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/*
* libudev - interface to udev device information
*
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* Copyright ( C ) 2008 - 2009 Kay Sievers < kay . sievers @ vrfy . org >
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*
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* This library is free software ; you can redistribute it and / or
* modify it under the terms of the GNU Lesser General Public
* License as published by the Free Software Foundation ; either
* version 2.1 of the License , or ( at your option ) any later version .
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*/
# include <stdio.h>
# include <stdlib.h>
# include <stddef.h>
# include <unistd.h>
# include <errno.h>
# include <string.h>
# include <dirent.h>
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# include <sys/poll.h>
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# include <sys/stat.h>
# include <sys/socket.h>
# include <sys/un.h>
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# include <arpa/inet.h>
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# include <linux/netlink.h>
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# include <linux/filter.h>
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# include "libudev.h"
# include "libudev-private.h"
struct udev_monitor {
struct udev * udev ;
int refcount ;
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int sock ;
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struct sockaddr_nl snl ;
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struct sockaddr_nl snl_trusted_sender ;
struct sockaddr_nl snl_destination ;
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struct sockaddr_un sun ;
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socklen_t addrlen ;
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struct udev_list_node filter_subsystem_list ;
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} ;
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enum udev_monitor_netlink_group {
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UDEV_MONITOR_NONE ,
UDEV_MONITOR_KERNEL ,
UDEV_MONITOR_UDEV ,
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} ;
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# define UDEV_MONITOR_MAGIC 0xcafe1dea
struct udev_monitor_netlink_header {
/* udev version text */
char version [ 16 ] ;
/*
* magic to protect against daemon < - > library message format mismatch
* used in the kernel from socket filter rules ; needs to be stored in network order
*/
unsigned int magic ;
/* properties buffer */
unsigned short properties_off ;
unsigned short properties_len ;
/*
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* hashes of some common device properties strings to filter with socket filters in
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* the client used in the kernel from socket filter rules ; needs to be stored in
* network order
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*/
unsigned int filter_subsystem ;
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unsigned int filter_devtype ;
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} ;
static struct udev_monitor * udev_monitor_new ( struct udev * udev )
{
struct udev_monitor * udev_monitor ;
udev_monitor = calloc ( 1 , sizeof ( struct udev_monitor ) ) ;
if ( udev_monitor = = NULL )
return NULL ;
udev_monitor - > refcount = 1 ;
udev_monitor - > udev = udev ;
udev_list_init ( & udev_monitor - > filter_subsystem_list ) ;
return udev_monitor ;
}
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/**
* udev_monitor_new_from_socket :
* @ udev : udev library context
* @ socket_path : unix socket path
*
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* Create new udev monitor and connect to a specified socket . The
* path to a socket either points to an existing socket file , or if
* the socket path starts with a ' @ ' character , an abstract namespace
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* socket will be used .
*
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* A socket file will not be created . If it does not already exist ,
* it will fall - back and connect to an abstract namespace socket with
* the given path . The permissions adjustment of a socket file , as
* well as the later cleanup , needs to be done by the caller .
*
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* The initial refcount is 1 , and needs to be decremented to
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* release the resources of the udev monitor .
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*
* Returns : a new udev monitor , or # NULL , in case of an error
* */
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struct udev_monitor * udev_monitor_new_from_socket ( struct udev * udev , const char * socket_path )
{
struct udev_monitor * udev_monitor ;
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struct stat statbuf ;
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if ( udev = = NULL )
return NULL ;
if ( socket_path = = NULL )
return NULL ;
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udev_monitor = udev_monitor_new ( udev ) ;
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if ( udev_monitor = = NULL )
return NULL ;
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udev_monitor - > sun . sun_family = AF_LOCAL ;
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if ( socket_path [ 0 ] = = ' @ ' ) {
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/* translate leading '@' to abstract namespace */
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util_strscpy ( udev_monitor - > sun . sun_path , sizeof ( udev_monitor - > sun . sun_path ) , socket_path ) ;
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udev_monitor - > sun . sun_path [ 0 ] = ' \0 ' ;
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udev_monitor - > addrlen = offsetof ( struct sockaddr_un , sun_path ) + strlen ( socket_path ) ;
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} else if ( stat ( socket_path , & statbuf ) = = 0 & & S_ISSOCK ( statbuf . st_mode ) ) {
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/* existing socket file */
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util_strscpy ( udev_monitor - > sun . sun_path , sizeof ( udev_monitor - > sun . sun_path ) , socket_path ) ;
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udev_monitor - > addrlen = offsetof ( struct sockaddr_un , sun_path ) + strlen ( socket_path ) ;
} else {
/* no socket file, assume abstract namespace socket */
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util_strscpy ( & udev_monitor - > sun . sun_path [ 1 ] , sizeof ( udev_monitor - > sun . sun_path ) - 1 , socket_path ) ;
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udev_monitor - > addrlen = offsetof ( struct sockaddr_un , sun_path ) + strlen ( socket_path ) + 1 ;
}
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udev_monitor - > sock = socket ( AF_LOCAL , SOCK_DGRAM , 0 ) ;
if ( udev_monitor - > sock = = - 1 ) {
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err ( udev , " error getting socket: %m \n " ) ;
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free ( udev_monitor ) ;
return NULL ;
}
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util_set_fd_cloexec ( udev_monitor - > sock ) ;
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dbg ( udev , " monitor %p created with '%s' \n " , udev_monitor , socket_path ) ;
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return udev_monitor ;
}
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/**
* udev_monitor_new_from_netlink :
* @ udev : udev library context
* @ name : name of event source
*
* Create new udev monitor and connect to a specified event
* source . Valid sources identifiers are " udev " and " kernel " .
*
* Applications should usually not connect directly to the
* " kernel " events , because the devices might not be useable
* at that time , before udev has configured them , and created
* device nodes .
*
* Accessing devices at the same time as udev , might result
* in unpredictable behavior .
*
* The " udev " events are sent out after udev has finished its
* event processing , all rules have been processed , and needed
* device nodes are created .
*
* The initial refcount is 1 , and needs to be decremented to
* release the resources of the udev monitor .
*
* Returns : a new udev monitor , or # NULL , in case of an error
* */
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struct udev_monitor * udev_monitor_new_from_netlink ( struct udev * udev , const char * name )
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{
struct udev_monitor * udev_monitor ;
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unsigned int group ;
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if ( udev = = NULL )
return NULL ;
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if ( name = = NULL )
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group = UDEV_MONITOR_NONE ;
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else if ( strcmp ( name , " udev " ) = = 0 )
group = UDEV_MONITOR_UDEV ;
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else if ( strcmp ( name , " kernel " ) = = 0 )
group = UDEV_MONITOR_KERNEL ;
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else
return NULL ;
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udev_monitor = udev_monitor_new ( udev ) ;
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if ( udev_monitor = = NULL )
return NULL ;
udev_monitor - > sock = socket ( PF_NETLINK , SOCK_DGRAM , NETLINK_KOBJECT_UEVENT ) ;
if ( udev_monitor - > sock = = - 1 ) {
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err ( udev , " error getting socket: %m \n " ) ;
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free ( udev_monitor ) ;
return NULL ;
}
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util_set_fd_cloexec ( udev_monitor - > sock ) ;
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udev_monitor - > snl . nl_family = AF_NETLINK ;
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udev_monitor - > snl . nl_groups = group ;
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/* default destination for sending */
udev_monitor - > snl_destination . nl_family = AF_NETLINK ;
udev_monitor - > snl_destination . nl_groups = UDEV_MONITOR_UDEV ;
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dbg ( udev , " monitor %p created with NETLINK_KOBJECT_UEVENT (%u) \n " , udev_monitor , group ) ;
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return udev_monitor ;
}
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static inline void bpf_stmt ( struct sock_filter * inss , unsigned int * i ,
unsigned short code , unsigned int data )
{
struct sock_filter * ins = & inss [ * i ] ;
ins - > code = code ;
ins - > k = data ;
( * i ) + + ;
}
static inline void bpf_jmp ( struct sock_filter * inss , unsigned int * i ,
unsigned short code , unsigned int data ,
unsigned short jt , unsigned short jf )
{
struct sock_filter * ins = & inss [ * i ] ;
ins - > code = code ;
ins - > jt = jt ;
ins - > jf = jf ;
ins - > k = data ;
( * i ) + + ;
}
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int udev_monitor_filter_update ( struct udev_monitor * udev_monitor )
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{
static struct sock_filter ins [ 256 ] ;
static struct sock_fprog filter ;
unsigned int i ;
struct udev_list_entry * list_entry ;
int err ;
if ( udev_list_get_entry ( & udev_monitor - > filter_subsystem_list ) = = NULL )
return 0 ;
memset ( ins , 0x00 , sizeof ( ins ) ) ;
i = 0 ;
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/* load magic in A */
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bpf_stmt ( ins , & i , BPF_LD | BPF_W | BPF_ABS , offsetof ( struct udev_monitor_netlink_header , magic ) ) ;
/* jump if magic matches */
bpf_jmp ( ins , & i , BPF_JMP | BPF_JEQ | BPF_K , UDEV_MONITOR_MAGIC , 1 , 0 ) ;
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/* wrong magic, pass packet */
bpf_stmt ( ins , & i , BPF_RET | BPF_K , 0xffffffff ) ;
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/* add all subsystem match values */
udev_list_entry_foreach ( list_entry , udev_list_get_entry ( & udev_monitor - > filter_subsystem_list ) ) {
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unsigned int hash ;
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/* load filter_subsystem value in A */
bpf_stmt ( ins , & i , BPF_LD | BPF_W | BPF_ABS , offsetof ( struct udev_monitor_netlink_header , filter_subsystem ) ) ;
hash = util_string_hash32 ( udev_list_entry_get_name ( list_entry ) ) ;
if ( udev_list_entry_get_value ( list_entry ) = = NULL ) {
/* jump if subsystem does not match */
bpf_jmp ( ins , & i , BPF_JMP | BPF_JEQ | BPF_K , hash , 0 , 1 ) ;
} else {
/* jump if subsystem does not match */
bpf_jmp ( ins , & i , BPF_JMP | BPF_JEQ | BPF_K , hash , 0 , 3 ) ;
/* load filter_devtype value in A */
bpf_stmt ( ins , & i , BPF_LD | BPF_W | BPF_ABS , offsetof ( struct udev_monitor_netlink_header , filter_devtype ) ) ;
/* jump if value does not match */
hash = util_string_hash32 ( udev_list_entry_get_value ( list_entry ) ) ;
bpf_jmp ( ins , & i , BPF_JMP | BPF_JEQ | BPF_K , hash , 0 , 1 ) ;
}
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/* matched, pass packet */
bpf_stmt ( ins , & i , BPF_RET | BPF_K , 0xffffffff ) ;
if ( i + 1 > = ARRAY_SIZE ( ins ) )
return - 1 ;
}
/* nothing matched, drop packet */
bpf_stmt ( ins , & i , BPF_RET | BPF_K , 0 ) ;
/* install filter */
filter . len = i ;
filter . filter = ins ;
err = setsockopt ( udev_monitor - > sock , SOL_SOCKET , SO_ATTACH_FILTER , & filter , sizeof ( filter ) ) ;
return err ;
}
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int udev_monitor_allow_unicast_sender ( struct udev_monitor * udev_monitor , struct udev_monitor * sender )
{
udev_monitor - > snl_trusted_sender . nl_pid = sender - > snl . nl_pid ;
return 0 ;
}
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int udev_monitor_enable_receiving ( struct udev_monitor * udev_monitor )
{
int err ;
const int on = 1 ;
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if ( udev_monitor - > sun . sun_family ! = 0 ) {
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err = bind ( udev_monitor - > sock ,
( struct sockaddr * ) & udev_monitor - > sun , udev_monitor - > addrlen ) ;
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} else if ( udev_monitor - > snl . nl_family ! = 0 ) {
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udev_monitor_filter_update ( udev_monitor ) ;
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err = bind ( udev_monitor - > sock ,
( struct sockaddr * ) & udev_monitor - > snl , sizeof ( struct sockaddr_nl ) ) ;
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if ( err = = 0 ) {
struct sockaddr_nl snl ;
socklen_t addrlen ;
/*
* get the address the kernel has assigned us
* it is usually , but not neccessarily the pid
*/
addrlen = sizeof ( struct sockaddr_nl ) ;
err = getsockname ( udev_monitor - > sock , ( struct sockaddr * ) & snl , & addrlen ) ;
if ( err = = 0 )
udev_monitor - > snl . nl_pid = snl . nl_pid ;
}
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} else {
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return - EINVAL ;
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}
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if ( err < 0 ) {
err ( udev_monitor - > udev , " bind failed: %m \n " ) ;
return err ;
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}
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/* enable receiving of sender credentials */
setsockopt ( udev_monitor - > sock , SOL_SOCKET , SO_PASSCRED , & on , sizeof ( on ) ) ;
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return 0 ;
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}
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int udev_monitor_set_receive_buffer_size ( struct udev_monitor * udev_monitor , int size )
{
if ( udev_monitor = = NULL )
return - 1 ;
return setsockopt ( udev_monitor - > sock , SOL_SOCKET , SO_RCVBUFFORCE , & size , sizeof ( size ) ) ;
}
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int udev_monitor_disconnect ( struct udev_monitor * udev_monitor )
{
int err ;
err = close ( udev_monitor - > sock ) ;
udev_monitor - > sock = - 1 ;
return err ;
}
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/**
* udev_monitor_ref :
* @ udev_monitor : udev monitor
*
* Take a reference of a udev monitor .
*
* Returns : the passed udev monitor
* */
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struct udev_monitor * udev_monitor_ref ( struct udev_monitor * udev_monitor )
{
if ( udev_monitor = = NULL )
return NULL ;
udev_monitor - > refcount + + ;
return udev_monitor ;
}
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/**
* udev_monitor_unref :
* @ udev_monitor : udev monitor
*
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* Drop a reference of a udev monitor . If the refcount reaches zero ,
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* the bound socket will be closed , and the resources of the monitor
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* will be released .
*
* */
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void udev_monitor_unref ( struct udev_monitor * udev_monitor )
{
if ( udev_monitor = = NULL )
return ;
udev_monitor - > refcount - - ;
if ( udev_monitor - > refcount > 0 )
return ;
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if ( udev_monitor - > sock > = 0 )
close ( udev_monitor - > sock ) ;
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udev_list_cleanup_entries ( udev_monitor - > udev , & udev_monitor - > filter_subsystem_list ) ;
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dbg ( udev_monitor - > udev , " monitor %p released \n " , udev_monitor ) ;
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free ( udev_monitor ) ;
}
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/**
* udev_monitor_get_udev :
* @ udev_monitor : udev monitor
*
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* Retrieve the udev library context the monitor was created with .
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*
* Returns : the udev library context
* */
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struct udev * udev_monitor_get_udev ( struct udev_monitor * udev_monitor )
{
if ( udev_monitor = = NULL )
return NULL ;
return udev_monitor - > udev ;
}
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/**
* udev_monitor_get_fd :
* @ udev_monitor : udev monitor
*
* Retrieve the socket file descriptor associated with the monitor .
*
* Returns : the socket file descriptor
* */
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int udev_monitor_get_fd ( struct udev_monitor * udev_monitor )
{
if ( udev_monitor = = NULL )
return - 1 ;
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return udev_monitor - > sock ;
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}
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static int passes_filter ( struct udev_monitor * udev_monitor , struct udev_device * udev_device )
{
struct udev_list_entry * list_entry ;
if ( udev_list_get_entry ( & udev_monitor - > filter_subsystem_list ) = = NULL )
return 1 ;
udev_list_entry_foreach ( list_entry , udev_list_get_entry ( & udev_monitor - > filter_subsystem_list ) ) {
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const char * subsys = udev_list_entry_get_name ( list_entry ) ;
const char * dsubsys = udev_device_get_subsystem ( udev_device ) ;
const char * devtype ;
const char * ddevtype ;
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if ( strcmp ( dsubsys , subsys ) ! = 0 )
continue ;
devtype = udev_list_entry_get_value ( list_entry ) ;
if ( devtype = = NULL )
return 1 ;
ddevtype = udev_device_get_devtype ( udev_device ) ;
if ( ddevtype = = NULL )
continue ;
if ( strcmp ( ddevtype , devtype ) = = 0 )
return 1 ;
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}
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return 0 ;
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}
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/**
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* udev_monitor_receive_device :
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* @ udev_monitor : udev monitor
*
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* Receive data from the udev monitor socket , allocate a new udev
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* device , fill in the received data , and return the device .
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*
* Only socket connections with uid = 0 are accepted . The caller
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* needs to make sure that there is data to read from the socket .
* The call will block until the socket becomes readable .
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*
* The initial refcount is 1 , and needs to be decremented to
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* release the resources of the udev device .
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*
* Returns : a new udev device , or # NULL , in case of an error
* */
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struct udev_device * udev_monitor_receive_device ( struct udev_monitor * udev_monitor )
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{
struct udev_device * udev_device ;
struct msghdr smsg ;
struct iovec iov ;
char cred_msg [ CMSG_SPACE ( sizeof ( struct ucred ) ) ] ;
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struct cmsghdr * cmsg ;
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struct sockaddr_nl snl ;
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struct ucred * cred ;
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char buf [ 8192 ] ;
ssize_t buflen ;
ssize_t bufpos ;
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struct udev_monitor_netlink_header * nlh ;
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int devpath_set = 0 ;
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int subsystem_set = 0 ;
int action_set = 0 ;
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int maj = 0 ;
int min = 0 ;
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int is_kernel = 0 ;
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retry :
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if ( udev_monitor = = NULL )
return NULL ;
memset ( buf , 0x00 , sizeof ( buf ) ) ;
iov . iov_base = & buf ;
iov . iov_len = sizeof ( buf ) ;
memset ( & smsg , 0x00 , sizeof ( struct msghdr ) ) ;
smsg . msg_iov = & iov ;
smsg . msg_iovlen = 1 ;
smsg . msg_control = cred_msg ;
smsg . msg_controllen = sizeof ( cred_msg ) ;
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if ( udev_monitor - > snl . nl_family ! = 0 ) {
smsg . msg_name = & snl ;
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smsg . msg_namelen = sizeof ( snl ) ;
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}
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buflen = recvmsg ( udev_monitor - > sock , & smsg , 0 ) ;
if ( buflen < 0 ) {
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if ( errno ! = EINTR )
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info ( udev_monitor - > udev , " unable to receive message \n " ) ;
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return NULL ;
}
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if ( buflen < 32 | | ( size_t ) buflen > = sizeof ( buf ) ) {
info ( udev_monitor - > udev , " invalid message length \n " ) ;
return NULL ;
}
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if ( udev_monitor - > snl . nl_family ! = 0 ) {
if ( snl . nl_groups = = 0 ) {
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/* unicast message, check if we trust the sender */
if ( udev_monitor - > snl_trusted_sender . nl_pid = = 0 | |
snl . nl_pid ! = udev_monitor - > snl_trusted_sender . nl_pid ) {
info ( udev_monitor - > udev , " unicast netlink message ignored \n " ) ;
return NULL ;
}
} else if ( snl . nl_groups = = UDEV_MONITOR_KERNEL ) {
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if ( snl . nl_pid > 0 ) {
info ( udev_monitor - > udev , " multicast kernel netlink message from pid %d ignored \n " , snl . nl_pid ) ;
return NULL ;
}
is_kernel = 1 ;
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}
}
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cmsg = CMSG_FIRSTHDR ( & smsg ) ;
if ( cmsg = = NULL | | cmsg - > cmsg_type ! = SCM_CREDENTIALS ) {
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info ( udev_monitor - > udev , " no sender credentials received, message ignored \n " ) ;
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return NULL ;
}
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cred = ( struct ucred * ) CMSG_DATA ( cmsg ) ;
if ( cred - > uid ! = 0 ) {
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info ( udev_monitor - > udev , " sender uid=%d, message ignored \n " , cred - > uid ) ;
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return NULL ;
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}
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if ( strncmp ( buf , " udev- " , 5 ) = = 0 ) {
/* udev message needs proper version magic */
nlh = ( struct udev_monitor_netlink_header * ) buf ;
if ( nlh - > magic ! = htonl ( UDEV_MONITOR_MAGIC ) )
return NULL ;
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if ( nlh - > properties_off < sizeof ( struct udev_monitor_netlink_header ) )
return NULL ;
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if ( nlh - > properties_off + 32U > buflen )
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return NULL ;
bufpos = nlh - > properties_off ;
} else {
/* kernel message with header */
bufpos = strlen ( buf ) + 1 ;
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if ( ( size_t ) bufpos < sizeof ( " a@/d " ) | | bufpos > = buflen ) {
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info ( udev_monitor - > udev , " invalid message length \n " ) ;
return NULL ;
}
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/* check message header */
if ( strstr ( buf , " @/ " ) = = NULL ) {
info ( udev_monitor - > udev , " unrecognized message header \n " ) ;
return NULL ;
}
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}
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udev_device = device_new ( udev_monitor - > udev ) ;
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if ( udev_device = = NULL ) {
return NULL ;
}
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while ( bufpos < buflen ) {
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char * key ;
size_t keylen ;
key = & buf [ bufpos ] ;
keylen = strlen ( key ) ;
if ( keylen = = 0 )
break ;
bufpos + = keylen + 1 ;
if ( strncmp ( key , " DEVPATH= " , 8 ) = = 0 ) {
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char path [ UTIL_PATH_SIZE ] ;
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util_strscpyl ( path , sizeof ( path ) , udev_get_sys_path ( udev_monitor - > udev ) , & key [ 8 ] , NULL ) ;
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udev_device_set_syspath ( udev_device , path ) ;
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devpath_set = 1 ;
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} else if ( strncmp ( key , " SUBSYSTEM= " , 10 ) = = 0 ) {
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udev_device_set_subsystem ( udev_device , & key [ 10 ] ) ;
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subsystem_set = 1 ;
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} else if ( strncmp ( key , " DEVTYPE= " , 8 ) = = 0 ) {
udev_device_set_devtype ( udev_device , & key [ 8 ] ) ;
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} else if ( strncmp ( key , " DEVNAME= " , 8 ) = = 0 ) {
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if ( is_kernel )
udev_device_set_knodename ( udev_device , & key [ 8 ] ) ;
else
udev_device_set_devnode ( udev_device , & key [ 8 ] ) ;
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} else if ( strncmp ( key , " DEVLINKS= " , 9 ) = = 0 ) {
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char devlinks [ UTIL_PATH_SIZE ] ;
char * slink ;
char * next ;
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2009-05-20 19:57:52 +04:00
util_strscpy ( devlinks , sizeof ( devlinks ) , & key [ 9 ] ) ;
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slink = devlinks ;
next = strchr ( slink , ' ' ) ;
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while ( next ! = NULL ) {
next [ 0 ] = ' \0 ' ;
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udev_device_add_devlink ( udev_device , slink ) ;
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slink = & next [ 1 ] ;
next = strchr ( slink , ' ' ) ;
}
if ( slink [ 0 ] ! = ' \0 ' )
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udev_device_add_devlink ( udev_device , slink ) ;
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} else if ( strncmp ( key , " DRIVER= " , 7 ) = = 0 ) {
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udev_device_set_driver ( udev_device , & key [ 7 ] ) ;
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} else if ( strncmp ( key , " ACTION= " , 7 ) = = 0 ) {
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udev_device_set_action ( udev_device , & key [ 7 ] ) ;
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action_set = 1 ;
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} else if ( strncmp ( key , " MAJOR= " , 6 ) = = 0 ) {
maj = strtoull ( & key [ 6 ] , NULL , 10 ) ;
} else if ( strncmp ( key , " MINOR= " , 6 ) = = 0 ) {
min = strtoull ( & key [ 6 ] , NULL , 10 ) ;
} else if ( strncmp ( key , " DEVPATH_OLD= " , 12 ) = = 0 ) {
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udev_device_set_devpath_old ( udev_device , & key [ 12 ] ) ;
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} else if ( strncmp ( key , " SEQNUM= " , 7 ) = = 0 ) {
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udev_device_set_seqnum ( udev_device , strtoull ( & key [ 7 ] , NULL , 10 ) ) ;
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} else if ( strncmp ( key , " TIMEOUT= " , 8 ) = = 0 ) {
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udev_device_set_timeout ( udev_device , strtoull ( & key [ 8 ] , NULL , 10 ) ) ;
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} else {
udev_device_add_property_from_string ( udev_device , key ) ;
}
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}
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if ( ! devpath_set | | ! subsystem_set | | ! action_set ) {
info ( udev_monitor - > udev , " missing values, skip \n " ) ;
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udev_device_unref ( udev_device ) ;
return NULL ;
}
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/* skip device, if it does not pass the current filter */
if ( ! passes_filter ( udev_monitor , udev_device ) ) {
struct pollfd pfd [ 1 ] ;
int rc ;
udev_device_unref ( udev_device ) ;
/* if something is queued, get next device */
pfd [ 0 ] . fd = udev_monitor - > sock ;
pfd [ 0 ] . events = POLLIN ;
rc = poll ( pfd , 1 , 0 ) ;
if ( rc > 0 )
goto retry ;
return NULL ;
}
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if ( maj > 0 )
udev_device_set_devnum ( udev_device , makedev ( maj , min ) ) ;
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udev_device_set_info_loaded ( udev_device ) ;
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return udev_device ;
}
2008-10-10 01:38:30 +04:00
2009-06-04 03:44:04 +04:00
int udev_monitor_send_device ( struct udev_monitor * udev_monitor ,
struct udev_monitor * destination , struct udev_device * udev_device )
2008-10-10 01:38:30 +04:00
{
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struct msghdr smsg ;
struct iovec iov [ 2 ] ;
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const char * buf ;
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ssize_t blen ;
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ssize_t count ;
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blen = udev_device_get_properties_monitor_buf ( udev_device , & buf ) ;
if ( blen < 32 )
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return - 1 ;
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if ( udev_monitor - > sun . sun_family ! = 0 ) {
const char * action ;
char header [ 2048 ] ;
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char * s ;
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/* header <action>@<devpath> */
action = udev_device_get_action ( udev_device ) ;
if ( action = = NULL )
return - EINVAL ;
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s = header ;
if ( util_strpcpyl ( & s , sizeof ( header ) , action , " @ " , udev_device_get_devpath ( udev_device ) , NULL ) = = 0 )
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return - EINVAL ;
iov [ 0 ] . iov_base = header ;
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iov [ 0 ] . iov_len = ( s - header ) + 1 ;
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/* add properties list */
iov [ 1 ] . iov_base = ( char * ) buf ;
iov [ 1 ] . iov_len = blen ;
memset ( & smsg , 0x00 , sizeof ( struct msghdr ) ) ;
smsg . msg_iov = iov ;
smsg . msg_iovlen = 2 ;
smsg . msg_name = & udev_monitor - > sun ;
smsg . msg_namelen = udev_monitor - > addrlen ;
} else if ( udev_monitor - > snl . nl_family ! = 0 ) {
const char * val ;
struct udev_monitor_netlink_header nlh ;
/* add versioned header */
memset ( & nlh , 0x00 , sizeof ( struct udev_monitor_netlink_header ) ) ;
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util_strscpy ( nlh . version , sizeof ( nlh . version ) , " udev- " VERSION ) ;
2009-04-22 05:50:11 +04:00
nlh . magic = htonl ( UDEV_MONITOR_MAGIC ) ;
val = udev_device_get_subsystem ( udev_device ) ;
2009-04-22 20:38:16 +04:00
nlh . filter_subsystem = htonl ( util_string_hash32 ( val ) ) ;
2009-04-23 05:24:38 +04:00
val = udev_device_get_devtype ( udev_device ) ;
if ( val ! = NULL )
nlh . filter_devtype = htonl ( util_string_hash32 ( val ) ) ;
2009-04-22 05:50:11 +04:00
iov [ 0 ] . iov_base = & nlh ;
iov [ 0 ] . iov_len = sizeof ( struct udev_monitor_netlink_header ) ;
/* add properties list */
nlh . properties_off = iov [ 0 ] . iov_len ;
nlh . properties_len = blen ;
iov [ 1 ] . iov_base = ( char * ) buf ;
iov [ 1 ] . iov_len = blen ;
memset ( & smsg , 0x00 , sizeof ( struct msghdr ) ) ;
smsg . msg_iov = iov ;
smsg . msg_iovlen = 2 ;
2009-06-04 03:44:04 +04:00
/*
* Use custom address for target , or the default one .
*
* If we send to a muticast group , we will get
* ECONNREFUSED , which is expected .
*/
if ( destination ! = NULL )
smsg . msg_name = & destination - > snl ;
else
smsg . msg_name = & udev_monitor - > snl_destination ;
2009-04-22 05:50:11 +04:00
smsg . msg_namelen = sizeof ( struct sockaddr_nl ) ;
} else {
2009-04-08 18:46:54 +04:00
return - 1 ;
2009-04-22 05:50:11 +04:00
}
2009-04-08 18:46:54 +04:00
2009-04-22 05:50:11 +04:00
count = sendmsg ( udev_monitor - > sock , & smsg , 0 ) ;
2009-04-09 03:16:14 +04:00
info ( udev_monitor - > udev , " passed %zi bytes to monitor %p \n " , count , udev_monitor ) ;
2008-10-10 01:38:30 +04:00
return count ;
}
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2009-04-23 05:24:38 +04:00
int udev_monitor_filter_add_match_subsystem_devtype ( struct udev_monitor * udev_monitor , const char * subsystem , const char * devtype )
2009-04-22 05:50:11 +04:00
{
if ( udev_monitor = = NULL )
return - EINVAL ;
if ( subsystem = = NULL )
return 0 ;
if ( udev_list_entry_add ( udev_monitor - > udev ,
2009-04-23 05:24:38 +04:00
& udev_monitor - > filter_subsystem_list , subsystem , devtype , 0 , 0 ) = = NULL )
2009-04-22 05:50:11 +04:00
return - ENOMEM ;
return 0 ;
}
2009-04-23 06:07:51 +04:00
int udev_monitor_filter_remove ( struct udev_monitor * udev_monitor )
{
static struct sock_fprog filter = { 0 , NULL } ;
udev_list_cleanup_entries ( udev_monitor - > udev , & udev_monitor - > filter_subsystem_list ) ;
return setsockopt ( udev_monitor - > sock , SOL_SOCKET , SO_ATTACH_FILTER , & filter , sizeof ( filter ) ) ;
}