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# Makefile for udev
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#
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# Copyright (C) 2003 Greg Kroah-Hartman <greg@kroah.com>
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#
# This program is free software; you can redistribute it and/or modify
# it under the terms of the GNU General Public License as published by
# the Free Software Foundation; version 2 of the License.
#
# This program 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 this program; if not, write to the Free Software
# Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
#
# Set the following to `true' to make a debuggable build.
# Leave this set to `false' for production use.
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DEBUG = false
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[PATCH] D-BUS patch for udev-008
Attached is a patch against udev-008 to send out a D-BUS message when a
device node is added or removed.
Using D-BUS lingo, udev acquires the org.kernel.udev service and sends
out a NodeCreated or NodeDeleted signal on the
org.kernel.udev.NodeMonitor interface. Each signal carries two
parameters: the node in question and the corresponding sysfs path.
[Note: the D-BUS concepts of service, interface, object can be a bit
confusing at first glance]
An example program listening for these messages looks like this
#!/usr/bin/python
import dbus
import gtk
def udev_signal_received(dbus_iface, member, service, object_path, message):
[filename, sysfs_path] = message.get_args_list()
if member=='NodeCreated':
print 'Node %s created for %s'%(filename, sysfs_path)
elif member=='NodeDeleted':
print 'Node %s deleted for %s'%(filename, sysfs_path)
def main():
bus = dbus.Bus(dbus.Bus.TYPE_SYSTEM)
bus.add_signal_receiver(udev_signal_received,
'org.kernel.udev.NodeMonitor', # interface
'org.kernel.udev', # service
'/org/kernel/udev/NodeMonitor') # object
gtk.mainloop()
if __name__ == '__main__':
main()
and this is the output when hot-plugging some usb-storage.
[david@laptop udev-008]$ ~/node_monitor.py
Node /udev/sda created for /block/sda
Node /udev/sda1 created for /block/sda/sda1
Node /udev/sda1 deleted for /block/sda/sda1
Node /udev/sda deleted for /block/sda
The patch requires D-BUS 0.20 or later while the python example program
requires D-BUS from CVS as I only recently applied a patch against the
python bindings.
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# Set the following to `true' to make udev emit a D-BUS signal when a
# new node is created.
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USE_DBUS = false
[PATCH] D-BUS patch for udev-008
Attached is a patch against udev-008 to send out a D-BUS message when a
device node is added or removed.
Using D-BUS lingo, udev acquires the org.kernel.udev service and sends
out a NodeCreated or NodeDeleted signal on the
org.kernel.udev.NodeMonitor interface. Each signal carries two
parameters: the node in question and the corresponding sysfs path.
[Note: the D-BUS concepts of service, interface, object can be a bit
confusing at first glance]
An example program listening for these messages looks like this
#!/usr/bin/python
import dbus
import gtk
def udev_signal_received(dbus_iface, member, service, object_path, message):
[filename, sysfs_path] = message.get_args_list()
if member=='NodeCreated':
print 'Node %s created for %s'%(filename, sysfs_path)
elif member=='NodeDeleted':
print 'Node %s deleted for %s'%(filename, sysfs_path)
def main():
bus = dbus.Bus(dbus.Bus.TYPE_SYSTEM)
bus.add_signal_receiver(udev_signal_received,
'org.kernel.udev.NodeMonitor', # interface
'org.kernel.udev', # service
'/org/kernel/udev/NodeMonitor') # object
gtk.mainloop()
if __name__ == '__main__':
main()
and this is the output when hot-plugging some usb-storage.
[david@laptop udev-008]$ ~/node_monitor.py
Node /udev/sda created for /block/sda
Node /udev/sda1 created for /block/sda/sda1
Node /udev/sda1 deleted for /block/sda/sda1
Node /udev/sda deleted for /block/sda
The patch requires D-BUS 0.20 or later while the python example program
requires D-BUS from CVS as I only recently applied a patch against the
python bindings.
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ROOT = udev
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VERSION = 012_bk
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INSTALL_DIR = /usr/local/bin
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RELEASE_NAME = $( ROOT) -$( VERSION)
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LOCAL_CFG_DIR = etc/udev
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DESTDIR =
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# override this to make udev look in a different location for it's config files
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prefix =
exec_prefix = ${ prefix }
etcdir = ${ prefix } /etc
sbindir = ${ exec_prefix } /sbin
mandir = ${ prefix } /usr/share/man
hotplugdir = ${ etcdir } /hotplug.d/default
[PATCH] D-BUS patch for udev-008
Attached is a patch against udev-008 to send out a D-BUS message when a
device node is added or removed.
Using D-BUS lingo, udev acquires the org.kernel.udev service and sends
out a NodeCreated or NodeDeleted signal on the
org.kernel.udev.NodeMonitor interface. Each signal carries two
parameters: the node in question and the corresponding sysfs path.
[Note: the D-BUS concepts of service, interface, object can be a bit
confusing at first glance]
An example program listening for these messages looks like this
#!/usr/bin/python
import dbus
import gtk
def udev_signal_received(dbus_iface, member, service, object_path, message):
[filename, sysfs_path] = message.get_args_list()
if member=='NodeCreated':
print 'Node %s created for %s'%(filename, sysfs_path)
elif member=='NodeDeleted':
print 'Node %s deleted for %s'%(filename, sysfs_path)
def main():
bus = dbus.Bus(dbus.Bus.TYPE_SYSTEM)
bus.add_signal_receiver(udev_signal_received,
'org.kernel.udev.NodeMonitor', # interface
'org.kernel.udev', # service
'/org/kernel/udev/NodeMonitor') # object
gtk.mainloop()
if __name__ == '__main__':
main()
and this is the output when hot-plugging some usb-storage.
[david@laptop udev-008]$ ~/node_monitor.py
Node /udev/sda created for /block/sda
Node /udev/sda1 created for /block/sda/sda1
Node /udev/sda1 deleted for /block/sda/sda1
Node /udev/sda deleted for /block/sda
The patch requires D-BUS 0.20 or later while the python example program
requires D-BUS from CVS as I only recently applied a patch against the
python bindings.
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dbusdir = ${ etcdir } /dbus-1/system.d
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configdir = ${ etcdir } /udev/
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initdir = ${ etcdir } /init.d/
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srcdir = .
INSTALL = /usr/bin/install -c
INSTALL_PROGRAM = ${ INSTALL }
INSTALL_DATA = ${ INSTALL } -m 644
INSTALL_SCRIPT = ${ INSTALL_PROGRAM }
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# To build any of the extras programs, run with:
# make EXTRAS="extras/a extras/b"
EXTRAS =
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# place to put our device nodes
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udevdir = ${ prefix } /udev
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# Comment out this line to build with something other
# than the local version of klibc
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#USE_KLIBC = true
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# If you are running a cross compiler, you may want to set this
# to something more interesting, like "arm-linux-". I you want
# to compile vs uClibc, that can be done here as well.
CROSS = #/usr/i386-linux-uclibc/usr/bin/i386-uclibc-
CC = $( CROSS) gcc
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LD = $( CROSS) gcc
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AR = $( CROSS) ar
STRIP = $( CROSS) strip
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RANLIB = $( CROSS) ranlib
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export CROSS CC AR STRIP RANLIB CFLAGS LDFLAGS LIB_OBJS ARCH_LIB_OBJS CRT0
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# code taken from uClibc to determine the current arch
ARCH := ${ shell $( CC) -dumpmachine | sed -e s '/-.*//' -e 's/i.86/i386/' -e 's/sparc.*/sparc/' \
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-e 's/arm.*/arm/g' -e 's/m68k.*/m68k/' -e 's/powerpc/ppc/g' }
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# code taken from uClibc to determine the gcc include dir
GCCINCDIR := ${ shell $( CC) -print-search-dirs | sed -ne "s/install: \(.*\)/\1include/gp" }
# code taken from uClibc to determine the libgcc.a filename
GCC_LIB := $( shell $( CC) -print-libgcc-file-name )
# use '-Os' optimization if available, else use -O2
OPTIMIZATION := ${ shell if $( CC) -Os -S -o /dev/null -xc /dev/null >/dev/null 2>&1; \
then echo "-Os" ; else echo "-O2" ; fi }
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# add -Wredundant-decls when libsysfs gets cleaned up
WARNINGS := -Wall -Wshadow -Wstrict-prototypes -Wmissing-prototypes -Wmissing-declarations
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# Some nice architecture specific optimizations
i f e q ( $( strip $ ( TARGET_ARCH ) ) , a r m )
OPTIMIZATION += -fstrict-aliasing
e n d i f
i f e q ( $( strip $ ( TARGET_ARCH ) ) , i 3 8 6 )
OPTIMIZATION += -march= i386
OPTIMIZATION += ${ shell if $( CC) -mpreferred-stack-boundary=2 -S -o /dev/null -xc \
/dev/null >/dev/null 2>& 1; then echo "-mpreferred-stack-boundary=2" ; fi }
OPTIMIZATION += ${ shell if $( CC) -malign-functions=0 -malign-jumps=0 -S -o /dev/null -xc \
/dev/null >/dev/null 2>& 1; then echo "-malign-functions=0 -malign-jumps=0" ; fi }
CFLAGS += -pipe
e l s e
CFLAGS += -pipe
e n d i f
# if DEBUG is enabled, then we do not strip or optimize
i f e q ( $( strip $ ( DEBUG ) ) , t r u e )
CFLAGS += $( WARNINGS) -O1 -g -DDEBUG -D_GNU_SOURCE
LDFLAGS += -Wl,-warn-common
STRIPCMD = /bin/true -Since_we_are_debugging
e l s e
CFLAGS += $( WARNINGS) $( OPTIMIZATION) -fomit-frame-pointer -D_GNU_SOURCE
LDFLAGS += -s -Wl,-warn-common
STRIPCMD = $( STRIP) -s --remove-section= .note --remove-section= .comment
e n d i f
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# If we are using our version of klibc, then we need to build, link it, and then
# link udev against it statically.
# Otherwise, use glibc and link dynamically.
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i f e q ( $( strip $ ( USE_KLIBC ) ) , t r u e )
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KLIBC_BASE = $( PWD) /klibc
KLIBC_DIR = $( KLIBC_BASE) /klibc
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INCLUDE_DIR := $( KLIBC_DIR) /include
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LINUX_INCLUDE_DIR := $( KLIBC_BASE) /linux/include
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include $( KLIBC_DIR) /arch/$( ARCH) /MCONFIG
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# arch specific objects
ARCH_LIB_OBJS = \
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$( KLIBC_DIR) /libc.a
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CRT0 = $( KLIBC_DIR) /crt0.o
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LIBC = $( ARCH_LIB_OBJS) $( LIB_OBJS) $( CRT0)
CFLAGS += -nostdinc -I$( INCLUDE_DIR) -I$( KLIBC_DIR) /arch/$( ARCH) /include \
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-I$( INCLUDE_DIR) /bits$( BITSIZE) -I$( GCCINCDIR) -I$( LINUX_INCLUDE_DIR) \
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-D__KLIBC__
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LIB_OBJS =
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LDFLAGS = --static --nostdlib -nostartfiles -nodefaultlibs
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e l s e
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CRT0 =
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LIBC =
CFLAGS += -I$( GCCINCDIR)
LIB_OBJS = -lc
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LDFLAGS =
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e n d i f
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CFLAGS += -I$( PWD) /libsysfs
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all : $( ROOT )
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@extras= " $( EXTRAS) " ; for target in $$ extras ; do \
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echo $$ target ; \
$( MAKE) prefix = $( prefix) LD = " $( LD) " SYSFS = " $( SYSFS) " \
-C $$ target $@ ; \
done ; \
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$(ROOT) : $( LIBC )
$(ARCH_LIB_OBJS) : $( CRT 0)
$(CRT0) :
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$( MAKE) -C klibc
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TDB = tdb/tdb.o \
tdb/spinlock.o
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SYSFS = $( PWD) /libsysfs/sysfs_bus.o \
$( PWD) /libsysfs/sysfs_class.o \
$( PWD) /libsysfs/sysfs_device.o \
$( PWD) /libsysfs/sysfs_dir.o \
$( PWD) /libsysfs/sysfs_driver.o \
$( PWD) /libsysfs/sysfs_utils.o \
$( PWD) /libsysfs/dlist.o
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OBJS = udev.o \
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udev_config.o \
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udev-add.o \
udev-remove.o \
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udevdb.o \
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logging.o \
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namedev.o \
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namedev_parse.o \
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$( SYSFS) \
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$( TDB)
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i f e q ( $( strip $ ( USE_KLIBC ) ) , t r u e )
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OBJS += klibc_fixups.o
e n d i f
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i f e q ( $( USE_DBUS ) , t r u e )
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CFLAGS += -DUSE_DBUS
CFLAGS += $( shell pkg-config --cflags dbus-1)
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LDFLAGS += $( shell pkg-config --libs dbus-1)
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OBJS += udev_dbus.o
e n d i f
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# header files automatically generated
GEN_HEADERS = udev_version.h
# Rules on how to create the generated header files
udev_version.h :
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@echo \# define UDEV_VERSION \" $( VERSION) \" > $@
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@echo \# define UDEV_ROOT \" $( udevdir) /\" >> $@
@echo \# define UDEV_DB \" $( udevdir) /\. udev.tdb\" >> $@
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@echo \# define UDEV_CONFIG_DIR \" $( configdir) \" >> $@
@echo \# define UDEV_CONFIG_FILE \" $( configdir) \u dev.conf\" >> $@
@echo \# define UDEV_RULES_FILE \" $( configdir) \u dev.rules\" >> $@
@echo \# define UDEV_PERMISSION_FILE \" $( configdir) \u dev.permissions\" >> $@
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# config files automatically generated
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GEN_CONFIGS = $( LOCAL_CFG_DIR) /udev.conf
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# Rules on how to create the generated config files
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$(LOCAL_CFG_DIR)/udev.conf :
sed -e " s:@udevdir@: $( udevdir) : " < $( LOCAL_CFG_DIR) /udev.conf.in > $@
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$(OBJS) : $( GEN_HEADERS )
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$(ROOT) : $( OBJS ) udev .h namedev .h udev_version .h udev_dbus .h udevdb .h klibc_fixups .h list .h
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$( LD) $( LDFLAGS) -o $( ROOT) $( CRT0) $( OBJS) $( LIB_OBJS) $( ARCH_LIB_OBJS)
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$( STRIPCMD) $( ROOT)
clean :
-find . \( -not -type d \) -and \( -name '*~' -o -name '*.[oas]' \) -type f -print \
| xargs rm -f
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-rm -f core $( ROOT) $( GEN_HEADERS) $( GEN_CONFIGS)
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$( MAKE) -C klibc clean
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@extras= " $( EXTRAS) " ; for target in $$ extras ; do \
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echo $$ target ; \
$( MAKE) prefix = $( prefix) LD = " $( LD) " SYSFS = " $( SYSFS) " \
-C $$ target $@ ; \
done ; \
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DISTFILES = $( shell find . \( -not -name '.' \) -print | grep -v CVS | grep -v "\.tar\.gz" | grep -v "\/\." | grep -v releases | grep -v BitKeeper | grep -v SCCS | grep -v "\.tdb" | grep -v "test\/sys" | sort )
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DISTDIR := $( RELEASE_NAME)
srcdir = .
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release : clean
@echo "--------------------------cut here------------------------"
@echo "cd .."
@echo " rm -rf $( DISTDIR) "
@echo " mkdir $( DISTDIR) "
@echo " chmod 777 $( DISTDIR) "
@echo " cp -avr udev/* $( DISTDIR) "
@echo " tar -c $( DISTDIR) | gzip -9 > $( RELEASE_NAME) .tar.gz "
@echo " rm -rf $( DISTDIR) "
@echo "--------------------------cut here------------------------"
small_release : $( DISTFILES ) clean
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# @echo $(DISTFILES)
@-rm -rf $( DISTDIR)
@mkdir $( DISTDIR)
@-chmod 777 $( DISTDIR)
@for file in $( DISTFILES) ; do \
if test -d $$ file; then \
mkdir $( DISTDIR) /$$ file; \
else \
cp -p $$ file $( DISTDIR) /$$ file; \
fi ; \
done
@tar -c $( DISTDIR) | gzip -9 > $( RELEASE_NAME) .tar.gz
@rm -rf $( DISTDIR)
@echo " Built $( RELEASE_NAME) .tar.gz "
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i f e q ( $( USE_DBUS ) , t r u e )
[PATCH] D-BUS patch for udev-008
Attached is a patch against udev-008 to send out a D-BUS message when a
device node is added or removed.
Using D-BUS lingo, udev acquires the org.kernel.udev service and sends
out a NodeCreated or NodeDeleted signal on the
org.kernel.udev.NodeMonitor interface. Each signal carries two
parameters: the node in question and the corresponding sysfs path.
[Note: the D-BUS concepts of service, interface, object can be a bit
confusing at first glance]
An example program listening for these messages looks like this
#!/usr/bin/python
import dbus
import gtk
def udev_signal_received(dbus_iface, member, service, object_path, message):
[filename, sysfs_path] = message.get_args_list()
if member=='NodeCreated':
print 'Node %s created for %s'%(filename, sysfs_path)
elif member=='NodeDeleted':
print 'Node %s deleted for %s'%(filename, sysfs_path)
def main():
bus = dbus.Bus(dbus.Bus.TYPE_SYSTEM)
bus.add_signal_receiver(udev_signal_received,
'org.kernel.udev.NodeMonitor', # interface
'org.kernel.udev', # service
'/org/kernel/udev/NodeMonitor') # object
gtk.mainloop()
if __name__ == '__main__':
main()
and this is the output when hot-plugging some usb-storage.
[david@laptop udev-008]$ ~/node_monitor.py
Node /udev/sda created for /block/sda
Node /udev/sda1 created for /block/sda/sda1
Node /udev/sda1 deleted for /block/sda/sda1
Node /udev/sda deleted for /block/sda
The patch requires D-BUS 0.20 or later while the python example program
requires D-BUS from CVS as I only recently applied a patch against the
python bindings.
2003-12-08 20:19:19 +03:00
install-dbus-policy :
$( INSTALL) -d $( DESTDIR) $( dbusdir)
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$( INSTALL_DATA) etc/dbus-1/system.d/udev_sysbus_policy.conf $( DESTDIR) $( dbusdir)
[PATCH] D-BUS patch for udev-008
Attached is a patch against udev-008 to send out a D-BUS message when a
device node is added or removed.
Using D-BUS lingo, udev acquires the org.kernel.udev service and sends
out a NodeCreated or NodeDeleted signal on the
org.kernel.udev.NodeMonitor interface. Each signal carries two
parameters: the node in question and the corresponding sysfs path.
[Note: the D-BUS concepts of service, interface, object can be a bit
confusing at first glance]
An example program listening for these messages looks like this
#!/usr/bin/python
import dbus
import gtk
def udev_signal_received(dbus_iface, member, service, object_path, message):
[filename, sysfs_path] = message.get_args_list()
if member=='NodeCreated':
print 'Node %s created for %s'%(filename, sysfs_path)
elif member=='NodeDeleted':
print 'Node %s deleted for %s'%(filename, sysfs_path)
def main():
bus = dbus.Bus(dbus.Bus.TYPE_SYSTEM)
bus.add_signal_receiver(udev_signal_received,
'org.kernel.udev.NodeMonitor', # interface
'org.kernel.udev', # service
'/org/kernel/udev/NodeMonitor') # object
gtk.mainloop()
if __name__ == '__main__':
main()
and this is the output when hot-plugging some usb-storage.
[david@laptop udev-008]$ ~/node_monitor.py
Node /udev/sda created for /block/sda
Node /udev/sda1 created for /block/sda/sda1
Node /udev/sda1 deleted for /block/sda/sda1
Node /udev/sda deleted for /block/sda
The patch requires D-BUS 0.20 or later while the python example program
requires D-BUS from CVS as I only recently applied a patch against the
python bindings.
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uninstall-dbus-policy :
- rm $( DESTDIR) $( dbusdir) /udev_sysbus_policy.conf
e l s e
install-dbus-policy :
-
uninstall-dbus-policy :
-
e n d i f
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install-config : $( GEN_CONFIGS )
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$( INSTALL) -d $( DESTDIR) $( configdir)
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@if [ ! -r $( DESTDIR) $( configdir) udev.conf ] ; then \
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echo $( INSTALL_DATA) $( LOCAL_CFG_DIR) /udev.conf $( DESTDIR) $( configdir) ; \
$( INSTALL_DATA) $( LOCAL_CFG_DIR) /udev.conf $( DESTDIR) $( configdir) ; \
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fi
@if [ ! -r $( DESTDIR) $( configdir) udev.rules ] ; then \
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echo $( INSTALL_DATA) $( LOCAL_CFG_DIR) /udev.rules $( DESTDIR) $( configdir) ; \
$( INSTALL_DATA) $( LOCAL_CFG_DIR) /udev.rules $( DESTDIR) $( configdir) ; \
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fi
@if [ ! -r $( DESTDIR) $( configdir) udev.permissions ] ; then \
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echo $( INSTALL_DATA) $( LOCAL_CFG_DIR) /udev.permissions $( DESTDIR) $( configdir) ; \
$( INSTALL_DATA) $( LOCAL_CFG_DIR) /udev.permissions $( DESTDIR) $( configdir) ; \
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fi
install : install -config install -dbus -policy all
$( INSTALL) -d $( DESTDIR) $( udevdir)
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$( INSTALL) -d $( DESTDIR) $( hotplugdir)
$( INSTALL_PROGRAM) -D $( ROOT) $( DESTDIR) $( sbindir) /$( ROOT)
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$( INSTALL_PROGRAM) -D etc/init.d/udev $( DESTDIR) $( initdir) /udev
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$( INSTALL_DATA) -D udev.8 $( DESTDIR) $( mandir) /man8/udev.8
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- rm -f $( DESTDIR) $( hotplugdir) /udev.hotplug
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- ln -f -s $( sbindir) /$( ROOT) $( DESTDIR) $( hotplugdir) /udev.hotplug
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@extras= " $( EXTRAS) " ; for target in $$ extras ; do \
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echo $$ target ; \
$( MAKE) prefix = $( prefix) LD = " $( LD) " SYSFS = " $( SYSFS) " \
-C $$ target $@ ; \
done ; \
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[PATCH] D-BUS patch for udev-008
Attached is a patch against udev-008 to send out a D-BUS message when a
device node is added or removed.
Using D-BUS lingo, udev acquires the org.kernel.udev service and sends
out a NodeCreated or NodeDeleted signal on the
org.kernel.udev.NodeMonitor interface. Each signal carries two
parameters: the node in question and the corresponding sysfs path.
[Note: the D-BUS concepts of service, interface, object can be a bit
confusing at first glance]
An example program listening for these messages looks like this
#!/usr/bin/python
import dbus
import gtk
def udev_signal_received(dbus_iface, member, service, object_path, message):
[filename, sysfs_path] = message.get_args_list()
if member=='NodeCreated':
print 'Node %s created for %s'%(filename, sysfs_path)
elif member=='NodeDeleted':
print 'Node %s deleted for %s'%(filename, sysfs_path)
def main():
bus = dbus.Bus(dbus.Bus.TYPE_SYSTEM)
bus.add_signal_receiver(udev_signal_received,
'org.kernel.udev.NodeMonitor', # interface
'org.kernel.udev', # service
'/org/kernel/udev/NodeMonitor') # object
gtk.mainloop()
if __name__ == '__main__':
main()
and this is the output when hot-plugging some usb-storage.
[david@laptop udev-008]$ ~/node_monitor.py
Node /udev/sda created for /block/sda
Node /udev/sda1 created for /block/sda/sda1
Node /udev/sda1 deleted for /block/sda/sda1
Node /udev/sda deleted for /block/sda
The patch requires D-BUS 0.20 or later while the python example program
requires D-BUS from CVS as I only recently applied a patch against the
python bindings.
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uninstall : uninstall -dbus -policy
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- rm $( hotplugdir) /udev.hotplug
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- rm $( configdir) /udev.permissions
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- rm $( configdir) /udev.rules
- rm $( configdir) /udev.conf
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- rm $( initdir) /udev
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- rm $( mandir) /man8/udev.8
- rm $( sbindir) /$( ROOT)
- rmdir $( hotplugdir)
- rmdir $( configdir)
- rmdir $( udevdir)
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@extras= " $( EXTRAS) " ; for target in $$ extras ; do \
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echo $$ target ; \
$( MAKE) prefix = $( prefix) LD = " $( LD) " SYSFS = " $( SYSFS) " \
-C $$ target $@ ; \
done ; \
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