
 
 
      *)
      *)
        if test "$mode" = clean ; then
        if test "$mode" = clean ; then
          noexename=$name
          noexename=$name
          case $file in
          case $file in
          *.exe)
          *.exe)
            file=`$echo $file|${SED} 's,.exe$,,'`
            func_stripname '' '.exe' "$file"
            noexename=`$echo $name|${SED} 's,.exe$,,'`
            file=$func_stripname_result
 
            func_stripname '' '.exe' "$name"
 
            noexename=$func_stripname_result
            # $file with .exe has already been added to rmfiles,
            # $file with .exe has already been added to rmfiles,
            # add $file without .exe
            # add $file without .exe
            rmfiles="$rmfiles $file"
            rmfiles="$rmfiles $file"
            ;;
            ;;
          esac
          esac
          # Do a test to see if this is a libtool program.
          # Do a test to see if this is a libtool program.
          if (${SED} -e '4q' $file | grep "^# Generated by .*$PACKAGE") >/dev/null 2>&1; then
          if func_ltwrapper_p "$file"; then
 
            if func_ltwrapper_executable_p "$file"; then
 
              func_ltwrapper_scriptname "$file"
 
              relink_command=
 
              func_source $func_ltwrapper_scriptname_result
 
              rmfiles="$rmfiles $func_ltwrapper_scriptname_result"
 
            else
            relink_command=
            relink_command=
            . $dir/$noexename
              func_source $dir/$noexename
 
            fi
 
 
            # note $name still contains .exe if it was in $file originally
            # note $name still contains .exe if it was in $file originally
            # as does the version of $file that was added into $rmfiles
            # as does the version of $file that was added into $rmfiles
            rmfiles="$rmfiles $objdir/$name $objdir/${name}S.${objext}"
            rmfiles="$rmfiles $objdir/$name $objdir/${name}S.${objext}"
            if test "$fast_install" = yes && test -n "$relink_command"; then
            if test "$fast_install" = yes && test -n "$relink_command"; then
Line 6669... Line 8350...
            fi
            fi
          fi
          fi
        fi
        fi
        ;;
        ;;
      esac
      esac
      $show "$rm $rmfiles"
      func_show_eval "$RM $rmfiles" 'exit_status=1'
      $run $rm $rmfiles || exit_status=1
 
    done
    done
    objdir="$origobjdir"
    objdir="$origobjdir"
 
 
    # Try to remove the ${objdir}s in the directories where we deleted files
    # Try to remove the ${objdir}s in the directories where we deleted files
    for dir in $rmdirs; do
    for dir in $rmdirs; do
      if test -d "$dir"; then
      if test -d "$dir"; then
        $show "rmdir $dir"
        func_show_eval "rmdir $dir >/dev/null 2>&1"
        $run rmdir $dir >/dev/null 2>&1
 
      fi
      fi
    done
    done
 
 
    exit $exit_status
    exit $exit_status
    ;;
}
 
 
  "")
{ test "$mode" = uninstall || test "$mode" = clean; } &&
    $echo "$modename: you must specify a MODE" 1>&2
    func_mode_uninstall ${1+"$@"}
    $echo "$generic_help" 1>&2
 
    exit $EXIT_FAILURE
 
    ;;
 
  esac
 
 
 
  if test -z "$exec_cmd"; then
test -z "$mode" && {
    $echo "$modename: invalid operation mode \`$mode'" 1>&2
  help="$generic_help"
    $echo "$generic_help" 1>&2
  func_fatal_help "you must specify a MODE"
    exit $EXIT_FAILURE
}
  fi
 
fi # test -z "$show_help"
test -z "$exec_cmd" && \
 
  func_fatal_help "invalid operation mode \`$mode'"
 
 
if test -n "$exec_cmd"; then
if test -n "$exec_cmd"; then
  eval exec $exec_cmd
  eval exec "$exec_cmd"
  exit $EXIT_FAILURE
  exit $EXIT_FAILURE
fi
fi
 
 
# We need to display help for each of the modes.
exit $exit_status
case $mode in
 
"") $echo \
 
"Usage: $modename [OPTION]... [MODE-ARG]...
 
 
 
Provide generalized library-building support services.
 
 
 
    --config          show all configuration variables
 
    --debug           enable verbose shell tracing
 
-n, --dry-run         display commands without modifying any files
 
    --features        display basic configuration information and exit
 
    --finish          same as \`--mode=finish'
 
    --help            display this help message and exit
 
    --mode=MODE       use operation mode MODE [default=inferred from MODE-ARGS]
 
    --quiet           same as \`--silent'
 
    --silent          don't print informational messages
 
    --tag=TAG         use configuration variables from tag TAG
 
    --version         print version information
 
 
 
MODE must be one of the following:
 
 
 
      clean           remove files from the build directory
 
      compile         compile a source file into a libtool object
 
      execute         automatically set library path, then run a program
 
      finish          complete the installation of libtool libraries
 
      install         install libraries or executables
 
      link            create a library or an executable
 
      uninstall       remove libraries from an installed directory
 
 
 
MODE-ARGS vary depending on the MODE.  Try \`$modename --help --mode=MODE' for
 
a more detailed description of MODE.
 
 
 
Report bugs to <bug-libtool@gnu.org>."
 
  exit $EXIT_SUCCESS
 
  ;;
 
 
 
clean)
 
  $echo \
 
"Usage: $modename [OPTION]... --mode=clean RM [RM-OPTION]... FILE...
 
 
 
Remove files from the build directory.
 
 
 
RM is the name of the program to use to delete files associated with each FILE
 
(typically \`/bin/rm').  RM-OPTIONS are options (such as \`-f') to be passed
 
to RM.
 
 
 
If FILE is a libtool library, object or program, all the files associated
 
with it are deleted. Otherwise, only FILE itself is deleted using RM."
 
  ;;
 
 
 
compile)
 
  $echo \
 
"Usage: $modename [OPTION]... --mode=compile COMPILE-COMMAND... SOURCEFILE
 
 
 
Compile a source file into a libtool library object.
 
 
 
This mode accepts the following additional options:
 
 
 
  -o OUTPUT-FILE    set the output file name to OUTPUT-FILE
 
  -prefer-pic       try to building PIC objects only
 
  -prefer-non-pic   try to building non-PIC objects only
 
  -static           always build a \`.o' file suitable for static linking
 
 
 
COMPILE-COMMAND is a command to be used in creating a \`standard' object file
 
from the given SOURCEFILE.
 
 
 
The output file name is determined by removing the directory component from
 
SOURCEFILE, then substituting the C source code suffix \`.c' with the
 
library object suffix, \`.lo'."
 
  ;;
 
 
 
execute)
 
  $echo \
 
"Usage: $modename [OPTION]... --mode=execute COMMAND [ARGS]...
 
 
 
Automatically set library path, then run a program.
 
 
 
This mode accepts the following additional options:
 
 
 
  -dlopen FILE      add the directory containing FILE to the library path
 
 
 
This mode sets the library path environment variable according to \`-dlopen'
 
flags.
 
 
 
If any of the ARGS are libtool executable wrappers, then they are translated
 
into their corresponding uninstalled binary, and any of their required library
 
directories are added to the library path.
 
 
 
Then, COMMAND is executed, with ARGS as arguments."
 
  ;;
 
 
 
finish)
 
  $echo \
 
"Usage: $modename [OPTION]... --mode=finish [LIBDIR]...
 
 
 
Complete the installation of libtool libraries.
 
 
 
Each LIBDIR is a directory that contains libtool libraries.
 
 
 
The commands that this mode executes may require superuser privileges.  Use
 
the \`--dry-run' option if you just want to see what would be executed."
 
  ;;
 
 
 
install)
 
  $echo \
 
"Usage: $modename [OPTION]... --mode=install INSTALL-COMMAND...
 
 
 
Install executables or libraries.
 
 
 
INSTALL-COMMAND is the installation command.  The first component should be
 
either the \`install' or \`cp' program.
 
 
 
The rest of the components are interpreted as arguments to that command (only
 
BSD-compatible install options are recognized)."
 
  ;;
 
 
 
link)
 
  $echo \
 
"Usage: $modename [OPTION]... --mode=link LINK-COMMAND...
 
 
 
Link object files or libraries together to form another library, or to
 
create an executable program.
 
 
 
LINK-COMMAND is a command using the C compiler that you would use to create
 
a program from several object files.
 
 
 
The following components of LINK-COMMAND are treated specially:
 
 
 
  -all-static       do not do any dynamic linking at all
 
  -avoid-version    do not add a version suffix if possible
 
  -dlopen FILE      \`-dlpreopen' FILE if it cannot be dlopened at runtime
 
  -dlpreopen FILE   link in FILE and add its symbols to lt_preloaded_symbols
 
  -export-dynamic   allow symbols from OUTPUT-FILE to be resolved with dlsym(3)
 
  -export-symbols SYMFILE
 
                    try to export only the symbols listed in SYMFILE
 
  -export-symbols-regex REGEX
 
                    try to export only the symbols matching REGEX
 
  -LLIBDIR          search LIBDIR for required installed libraries
 
  -lNAME            OUTPUT-FILE requires the installed library libNAME
 
  -module           build a library that can dlopened
 
  -no-fast-install  disable the fast-install mode
 
  -no-install       link a not-installable executable
 
  -no-undefined     declare that a library does not refer to external symbols
 
  -o OUTPUT-FILE    create OUTPUT-FILE from the specified objects
 
  -objectlist FILE  Use a list of object files found in FILE to specify objects
 
  -precious-files-regex REGEX
 
                    don't remove output files matching REGEX
 
  -release RELEASE  specify package release information
 
  -rpath LIBDIR     the created library will eventually be installed in LIBDIR
 
  -R[ ]LIBDIR       add LIBDIR to the runtime path of programs and libraries
 
  -static           do not do any dynamic linking of uninstalled libtool libraries
 
  -static-libtool-libs
 
                    do not do any dynamic linking of libtool libraries
 
  -version-info CURRENT[:REVISION[:AGE]]
 
                    specify library version info [each variable defaults to 0]
 
 
 
All other options (arguments beginning with \`-') are ignored.
 
 
 
Every other argument is treated as a filename.  Files ending in \`.la' are
 
treated as uninstalled libtool libraries, other files are standard or library
 
object files.
 
 
 
If the OUTPUT-FILE ends in \`.la', then a libtool library is created,
 
only library objects (\`.lo' files) may be specified, and \`-rpath' is
 
required, except when creating a convenience library.
 
 
 
If OUTPUT-FILE ends in \`.a' or \`.lib', then a standard library is created
 
using \`ar' and \`ranlib', or on Windows using \`lib'.
 
 
 
If OUTPUT-FILE ends in \`.lo' or \`.${objext}', then a reloadable object file
 
is created, otherwise an executable program is created."
 
  ;;
 
 
 
uninstall)
 
  $echo \
 
"Usage: $modename [OPTION]... --mode=uninstall RM [RM-OPTION]... FILE...
 
 
 
Remove libraries from an installation directory.
 
 
 
RM is the name of the program to use to delete files associated with each FILE
 
(typically \`/bin/rm').  RM-OPTIONS are options (such as \`-f') to be passed
 
to RM.
 
 
 
If FILE is a libtool library, all the files associated with it are deleted.
 
Otherwise, only FILE itself is deleted using RM."
 
  ;;
 
 
 
*)
 
  $echo "$modename: invalid operation mode \`$mode'" 1>&2
 
  $echo "$help" 1>&2
 
  exit $EXIT_FAILURE
 
  ;;
 
esac
 
 
 
$echo
 
$echo "Try \`$modename --help' for more information about other modes."
 
 
 
exit $?
 
 
 
# The TAGs below are defined such that we never get into a situation
# The TAGs below are defined such that we never get into a situation
# in which we disable both kinds of libraries.  Given conflicting
# in which we disable both kinds of libraries.  Given conflicting
# choices, we go for a static library, that is the most portable,
# choices, we go for a static library, that is the most portable,
# since we can't tell whether shared libraries were disabled because
# since we can't tell whether shared libraries were disabled because
Line 6915... Line 8395...
# time on that platform, so we default to a shared-only configuration.
# time on that platform, so we default to a shared-only configuration.
# If a disable-shared tag is given, we'll fallback to a static-only
# If a disable-shared tag is given, we'll fallback to a static-only
# configuration.  But we'll never go from static-only to shared-only.
# configuration.  But we'll never go from static-only to shared-only.
 
 
# ### BEGIN LIBTOOL TAG CONFIG: disable-shared
# ### BEGIN LIBTOOL TAG CONFIG: disable-shared
disable_libs=shared
build_libtool_libs=no
 
build_old_libs=yes
# ### END LIBTOOL TAG CONFIG: disable-shared
# ### END LIBTOOL TAG CONFIG: disable-shared
 
 
# ### BEGIN LIBTOOL TAG CONFIG: disable-static
# ### BEGIN LIBTOOL TAG CONFIG: disable-static
disable_libs=static
build_old_libs=`case $build_libtool_libs in yes) echo no;; *) echo yes;; esac`
# ### END LIBTOOL TAG CONFIG: disable-static
# ### END LIBTOOL TAG CONFIG: disable-static
 
 
# Local Variables:
# Local Variables:
# mode:shell-script
# mode:shell-script
# sh-indentation:2
# sh-indentation:2
# End:
# End:
 
# vi:sw=2
 
 
 
 
 No newline at end of file
 No newline at end of file

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