blob: 605a0ece0c395f391f9f340025dbd8e12f5af53b [file] [log] [blame]
#!/bin/sh
#
# qemu configure script (c) 2003 Fabrice Bellard
#
# set temporary file name
if test ! -z "$TMPDIR" ; then
TMPDIR1="${TMPDIR}"
elif test ! -z "$TEMPDIR" ; then
TMPDIR1="${TEMPDIR}"
else
TMPDIR1="/tmp"
fi
TMPC="${TMPDIR1}/qemu-conf-${RANDOM}-$$-${RANDOM}.c"
TMPB="qemu-conf-${RANDOM}-$$-${RANDOM}"
TMPO="${TMPDIR1}/${TMPB}.o"
TMPCXX="${TMPDIR1}/${TMPB}.cxx"
TMPL="${TMPDIR1}/${TMPB}.lo"
TMPA="${TMPDIR1}/lib${TMPB}.la"
TMPE="${TMPDIR1}/qemu-conf-${RANDOM}-$$-${RANDOM}.exe"
# NB: do not call "exit" in the trap handler; this is buggy with some shells;
# see <1285349658-3122-1-git-send-email-loic.minier@linaro.org>
trap "rm -f $TMPC $TMPO $TMPCXX $TMPE" EXIT INT QUIT TERM
rm -f config.log
# Print a helpful header at the top of config.log
echo "# QEMU configure log $(date)" >> config.log
printf "# Configured with:" >> config.log
printf " '%s'" "$0" "$@" >> config.log
echo >> config.log
echo "#" >> config.log
error_exit() {
echo
echo "ERROR: $1"
while test -n "$2"; do
echo " $2"
shift
done
echo
exit 1
}
do_compiler() {
# Run the compiler, capturing its output to the log. First argument
# is compiler binary to execute.
local compiler="$1"
shift
echo $compiler "$@" >> config.log
$compiler "$@" >> config.log 2>&1 || return $?
# Test passed. If this is an --enable-werror build, rerun
# the test with -Werror and bail out if it fails. This
# makes warning-generating-errors in configure test code
# obvious to developers.
if test "$werror" != "yes"; then
return 0
fi
# Don't bother rerunning the compile if we were already using -Werror
case "$*" in
*-Werror*)
return 0
;;
esac
echo $compiler -Werror "$@" >> config.log
$compiler -Werror "$@" >> config.log 2>&1 && return $?
error_exit "configure test passed without -Werror but failed with -Werror." \
"This is probably a bug in the configure script. The failing command" \
"will be at the bottom of config.log." \
"You can run configure with --disable-werror to bypass this check."
}
do_cc() {
do_compiler "$cc" "$@"
}
do_cxx() {
do_compiler "$cxx" "$@"
}
update_cxxflags() {
# Set QEMU_CXXFLAGS from QEMU_CFLAGS by filtering out those
# options which some versions of GCC's C++ compiler complain about
# because they only make sense for C programs.
QEMU_CXXFLAGS=
for arg in $QEMU_CFLAGS; do
case $arg in
-Wstrict-prototypes|-Wmissing-prototypes|-Wnested-externs|\
-Wold-style-declaration|-Wold-style-definition|-Wredundant-decls)
;;
*)
QEMU_CXXFLAGS=${QEMU_CXXFLAGS:+$QEMU_CXXFLAGS }$arg
;;
esac
done
}
compile_object() {
do_cc $QEMU_CFLAGS -c -o $TMPO $TMPC
}
compile_prog() {
local_cflags="$1"
local_ldflags="$2"
do_cc $QEMU_CFLAGS $local_cflags -o $TMPE $TMPC $LDFLAGS $local_ldflags
}
do_libtool() {
local mode=$1
shift
# Run the compiler, capturing its output to the log.
echo $libtool $mode --tag=CC $cc "$@" >> config.log
$libtool $mode --tag=CC $cc "$@" >> config.log 2>&1 || return $?
# Test passed. If this is an --enable-werror build, rerun
# the test with -Werror and bail out if it fails. This
# makes warning-generating-errors in configure test code
# obvious to developers.
if test "$werror" != "yes"; then
return 0
fi
# Don't bother rerunning the compile if we were already using -Werror
case "$*" in
*-Werror*)
return 0
;;
esac
echo $libtool $mode --tag=CC $cc -Werror "$@" >> config.log
$libtool $mode --tag=CC $cc -Werror "$@" >> config.log 2>&1 && return $?
error_exit "configure test passed without -Werror but failed with -Werror." \
"This is probably a bug in the configure script. The failing command" \
"will be at the bottom of config.log." \
"You can run configure with --disable-werror to bypass this check."
}
libtool_prog() {
do_libtool --mode=compile $QEMU_CFLAGS -c -fPIE -DPIE -o $TMPO $TMPC || return $?
do_libtool --mode=link $LDFLAGS -o $TMPA $TMPL -rpath /usr/local/lib
}
# symbolically link $1 to $2. Portable version of "ln -sf".
symlink() {
rm -rf "$2"
mkdir -p "$(dirname "$2")"
ln -s "$1" "$2"
}
# check whether a command is available to this shell (may be either an
# executable or a builtin)
has() {
type "$1" >/dev/null 2>&1
}
# search for an executable in PATH
path_of() {
local_command="$1"
local_ifs="$IFS"
local_dir=""
# pathname has a dir component?
if [ "${local_command#*/}" != "$local_command" ]; then
if [ -x "$local_command" ] && [ ! -d "$local_command" ]; then
echo "$local_command"
return 0
fi
fi
if [ -z "$local_command" ]; then
return 1
fi
IFS=:
for local_dir in $PATH; do
if [ -x "$local_dir/$local_command" ] && [ ! -d "$local_dir/$local_command" ]; then
echo "$local_dir/$local_command"
IFS="${local_ifs:-$(printf ' \t\n')}"
return 0
fi
done
# not found
IFS="${local_ifs:-$(printf ' \t\n')}"
return 1
}
# default parameters
source_path=`dirname "$0"`
cpu=""
iasl="iasl"
interp_prefix="/usr/gnemul/qemu-%M"
static="no"
cross_prefix=""
audio_drv_list=""
block_drv_rw_whitelist=""
block_drv_ro_whitelist=""
host_cc="cc"
libs_softmmu=""
libs_tools=""
audio_pt_int=""
audio_win_int=""
cc_i386=i386-pc-linux-gnu-gcc
libs_qga=""
debug_info="yes"
stack_protector=""
# Don't accept a target_list environment variable.
unset target_list
# Default value for a variable defining feature "foo".
# * foo="no" feature will only be used if --enable-foo arg is given
# * foo="" feature will be searched for, and if found, will be used
# unless --disable-foo is given
# * foo="yes" this value will only be set by --enable-foo flag.
# feature will searched for,
# if not found, configure exits with error
#
# Always add --enable-foo and --disable-foo command line args.
# Distributions want to ensure that several features are compiled in, and it
# is impossible without a --enable-foo that exits if a feature is not found.
bluez=""
brlapi=""
curl=""
curses=""
docs=""
fdt=""
netmap="no"
pixman=""
sdl=""
sdlabi="1.2"
virtfs=""
vnc="yes"
sparse="no"
uuid=""
vde=""
vnc_tls=""
vnc_sasl=""
vnc_jpeg=""
vnc_png=""
vnc_ws=""
xen=""
xen_ctrl_version=""
xen_pci_passthrough=""
linux_aio=""
cap_ng=""
attr=""
libattr=""
xfs=""
vhost_net="no"
vhost_scsi="no"
kvm="no"
rdma=""
gprof="no"
debug_tcg="no"
debug="no"
strip_opt="yes"
tcg_interpreter="no"
bigendian="no"
mingw32="no"
gcov="no"
gcov_tool="gcov"
EXESUF=""
DSOSUF=".so"
LDFLAGS_SHARED="-shared"
modules="no"
prefix="/usr/local"
mandir="\${prefix}/share/man"
datadir="\${prefix}/share"
qemu_docdir="\${prefix}/share/doc/qemu"
bindir="\${prefix}/bin"
libdir="\${prefix}/lib"
libexecdir="\${prefix}/libexec"
includedir="\${prefix}/include"
sysconfdir="\${prefix}/etc"
local_statedir="\${prefix}/var"
confsuffix="/qemu"
slirp="yes"
fmod_lib=""
fmod_inc=""
oss_lib=""
bsd="no"
linux="no"
solaris="no"
profiler="no"
cocoa="no"
softmmu="yes"
linux_user="no"
bsd_user="no"
guest_base="yes"
aix="no"
blobs="yes"
pkgversion=""
pie=""
zero_malloc=""
qom_cast_debug="yes"
trace_backend="nop"
trace_file="trace"
spice=""
rbd=""
smartcard_nss=""
libusb=""
usb_redir=""
glx=""
zlib="yes"
lzo="no"
snappy="no"
guest_agent=""
guest_agent_with_vss="no"
vss_win32_sdk=""
win_sdk="no"
want_tools="yes"
libiscsi=""
libnfs=""
coroutine=""
coroutine_pool=""
seccomp=""
glusterfs=""
glusterfs_discard="no"
glusterfs_zerofill="no"
virtio_blk_data_plane=""
gtk=""
gtkabi="2.0"
vte=""
tpm="no"
libssh2=""
vhdx=""
quorum="no"
# parse CC options first
for opt do
optarg=`expr "x$opt" : 'x[^=]*=\(.*\)'`
case "$opt" in
--cross-prefix=*) cross_prefix="$optarg"
;;
--cc=*) CC="$optarg"
;;
--cxx=*) CXX="$optarg"
;;
--source-path=*) source_path="$optarg"
;;
--cpu=*) cpu="$optarg"
;;
--extra-cflags=*) QEMU_CFLAGS="$optarg $QEMU_CFLAGS"
EXTRA_CFLAGS="$optarg"
;;
--extra-ldflags=*) LDFLAGS="$optarg $LDFLAGS"
EXTRA_LDFLAGS="$optarg"
;;
--enable-debug-info) debug_info="yes"
;;
--disable-debug-info) debug_info="no"
;;
esac
done
# OS specific
# Using uname is really, really broken. Once we have the right set of checks
# we can eliminate its usage altogether.
# Preferred compiler:
# ${CC} (if set)
# ${cross_prefix}gcc (if cross-prefix specified)
# system compiler
if test -z "${CC}${cross_prefix}"; then
cc="$host_cc"
else
cc="${CC-${cross_prefix}gcc}"
fi
if test -z "${CXX}${cross_prefix}"; then
cxx="c++"
else
cxx="${CXX-${cross_prefix}g++}"
fi
ar="${AR-${cross_prefix}ar}"
as="${AS-${cross_prefix}as}"
cpp="${CPP-$cc -E}"
objcopy="${OBJCOPY-${cross_prefix}objcopy}"
ld="${LD-${cross_prefix}ld}"
libtool="${LIBTOOL-${cross_prefix}libtool}"
strip="${STRIP-${cross_prefix}strip}"
windres="${WINDRES-${cross_prefix}windres}"
pkg_config_exe="${PKG_CONFIG-${cross_prefix}pkg-config}"
query_pkg_config() {
"${pkg_config_exe}" ${QEMU_PKG_CONFIG_FLAGS} "$@"
}
pkg_config=query_pkg_config
sdl_config="${SDL_CONFIG-${cross_prefix}sdl-config}"
sdl2_config="${SDL2_CONFIG-${cross_prefix}sdl2-config}"
# If the user hasn't specified ARFLAGS, default to 'rv', just as make does.
ARFLAGS="${ARFLAGS-rv}"
# default flags for all hosts
QEMU_CFLAGS="-fno-strict-aliasing -fno-common $QEMU_CFLAGS"
QEMU_CFLAGS="-Wall -Wundef -Wwrite-strings -Wmissing-prototypes $QEMU_CFLAGS"
QEMU_CFLAGS="-Wstrict-prototypes -Wredundant-decls $QEMU_CFLAGS"
QEMU_CFLAGS="-D_GNU_SOURCE -D_FILE_OFFSET_BITS=64 -D_LARGEFILE_SOURCE $QEMU_CFLAGS"
QEMU_INCLUDES="-I. -I\$(SRC_PATH) -I\$(SRC_PATH)/include"
if test "$debug_info" = "yes"; then
CFLAGS="-g $CFLAGS"
LDFLAGS="-g $LDFLAGS"
fi
# make source path absolute
source_path=`cd "$source_path"; pwd`
# running configure in the source tree?
# we know that's the case if configure is there.
if test -f "./configure"; then
pwd_is_source_path="y"
else
pwd_is_source_path="n"
fi
check_define() {
cat > $TMPC <<EOF
#if !defined($1)
#error $1 not defined
#endif
int main(void) { return 0; }
EOF
compile_object
}
if check_define __linux__ ; then
targetos="Linux"
elif check_define _WIN32 ; then
targetos='MINGW32'
elif check_define __OpenBSD__ ; then
targetos='OpenBSD'
elif check_define __sun__ ; then
targetos='SunOS'
elif check_define __HAIKU__ ; then
targetos='Haiku'
else
targetos=`uname -s`
fi
# Some host OSes need non-standard checks for which CPU to use.
# Note that these checks are broken for cross-compilation: if you're
# cross-compiling to one of these OSes then you'll need to specify
# the correct CPU with the --cpu option.
case $targetos in
Darwin)
# on Leopard most of the system is 32-bit, so we have to ask the kernel if we can
# run 64-bit userspace code.
# If the user didn't specify a CPU explicitly and the kernel says this is
# 64 bit hw, then assume x86_64. Otherwise fall through to the usual detection code.
if test -z "$cpu" && test "$(sysctl -n hw.optional.x86_64)" = "1"; then
cpu="x86_64"
fi
;;
SunOS)
# `uname -m` returns i86pc even on an x86_64 box, so default based on isainfo
if test -z "$cpu" && test "$(isainfo -k)" = "amd64"; then
cpu="x86_64"
fi
esac
if test ! -z "$cpu" ; then
# command line argument
:
elif check_define __i386__ ; then
cpu="i386"
elif check_define __x86_64__ ; then
if check_define __ILP32__ ; then
cpu="x32"
else
cpu="x86_64"
fi
elif check_define __sparc__ ; then
if check_define __arch64__ ; then
cpu="sparc64"
else
cpu="sparc"
fi
elif check_define _ARCH_PPC ; then
if check_define _ARCH_PPC64 ; then
cpu="ppc64"
else
cpu="ppc"
fi
elif check_define __mips__ ; then
cpu="mips"
elif check_define __ia64__ ; then
cpu="ia64"
elif check_define __s390__ ; then
if check_define __s390x__ ; then
cpu="s390x"
else
cpu="s390"
fi
elif check_define __arm__ ; then
cpu="arm"
elif check_define __aarch64__ ; then
cpu="aarch64"
elif check_define __hppa__ ; then
cpu="hppa"
else
cpu=`uname -m`
fi
ARCH=
# Normalise host CPU name and set ARCH.
# Note that this case should only have supported host CPUs, not guests.
case "$cpu" in
ia64|ppc|ppc64|s390|s390x|sparc64|x32)
cpu="$cpu"
;;
i386|i486|i586|i686|i86pc|BePC)
cpu="i386"
;;
x86_64|amd64)
cpu="x86_64"
;;
armv*b|armv*l|arm)
cpu="arm"
;;
aarch64)
cpu="aarch64"
;;
mips*)
cpu="mips"
;;
sparc|sun4[cdmuv])
cpu="sparc"
;;
*)
# This will result in either an error or falling back to TCI later
ARCH=unknown
;;
esac
if test -z "$ARCH"; then
ARCH="$cpu"
fi
# OS specific
case $targetos in
CYGWIN*)
mingw32="yes"
QEMU_CFLAGS="-mno-cygwin $QEMU_CFLAGS"
audio_possible_drivers="winwave sdl"
audio_drv_list="winwave"
;;
MINGW32*)
mingw32="yes"
audio_possible_drivers="winwave dsound sdl fmod"
audio_drv_list="winwave"
;;
GNU/kFreeBSD)
bsd="yes"
audio_drv_list="oss"
audio_possible_drivers="oss sdl esd pa"
;;
FreeBSD)
bsd="yes"
make="${MAKE-gmake}"
audio_drv_list="oss"
audio_possible_drivers="oss sdl esd pa"
# needed for kinfo_getvmmap(3) in libutil.h
LIBS="-lutil $LIBS"
netmap="" # enable netmap autodetect
;;
DragonFly)
bsd="yes"
make="${MAKE-gmake}"
audio_drv_list="oss"
audio_possible_drivers="oss sdl esd pa"
;;
NetBSD)
bsd="yes"
make="${MAKE-gmake}"
audio_drv_list="oss"
audio_possible_drivers="oss sdl esd"
oss_lib="-lossaudio"
;;
OpenBSD)
bsd="yes"
make="${MAKE-gmake}"
audio_drv_list="sdl"
audio_possible_drivers="sdl esd"
;;
Darwin)
bsd="yes"
darwin="yes"
LDFLAGS_SHARED="-bundle -undefined dynamic_lookup"
if [ "$cpu" = "x86_64" ] ; then
QEMU_CFLAGS="-arch x86_64 $QEMU_CFLAGS"
LDFLAGS="-arch x86_64 $LDFLAGS"
fi
cocoa="yes"
audio_drv_list="coreaudio"
audio_possible_drivers="coreaudio sdl fmod"
LDFLAGS="-framework CoreFoundation -framework IOKit $LDFLAGS"
libs_softmmu="-F/System/Library/Frameworks -framework Cocoa -framework IOKit $libs_softmmu"
# Disable attempts to use ObjectiveC features in os/object.h since they
# won't work when we're compiling with gcc as a C compiler.
QEMU_CFLAGS="-DOS_OBJECT_USE_OBJC=0 $QEMU_CFLAGS"
;;
SunOS)
solaris="yes"
make="${MAKE-gmake}"
install="${INSTALL-ginstall}"
ld="gld"
smbd="${SMBD-/usr/sfw/sbin/smbd}"
needs_libsunmath="no"
solarisrev=`uname -r | cut -f2 -d.`
if [ "$cpu" = "i386" -o "$cpu" = "x86_64" ] ; then
if test "$solarisrev" -le 9 ; then
if test -f /opt/SUNWspro/prod/lib/libsunmath.so.1; then
needs_libsunmath="yes"
QEMU_CFLAGS="-I/opt/SUNWspro/prod/include/cc $QEMU_CFLAGS"
LDFLAGS="-L/opt/SUNWspro/prod/lib -R/opt/SUNWspro/prod/lib $LDFLAGS"
LIBS="-lsunmath $LIBS"
else
error_exit "QEMU will not link correctly on Solaris 8/X86 or 9/x86 without" \
"libsunmath from the Sun Studio compilers tools, due to a lack of" \
"C99 math features in libm.so in Solaris 8/x86 and Solaris 9/x86" \
"Studio 11 can be downloaded from www.sun.com."
fi
fi
fi
if test -f /usr/include/sys/soundcard.h ; then
audio_drv_list="oss"
fi
audio_possible_drivers="oss sdl"
# needed for CMSG_ macros in sys/socket.h
QEMU_CFLAGS="-D_XOPEN_SOURCE=600 $QEMU_CFLAGS"
# needed for TIOCWIN* defines in termios.h
QEMU_CFLAGS="-D__EXTENSIONS__ $QEMU_CFLAGS"
QEMU_CFLAGS="-std=gnu99 $QEMU_CFLAGS"
solarisnetlibs="-lsocket -lnsl -lresolv"
LIBS="$solarisnetlibs $LIBS"
libs_qga="$solarisnetlibs $libs_qga"
;;
AIX)
aix="yes"
make="${MAKE-gmake}"
;;
Haiku)
haiku="yes"
QEMU_CFLAGS="-DB_USE_POSITIVE_POSIX_ERRORS $QEMU_CFLAGS"
LIBS="-lposix_error_mapper -lnetwork $LIBS"
;;
*)
audio_drv_list="oss"
audio_possible_drivers="oss alsa sdl esd pa"
linux="yes"
linux_user="yes"
kvm="yes"
vhost_net="yes"
vhost_scsi="yes"
if [ "$cpu" = "i386" -o "$cpu" = "x86_64" -o "$cpu" = "x32" ] ; then
audio_possible_drivers="$audio_possible_drivers fmod"
fi
QEMU_INCLUDES="-I\$(SRC_PATH)/linux-headers -I$(pwd)/linux-headers $QEMU_INCLUDES"
;;
esac
if [ "$bsd" = "yes" ] ; then
if [ "$darwin" != "yes" ] ; then
bsd_user="yes"
fi
fi
: ${make=${MAKE-make}}
: ${install=${INSTALL-install}}
: ${python=${PYTHON-python}}
: ${smbd=${SMBD-/usr/sbin/smbd}}
# Default objcc to clang if available, otherwise use CC
if has clang; then
objcc=clang
else
objcc="$cc"
fi
if test "$mingw32" = "yes" ; then
EXESUF=".exe"
DSOSUF=".dll"
QEMU_CFLAGS="-DWIN32_LEAN_AND_MEAN -DWINVER=0x501 $QEMU_CFLAGS"
# enable C99/POSIX format strings (needs mingw32-runtime 3.15 or later)
QEMU_CFLAGS="-D__USE_MINGW_ANSI_STDIO=1 $QEMU_CFLAGS"
LIBS="-lwinmm -lws2_32 -liphlpapi $LIBS"
cat > $TMPC << EOF
int main(void) { return 0; }
EOF
if compile_prog "" "-liberty" ; then
LIBS="-liberty $LIBS"
fi
prefix="c:/Program Files/QEMU"
mandir="\${prefix}"
datadir="\${prefix}"
qemu_docdir="\${prefix}"
bindir="\${prefix}"
sysconfdir="\${prefix}"
local_statedir=
confsuffix=""
libs_qga="-lws2_32 -lwinmm -lpowrprof $libs_qga"
fi
werror=""
for opt do
optarg=`expr "x$opt" : 'x[^=]*=\(.*\)'`
case "$opt" in
--help|-h) show_help=yes
;;
--version|-V) exec cat $source_path/VERSION
;;
--prefix=*) prefix="$optarg"
;;
--interp-prefix=*) interp_prefix="$optarg"
;;
--source-path=*)
;;
--cross-prefix=*)
;;
--cc=*)
;;
--host-cc=*) host_cc="$optarg"
;;
--cxx=*)
;;
--iasl=*) iasl="$optarg"
;;
--objcc=*) objcc="$optarg"
;;
--make=*) make="$optarg"
;;
--install=*) install="$optarg"
;;
--python=*) python="$optarg"
;;
--gcov=*) gcov_tool="$optarg"
;;
--smbd=*) smbd="$optarg"
;;
--extra-cflags=*)
;;
--extra-ldflags=*)
;;
--enable-debug-info)
;;
--disable-debug-info)
;;
--enable-modules)
modules="yes"
;;
--cpu=*)
;;
--target-list=*) target_list="$optarg"
;;
--enable-trace-backend=*) trace_backend="$optarg"
;;
--with-trace-file=*) trace_file="$optarg"
;;
--enable-gprof) gprof="yes"
;;
--enable-gcov) gcov="yes"
;;
--static)
static="yes"
LDFLAGS="-static $LDFLAGS"
QEMU_PKG_CONFIG_FLAGS="--static $QEMU_PKG_CONFIG_FLAGS"
;;
--mandir=*) mandir="$optarg"
;;
--bindir=*) bindir="$optarg"
;;
--libdir=*) libdir="$optarg"
;;
--libexecdir=*) libexecdir="$optarg"
;;
--includedir=*) includedir="$optarg"
;;
--datadir=*) datadir="$optarg"
;;
--with-confsuffix=*) confsuffix="$optarg"
;;
--docdir=*) qemu_docdir="$optarg"
;;
--sysconfdir=*) sysconfdir="$optarg"
;;
--localstatedir=*) local_statedir="$optarg"
;;
--sbindir=*|--sharedstatedir=*|\
--oldincludedir=*|--datarootdir=*|--infodir=*|--localedir=*|\
--htmldir=*|--dvidir=*|--pdfdir=*|--psdir=*)
# These switches are silently ignored, for compatibility with
# autoconf-generated configure scripts. This allows QEMU's
# configure to be used by RPM and similar macros that set
# lots of directory switches by default.
;;
--with-system-pixman) pixman="system"
;;
--without-system-pixman) pixman="internal"
;;
--without-pixman) pixman="none"
;;
--disable-sdl) sdl="no"
;;
--enable-sdl) sdl="yes"
;;
--with-sdlabi=*) sdlabi="$optarg"
;;
--disable-qom-cast-debug) qom_cast_debug="no"
;;
--enable-qom-cast-debug) qom_cast_debug="yes"
;;
--disable-virtfs) virtfs="no"
;;
--enable-virtfs) virtfs="yes"
;;
--disable-vnc) vnc="no"
;;
--enable-vnc) vnc="yes"
;;
--fmod-lib=*) fmod_lib="$optarg"
;;
--fmod-inc=*) fmod_inc="$optarg"
;;
--oss-lib=*) oss_lib="$optarg"
;;
--audio-drv-list=*) audio_drv_list="$optarg"
;;
--block-drv-rw-whitelist=*|--block-drv-whitelist=*) block_drv_rw_whitelist=`echo "$optarg" | sed -e 's/,/ /g'`
;;
--block-drv-ro-whitelist=*) block_drv_ro_whitelist=`echo "$optarg" | sed -e 's/,/ /g'`
;;
--enable-debug-tcg) debug_tcg="yes"
;;
--disable-debug-tcg) debug_tcg="no"
;;
--enable-debug)
# Enable debugging options that aren't excessively noisy
debug_tcg="yes"
debug="yes"
strip_opt="no"
;;
--enable-sparse) sparse="yes"
;;
--disable-sparse) sparse="no"
;;
--disable-strip) strip_opt="no"
;;
--disable-vnc-tls) vnc_tls="no"
;;
--enable-vnc-tls) vnc_tls="yes"
;;
--disable-vnc-sasl) vnc_sasl="no"
;;
--enable-vnc-sasl) vnc_sasl="yes"
;;
--disable-vnc-jpeg) vnc_jpeg="no"
;;
--enable-vnc-jpeg) vnc_jpeg="yes"
;;
--disable-vnc-png) vnc_png="no"
;;
--enable-vnc-png) vnc_png="yes"
;;
--disable-vnc-ws) vnc_ws="no"
;;
--enable-vnc-ws) vnc_ws="yes"
;;
--disable-slirp) slirp="no"
;;
--disable-uuid) uuid="no"
;;
--enable-uuid) uuid="yes"
;;
--disable-vde) vde="no"
;;
--enable-vde) vde="yes"
;;
--disable-netmap) netmap="no"
;;
--enable-netmap) netmap="yes"
;;
--disable-xen) xen="no"
;;
--enable-xen) xen="yes"
;;
--disable-xen-pci-passthrough) xen_pci_passthrough="no"
;;
--enable-xen-pci-passthrough) xen_pci_passthrough="yes"
;;
--disable-brlapi) brlapi="no"
;;
--enable-brlapi) brlapi="yes"
;;
--disable-bluez) bluez="no"
;;
--enable-bluez) bluez="yes"
;;
--disable-kvm) kvm="no"
;;
--enable-kvm) kvm="yes"
;;
--disable-tcg-interpreter) tcg_interpreter="no"
;;
--enable-tcg-interpreter) tcg_interpreter="yes"
;;
--disable-cap-ng) cap_ng="no"
;;
--enable-cap-ng) cap_ng="yes"
;;
--disable-spice) spice="no"
;;
--enable-spice) spice="yes"
;;
--disable-libiscsi) libiscsi="no"
;;
--enable-libiscsi) libiscsi="yes"
;;
--disable-libnfs) libnfs="no"
;;
--enable-libnfs) libnfs="yes"
;;
--enable-profiler) profiler="yes"
;;
--disable-cocoa) cocoa="no"
;;
--enable-cocoa)
cocoa="yes" ;
sdl="no" ;
audio_drv_list="coreaudio `echo $audio_drv_list | sed s,coreaudio,,g`"
;;
--disable-system) softmmu="no"
;;
--enable-system) softmmu="yes"
;;
--disable-user)
linux_user="no" ;
bsd_user="no" ;
;;
--enable-user) ;;
--disable-linux-user) linux_user="no"
;;
--enable-linux-user) linux_user="yes"
;;
--disable-bsd-user) bsd_user="no"
;;
--enable-bsd-user) bsd_user="yes"
;;
--enable-guest-base) guest_base="yes"
;;
--disable-guest-base) guest_base="no"
;;
--enable-pie) pie="yes"
;;
--disable-pie) pie="no"
;;
--enable-werror) werror="yes"
;;
--disable-werror) werror="no"
;;
--enable-stack-protector) stack_protector="yes"
;;
--disable-stack-protector) stack_protector="no"
;;
--disable-curses) curses="no"
;;
--enable-curses) curses="yes"
;;
--disable-curl) curl="no"
;;
--enable-curl) curl="yes"
;;
--disable-fdt) fdt="no"
;;
--enable-fdt) fdt="yes"
;;
--disable-linux-aio) linux_aio="no"
;;
--enable-linux-aio) linux_aio="yes"
;;
--disable-attr) attr="no"
;;
--enable-attr) attr="yes"
;;
--disable-blobs) blobs="no"
;;
--with-pkgversion=*) pkgversion=" ($optarg)"
;;
--with-coroutine=*) coroutine="$optarg"
;;
--disable-coroutine-pool) coroutine_pool="no"
;;
--enable-coroutine-pool) coroutine_pool="yes"
;;
--disable-docs) docs="no"
;;
--enable-docs) docs="yes"
;;
--disable-vhost-net) vhost_net="no"
;;
--enable-vhost-net) vhost_net="yes"
;;
--disable-vhost-scsi) vhost_scsi="no"
;;
--enable-vhost-scsi) vhost_scsi="yes"
;;
--disable-glx) glx="no"
;;
--enable-glx) glx="yes"
;;
--disable-rbd) rbd="no"
;;
--enable-rbd) rbd="yes"
;;
--disable-xfsctl) xfs="no"
;;
--enable-xfsctl) xfs="yes"
;;
--disable-smartcard-nss) smartcard_nss="no"
;;
--enable-smartcard-nss) smartcard_nss="yes"
;;
--disable-libusb) libusb="no"
;;
--enable-libusb) libusb="yes"
;;
--disable-usb-redir) usb_redir="no"
;;
--enable-usb-redir) usb_redir="yes"
;;
--disable-zlib-test) zlib="no"
;;
--enable-lzo) lzo="yes"
;;
--enable-snappy) snappy="yes"
;;
--enable-guest-agent) guest_agent="yes"
;;
--disable-guest-agent) guest_agent="no"
;;
--with-vss-sdk) vss_win32_sdk=""
;;
--with-vss-sdk=*) vss_win32_sdk="$optarg"
;;
--without-vss-sdk) vss_win32_sdk="no"
;;
--with-win-sdk) win_sdk=""
;;
--with-win-sdk=*) win_sdk="$optarg"
;;
--without-win-sdk) win_sdk="no"
;;
--enable-tools) want_tools="yes"
;;
--disable-tools) want_tools="no"
;;
--enable-seccomp) seccomp="yes"
;;
--disable-seccomp) seccomp="no"
;;
--disable-glusterfs) glusterfs="no"
;;
--enable-glusterfs) glusterfs="yes"
;;
--disable-virtio-blk-data-plane) virtio_blk_data_plane="no"
;;
--enable-virtio-blk-data-plane) virtio_blk_data_plane="yes"
;;
--disable-gtk) gtk="no"
;;
--enable-gtk) gtk="yes"
;;
--enable-rdma) rdma="yes"
;;
--disable-rdma) rdma="no"
;;
--with-gtkabi=*) gtkabi="$optarg"
;;
--disable-vte) vte="no"
;;
--enable-vte) vte="yes"
;;
--enable-tpm) tpm="yes"
;;
--disable-libssh2) libssh2="no"
;;
--enable-libssh2) libssh2="yes"
;;
--enable-vhdx) vhdx="yes"
;;
--disable-vhdx) vhdx="no"
;;
--disable-quorum) quorum="no"
;;
--enable-quorum) quorum="yes"
;;
*)
echo "ERROR: unknown option $opt"
echo "Try '$0 --help' for more information"
exit 1
;;
esac
done
if ! has $python; then
error_exit "Python not found. Use --python=/path/to/python"
fi
# Note that if the Python conditional here evaluates True we will exit
# with status 1 which is a shell 'false' value.
if ! $python -c 'import sys; sys.exit(sys.version_info < (2,4) or sys.version_info >= (3,))'; then
error_exit "Cannot use '$python', Python 2.4 or later is required." \
"Note that Python 3 or later is not yet supported." \
"Use --python=/path/to/python to specify a supported Python."
fi
# The -B switch was added in Python 2.6.
# If it is supplied, compiled files are not written.
# Use it for Python versions which support it.
if $python -B -c 'import sys; sys.exit(0)' 2>/dev/null; then
python="$python -B"
fi
case "$cpu" in
ppc)
CPU_CFLAGS="-m32"
LDFLAGS="-m32 $LDFLAGS"
;;
ppc64)
CPU_CFLAGS="-m64"
LDFLAGS="-m64 $LDFLAGS"
;;
sparc)
LDFLAGS="-m32 $LDFLAGS"
CPU_CFLAGS="-m32 -mcpu=ultrasparc"
;;
sparc64)
LDFLAGS="-m64 $LDFLAGS"
CPU_CFLAGS="-m64 -mcpu=ultrasparc"
;;
s390)
CPU_CFLAGS="-m31"
LDFLAGS="-m31 $LDFLAGS"
;;
s390x)
CPU_CFLAGS="-m64"
LDFLAGS="-m64 $LDFLAGS"
;;
i386)
CPU_CFLAGS="-m32"
LDFLAGS="-m32 $LDFLAGS"
cc_i386='$(CC) -m32'
;;
x86_64)
CPU_CFLAGS="-m64"
LDFLAGS="-m64 $LDFLAGS"
cc_i386='$(CC) -m32'
;;
x32)
CPU_CFLAGS="-mx32"
LDFLAGS="-mx32 $LDFLAGS"
cc_i386='$(CC) -m32'
;;
# No special flags required for other host CPUs
esac
QEMU_CFLAGS="$CPU_CFLAGS $QEMU_CFLAGS"
EXTRA_CFLAGS="$CPU_CFLAGS $EXTRA_CFLAGS"
default_target_list=""
mak_wilds=""
if [ "$softmmu" = "yes" ]; then
mak_wilds="${mak_wilds} $source_path/default-configs/*-softmmu.mak"
fi
if [ "$linux_user" = "yes" ]; then
mak_wilds="${mak_wilds} $source_path/default-configs/*-linux-user.mak"
fi
if [ "$bsd_user" = "yes" ]; then
mak_wilds="${mak_wilds} $source_path/default-configs/*-bsd-user.mak"
fi
for config in $mak_wilds; do
default_target_list="${default_target_list} $(basename "$config" .mak)"
done
if test x"$show_help" = x"yes" ; then
cat << EOF
Usage: configure [options]
Options: [defaults in brackets after descriptions]
Standard options:
--help print this message
--prefix=PREFIX install in PREFIX [$prefix]
--interp-prefix=PREFIX where to find shared libraries, etc.
use %M for cpu name [$interp_prefix]
--target-list=LIST set target list (default: build everything)
$(echo Available targets: $default_target_list | \
fold -s -w 53 | sed -e 's/^/ /')
Advanced options (experts only):
--source-path=PATH path of source code [$source_path]
--cross-prefix=PREFIX use PREFIX for compile tools [$cross_prefix]
--cc=CC use C compiler CC [$cc]
--iasl=IASL use ACPI compiler IASL [$iasl]
--host-cc=CC use C compiler CC [$host_cc] for code run at
build time
--cxx=CXX use C++ compiler CXX [$cxx]
--objcc=OBJCC use Objective-C compiler OBJCC [$objcc]
--extra-cflags=CFLAGS append extra C compiler flags QEMU_CFLAGS
--extra-ldflags=LDFLAGS append extra linker flags LDFLAGS
--make=MAKE use specified make [$make]
--install=INSTALL use specified install [$install]
--python=PYTHON use specified python [$python]
--smbd=SMBD use specified smbd [$smbd]
--static enable static build [$static]
--mandir=PATH install man pages in PATH
--datadir=PATH install firmware in PATH$confsuffix
--docdir=PATH install documentation in PATH$confsuffix
--bindir=PATH install binaries in PATH
--libdir=PATH install libraries in PATH
--sysconfdir=PATH install config in PATH$confsuffix
--localstatedir=PATH install local state in PATH (set at runtime on win32)
--with-confsuffix=SUFFIX suffix for QEMU data inside datadir/libdir/sysconfdir [$confsuffix]
--enable-modules enable modules support
--enable-debug-tcg enable TCG debugging
--disable-debug-tcg disable TCG debugging (default)
--enable-debug-info enable debugging information (default)
--disable-debug-info disable debugging information
--enable-debug enable common debug build options
--enable-sparse enable sparse checker
--disable-sparse disable sparse checker (default)
--disable-strip disable stripping binaries
--disable-werror disable compilation abort on warning
--disable-stack-protector disable compiler-provided stack protection
--disable-sdl disable SDL
--enable-sdl enable SDL
--with-sdlabi select preferred SDL ABI 1.2 or 2.0
--disable-gtk disable gtk UI
--enable-gtk enable gtk UI
--with-gtkabi select preferred GTK ABI 2.0 or 3.0
--disable-virtfs disable VirtFS
--enable-virtfs enable VirtFS
--disable-vnc disable VNC
--enable-vnc enable VNC
--disable-cocoa disable Cocoa (Mac OS X only)
--enable-cocoa enable Cocoa (default on Mac OS X)
--audio-drv-list=LIST set audio drivers list:
Available drivers: $audio_possible_drivers
--block-drv-whitelist=L Same as --block-drv-rw-whitelist=L
--block-drv-rw-whitelist=L
set block driver read-write whitelist
(affects only QEMU, not qemu-img)
--block-drv-ro-whitelist=L
set block driver read-only whitelist
(affects only QEMU, not qemu-img)
--disable-xen disable xen backend driver support
--enable-xen enable xen backend driver support
--disable-xen-pci-passthrough
--enable-xen-pci-passthrough
--disable-brlapi disable BrlAPI
--enable-brlapi enable BrlAPI
--disable-vnc-tls disable TLS encryption for VNC server
--enable-vnc-tls enable TLS encryption for VNC server
--disable-vnc-sasl disable SASL encryption for VNC server
--enable-vnc-sasl enable SASL encryption for VNC server
--disable-vnc-jpeg disable JPEG lossy compression for VNC server
--enable-vnc-jpeg enable JPEG lossy compression for VNC server
--disable-vnc-png disable PNG compression for VNC server (default)
--enable-vnc-png enable PNG compression for VNC server
--disable-vnc-ws disable Websockets support for VNC server
--enable-vnc-ws enable Websockets support for VNC server
--disable-curses disable curses output
--enable-curses enable curses output
--disable-curl disable curl connectivity
--enable-curl enable curl connectivity
--disable-fdt disable fdt device tree
--enable-fdt enable fdt device tree
--disable-bluez disable bluez stack connectivity
--enable-bluez enable bluez stack connectivity
--disable-slirp disable SLIRP userspace network connectivity
--disable-kvm disable KVM acceleration support
--enable-kvm enable KVM acceleration support
--disable-rdma disable RDMA-based migration support
--enable-rdma enable RDMA-based migration support
--enable-tcg-interpreter enable TCG with bytecode interpreter (TCI)
--enable-system enable all system emulation targets
--disable-system disable all system emulation targets
--enable-user enable supported user emulation targets
--disable-user disable all user emulation targets
--enable-linux-user enable all linux usermode emulation targets
--disable-linux-user disable all linux usermode emulation targets
--enable-bsd-user enable all BSD usermode emulation targets
--disable-bsd-user disable all BSD usermode emulation targets
--enable-guest-base enable GUEST_BASE support for usermode
emulation targets
--disable-guest-base disable GUEST_BASE support
--enable-pie build Position Independent Executables
--disable-pie do not build Position Independent Executables
--fmod-lib path to FMOD library
--fmod-inc path to FMOD includes
--oss-lib path to OSS library
--cpu=CPU Build for host CPU [$cpu]
--disable-uuid disable uuid support
--enable-uuid enable uuid support
--disable-vde disable support for vde network
--enable-vde enable support for vde network
--disable-netmap disable support for netmap network
--enable-netmap enable support for netmap network
--disable-linux-aio disable Linux AIO support
--enable-linux-aio enable Linux AIO support
--disable-cap-ng disable libcap-ng support
--enable-cap-ng enable libcap-ng support
--disable-attr disables attr and xattr support
--enable-attr enable attr and xattr support
--disable-blobs disable installing provided firmware blobs
--enable-docs enable documentation build
--disable-docs disable documentation build
--disable-vhost-net disable vhost-net acceleration support
--enable-vhost-net enable vhost-net acceleration support
--enable-trace-backend=B Set trace backend
Available backends: $($python $source_path/scripts/tracetool.py --list-backends)
--with-trace-file=NAME Full PATH,NAME of file to store traces
Default:trace-<pid>
--disable-spice disable spice
--enable-spice enable spice
--enable-rbd enable building the rados block device (rbd)
--disable-libiscsi disable iscsi support
--enable-libiscsi enable iscsi support
--disable-libnfs disable nfs support
--enable-libnfs enable nfs support
--disable-smartcard-nss disable smartcard nss support
--enable-smartcard-nss enable smartcard nss support
--disable-libusb disable libusb (for usb passthrough)
--enable-libusb enable libusb (for usb passthrough)
--disable-usb-redir disable usb network redirection support
--enable-usb-redir enable usb network redirection support
--enable-lzo enable the support of lzo compression library
--enable-snappy enable the support of snappy compression library
--disable-guest-agent disable building of the QEMU Guest Agent
--enable-guest-agent enable building of the QEMU Guest Agent
--with-vss-sdk=SDK-path enable Windows VSS support in QEMU Guest Agent
--with-win-sdk=SDK-path path to Windows Platform SDK (to build VSS .tlb)
--disable-seccomp disable seccomp support
--enable-seccomp enables seccomp support
--with-coroutine=BACKEND coroutine backend. Supported options:
gthread, ucontext, sigaltstack, windows
--disable-coroutine-pool disable coroutine freelist (worse performance)
--enable-coroutine-pool enable coroutine freelist (better performance)
--enable-glusterfs enable GlusterFS backend
--disable-glusterfs disable GlusterFS backend
--enable-gcov enable test coverage analysis with gcov
--gcov=GCOV use specified gcov [$gcov_tool]
--enable-tpm enable TPM support
--disable-libssh2 disable ssh block device support
--enable-libssh2 enable ssh block device support
--disable-vhdx disables support for the Microsoft VHDX image format
--enable-vhdx enable support for the Microsoft VHDX image format
--disable-quorum disable quorum block filter support
--enable-quorum enable quorum block filter support
NOTE: The object files are built at the place where configure is launched
EOF
exit 0
fi
# Now we have handled --enable-tcg-interpreter and know we're not just
# printing the help message, bail out if the host CPU isn't supported.
if test "$ARCH" = "unknown"; then
if test "$tcg_interpreter" = "yes" ; then
echo "Unsupported CPU = $cpu, will use TCG with TCI (experimental)"
ARCH=tci
else
error_exit "Unsupported CPU = $cpu, try --enable-tcg-interpreter"
fi
fi
# Consult white-list to determine whether to enable werror
# by default. Only enable by default for git builds
z_version=`cut -f3 -d. $source_path/VERSION`
if test -z "$werror" ; then
if test -d "$source_path/.git" -a \
"$linux" = "yes" ; then
werror="yes"
else
werror="no"
fi
fi
# check that the C compiler works.
cat > $TMPC <<EOF
int main(void) { return 0; }
EOF
if compile_object ; then
: C compiler works ok
else
error_exit "\"$cc\" either does not exist or does not work"
fi
# Check that the C++ compiler exists and works with the C compiler
if has $cxx; then
cat > $TMPC <<EOF
int c_function(void);
int main(void) { return c_function(); }
EOF
compile_object
cat > $TMPCXX <<EOF
extern "C" {
int c_function(void);
}
int c_function(void) { return 42; }
EOF
update_cxxflags
if do_cxx $QEMU_CXXFLAGS -o $TMPE $TMPCXX $TMPO $LDFLAGS; then
# C++ compiler $cxx works ok with C compiler $cc
:
else
echo "C++ compiler $cxx does not work with C compiler $cc"
echo "Disabling C++ specific optional code"
cxx=
fi
else
echo "No C++ compiler available; disabling C++ specific optional code"
cxx=
fi
gcc_flags="-Wold-style-declaration -Wold-style-definition -Wtype-limits"
gcc_flags="-Wformat-security -Wformat-y2k -Winit-self -Wignored-qualifiers $gcc_flags"
gcc_flags="-Wmissing-include-dirs -Wempty-body -Wnested-externs $gcc_flags"
gcc_flags="-Wendif-labels $gcc_flags"
gcc_flags="-Wno-initializer-overrides $gcc_flags"
gcc_flags="-Wno-string-plus-int $gcc_flags"
# Note that we do not add -Werror to gcc_flags here, because that would
# enable it for all configure tests. If a configure test failed due
# to -Werror this would just silently disable some features,
# so it's too error prone.
cat > $TMPC << EOF
int main(void) { return 0; }
EOF
for flag in $gcc_flags; do
# Use the positive sense of the flag when testing for -Wno-wombat
# support (gcc will happily accept the -Wno- form of unknown
# warning options).
optflag="$(echo $flag | sed -e 's/^-Wno-/-W/')"
if compile_prog "-Werror $optflag" "" ; then
QEMU_CFLAGS="$QEMU_CFLAGS $flag"
fi
done
if test "$stack_protector" != "no" ; then
gcc_flags="-fstack-protector-strong -fstack-protector-all"
for flag in $gcc_flags; do
# We need to check both a compile and a link, since some compiler
# setups fail only on a .c->.o compile and some only at link time
if do_cc $QEMU_CFLAGS -Werror $flag -c -o $TMPO $TMPC &&
compile_prog "-Werror $flag" ""; then
QEMU_CFLAGS="$QEMU_CFLAGS $flag"
LIBTOOLFLAGS="$LIBTOOLFLAGS -Wc,$flag"
break
fi
done
fi
# Workaround for http://gcc.gnu.org/PR55489. Happens with -fPIE/-fPIC and
# large functions that use global variables. The bug is in all releases of
# GCC, but it became particularly acute in 4.6.x and 4.7.x. It is fixed in
# 4.7.3 and 4.8.0. We should be able to delete this at the end of 2013.
cat > $TMPC << EOF
#if __GNUC__ == 4 && (__GNUC_MINOR__ == 6 || (__GNUC_MINOR__ == 7 && __GNUC_PATCHLEVEL__ <= 2))
int main(void) { return 0; }
#else
#error No bug in this compiler.
#endif
EOF
if compile_prog "-Werror -fno-gcse" "" ; then
TRANSLATE_OPT_CFLAGS=-fno-gcse
fi
if test "$static" = "yes" ; then
if test "$modules" = "yes" ; then
error_exit "static and modules are mutually incompatible"
fi
if test "$pie" = "yes" ; then
error_exit "static and pie are mutually incompatible"
else
pie="no"
fi
fi
if test "$pie" = ""; then
case "$cpu-$targetos" in
i386-Linux|x86_64-Linux|x32-Linux|i386-OpenBSD|x86_64-OpenBSD)
;;
*)
pie="no"
;;
esac
fi
if test "$pie" != "no" ; then
cat > $TMPC << EOF
#ifdef __linux__
# define THREAD __thread
#else
# define THREAD
#endif
static THREAD int tls_var;
int main(void) { return tls_var; }
EOF
if compile_prog "-fPIE -DPIE" "-pie"; then
QEMU_CFLAGS="-fPIE -DPIE $QEMU_CFLAGS"
LDFLAGS="-pie $LDFLAGS"
pie="yes"
if compile_prog "" "-Wl,-z,relro -Wl,-z,now" ; then
LDFLAGS="-Wl,-z,relro -Wl,-z,now $LDFLAGS"
fi
else
if test "$pie" = "yes"; then
error_exit "PIE not available due to missing toolchain support"
else
echo "Disabling PIE due to missing toolchain support"
pie="no"
fi
fi
if compile_prog "-fno-pie" "-nopie"; then
CFLAGS_NOPIE="-fno-pie"
LDFLAGS_NOPIE="-nopie"
fi
fi
# check for broken gcc and libtool in RHEL5
if test -n "$libtool" -a "$pie" != "no" ; then
cat > $TMPC <<EOF
void *f(unsigned char *buf, int len);
void *g(unsigned char *buf, int len);
void *
f(unsigned char *buf, int len)
{
return (void*)0L;
}
void *
g(unsigned char *buf, int len)
{
return f(buf, len);
}
EOF
if ! libtool_prog; then
echo "Disabling libtool due to broken toolchain support"
libtool=
fi
fi
##########################################
# __sync_fetch_and_and requires at least -march=i486. Many toolchains
# use i686 as default anyway, but for those that don't, an explicit
# specification is necessary
if test "$cpu" = "i386"; then
cat > $TMPC << EOF
static int sfaa(int *ptr)
{
return __sync_fetch_and_and(ptr, 0);
}
int main(void)
{
int val = 42;
val = __sync_val_compare_and_swap(&val, 0, 1);
sfaa(&val);
return val;
}
EOF
if ! compile_prog "" "" ; then
QEMU_CFLAGS="-march=i486 $QEMU_CFLAGS"
fi
fi
#########################################
# Solaris specific configure tool chain decisions
if test "$solaris" = "yes" ; then
if has $install; then
:
else
error_exit "Solaris install program not found. Use --install=/usr/ucb/install or" \
"install fileutils from www.blastwave.org using pkg-get -i fileutils" \
"to get ginstall which is used by default (which lives in /opt/csw/bin)"
fi
if test "`path_of $install`" = "/usr/sbin/install" ; then
error_exit "Solaris /usr/sbin/install is not an appropriate install program." \
"try ginstall from the GNU fileutils available from www.blastwave.org" \
"using pkg-get -i fileutils, or use --install=/usr/ucb/install"
fi
if has ar; then
:
else
if test -f /usr/ccs/bin/ar ; then
error_exit "No path includes ar" \
"Add /usr/ccs/bin to your path and rerun configure"
fi
error_exit "No path includes ar"
fi
fi
if test -z "${target_list+xxx}" ; then
target_list="$default_target_list"
else
target_list=`echo "$target_list" | sed -e 's/,/ /g'`
fi
# Check that we recognised the target name; this allows a more
# friendly error message than if we let it fall through.
for target in $target_list; do
case " $default_target_list " in
*" $target "*)
;;
*)
error_exit "Unknown target name '$target'"
;;
esac
done
# see if system emulation was really requested
case " $target_list " in
*"-softmmu "*) softmmu=yes
;;
*) softmmu=no
;;
esac
feature_not_found() {
feature=$1
remedy=$2
error_exit "User requested feature $feature" \
"configure was not able to find it." \
"$remedy"
}
# ---
# big/little endian test
cat > $TMPC << EOF
short big_endian[] = { 0x4269, 0x4765, 0x4e64, 0x4961, 0x4e00, 0, };
short little_endian[] = { 0x694c, 0x7454, 0x654c, 0x6e45, 0x6944, 0x6e41, 0, };
extern int foo(short *, short *);
int main(int argc, char *argv[]) {
return foo(big_endian, little_endian);
}
EOF
if compile_object ; then
if grep -q BiGeNdIaN $TMPO ; then
bigendian="yes"
elif grep -q LiTtLeEnDiAn $TMPO ; then
bigendian="no"
else
echo big/little test failed
fi
else
echo big/little test failed
fi
##########################################
# pkg-config probe
if ! has "$pkg_config_exe"; then
error_exit "pkg-config binary '$pkg_config_exe' not found"
fi
##########################################
# NPTL probe
if test "$linux_user" = "yes"; then
cat > $TMPC <<EOF
#include <sched.h>
#include <linux/futex.h>
int main(void) {
#if !defined(CLONE_SETTLS) || !defined(FUTEX_WAIT)
#error bork
#endif
return 0;
}
EOF
if ! compile_object ; then
feature_not_found "nptl" "Install glibc and linux kernel headers."
fi
fi
##########################################
# zlib check
if test "$zlib" != "no" ; then
cat > $TMPC << EOF
#include <zlib.h>
int main(void) { zlibVersion(); return 0; }
EOF
if compile_prog "" "-lz" ; then
:
else
error_exit "zlib check failed" \
"Make sure to have the zlib libs and headers installed."
fi
fi
LIBS="$LIBS -lz"
##########################################
# lzo check
if test "$lzo" != "no" ; then
cat > $TMPC << EOF
#include <lzo/lzo1x.h>
int main(void) { lzo_version(); return 0; }
EOF
if compile_prog "" "-llzo2" ; then
:
else
error_exit "lzo check failed" \
"Make sure to have the lzo libs and headers installed."
fi
libs_softmmu="$libs_softmmu -llzo2"
fi
##########################################
# snappy check
if test "$snappy" != "no" ; then
cat > $TMPC << EOF
#include <snappy-c.h>
int main(void) { snappy_max_compressed_length(4096); return 0; }
EOF
if compile_prog "" "-lsnappy" ; then
:
else
error_exit "snappy check failed" \
"Make sure to have the snappy libs and headers installed."
fi
libs_softmmu="$libs_softmmu -lsnappy"
fi
##########################################
# libseccomp check
if test "$seccomp" != "no" ; then
if $pkg_config --atleast-version=2.1.0 libseccomp; then
libs_softmmu="$libs_softmmu `$pkg_config --libs libseccomp`"
QEMU_CFLAGS="$QEMU_CFLAGS `$pkg_config --cflags libseccomp`"
seccomp="yes"
else
if test "$seccomp" = "yes"; then
feature_not_found "libseccomp" "Install libseccomp devel >= 2.1.0"
fi
seccomp="no"
fi
fi
##########################################
# xen probe
if test "$xen" != "no" ; then
xen_libs="-lxenstore -lxenctrl -lxenguest"
# First we test whether Xen headers and libraries are available.
# If no, we are done and there is no Xen support.
# If yes, more tests are run to detect the Xen version.
# Xen (any)
cat > $TMPC <<EOF
#include <xenctrl.h>
int main(void) {
return 0;
}
EOF
if ! compile_prog "" "$xen_libs" ; then
# Xen not found
if test "$xen" = "yes" ; then
feature_not_found "xen" "Install xen devel"
fi
xen=no
# Xen unstable
elif
cat > $TMPC <<EOF &&
#include <xenctrl.h>
#include <xenstore.h>
#include <stdint.h>
#include <xen/hvm/hvm_info_table.h>
#if !defined(HVM_MAX_VCPUS)
# error HVM_MAX_VCPUS not defined
#endif
int main(void) {
xc_interface *xc;
xs_daemon_open();
xc = xc_interface_open(0, 0, 0);
xc_hvm_set_mem_type(0, 0, HVMMEM_ram_ro, 0, 0);
xc_gnttab_open(NULL, 0);
xc_domain_add_to_physmap(0, 0, XENMAPSPACE_gmfn, 0, 0);
xc_hvm_inject_msi(xc, 0, 0xf0000000, 0x00000000);
return 0;
}
EOF
compile_prog "" "$xen_libs"
then
xen_ctrl_version=420
xen=yes
elif
cat > $TMPC <<EOF &&
#include <xenctrl.h>
#include <xs.h>
#include <stdint.h>
#include <xen/hvm/hvm_info_table.h>
#if !defined(HVM_MAX_VCPUS)
# error HVM_MAX_VCPUS not defined
#endif
int main(void) {
xs_daemon_open();
xc_interface_open(0, 0, 0);
xc_hvm_set_mem_type(0, 0, HVMMEM_ram_ro, 0, 0);
xc_gnttab_open(NULL, 0);
xc_domain_add_to_physmap(0, 0, XENMAPSPACE_gmfn, 0, 0);
return 0;
}
EOF
compile_prog "" "$xen_libs"
then
xen_ctrl_version=410
xen=yes
# Xen 4.0.0
elif
cat > $TMPC <<EOF &&
#include <xenctrl.h>
#include <xs.h>
#include <stdint.h>
#include <xen/hvm/hvm_info_table.h>
#if !defined(HVM_MAX_VCPUS)
# error HVM_MAX_VCPUS not defined
#endif
int main(void) {
struct xen_add_to_physmap xatp = {
.domid = 0, .space = XENMAPSPACE_gmfn, .idx = 0, .gpfn = 0,
};
xs_daemon_open();
xc_interface_open();
xc_gnttab_open();
xc_hvm_set_mem_type(0, 0, HVMMEM_ram_ro, 0, 0);
xc_memory_op(0, XENMEM_add_to_physmap, &xatp);
return 0;
}
EOF
compile_prog "" "$xen_libs"
then
xen_ctrl_version=400
xen=yes
# Xen 3.4.0
elif
cat > $TMPC <<EOF &&
#include <xenctrl.h>
#include <xs.h>
int main(void) {
struct xen_add_to_physmap xatp = {
.domid = 0, .space = XENMAPSPACE_gmfn, .idx = 0, .gpfn = 0,
};
xs_daemon_open();
xc_interface_open();
xc_gnttab_open();
xc_hvm_set_mem_type(0, 0, HVMMEM_ram_ro, 0, 0);
xc_memory_op(0, XENMEM_add_to_physmap, &xatp);
return 0;
}
EOF
compile_prog "" "$xen_libs"
then
xen_ctrl_version=340
xen=yes
# Xen 3.3.0
elif
cat > $TMPC <<EOF &&
#include <xenctrl.h>
#include <xs.h>
int main(void) {
xs_daemon_open();
xc_interface_open();
xc_gnttab_open();
xc_hvm_set_mem_type(0, 0, HVMMEM_ram_ro, 0, 0);
return 0;
}
EOF
compile_prog "" "$xen_libs"
then
xen_ctrl_version=330
xen=yes
# Xen version unsupported
else
if test "$xen" = "yes" ; then
feature_not_found "xen (unsupported version)" "Install supported xen (e.g. 4.0, 3.4, 3.3)"
fi
xen=no
fi
if test "$xen" = yes; then
libs_softmmu="$xen_libs $libs_softmmu"
fi
fi
if test "$xen_pci_passthrough" != "no"; then
if test "$xen" = "yes" && test "$linux" = "yes" &&
test "$xen_ctrl_version" -ge 340; then
xen_pci_passthrough=yes
else
if test "$xen_pci_passthrough" = "yes"; then
if test "$xen_ctrl_version" -lt 340; then
error_exit "User requested feature Xen PCI Passthrough" \
"This feature does not work with Xen 3.3"
fi
error_exit "User requested feature Xen PCI Passthrough" \
" but this feature requires /sys from Linux"
fi
xen_pci_passthrough=no
fi
fi
##########################################
# libtool probe
if ! has $libtool; then
libtool=
fi
# MacOSX ships with a libtool which isn't the GNU one; weed this
# out by checking whether libtool supports the --version switch
if test -n "$libtool"; then
if ! "$libtool" --version >/dev/null 2>&1; then
libtool=
fi
fi
##########################################
# Sparse probe
if test "$sparse" != "no" ; then
if has cgcc; then
sparse=yes
else
if test "$sparse" = "yes" ; then
feature_not_found "sparse" "Install sparse binary"
fi
sparse=no
fi
fi
##########################################
# GTK probe
if test "$gtk" != "no"; then
gtkpackage="gtk+-$gtkabi"
if test "$gtkabi" = "3.0" ; then
gtkversion="3.0.0"
else
gtkversion="2.18.0"
fi
if $pkg_config --exists "$gtkpackage >= $gtkversion"; then
gtk_cflags=`$pkg_config --cflags $gtkpackage`
gtk_libs=`$pkg_config --libs $gtkpackage`
libs_softmmu="$gtk_libs $libs_softmmu"
gtk="yes"
elif test "$gtk" = "yes"; then
feature_not_found "gtk" "Install gtk2 or gtk3 (requires --with-gtkabi=3.0 option to configure) devel"
else
gtk="no"
fi
fi
##########################################
# VTE probe
if test "$vte" != "no"; then
if test "$gtkabi" = "3.0"; then
vtepackage="vte-2.90"
vteversion="0.32.0"
else
vtepackage="vte"
vteversion="0.24.0"
fi
if $pkg_config --exists "$vtepackage >= $vteversion"; then
vte_cflags=`$pkg_config --cflags $vtepackage`
vte_libs=`$pkg_config --libs $vtepackage`
libs_softmmu="$vte_libs $libs_softmmu"
vte="yes"
elif test "$vte" = "yes"; then
feature_not_found "vte" "Install libvte or libvte-2.90 (requires --with-gtkabi=3.0 option to configure) devel"
else
vte="no"
fi
fi
##########################################
# SDL probe
# Look for sdl configuration program (pkg-config or sdl-config). Try
# sdl-config even without cross prefix, and favour pkg-config over sdl-config.
if test $sdlabi = "2.0"; then
sdl_config=$sdl2_config
sdlname=sdl2
sdlconfigname=sdl2_config
else
sdlname=sdl
sdlconfigname=sdl_config
fi
if test "`basename $sdl_config`" != $sdlconfigname && ! has ${sdl_config}; then
sdl_config=$sdlconfigname
fi
if $pkg_config $sdlname --exists; then
sdlconfig="$pkg_config $sdlname"
_sdlversion=`$sdlconfig --modversion 2>/dev/null | sed 's/[^0-9]//g'`
elif has ${sdl_config}; then
sdlconfig="$sdl_config"
_sdlversion=`$sdlconfig --version | sed 's/[^0-9]//g'`
else
if test "$sdl" = "yes" ; then
feature_not_found "sdl" "Install SDL devel"
fi
sdl=no
fi
if test -n "$cross_prefix" && test "$(basename "$sdlconfig")" = sdl-config; then
echo warning: using "\"$sdlconfig\"" to detect cross-compiled sdl >&2
fi
sdl_too_old=no
if test "$sdl" != "no" ; then
cat > $TMPC << EOF
#include <SDL.h>
#undef main /* We don't want SDL to override our main() */
int main( void ) { return SDL_Init (SDL_INIT_VIDEO); }
EOF
sdl_cflags=`$sdlconfig --cflags 2> /dev/null`
if test "$static" = "yes" ; then
sdl_libs=`$sdlconfig --static-libs 2>/dev/null`
else
sdl_libs=`$sdlconfig --libs 2> /dev/null`
fi
if compile_prog "$sdl_cflags" "$sdl_libs" ; then
if test "$_sdlversion" -lt 121 ; then
sdl_too_old=yes
else
if test "$cocoa" = "no" ; then
sdl=yes
fi
fi
# static link with sdl ? (note: sdl.pc's --static --libs is broken)
if test "$sdl" = "yes" -a "$static" = "yes" ; then
if test $? = 0 && echo $sdl_libs | grep -- -laa > /dev/null; then
sdl_libs="$sdl_libs `aalib-config --static-libs 2>/dev/null`"
sdl_cflags="$sdl_cflags `aalib-config --cflags 2>/dev/null`"
fi
if compile_prog "$sdl_cflags" "$sdl_libs" ; then
:
else
sdl=no
fi
fi # static link
else # sdl not found
if test "$sdl" = "yes" ; then
feature_not_found "sdl" "Install SDL devel"
fi
sdl=no
fi # sdl compile test
fi
if test "$sdl" = "yes" ; then
cat > $TMPC <<EOF
#include <SDL.h>
#if defined(SDL_VIDEO_DRIVER_X11)
#include <X11/XKBlib.h>
#else
#error No x11 support
#endif
int main(void) { return 0; }
EOF
if compile_prog "$sdl_cflags" "$sdl_libs" ; then
sdl_libs="$sdl_libs -lX11"
fi
libs_softmmu="$sdl_libs $libs_softmmu"
fi
##########################################
# RDMA needs OpenFabrics libraries
if test "$rdma" != "no" ; then
cat > $TMPC <<EOF
#include <rdma/rdma_cma.h>
int main(void) { return 0; }
EOF
rdma_libs="-lrdmacm -libverbs"
if compile_prog "" "$rdma_libs" ; then
rdma="yes"
libs_softmmu="$libs_softmmu $rdma_libs"
else
if test "$rdma" = "yes" ; then
error_exit \
" OpenFabrics librdmacm/libibverbs not present." \
" Your options:" \
" (1) Fast: Install infiniband packages from your distro." \
" (2) Cleanest: Install libraries from www.openfabrics.org" \
" (3) Also: Install softiwarp if you don't have RDMA hardware"
fi
rdma="no"
fi
fi
##########################################
# VNC TLS/WS detection
if test "$vnc" = "yes" -a \( "$vnc_tls" != "no" -o "$vnc_ws" != "no" \) ; then
cat > $TMPC <<EOF
#include <gnutls/gnutls.h>
int main(void) { gnutls_session_t s; gnutls_init(&s, GNUTLS_SERVER); return 0; }
EOF
vnc_tls_cflags=`$pkg_config --cflags gnutls 2> /dev/null`
vnc_tls_libs=`$pkg_config --libs gnutls 2> /dev/null`
if compile_prog "$vnc_tls_cflags" "$vnc_tls_libs" ; then
if test "$vnc_tls" != "no" ; then
vnc_tls=yes
fi
if test "$vnc_ws" != "no" ; then
vnc_ws=yes
fi
libs_softmmu="$vnc_tls_libs $libs_softmmu"
QEMU_CFLAGS="$QEMU_CFLAGS $vnc_tls_cflags"
else
if test "$vnc_tls" = "yes" ; then
feature_not_found "vnc-tls" "Install gnutls devel"
fi
if test "$vnc_ws" = "yes" ; then
feature_not_found "vnc-ws" "Install gnutls devel"
fi
vnc_tls=no
vnc_ws=no
fi
fi
##########################################
# Quorum probe (check for gnutls)
if test "$quorum" != "no" ; then
cat > $TMPC <<EOF
#include <gnutls/gnutls.h>
#include <gnutls/crypto.h>
int main(void) {char data[4096], digest[32];
gnutls_hash_fast(GNUTLS_DIG_SHA256, data, 4096, digest);
return 0;
}
EOF
quorum_tls_cflags=`$pkg_config --cflags gnutls 2> /dev/null`
quorum_tls_libs=`$pkg_config --libs gnutls 2> /dev/null`
if compile_prog "$quorum_tls_cflags" "$quorum_tls_libs" ; then
qcow_tls=yes
libs_softmmu="$quorum_tls_libs $libs_softmmu"
libs_tools="$quorum_tls_libs $libs_softmmu"
QEMU_CFLAGS="$QEMU_CFLAGS $quorum_tls_cflags"
else
echo "gnutls > 2.10.0 required to compile Quorum"
exit 1
fi
fi
##########################################
# VNC SASL detection
if test "$vnc" = "yes" -a "$vnc_sasl" != "no" ; then
cat > $TMPC <<EOF
#include <sasl/sasl.h>
#include <stdio.h>
int main(void) { sasl_server_init(NULL, "qemu"); return 0; }
EOF
# Assuming Cyrus-SASL installed in /usr prefix
vnc_sasl_cflags=""
vnc_sasl_libs="-lsasl2"
if compile_prog "$vnc_sasl_cflags" "$vnc_sasl_libs" ; then
vnc_sasl=yes
libs_softmmu="$vnc_sasl_libs $libs_softmmu"
QEMU_CFLAGS="$QEMU_CFLAGS $vnc_sasl_cflags"
else
if test "$vnc_sasl" = "yes" ; then
feature_not_found "vnc-sasl" "Install Cyrus SASL devel"
fi
vnc_sasl=no
fi
fi
##########################################
# VNC JPEG detection
if test "$vnc" = "yes" -a "$vnc_jpeg" != "no" ; then
cat > $TMPC <<EOF
#include <stdio.h>
#include <jpeglib.h>
int main(void) { struct jpeg_compress_struct s; jpeg_create_compress(&s); return 0; }
EOF
vnc_jpeg_cflags=""
vnc_jpeg_libs="-ljpeg"
if compile_prog "$vnc_jpeg_cflags" "$vnc_jpeg_libs" ; then
vnc_jpeg=yes
libs_softmmu="$vnc_jpeg_libs $libs_softmmu"
QEMU_CFLAGS="$QEMU_CFLAGS $vnc_jpeg_cflags"
else
if test "$vnc_jpeg" = "yes" ; then
feature_not_found "vnc-jpeg" "Install libjpeg-turbo devel"
fi
vnc_jpeg=no
fi
fi
##########################################
# VNC PNG detection
if test "$vnc" = "yes" -a "$vnc_png" != "no" ; then
cat > $TMPC <<EOF
//#include <stdio.h>
#include <png.h>
#include <stddef.h>
int main(void) {
png_structp png_ptr;
png_ptr = png_create_write_struct(PNG_LIBPNG_VER_STRING, NULL, NULL, NULL);
return png_ptr != 0;
}
EOF
if $pkg_config libpng --exists; then
vnc_png_cflags=`$pkg_config libpng --cflags`
vnc_png_libs=`$pkg_config libpng --libs`
else
vnc_png_cflags=""
vnc_png_libs="-lpng"
fi
if compile_prog "$vnc_png_cflags" "$vnc_png_libs" ; then
vnc_png=yes
libs_softmmu="$vnc_png_libs $libs_softmmu"
QEMU_CFLAGS="$QEMU_CFLAGS $vnc_png_cflags"
else
if test "$vnc_png" = "yes" ; then
feature_not_found "vnc-png" "Install libpng devel"
fi
vnc_png=no
fi
fi
##########################################
# fnmatch() probe, used for ACL routines
fnmatch="no"
cat > $TMPC << EOF
#include <fnmatch.h>
int main(void)
{
fnmatch("foo", "foo", 0);
return 0;
}
EOF
if compile_prog "" "" ; then
fnmatch="yes"
fi
##########################################
# uuid_generate() probe, used for vdi block driver
# Note that on some systems (notably MacOSX) no extra library
# need be linked to get the uuid functions.
if test "$uuid" != "no" ; then
uuid_libs="-luuid"
cat > $TMPC << EOF
#include <uuid/uuid.h>
int main(void)
{
uuid_t my_uuid;
uuid_generate(my_uuid);
return 0;
}
EOF
if compile_prog "" "" ; then
uuid="yes"
elif compile_prog "" "$uuid_libs" ; then
uuid="yes"
libs_softmmu="$uuid_libs $libs_softmmu"
libs_tools="$uuid_libs $libs_tools"
else
if test "$uuid" = "yes" ; then
feature_not_found "uuid" "Install libuuid devel"
fi
uuid=no
fi
fi
if test "$vhdx" = "yes" ; then
if test "$uuid" = "no" ; then
error_exit "uuid required for VHDX support"
fi
elif test "$vhdx" != "no" ; then
if test "$uuid" = "yes" ; then
vhdx=yes
else
vhdx=no
fi
fi
##########################################
# xfsctl() probe, used for raw-posix
if test "$xfs" != "no" ; then
cat > $TMPC << EOF
#include <stddef.h> /* NULL */
#include <xfs/xfs.h>
int main(void)
{
xfsctl(NULL, 0, 0, NULL);
return 0;
}
EOF
if compile_prog "" "" ; then
xfs="yes"
else
if test "$xfs" = "yes" ; then
feature_not_found "xfs" "Instal xfsprogs/xfslibs devel"
fi
xfs=no
fi
fi
##########################################
# vde libraries probe
if test "$vde" != "no" ; then
vde_libs="-lvdeplug"
cat > $TMPC << EOF
#include <libvdeplug.h>
int main(void)
{
struct vde_open_args a = {0, 0, 0};
char s[] = "";
vde_open(s, s, &a);
return 0;
}
EOF
if compile_prog "" "$vde_libs" ; then
vde=yes
libs_softmmu="$vde_libs $libs_softmmu"
libs_tools="$vde_libs $libs_tools"
else
if test "$vde" = "yes" ; then
feature_not_found "vde" "Install vde (Virtual Distributed Ethernet) devel"
fi
vde=no
fi
fi
##########################################
# netmap support probe
# Apart from looking for netmap headers, we make sure that the host API version
# supports the netmap backend (>=11). The upper bound (15) is meant to simulate
# a minor/major version number. Minor new features will be marked with values up
# to 15, and if something happens that requires a change to the backend we will
# move above 15, submit the backend fixes and modify this two bounds.
if test "$netmap" != "no" ; then
cat > $TMPC << EOF
#include <inttypes.h>
#include <net/if.h>
#include <net/netmap.h>
#include <net/netmap_user.h>
#if (NETMAP_API < 11) || (NETMAP_API > 15)
#error
#endif
int main(void) { return 0; }
EOF
if compile_prog "" "" ; then
netmap=yes
else
if test "$netmap" = "yes" ; then
feature_not_found "netmap"
fi
netmap=no
fi
fi
##########################################
# libcap-ng library probe
if test "$cap_ng" != "no" ; then
cap_libs="-lcap-ng"
cat > $TMPC << EOF
#include <cap-ng.h>
int main(void)
{
capng_capability_to_name(CAPNG_EFFECTIVE);
return 0;
}
EOF
if compile_prog "" "$cap_libs" ; then
cap_ng=yes
libs_tools="$cap_libs $libs_tools"
else
if test "$cap_ng" = "yes" ; then
feature_not_found "cap_ng" "Install libcap-ng devel"
fi
cap_ng=no
fi
fi
##########################################
# Sound support libraries probe
audio_drv_probe()
{
drv=$1
hdr=$2
lib=$3
exp=$4
cfl=$5
cat > $TMPC << EOF
#include <$hdr>
int main(void) { $exp }
EOF
if compile_prog "$cfl" "$lib" ; then
:
else
error_exit "$drv check failed" \
"Make sure to have the $drv libs and headers installed."
fi
}
audio_drv_list=`echo "$audio_drv_list" | sed -e 's/,/ /g'`
for drv in $audio_drv_list; do
case $drv in
alsa)
audio_drv_probe $drv alsa/asoundlib.h -lasound \
"return snd_pcm_close((snd_pcm_t *)0);"
libs_softmmu="-lasound $libs_softmmu"
;;
fmod)
if test -z $fmod_lib || test -z $fmod_inc; then
error_exit "You must specify path to FMOD library and headers" \
"Example: --fmod-inc=/path/include/fmod --fmod-lib=/path/lib/libfmod-3.74.so"
fi
audio_drv_probe $drv fmod.h $fmod_lib "return FSOUND_GetVersion();" "-I $fmod_inc"
libs_softmmu="$fmod_lib $libs_softmmu"
;;
esd)
audio_drv_probe $drv esd.h -lesd 'return esd_play_stream(0, 0, "", 0);'
libs_softmmu="-lesd $libs_softmmu"
audio_pt_int="yes"
;;
pa)
audio_drv_probe $drv pulse/mainloop.h "-lpulse" \
"pa_mainloop *m = 0; pa_mainloop_free (m); return 0;"
libs_softmmu="-lpulse $libs_softmmu"
audio_pt_int="yes"
;;
coreaudio)
libs_softmmu="-framework CoreAudio $libs_softmmu"
;;
dsound)
libs_softmmu="-lole32 -ldxguid $libs_softmmu"
audio_win_int="yes"
;;
oss)
libs_softmmu="$oss_lib $libs_softmmu"
;;
sdl|wav)
# XXX: Probes for CoreAudio, DirectSound, SDL(?)
;;
winwave)
libs_softmmu="-lwinmm $libs_softmmu"
audio_win_int="yes"
;;
*)
echo "$audio_possible_drivers" | grep -q "\<$drv\>" || {
error_exit "Unknown driver '$drv' selected" \
"Possible drivers are: $audio_possible_drivers"
}
;;
esac
done
##########################################
# BrlAPI probe
if test "$brlapi" != "no" ; then
brlapi_libs="-lbrlapi"
cat > $TMPC << EOF
#include <brlapi.h>
#include <stddef.h>
int main( void ) { return brlapi__openConnection (NULL, NULL, NULL); }
EOF
if compile_prog "" "$brlapi_libs" ; then
brlapi=yes
libs_softmmu="$brlapi_libs $libs_softmmu"
else
if test "$brlapi" = "yes" ; then
feature_not_found "brlapi" "Install brlapi devel"
fi
brlapi=no
fi
fi
##########################################
# curses probe
if test "$curses" != "no" ; then
if test "$mingw32" = "yes" ; then
curses_list="-lpdcurses"
else
curses_list="$($pkg_config --libs ncurses 2>/dev/null):-lncurses:-lcurses"
fi
curses_found=no
cat > $TMPC << EOF
#include <curses.h>
int main(void) {
const char *s = curses_version();
resize_term(0, 0);
return s != 0;
}
EOF
IFS=:
for curses_lib in $curses_list; do
unset IFS
if compile_prog "" "$curses_lib" ; then
curses_found=yes
libs_softmmu="$curses_lib $libs_softmmu"
break
fi
done
unset IFS
if test "$curses_found" = "yes" ; then
curses=yes
else
if test "$curses" = "yes" ; then
feature_not_found "curses" "Install ncurses devel"
fi
curses=no
fi
fi
##########################################
# curl probe
if test "$curl" != "no" ; then
if $pkg_config libcurl --exists; then
curlconfig="$pkg_config libcurl"
else
curlconfig=curl-config
fi
cat > $TMPC << EOF
#include <curl/curl.h>
int main(void) { curl_easy_init(); curl_multi_setopt(0, 0, 0); return 0; }
EOF
curl_cflags=`$curlconfig --cflags 2>/dev/null`
curl_libs=`$curlconfig --libs 2>/dev/null`
if compile_prog "$curl_cflags" "$curl_libs" ; then
curl=yes
else
if test "$curl" = "yes" ; then
feature_not_found "curl" "Install libcurl devel"
fi
curl=no
fi
fi # test "$curl"
##########################################
# bluez support probe
if test "$bluez" != "no" ; then
cat > $TMPC << EOF
#include <bluetooth/bluetooth.h>
int main(void) { return bt_error(0); }
EOF
bluez_cflags=`$pkg_config --cflags bluez 2> /dev/null`
bluez_libs=`$pkg_config --libs bluez 2> /dev/null`
if compile_prog "$bluez_cflags" "$bluez_libs" ; then
bluez=yes
libs_softmmu="$bluez_libs $libs_softmmu"
else
if test "$bluez" = "yes" ; then
feature_not_found "bluez" "Install bluez-libs/libbluetooth devel"
fi
bluez="no"
fi
fi
##########################################
# glib support probe
if test "$mingw32" = yes; then
# g_poll is required in order to integrate with the glib main loop.
glib_req_ver=2.20
else
glib_req_ver=2.12
fi
glib_modules=gthread-2.0
if test "$modules" = yes; then
glib_modules="$glib_modules gmodule-2.0"
fi
for i in $glib_modules; do
if $pkg_config --atleast-version=$glib_req_ver $i; then
glib_cflags=`$pkg_config --cflags $i`
glib_libs=`$pkg_config --libs $i`
CFLAGS="$glib_cflags $CFLAGS"
LIBS="$glib_libs $LIBS"
libs_qga="$glib_libs $libs_qga"
else
error_exit "glib-$glib_req_ver $i is required to compile QEMU"
fi
done
##########################################
# SHA command probe for modules
if test "$modules" = yes; then
shacmd_probe="sha1sum sha1 shasum"
for c in $shacmd_probe; do
if which $c >/dev/null 2>&1; then
shacmd="$c"
break
fi
done
if test "$shacmd" = ""; then
error_exit "one of the checksum commands is required to enable modules: $shacmd_probe"
fi
fi
##########################################
# pixman support probe
if test "$pixman" = ""; then
if test "$want_tools" = "no" -a "$softmmu" = "no"; then
pixman="none"
elif $pkg_config pixman-1 > /dev/null 2>&1; then
pixman="system"
else
pixman="internal"
fi
fi
if test "$pixman" = "none"; then
if test "$want_tools" != "no" -o "$softmmu" != "no"; then
error_exit "pixman disabled but system emulation or tools build" \
"enabled. You can turn off pixman only if you also" \
"disable all system emulation targets and the tools" \
"build with '--disable-tools --disable-system'."
fi
pixman_cflags=
pixman_libs=
elif test "$pixman" = "system"; then
pixman_cflags=`$pkg_config --cflags pixman-1`
pixman_libs=`$pkg_config --libs pixman-1`
else
if test ! -d ${source_path}/pixman/pixman; then
error_exit "pixman not present. Your options:" \
" (1) Preferred: Install the pixman devel package (any recent" \
" distro should have packages as Xorg needs pixman too)." \
" (2) Fetch the pixman submodule, using:" \
" git submodule update --init pixman"
fi
mkdir -p pixman/pixman
pixman_cflags="-I\$(SRC_PATH)/pixman/pixman -I\$(BUILD_DIR)/pixman/pixman"
pixman_libs="-L\$(BUILD_DIR)/pixman/pixman/.libs -lpixman-1"
fi
##########################################
# libcap probe
if test "$cap" != "no" ; then
cat > $TMPC <<EOF
#include <stdio.h>
#include <sys/capability.h>
int main(void) { cap_t caps; caps = cap_init(); return caps != NULL; }
EOF
if compile_prog "" "-lcap" ; then
cap=yes
else
cap=no
fi
fi
##########################################
# pthread probe
PTHREADLIBS_LIST="-pthread -lpthread -lpthreadGC2"
pthread=no
cat > $TMPC << EOF
#include <pthread.h>
static void *f(void *p) { return NULL; }
int main(void) {
pthread_t thread;
pthread_create(&thread, 0, f, 0);
return 0;
}
EOF
if compile_prog "" "" ; then
pthread=yes
else
for pthread_lib in $PTHREADLIBS_LIST; do
if compile_prog "" "$pthread_lib" ; then
pthread=yes
found=no
for lib_entry in $LIBS; do
if test "$lib_entry" = "$pthread_lib"; then
found=yes
break
fi
done
if test "$found" = "no"; then
LIBS="$pthread_lib $LIBS"
fi
break
fi
done
fi
if test "$mingw32" != yes -a "$pthread" = no; then
error_exit "pthread check failed" \
"Make sure to have the pthread libs and headers installed."
fi
# check for pthread_setname_np
pthread_setname_np=no
cat > $TMPC << EOF
#include <pthread.h>
static void *f(void *p) { return NULL; }
int main(void)
{
pthread_t thread;
pthread_create(&thread, 0, f, 0);
pthread_setname_np(thread, "QEMU");
return 0;
}
EOF
if compile_prog "" "$pthread_lib" ; then
pthread_setname_np=yes
fi
##########################################
# rbd probe
if test "$rbd" != "no" ; then
cat > $TMPC <<EOF
#include <stdio.h>
#include <rbd/librbd.h>
int main(void) {
rados_t cluster;
rados_create(&cluster, NULL);
return 0;
}
EOF
rbd_libs="-lrbd -lrados"
if compile_prog "" "$rbd_libs" ; then
rbd=yes
else
if test "$rbd" = "yes" ; then
feature_not_found "rados block device" "Install librbd/ceph devel"
fi
rbd=no
fi
fi
##########################################
# libssh2 probe
min_libssh2_version=1.2.8
if test "$libssh2" != "no" ; then
if $pkg_config --atleast-version=$min_libssh2_version libssh2; then
libssh2_cflags=`$pkg_config libssh2 --cflags`
libssh2_libs=`$pkg_config libssh2 --libs`
libssh2=yes
else
if test "$libssh2" = "yes" ; then
error_exit "libssh2 >= $min_libssh2_version required for --enable-libssh2"
fi
libssh2=no
fi
fi
##########################################
# libssh2_sftp_fsync probe
if test "$libssh2" = "yes"; then
cat > $TMPC <<EOF
#include <stdio.h>
#include <libssh2.h>
#include <libssh2_sftp.h>
int main(void) {
LIBSSH2_SESSION *session;
LIBSSH2_SFTP *sftp;
LIBSSH2_SFTP_HANDLE *sftp_handle;
session = libssh2_session_init ();
sftp = libssh2_sftp_init (session);
sftp_handle = libssh2_sftp_open (sftp, "/", 0, 0);
libssh2_sftp_fsync (sftp_handle);
return 0;
}
EOF
# libssh2_cflags/libssh2_libs defined in previous test.
if compile_prog "$libssh2_cflags" "$libssh2_libs" ; then
QEMU_CFLAGS="-DHAS_LIBSSH2_SFTP_FSYNC $QEMU_CFLAGS"
fi
fi
##########################################
# linux-aio probe
if test "$linux_aio" != "no" ; then
cat > $TMPC <<EOF
#include <libaio.h>
#include <sys/eventfd.h>
#include <stddef.h>
int main(void) { io_setup(0, NULL); io_set_eventfd(NULL, 0); eventfd(0, 0); return 0; }
EOF
if compile_prog "" "-laio" ; then
linux_aio=yes
else
if test "$linux_aio" = "yes" ; then
feature_not_found "linux AIO" "Install libaio devel"
fi
linux_aio=no
fi
fi
##########################################
# TPM passthrough is only on x86 Linux
if test "$targetos" = Linux && test "$cpu" = i386 -o "$cpu" = x86_64; then
tpm_passthrough=$tpm
else
tpm_passthrough=no
fi
##########################################
# adjust virtio-blk-data-plane based on linux-aio
if test "$virtio_blk_data_plane" = "yes" -a \
"$linux_aio" != "yes" ; then
error_exit "virtio-blk-data-plane requires Linux AIO, please try --enable-linux-aio"
elif test -z "$virtio_blk_data_plane" ; then
virtio_blk_data_plane=$linux_aio
fi
##########################################
# attr probe
if test "$attr" != "no" ; then
cat > $TMPC <<EOF
#include <stdio.h>
#include <sys/types.h>
#ifdef CONFIG_LIBATTR
#include <attr/xattr.h>
#else
#include <sys/xattr.h>
#endif
int main(void) { getxattr(NULL, NULL, NULL, 0); setxattr(NULL, NULL, NULL, 0, 0); return 0; }
EOF
if compile_prog "" "" ; then
attr=yes
# Older distros have <attr/xattr.h>, and need -lattr:
elif compile_prog "-DCONFIG_LIBATTR" "-lattr" ; then
attr=yes
LIBS="-lattr $LIBS"
libattr=yes
else
if test "$attr" = "yes" ; then
feature_not_found "ATTR" "Install libc6 or libattr devel"
fi
attr=no
fi
fi
##########################################
# iovec probe
cat > $TMPC <<EOF
#include <sys/types.h>
#include <sys/uio.h>
#include <unistd.h>
int main(void) { return sizeof(struct iovec); }
EOF
iovec=no
if compile_prog "" "" ; then
iovec=yes
fi
##########################################
# preadv probe
cat > $TMPC <<EOF
#include <sys/types.h>
#include <sys/uio.h>
#include <unistd.h>
int main(void) { return preadv(0, 0, 0, 0); }
EOF
preadv=no