#! /bin/sh # Generated from tests/defs.m4sh by GNU Autoconf 2.67. # defs -- Defines for Libtool testing environment. # # Copyright (C) 2003, 2004, 2005, 2007, 2008, 2009, 2010 Free Software # Foundation, Inc. # Written by Gord Matzigkeit, 1996 # Rewritten by Gary V. Vaughan, 2003 # # This file is part of GNU Libtool. # # 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 the Free Software Foundation; either version 2 of # the License, or (at your option) any later version. # # GNU Libtool is distributed in the hope that it will be useful, # but WITHOUT ANY WARRANTY; without even the implied warranty of # MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the # GNU General Public License for more details. # # You should have received a copy of the GNU General Public License # along with GNU Libtool; see the file COPYING. If not, a copy # can be downloaded from http://www.gnu.org/licenses/gpl.html, # or obtained by writing to the Free Software Foundation, Inc., # 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301, USA. #### # 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="$0" ## -------------------- ## ## M4sh Initialization. ## ## -------------------- ## # Be more Bourne compatible DUALCASE=1; export DUALCASE # for MKS sh if test -n "${ZSH_VERSION+set}" && (emulate sh) >/dev/null 2>&1; then : emulate sh NULLCMD=: # Pre-4.2 versions of Zsh do word splitting on ${1+"$@"}, which # is contrary to our usage. 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CLICOLOR_FORCE= GREP_OPTIONS= unset CLICOLOR_FORCE GREP_OPTIONS ## --------------------- ## ## M4sh Shell Functions. ## ## --------------------- ## # as_fn_unset VAR # --------------- # Portably unset VAR. as_fn_unset () { { eval $1=; unset $1;} } as_unset=as_fn_unset ## -------------------- ## ## Main body of script. ## ## -------------------- ## : ${CP="cp -f"} test "${ECHO+set}" = set || ECHO=${as_echo-'printf %s\n'} : ${EGREP="@EGREP@"} : ${FGREP="@FGREP@"} : ${GREP="@GREP@"} : ${LN_S="@LN_S@"} : ${MAKE="make"} : ${MKDIR="mkdir"} : ${MV="mv -f"} : ${RM="rm -f"} : ${SED="@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 lt_nl=' ' IFS=" $lt_nl" dirname="s,/[^/]*$,," basename="s,^.*/,," # func_dirname file append nondir_replacement # Compute the dirname of FILE. If nonempty, add APPEND to the result, # otherwise set result to NONDIR_REPLACEMENT. func_dirname () { func_dirname_result=`$ECHO "${1}" | $SED "$dirname"` if test "X$func_dirname_result" = "X${1}"; then func_dirname_result="${3}" else func_dirname_result="$func_dirname_result${2}" fi } # func_dirname may be replaced by extended shell implementation # func_basename file func_basename () { func_basename_result=`$ECHO "${1}" | $SED "$basename"` } # func_basename may be replaced by extended shell implementation # 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. 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We also want # the path to end with a slash for ease of parsing, so make sure # there is one (and only one) here. func_normal_abspath_tpath=`$ECHO "$func_normal_abspath_tpath" | $SED \ -e "$removedotparts" -e "$collapseslashes" -e "$finalslash"` while :; do # Processed it all yet? if test "$func_normal_abspath_tpath" = / ; then # If we ascended to the root using ".." the result may be empty now. if test -z "$func_normal_abspath_result" ; then func_normal_abspath_result=/ fi break fi func_normal_abspath_tcomponent=`$ECHO "$func_normal_abspath_tpath" | $SED \ -e "$pathcar"` func_normal_abspath_tpath=`$ECHO "$func_normal_abspath_tpath" | $SED \ -e "$pathcdr"` # Figure out what to do with it case $func_normal_abspath_tcomponent in "") # Trailing empty path component, ignore it. ;; ..) # Parent dir; strip last assembled component from result. func_dirname "$func_normal_abspath_result" func_normal_abspath_result=$func_dirname_result ;; *) # Actual path component, append it. func_normal_abspath_result=$func_normal_abspath_result/$func_normal_abspath_tcomponent ;; esac done # Restore leading double-slash if one was found on entry. func_normal_abspath_result=$func_normal_abspath_altnamespace$func_normal_abspath_result } # func_relative_path SRCDIR DSTDIR # generates a relative path from SRCDIR to DSTDIR, with a trailing # slash if non-empty, suitable for immediately appending a filename # without needing to append a separator. # value returned in "$func_relative_path_result" func_relative_path () { func_relative_path_result= func_normal_abspath "$1" func_relative_path_tlibdir=$func_normal_abspath_result func_normal_abspath "$2" func_relative_path_tbindir=$func_normal_abspath_result # Ascend the tree starting from libdir while :; do # check if we have found a prefix of bindir case $func_relative_path_tbindir in $func_relative_path_tlibdir) # found an exact match func_relative_path_tcancelled= break ;; $func_relative_path_tlibdir*) # found a matching prefix func_stripname "$func_relative_path_tlibdir" '' "$func_relative_path_tbindir" func_relative_path_tcancelled=$func_stripname_result if test -z "$func_relative_path_result"; then func_relative_path_result=. fi break ;; *) func_dirname $func_relative_path_tlibdir func_relative_path_tlibdir=${func_dirname_result} if test "x$func_relative_path_tlibdir" = x ; then # Have to descend all the way to the root! func_relative_path_result=../$func_relative_path_result func_relative_path_tcancelled=$func_relative_path_tbindir break fi func_relative_path_result=../$func_relative_path_result ;; esac done # Now calculate path; take care to avoid doubling-up slashes. func_stripname '' '/' "$func_relative_path_result" func_relative_path_result=$func_stripname_result func_stripname '/' '/' "$func_relative_path_tcancelled" if test "x$func_stripname_result" != x ; then func_relative_path_result=${func_relative_path_result}/${func_stripname_result} fi # Normalisation. If bindir is libdir, return empty string, # else relative path ending with a slash; either way, target # file name can be directly appended. if test ! -z "$func_relative_path_result"; then func_stripname './' '' "$func_relative_path_result/" func_relative_path_result=$func_stripname_result fi } # The name of this program: func_dirname_and_basename "$progpath" progname=$func_basename_result # 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' # Sed substitution that turns a string into a regex matching for the # string literally. sed_make_literal_regex='s,[].[^$\\*\/],\\&,g' # Sed substitution that converts a w32 file name or path # which contains forward slashes, into one that contains # (escaped) backslashes. A very naive implementation. lt_sed_naive_backslashify='s|\\\\*|\\|g;s|/|\\|g;s|\\|\\\\|g' # Re-`\' parameter expansions in output of double_quote_subst that were # `\'-ed in input to the same. If an odd number of `\' preceded a '$' # 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 () { $ECHO "OpenWrt-$progname: ${opt_mode+$opt_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_echo_all arg... # Invoke $ECHO with all args, space-separated. func_echo_all () { $ECHO "$*" } # func_error arg... # Echo program name prefixed message to standard error. func_error () { $ECHO "OpenWrt-$progname: ${opt_mode+$opt_mode: }"${1+"$@"} 1>&2 } # func_warning arg... # Echo program name prefixed warning message to standard error. func_warning () { $opt_warning && $ECHO "OpenWrt-$progname: ${opt_mode+$opt_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 "$my_directory_path" | $SED -e "$dirname"` done my_dir_list=`$ECHO "$my_dir_list" | $SED 's,:*$,,'` 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 \`$1'" fi } # func_mktempdir [string] # Make a temporary directory that won't clash with other running # libtool processes, and avoids race conditions if possible. If # given, STRING is the basename for that directory. func_mktempdir () { my_template="${TMPDIR-/tmp}/${1-$progname}" if test "$opt_dry_run" = ":"; then # Return a directory name, but don't create it in dry-run mode my_tmpdir="${my_template}-$$" else # If mktemp works, use that first and foremost my_tmpdir=`mktemp -d "${my_template}-XXXXXXXX" 2>/dev/null` if test ! -d "$my_tmpdir"; then # Failing that, at least try and use $RANDOM to avoid a race my_tmpdir="${my_template}-${RANDOM-0}$$" save_mktempdir_umask=`umask` umask 0077 $MKDIR "$my_tmpdir" umask $save_mktempdir_umask fi # If we're not in dry-run mode, bomb out on failure test -d "$my_tmpdir" || \ func_fatal_error "cannot create temporary directory \`$my_tmpdir'" fi $ECHO "$my_tmpdir" } # func_quote_for_eval arg # Aesthetically quote ARG to be evaled later. # This function returns two values: FUNC_QUOTE_FOR_EVAL_RESULT # is double-quoted, suitable for a subsequent eval, whereas # FUNC_QUOTE_FOR_EVAL_UNQUOTED_RESULT has merely all characters # which are still active within double quotes backslashified. func_quote_for_eval () { case $1 in *[\\\`\"\$]*) func_quote_for_eval_unquoted_result=`$ECHO "$1" | $SED "$sed_quote_subst"` ;; *) func_quote_for_eval_unquoted_result="$1" ;; 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 } # func_quote_for_expand arg # Aesthetically quote ARG to be evaled later; same as above, # but do not quote variable references. func_quote_for_expand () { case $1 in *[\\\`\"]*) my_arg=`$ECHO "$1" | $SED \ -e "$double_quote_subst" -e "$sed_double_backslash"` ;; *) my_arg="$1" ;; esac case $my_arg in # Double-quote args containing shell metacharacters to delay # word splitting and command substitution for a subsequent eval. # Many Bourne shells cannot handle close brackets correctly # in scan sets, so we specify it separately. *[\[\~\#\^\&\*\(\)\{\}\|\;\<\>\?\'\ \ ]*|*]*|"") my_arg="\"$my_arg\"" ;; esac func_quote_for_expand_result="$my_arg" } # func_show_eval 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. func_show_eval () { my_cmd="$1" my_fail_exp="${2-:}" ${opt_silent-false} || { func_quote_for_expand "$my_cmd" eval "func_echo $func_quote_for_expand_result" } if ${opt_dry_run-false}; then :; else eval "$my_cmd" my_status=$? if test "$my_status" -eq 0; then :; else eval "(exit $my_status); $my_fail_exp" fi fi } # 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_cmd="$1" my_fail_exp="${2-:}" ${opt_silent-false} || { func_quote_for_expand "$my_cmd" eval "func_echo $func_quote_for_expand_result" } if ${opt_dry_run-false}; then :; else eval "$lt_user_locale $my_cmd" my_status=$? eval "$lt_safe_locale" if test "$my_status" -eq 0; then :; else eval "(exit $my_status); $my_fail_exp" fi fi } # func_tr_sh # Turn $1 into a string suitable for a shell variable name. # Result is stored in $func_tr_sh_result. All characters # not in the set a-zA-Z0-9_ are replaced with '_'. Further, # if $1 begins with a digit, a '_' is prepended as well. func_tr_sh () { case $1 in [0-9]* | *[!a-zA-Z0-9_]*) func_tr_sh_result=`$ECHO "$1" | $SED 's/^\([0-9]\)/_\1/; s/[^a-zA-Z0-9_]/_/g'` ;; * ) func_tr_sh_result=$1 ;; esac } : ${AUTOCONF="autoconf"} : ${AUTORECONF="autoreconf"} : ${LIBTOOL="./libtool"} # Sed that helps us avoid accidentally triggering echo(1) options like -n. Xsed="$SED -e 1s/^X//" # Disable usage of config.site for autoconf, unless DJGPP is present. # The DJGPP port of autoconf requires config.site, to work correctly. if test -z "$DJGPP"; then CONFIG_SITE=/nonexistent fi # How verbose should we be? Default is test output in log file. # Setting VERBOSE=debug puts the shell in debug mode. opt_debug=: case "$VERBOSE" in DEBUG | debug ) opt_debug='set -x' $opt_debug ;; esac if test -z "$srcdir"; then srcdir=`$ECHO "$0" | $SED "$dirname; s,/tests\$,,"` test "$srcdir" = "$0" && srcdir=. fi # func_msg arg... # Echo message with prefix. func_msg () { func_echo "=== " ${1+"$@"} } # func_skip arg... # Echo message to standard error, and skip the rest of this test. func_skip () { func_error ${1+"$@"} exit $EXIT_SKIP } # func_fail arg... # Echo message to standard error, and fail this test. func_fail () { func_fatal_error ${1+"$@"} } # func_get_config varname_list src [failp] [regex] func_get_config () { $opt_debug my_varname_list="$1" my_src="$2" my_failp="false"; test -z "$3" || my_failp=: my_regex="$4" my_exitp=false if test -z "$my_regex"; then my_regex="^(" my_build_regex=: else my_build_regex=false fi my_first=: for my_varname in $my_varname_list; do if $my_build_regex; then $my_first || my_regex="$my_regex|" my_first=false my_regex="$my_regex$my_varname" fi eval $my_varname=NONE done $my_build_regex && my_regex="$my_regex)=" eval `eval "$my_src" | eval "$EGREP \"$my_regex\""` for my_varname in $my_varname_list; do if eval test x\"\$$my_varname\" = xNONE; then func_error "$my_varname not set in \`$my_src'" $my_failp && my_exitp=: fi done $my_exitp && exit $EXIT_FAILURE } # Extract some variables from the libtool configuration. func_get_config "objext objdir CC host host_os host_alias build build_alias" "$LIBTOOL --config" ": fatal" # func_mkprefixdir func_mkprefixdir () { $opt_debug # An absolute path to a test installation directory. func_mkdir_p "$prefix" prefix=`cd $prefix && pwd` } # func_rmprefixdir func_rmprefixdir () { $opt_debug test -d $prefix && rm -rf $prefix prefix=NONE } # func_cd dir # Make sure a directory exists, and then change to it. func_cd () { $opt_debug my_dir="$1" # Maybe we have a VPATH build, in which case, create a new subdir. func_mkdir_p "$my_dir" # Change to our build directory. cd "$my_dir" || func_fatal_error "couldn't cd to \`$my_dir'" } # func_require prereq file [...] # If FILE does not exist, give a fatal error regarding running PREREQ first. func_require () { $opt_debug my_prereq="$1"; shift my_files=${1+"$@"} for my_file in $my_files; do test -f "$my_file" \ || func_skip "You must run ${my_prereq}.test before running $0" done } # func_configure_nofail [args ...] # Configure the demonstration. func_configure_nofail () { $opt_debug my_args=${1+"$@"} func_dirname_and_basename "`pwd`" my_dir=$func_basename_result my_testdir="$srcdir/tests/$my_dir" conf_status=$EXIT_FAILURE test -n "$my_args" && my_args=" $my_args" my_args="--srcdir="\""$my_testdir"\"" --prefix="\""$prefix"\""$my_args" test -n "$host_alias" && my_args="$my_args --host=\"$host_alias\"" test -n "$build_alias" && my_args="$my_args --build=\"$build_alias\"" func_msg "Configuring in $my_dir" test -f "$my_testdir/configure" || ${AUTORECONF} --force --install $my_testdir if test -f "$my_testdir/configure"; then eval func_msg $SHELL "$my_testdir/configure" $my_args if eval $SHELL "$my_testdir/configure" $my_args; then conf_status=$EXIT_SUCCESS else func_msg "FAILED: Configuring in $my_testdir" ls -ltr $my_testdir fi fi } # func_configure [args ...] # Configure the demonstration, fail on error. func_configure () { func_configure_nofail ${1+"$@"} if test "$conf_status" -eq "$EXIT_FAILURE"; then exit $EXIT_FAILURE fi } # func_check_static_shared staticp sharedp # Determine whether the generated libtool script is configured properly # for the expected STATICP and SHAREDP library building func_check_static_shared () { $opt_debug my_staticp="$1" my_sharedp="$2" if func_grep "^build_old_libs=$staticp" libtool && func_grep "^build_libtool_libs=$sharedp" libtool; then : else rm -f Makefile exit $EXIT_FAIL fi } # func_make [args ...] # Do the actual build. func_make () { $opt_debug my_args=${1+"$@"} func_dirname_and_basename "`pwd`" func_msg "Running \`$MAKE $my_args' in $func_basename_result" eval $MAKE $my_args || exit $EXIT_FAIL } # func_distclean # Possibly clean up the distribution. func_make_distclean () { $opt_debug if test -f Makefile; then func_make distclean fi rm -rf autom4te.cache config.cache } # func_make_uninstall # See that there were no files leftover in $prefix. # Ignore dotfiles, so that .nfsXXX files don't screw up the test. func_make_uninstall () { $opt_debug func_make uninstall leftovers=`find $prefix ! -type d ! -name '.*' -print` if test -n "$leftovers"; then func_msg "Leftover after make uninstall:" ls -l $leftovers exit 1 fi } # func_exec_init mode func_exec_init () { $opt_debug func_dirname_and_basename "`pwd`" func_msg "Executing $1 programs in $func_basename_result" # Windows hosts search for dlls in the command path PATH=$prefix/lib:$PATH exec_status=$EXIT_SUCCESS } # func_exec_check program [msg ...] # Check to see if PROGRAM was built. If not display MSG. func_exec_check () { $opt_debug my_program="$1" if test -f "$my_program"; then : else shift func_error "$0: $my_program did not build ${1+$@}" exec_status=$EXIT_FAILURE fi } # func_exec program [exp_output] [msg ...] # Check to see if PROGRAM really runs, and produces EXP_OUTPUT if given. # If not display MSG. func_exec () { $opt_debug my_program="$1" my_exp_output="$2" func_dirname_and_basename "`pwd`" my_dir=$func_basename_result test -n "$my_exp_output" \ && my_exp_output="| $EGREP -e "\""$my_exp_output"\" if eval $my_program $my_exp_output; then : else shift test "x$1" = x || shift func_error "$0: cannot execute $my_program ${1+$@}" if test "$build" != "$host"; then func_msg "This may be ok since you seem to be cross-compiling." exec_status=$EXIT_SKIP else # Simple check to see if they are superuser. if test $exec_status = $EXIT_FAILURE || test -w /; then : else func_msg "You may need to run $0 as the superuser." fi exec_status=$EXIT_FAILURE fi fi } # Shared global variables for test scripts prefix=./_inst-`echo "$0" | sed 's,.*/,,; s,-.*,,'` srcdir=`cd $srcdir && pwd` m4dir=$srcdir/libltdl/m4 auxdir=$srcdir/libltdl/config scripts="$auxdir/ltmain.m4sh $srcdir/libtoolize.m4sh" # Unset some MAKE... variables that may cause $MAKE to act like a # recursively invoked sub-make. Any $MAKE invocation in a test is # conceptually an independent invocation. unset MFLAGS MAKEFLAGS MAKELEVEL __MKLVL__ MAKE_JOBS_FIFO # On AIX, shared libraries remain loaded in memory after use if they # are world-readable, until root issues slibclean. On NFS, this causes # a testsuite rerun to fail to clean up test group directories. Avoid # this with a suitable umask. Do not do this on other systems, for # example HP-UX suffers unless shared libraries are mode 555. case $host_os in aix*) umask o-rwx ;; esac func_msg "Running $progname" # Local Variables: # mode:shell-script # sh-indentation:2 # End: