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Ignore whitespace Rev 3845 → Rev 3846

/branches/network/uspace/srv/net/ip/ip.c
33,58 → 33,64
/** @file
*/
 
#include <as.h>
#include <async.h>
#include <errno.h>
#include <stdio.h>
 
#include <ipc/ipc.h>
#include <ipc/services.h>
//#include <sys/mman.h>
 
#include "../err.h"
#include "../measured_strings.h"
#include "../messages.h"
#include "../modules.h"
#include "../netif/netif_device_id_type.h"
#include "../packet.h"
 
#include "../include/sockaddr.h"
#include "../include/socket.h"
#include "../netif/device.h"
 
#include "ip.h"
#include "ip_messages.h"
#include "ip_module.h"
 
#define DEFAULT_IPV 4
#define DEFAULT_IPV 4
 
#define IPC_GET_DEVICE( call ) ( device_id_t ) IPC_GET_ARG1( * call )
#define IPC_GET_PROTO( call ) ( int ) IPC_GET_ARG1( * call )
#define IPC_GET_SERVICE( call ) ( services_t ) IPC_GET_ARG2( * call )
#define IPC_GET_STATE( call ) ( device_state_t ) IPC_GET_ARG2( * call )
#define IPC_GET_PHONE( call ) ( int ) IPC_GET_ARG5( * call )
 
ip_globals_t ip_globals;
 
DEVICE_MAP_IMPLEMENT( ip_netifs, ip_netif_t )
 
int parse_address( char * value, address_ref address );
INT_MAP_IMPLEMENT( ip_protos, ip_proto_t )
 
int ip_register_message( int protocol, int phone );
int ip_state_message( device_id_t device_id, device_state_t state );
void ip_driver_receiver( ipc_callid_t iid, ipc_call_t * icall );
 
/** Initializes the module.
*/
int ip_initialize( void ){
ip_netifs_initialize( & ip_globals.netifs );
ip_protos_initialize( & ip_globals.protos );
return EOK;
}
 
int ip_call( ipc_callid_t callid ){
int ip_echo_message( ipcarg_t arg1, ipcarg_t arg2, ipcarg_t arg3, ipcarg_t arg4, ipcarg_t arg5, ipcarg_t * answer1, ipcarg_t * answer2, ipcarg_t * answer3, ipcarg_t * answer4, ipcarg_t * answer5 ){
if( answer1 ) * answer1 = arg1;
if( answer2 ) * answer2 = arg2;
if( answer3 ) * answer3 = arg3;
if( answer4 ) * answer4 = arg4;
if( answer5 ) * answer5 = arg5;
return EOK;
}
 
int parse_address( char * value, address_ref address ){
char * next;
int index;
 
if( ! value ){
( * address )[ 0 ] = ( * address )[ 1 ] = ( * address )[ 2 ] = ( * address )[ 3 ] = 0;
return ENOENT;
}
next = value;
for( index = 0; index < 4; ++ index ){
if(( ! next ) || ( ! * next )) return EINVAL;
if( index ) ++ next;
( * address )[ index ] = strtoul( next, & next, 0 );
}
return EOK;
}
 
int ip_message( ipc_callid_t callid, ipcarg_t method, ipcarg_t arg1, ipcarg_t arg2, ipcarg_t arg3, ipcarg_t * result1, ipcarg_t * result2, ipcarg_t * result3 ){
int ip_device_message( device_id_t device_id, services_t service ){
ERROR_DECLARE;
 
ip_netif_ref ip_netif;
95,85 → 101,176
measured_string_ref settings;
char * data;
 
switch( method ){
ip_netif = ( ip_netif_ref ) malloc( sizeof( ip_netif_t ));
if( ! ip_netif ) return ENOMEM;
ip_netif->device_id = device_id;
// get configuration
// TODO mapping
message = async_send_2( ip_globals.networking_phone, NET_NET_GET_DEVICE_CONF, ip_netif->device_id, count, & answer );
// send names and get settings
if( ERROR_OCCURED( measured_strings_send( ip_globals.networking_phone, configuration, count ))
|| ERROR_OCCURED( measured_strings_return( ip_globals.networking_phone, & settings, & data, count ))){
async_wait_for( message, NULL );
return ERROR_CODE;
}
if( settings ){
if( settings[ 0 ].value ){
ip_netif->ipv = strtol( settings[ 0 ].value, NULL, 0 );
}else{
ip_netif->ipv = DEFAULT_IPV;
}
ip_netif->dhcp = ! strcmp( settings[ 1 ].value, "DHCP" );
if( ip_netif->dhcp ){
// TODO dhcp
free( ip_netif );
return ENOTSUP;
}else if( ip_netif->ipv == 4 ){
if( ERROR_OCCURED( inet_pton( AF_INET, settings[ 2 ].value, ( uint8_t * ) & ip_netif->address ))
|| ERROR_OCCURED( inet_pton( AF_INET, settings[ 3 ].value, ( uint8_t * ) & ip_netif->netmask ))
|| ( inet_pton( AF_INET, settings[ 4 ].value, ( uint8_t * ) & ip_netif->gateway ) == EINVAL )
|| ( inet_pton( AF_INET, settings[ 5 ].value, ( uint8_t * ) & ip_netif->broadcast ) == EINVAL )
|| ( inet_pton( AF_INET, settings[ 6 ].value, ( uint8_t * ) & ip_netif->dns1 ) == EINVAL )
|| ( inet_pton( AF_INET, settings[ 7 ].value, ( uint8_t * ) & ip_netif->dns2 ) == EINVAL )){
free( ip_netif );
return EINVAL;
}
}else{
// TODO ipv6
free( ip_netif );
return ENOTSUP;
}
// TODO ARP module
}
// TODO arp module
free( settings );
free( data );
// end request
// TODO mapping
async_wait_for( message, NULL );
// print the settings
printf( "\n -IPV =\t%d", ip_netif->ipv );
printf( "\n -configuration =\t%s", ip_netif->dhcp ? "dhcp" : "static" );
// TODO ipv6
data = malloc( INET_ADDRSTRLEN );
if( data ){
inet_ntop( AF_INET, ( uint8_t * ) & ip_netif->address, data, INET_ADDRSTRLEN );
printf( "\n -address =\t%s", data );
inet_ntop( AF_INET, ( uint8_t * ) & ip_netif->netmask, data, INET_ADDRSTRLEN );
printf( "\n -netmask =\t%s", data );
inet_ntop( AF_INET, ( uint8_t * ) & ip_netif->gateway, data, INET_ADDRSTRLEN );
printf( "\n -gateway =\t%s", data );
inet_ntop( AF_INET, ( uint8_t * ) & ip_netif->broadcast, data, INET_ADDRSTRLEN );
printf( "\n -broadcast =\t%s", data );
inet_ntop( AF_INET, ( uint8_t * ) & ip_netif->dns1, data, INET_ADDRSTRLEN );
printf( "\n -dns1 =\t%s", data );
inet_ntop( AF_INET, ( uint8_t * ) & ip_netif->dns2, data, INET_ADDRSTRLEN );
printf( "\n -dns2 =\t%s", data );
free( data );
}
// TODO mapping
ip_netif->phone = bind_service( service, ip_netif->device_id, SERVICE_IP, 0, ip_driver_receiver );
if( ERROR_OCCURED( ip_netifs_add( & ip_globals.netifs, ip_netif->device_id, ip_netif ))){
free( ip_netif );
return ERROR_CODE;
}
return EOK;
}
 
void ip_driver_receiver( ipc_callid_t iid, ipc_call_t * icall ){
ERROR_DECLARE;
 
ipc_callid_t callid;
ipc_call_t call;
// ipc_call_t answer;
// int count;
int result;
packet_t packet;
 
/*
* Accept the connection
* - Answer the first IPC_M_CONNECT_ME_TO call.
*/
ipc_answer_0( iid, EOK );
 
while( true ){
/* // refresh data
count = 0;
IPC_SET_RETVAL( answer, 0 );
// just to be precize
IPC_SET_RETVAL( answer, 0 );
IPC_SET_ARG1( answer, 0 );
IPC_SET_ARG2( answer, 0 );
IPC_SET_ARG3( answer, 0 );
IPC_SET_ARG4( answer, 0 );
IPC_SET_ARG5( answer, 0 );
*/
callid = async_get_call( & call );
switch( IPC_GET_METHOD( call )){
case NET_IL_DEVICE_STATE:
case NET_NIL_DEVICE_STATE:
result = ip_state_message( IPC_GET_DEVICE( & call ), IPC_GET_STATE( & call ));
ipc_answer_0( callid, result );
// TODO packer received
case NET_IL_RECEIVED:
case NET_NIL_RECEIVED:
if( ERROR_OCCURED( result = packet_receive( & packet ))){
ipc_answer_0( callid, ERROR_CODE );
continue;
}
//result = ip_receive_message( IPC_GET_DEVICE( call ), packet );
packet_destroy( packet );
ipc_answer_0( callid, result );
}
}
}
 
int ip_state_message( device_id_t device_id, device_state_t state ){
// TODO state
printf( "\nip - device %d changed state to %d\n", device_id, state );
return EOK;
}
 
int ip_register_message( int protocol, int phone ){
ERROR_DECLARE;
 
ip_proto_ref proto;
 
proto = ( ip_proto_ref ) malloc( sizeof( ip_protos_t ));
if( ! proto ) return ENOMEM;
proto->protocol = protocol;
proto->phone = phone;
if( ERROR_OCCURED( ip_protos_add( & ip_globals.protos, proto->protocol, proto ))){
free( proto );
return ERROR_CODE;
}
return EOK;
}
 
int ip_send_message( device_id_t device_id, packet_t packet ){
// TODO send packet
printf( "Packet to send via %d: %s", device_id, packet_get_data( packet ));
return EOK;
}
 
int ip_message( ipc_callid_t callid, ipc_call_t * call, ipc_call_t * answer, int * answer_count ){
ERROR_DECLARE;
 
packet_t packet;
 
* answer_count = 0;
switch( IPC_GET_METHOD( * call )){
case IPC_M_PHONE_HUNGUP:
return EOK;
case NET_IP_ECHO:
if( result1 ) * result1 = arg1;
if( result2 ) * result2 = arg2;
if( result3 ) * result3 = arg3;
return EOK;
* answer_count = 5;
return ip_echo_message( IPC_GET_ARG1( * call ), IPC_GET_ARG2( * call ), IPC_GET_ARG3( * call ), IPC_GET_ARG4( * call ), IPC_GET_ARG5( * call ), & IPC_GET_ARG1( * answer ), & IPC_GET_ARG2( * answer ), & IPC_GET_ARG3( * answer ), & IPC_GET_ARG4( * answer ), & IPC_GET_ARG5( * answer ) );
case NET_IL_DEVICE:
ip_netif = ( ip_netif_ref ) malloc( sizeof( ip_netif_t ));
if( ! ip_netif ) return ENOMEM;
ip_netif->device_id = arg1;
// get configuration
message = async_send_2( ip_globals.networking_phone, NET_NETWORKING_GET_DEVICE_CONFIGURATION, ip_netif->device_id, count, & answer );
// send names and get settings
if( ERROR_OCCURED( measured_strings_send( ip_globals.networking_phone, configuration, count ))
|| ERROR_OCCURED( measured_strings_return( ip_globals.networking_phone, & settings, & data, count ))){
async_wait_for( message, NULL );
return ERROR_CODE;
}
if( settings ){
if( settings[ 0 ].value ){
ip_netif->ipv = strtol( settings[ 0 ].value, NULL, 0 );
}else{
ip_netif->ipv = DEFAULT_IPV;
}
ip_netif->dhcp = ! strcmp( settings[ 1 ].value, "DHCP" );
if( ip_netif->dhcp ){
// TODO dhcp
free( ip_netif );
return ENOTSUP;
}else if( ip_netif->ipv == 4 ){
if( ERROR_OCCURED( parse_address( settings[ 2 ].value, & ip_netif->address ))
|| ERROR_OCCURED( parse_address( settings[ 3 ].value, & ip_netif->netmask ))
|| ( parse_address( settings[ 4 ].value, & ip_netif->gateway ) == EINVAL )
|| ( parse_address( settings[ 5 ].value, & ip_netif->broadcast ) == EINVAL )
|| ( parse_address( settings[ 6 ].value, & ip_netif->dns1 ) == EINVAL )
|| ( parse_address( settings[ 7 ].value, & ip_netif->dns2 ) == EINVAL )){
free( ip_netif );
return EINVAL;
}
}else{
// TODO ipv6
free( ip_netif );
return ENOTSUP;
}
// TODO ARP module
}
// print the settings
printf( "\n -IPV=%d", ip_netif->ipv );
printf( "\n -configuration=%s", ip_netif->dhcp ? "dhcp" : "static" );
// TODO ipv6
printf( "\n -address=%d.%d.%d.%d", ip_netif->address[ 0 ], ip_netif->address[ 1 ], ip_netif->address[ 2 ], ip_netif->address[ 3 ] );
printf( "\n -netmask=%d.%d.%d.%d", ip_netif->netmask[ 0 ], ip_netif->netmask[ 1 ], ip_netif->netmask[ 2 ], ip_netif->netmask[ 3 ] );
printf( "\n -gateway=%d.%d.%d.%d", ip_netif->gateway[ 0 ], ip_netif->gateway[ 1 ], ip_netif->gateway[ 2 ], ip_netif->gateway[ 3 ] );
printf( "\n -broadcast=%d.%d.%d.%d", ip_netif->broadcast[ 0 ], ip_netif->broadcast[ 1 ], ip_netif->broadcast[ 2 ], ip_netif->broadcast[ 3 ] );
printf( "\n -dns1=%d.%d.%d.%d", ip_netif->dns1[ 0 ], ip_netif->dns1[ 1 ], ip_netif->dns1[ 2 ], ip_netif->dns1[ 3 ] );
printf( "\n -dns2=%d.%d.%d.%d", ip_netif->dns2[ 0 ], ip_netif->dns2[ 1 ], ip_netif->dns2[ 2 ], ip_netif->dns2[ 3 ] );
// TODO arp module
free( settings );
free( data );
// end request
async_wait_for( message, NULL );
ip_netif->phone = connect_to_service( arg2 );
if( ERROR_OCCURED( async_req_2_0( ip_netif->phone, NET_LL_REGISTER, arg1, SERVICE_IP ))
|| ERROR_OCCURED( ip_netifs_add( & ip_globals.netifs, ip_netif->device_id, ip_netif ))){
free( ip_netif );
return ERROR_CODE;
}
return EOK;
case NET_IL_DEVICE_STATE_CHANGED:
case NET_LL_DEVICE_STATE_CHANGED:
// arg1 device id
// arg2 state
// TODO state
printf( "\nip - device %d changed state to %d\n", arg1, arg2 );
case NET_IP_TCP_REGISTER:
ip_globals.tcp_phone = connect_to_service( arg1 );
return EOK;
return ip_device_message( IPC_GET_DEVICE( call ), IPC_GET_SERVICE( call ));
case IPC_M_CONNECT_TO_ME:
return ip_register_message( IPC_GET_PROTO( call ), IPC_GET_PHONE( call ));
case NET_IP_SEND:
ERROR_PROPAGATE( packet_receive( & packet ));
return ip_send_message( IPC_GET_DEVICE( call ), packet );
}
return ENOTSUP;
}