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1
/*
1
/*
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 * Copyright (c) 2008 Lukas Mejdrech
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 * Copyright (c) 2008 Lukas Mejdrech
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 * All rights reserved.
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 * All rights reserved.
4
 *
4
 *
5
 * Redistribution and use in source and binary forms, with or without
5
 * Redistribution and use in source and binary forms, with or without
6
 * modification, are permitted provided that the following conditions
6
 * modification, are permitted provided that the following conditions
7
 * are met:
7
 * are met:
8
 *
8
 *
9
 * - Redistributions of source code must retain the above copyright
9
 * - Redistributions of source code must retain the above copyright
10
 *   notice, this list of conditions and the following disclaimer.
10
 *   notice, this list of conditions and the following disclaimer.
11
 * - Redistributions in binary form must reproduce the above copyright
11
 * - Redistributions in binary form must reproduce the above copyright
12
 *   notice, this list of conditions and the following disclaimer in the
12
 *   notice, this list of conditions and the following disclaimer in the
13
 *   documentation and/or other materials provided with the distribution.
13
 *   documentation and/or other materials provided with the distribution.
14
 * - The name of the author may not be used to endorse or promote products
14
 * - The name of the author may not be used to endorse or promote products
15
 *   derived from this software without specific prior written permission.
15
 *   derived from this software without specific prior written permission.
16
 *
16
 *
17
 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
17
 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
18
 * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
18
 * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
19
 * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
19
 * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
20
 * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
20
 * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
21
 * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
21
 * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
22
 * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
22
 * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
23
 * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
23
 * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
24
 * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
24
 * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
25
 * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
25
 * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
26
 * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
26
 * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
27
 */
27
 */
28
 
28
 
29
/** @addtogroup net
29
/** @addtogroup net
30
 * @{
30
 * @{
31
 */
31
 */
32
 
32
 
33
/** @file
33
/** @file
34
 */
34
 */
35
 
35
 
36
#include <async.h>
36
#include <async.h>
37
#include <ctype.h>
37
#include <ctype.h>
38
#include <errno.h>
38
#include <errno.h>
39
#include <malloc.h>
39
#include <malloc.h>
40
#include <stdio.h>
40
#include <stdio.h>
41
#include <task.h>
41
#include <task.h>
42
#include <unistd.h>
42
#include <unistd.h>
43
 
43
 
44
#include <ipc/ipc.h>
44
#include <ipc/ipc.h>
45
#include <ipc/services.h>
45
#include <ipc/services.h>
46
 
46
 
47
#include "../err.h"
47
#include "../err.h"
48
#include "../messages.h"
48
#include "../messages.h"
49
#include "../modules.h"
49
#include "../modules.h"
50
//#include "../self_test.h"
50
//#include "../self_test.h"
51
 
51
 
52
#include "../structures/char_map.h"
52
#include "../structures/char_map.h"
53
#include "../structures/generic_char_map.h"
53
#include "../structures/generic_char_map.h"
54
#include "../structures/measured_strings.h"
54
#include "../structures/measured_strings.h"
-
 
55
#include "../structures/packet/packet.h"
-
 
56
#include "../structures/packet/packet_server.h"
55
 
57
 
56
#include "../il/ip/ip_messages.h"
58
#include "../il/ip/ip_messages.h"
57
#include "../netif/device.h"
59
#include "../netif/device.h"
58
 
60
 
59
#if IP_BUNDLE
61
#if IP_BUNDLE
60
 
62
 
61
    #include "../ip/ip_module.h"
63
    #include "../ip/ip_module.h"
62
 
64
 
63
#endif
65
#endif
64
 
66
 
65
#if TCP_BUNDLE
67
#if TCP_BUNDLE
66
 
68
 
67
    #include "../tcp/tcp_module.h"
69
    #include "../tcp/tcp_module.h"
68
 
70
 
69
#endif
71
#endif
70
 
72
 
-
 
73
#define NAME    "Networking"
-
 
74
 
71
#define LO_NAME             "lo"
75
#define LO_NAME             "lo"
72
#define LO_FILENAME         "/sbin/lo"
76
#define LO_FILENAME         "/sbin/lo"
73
#define DP8390_ISA_NAME         "dp8390_isa"
77
#define DP8390_ISA_NAME         "dp8390_isa"
74
#define DP8390_ISA_FILENAME     "/sbin/dp8380_isa"
78
#define DP8390_ISA_FILENAME     "/sbin/dp8380_isa"
75
#define ETHERNET_NAME           "ethernet"
79
#define ETHERNET_NAME           "ethernet"
76
#define ETHERNET_FILENAME       "/sbin/ethernet"
80
#define ETHERNET_FILENAME       "/sbin/ethernet"
77
#define IP_NAME             "ip"
81
#define IP_NAME             "ip"
78
#define IP_FILENAME         "/sbin/ip"
82
#define IP_FILENAME         "/sbin/ip"
79
 
83
 
-
 
84
#define IPC_GET_DEVICE( call )  ( device_id_t ) IPC_GET_ARG1( * call )
-
 
85
#define IPC_GET_COUNT( call )   ( int ) IPC_GET_ARG2( * call )
-
 
86
 
80
typedef struct module_struct    module_t;
87
typedef struct module_struct    module_t;
81
typedef module_t *      module_ref;
88
typedef module_t *      module_ref;
82
 
89
 
83
typedef struct netif        netif_t;
90
typedef struct netif        netif_t;
84
typedef netif_t *       netif_ref;
91
typedef netif_t *       netif_ref;
85
 
92
 
86
typedef struct networking_globals   networking_globals_t;
93
typedef struct networking_globals   networking_globals_t;
87
 
94
 
88
DEVICE_MAP_DECLARE( netifs, netif_t )
95
DEVICE_MAP_DECLARE( netifs, netif_t )
89
 
96
 
90
GENERIC_CHAR_MAP_DECLARE( measured_strings, measured_string_t )
97
GENERIC_CHAR_MAP_DECLARE( measured_strings, measured_string_t )
91
 
98
 
92
GENERIC_CHAR_MAP_DECLARE( modules, module_t )
99
GENERIC_CHAR_MAP_DECLARE( modules, module_t )
93
 
100
 
94
struct module_struct{
101
struct module_struct{
95
    task_id_t   task_id;
102
    task_id_t   task_id;
96
    services_t  service;
103
    services_t  service;
97
    int     phone;
104
    int     phone;
98
    int     usage;
105
    int     usage;
99
    const char *    name;
106
    const char *    name;
100
    const char *    filename;
107
    const char *    filename;
101
};
108
};
102
 
109
 
103
/** A present network interface device.
110
/** A present network interface device.
104
 */
111
 */
105
struct netif{
112
struct netif{
106
    /** A system-unique network interface identifier.
113
    /** A system-unique network interface identifier.
107
     */
114
     */
108
    device_id_t     id;
115
    device_id_t     id;
109
    /** A serving network interface driver module index.
116
    /** A serving network interface driver module index.
110
     */
117
     */
111
    module_ref      driver;
118
    module_ref      driver;
112
    /** A serving link layer module index.
119
    /** A serving link layer module index.
113
     */
120
     */
114
    module_ref      nil;
121
    module_ref      nil;
115
    /** A serving internet layer module index.
122
    /** A serving internet layer module index.
116
     */
123
     */
117
    module_ref      il;
124
    module_ref      il;
118
    /** A system-unique network interface name.
125
    /** A system-unique network interface name.
119
     */
126
     */
120
    char *          name;
127
    char *          name;
121
    /** Configuration.
128
    /** Configuration.
122
     */
129
     */
123
    measured_strings_t  configuration;
130
    measured_strings_t  configuration;
124
};
131
};
125
 
132
 
126
/** A networking module global variables.
133
/** A networking module global variables.
127
 */
134
 */
128
struct networking_globals{
135
struct networking_globals{
129
    /** Present network interfaces.
136
    /** Present network interfaces.
130
     */
137
     */
131
    netifs_t        netifs;
138
    netifs_t        netifs;
132
    /** Network interface structure indices by names.
139
    /** Network interface structure indices by names.
133
     */
140
     */
134
    char_map_t      netif_names;
141
    char_map_t      netif_names;
135
    /** Available modules.
142
    /** Available modules.
136
     */
143
     */
137
    modules_t       modules;
144
    modules_t       modules;
138
    /** Global configuration.
145
    /** Global configuration.
139
     */
146
     */
140
    measured_strings_t  configuration;
147
    measured_strings_t  configuration;
141
};
148
};
142
 
149
 
-
 
150
void    networking_print_name( void );
143
int     add_module( module_ref * module, modules_ref modules, const char const * name, const char const * filename, services_t service, task_id_t task_id );
151
int     add_module( module_ref * module, modules_ref modules, const char const * name, const char const * filename, services_t service, task_id_t task_id );
144
static void client_connection( ipc_callid_t iid, ipc_call_t * icall );
152
static void client_connection( ipc_callid_t iid, ipc_call_t * icall );
145
measured_string_ref configuration_find( measured_strings_ref configuration, const char * name );
153
measured_string_ref configuration_find( measured_strings_ref configuration, const char * name );
146
int     main( int argc, char * argv[] );
154
int networking_start_module( async_client_conn_t client_connection );
147
int     networking_initialize( void );
155
int     networking_initialize( void );
148
int     networking_message( ipcarg_t method, ipcarg_t arg1, ipcarg_t arg2, ipcarg_t arg3, ipcarg_t * result1, ipcarg_t * result2, ipcarg_t * result3 );
156
int networking_message( ipc_callid_t callid, ipc_call_t * call, ipc_call_t * answer, int * answer_count );
-
 
157
int net_message( ipc_callid_t callid, ipc_call_t * call, ipc_call_t * answer, int * answer_count );
149
//int       parse_line( measured_strings_ref configuration, char * line );
158
//int       parse_line( measured_strings_ref configuration, char * line );
150
int     add_configuration( measured_strings_ref configuration, const char * name, const char * value );
159
int     add_configuration( measured_strings_ref configuration, const char * name, const char * value );
151
int     read_configuration( void );
160
int     read_configuration( void );
152
task_id_t   spawn( const char * fname );
161
task_id_t   spawn( const char * fname );
153
int     startup( void );
162
int     startup( void );
154
device_id_t generate_new_device_id( void );
163
device_id_t generate_new_device_id( void );
155
 
164
 
156
static networking_globals_t networking_globals;
165
static networking_globals_t networking_globals;
157
 
166
 
158
DEVICE_MAP_IMPLEMENT( netifs, netif_t )
167
DEVICE_MAP_IMPLEMENT( netifs, netif_t )
159
 
168
 
160
GENERIC_CHAR_MAP_IMPLEMENT( measured_strings, measured_string_t )
169
GENERIC_CHAR_MAP_IMPLEMENT( measured_strings, measured_string_t )
161
 
170
 
162
GENERIC_CHAR_MAP_IMPLEMENT( modules, module_t )
171
GENERIC_CHAR_MAP_IMPLEMENT( modules, module_t )
163
 
172
 
-
 
173
void networking_print_name( void ){
-
 
174
    printf( NAME );
-
 
175
}
-
 
176
 
164
int add_module( module_ref * module, modules_ref modules, const char * name, const char * filename, services_t service, task_id_t task_id ){
177
int add_module( module_ref * module, modules_ref modules, const char * name, const char * filename, services_t service, task_id_t task_id ){
165
    ERROR_DECLARE;
178
    ERROR_DECLARE;
166
 
179
 
167
    module_ref  tmp_module;
180
    module_ref  tmp_module;
168
 
181
 
169
    tmp_module = ( module_ref ) malloc( sizeof( module_t ));
182
    tmp_module = ( module_ref ) malloc( sizeof( module_t ));
170
    if( ! tmp_module ) return ENOMEM;
183
    if( ! tmp_module ) return ENOMEM;
171
    tmp_module->task_id = task_id;
184
    tmp_module->task_id = task_id;
172
    tmp_module->phone = 0;
185
    tmp_module->phone = 0;
173
    tmp_module->usage = 0;
186
    tmp_module->usage = 0;
174
    tmp_module->name = name;
187
    tmp_module->name = name;
175
    tmp_module->filename = filename;
188
    tmp_module->filename = filename;
176
    tmp_module->service = service;
189
    tmp_module->service = service;
177
    if( ERROR_OCCURED( modules_add( modules, tmp_module->name, 0, tmp_module ))){
190
    if( ERROR_OCCURED( modules_add( modules, tmp_module->name, 0, tmp_module ))){
178
        free( tmp_module );
191
        free( tmp_module );
179
        return ERROR_CODE;
192
        return ERROR_CODE;
180
    }
193
    }
181
    if( module ) * module = tmp_module;
194
    if( module ) * module = tmp_module;
182
    return EOK;
195
    return EOK;
183
}
196
}
184
 
197
 
185
static void client_connection( ipc_callid_t iid, ipc_call_t * icall ){
198
int networking_message( ipc_callid_t callid, ipc_call_t * call, ipc_call_t * answer, int * answer_count ){
186
    ipc_callid_t    callid;
-
 
187
    ipc_call_t  call;
-
 
188
    ipcarg_t    arg1, arg2, arg3;
-
 
189
    int     res;
-
 
190
 
-
 
191
    /*
-
 
192
     * Accept the connection
-
 
193
     *  - Answer the first IPC_M_CONNECT_ME_TO call.
-
 
194
     */
-
 
195
//  printf( "\nNET-%d got %d on %x from %x", fibril_get_id(), IPC_GET_METHOD( * icall ), icall->in_phone_hash, iid );
-
 
196
    ipc_answer_0( iid, EOK );
-
 
197
 
-
 
198
    while( true ){
-
 
199
        callid = async_get_call( & call );
-
 
200
        arg1 = 0;
-
 
201
        arg2 = 0;
-
 
202
        arg3 = 0;
-
 
203
//      printf( "\nNET-%d got %d on %x from %x", fibril_get_id(), IPC_GET_METHOD( call ), call.in_phone_hash, callid );
-
 
204
#ifdef NETWORKING_module
199
#ifdef NETWORKING_module
-
 
200
        //TODO map to *_message
205
        if( IS_NET_IL_MESSAGE( call ) || IS_NET_IP_MESSAGE( call )){
201
        if( IS_NET_IL_MESSAGE( call ) || IS_NET_IP_MESSAGE( call )){
206
            res = ip_message( IPC_GET_METHOD( call ), IPC_GET_ARG1( call ), IPC_GET_ARG2( call ), IPC_GET_ARG3( call ), & arg1, & arg2, & arg3 );
202
            return ip_message( callid, call, answer, answer_count );
207
/*      }else if( IS_NET_ARP_MESSAGE( call )){
203
/*      }else if( IS_NET_ARP_MESSAGE( call )){
208
            res = arp_message( IPC_GET_METHOD( call ), IPC_GET_ARG1( call ), IPC_GET_ARG2( call ), IPC_GET_ARG3( call ), & arg1, & arg2, & arg3 );
204
            return arp_message( callid, call, answer, answer_count );
209
*//*        }else if( IS_NET_RARP_MESSAGE( call )){
205
*//*        }else if( IS_NET_RARP_MESSAGE( call )){
210
            res = rarp_message( IPC_GET_METHOD( call ), IPC_GET_ARG1( call ), IPC_GET_ARG2( call ), IPC_GET_ARG3( call ), & arg1, & arg2, & arg3 );
206
            return rarp_message( callid, call, answer, answer_count );
211
*//*        }else if( IS_NET_ICMP_MESSAGE( call )){
207
*//*        }else if( IS_NET_ICMP_MESSAGE( call )){
212
            res = icmp_message( IPC_GET_METHOD( call ), IPC_GET_ARG1( call ), IPC_GET_ARG2( call ), IPC_GET_ARG3( call ), & arg1, & arg2, & arg3 );
208
            return icmp_message( callid, call, answer, answer_count );
213
*//*        }else if( IS_NET_UDP_MESSAGE( call )){
209
*//*        }else if( IS_NET_UDP_MESSAGE( call )){
214
            res = udp_message( IPC_GET_METHOD( call ), IPC_GET_ARG1( call ), IPC_GET_ARG2( call ), IPC_GET_ARG3( call ), & arg1, & arg2, & arg3 );
210
            return udp_message( callid, call, answer, answer_count );
215
*/      }else if( IS_NET_TCP_MESSAGE( call )){
211
*/      }else if( IS_NET_TCP_MESSAGE( call )){
216
            res = tcp_message( IPC_GET_METHOD( call ), IPC_GET_ARG1( call ), IPC_GET_ARG2( call ), IPC_GET_ARG3( call ), & arg1, & arg2, & arg3 );
212
            return tcp_message( callid, call, answer, answer_count );
217
/*      }else if( IS_NET_SOCKET_MESSAGE( call )){
213
/*      }else if( IS_NET_SOCKET_MESSAGE( call )){
218
            res = socket_message( IPC_GET_METHOD( call ), IPC_GET_ARG1( call ), IPC_GET_ARG2( call ), IPC_GET_ARG3( call ), & arg1, & arg2, & arg3 );
214
            return socket_message( callid, call, answer, answer_count );
219
*//*        }else if( IS_NET_NIL_MESSAGE( call ) || IS_NET_ETHERNET_MESSAGE( call )){
215
*//*        }else if( IS_NET_NIL_MESSAGE( call ) || IS_NET_ETHERNET_MESSAGE( call )){
220
            res = ethernet_message( IPC_GET_METHOD( call ), IPC_GET_ARG1( call ), IPC_GET_ARG2( call ), IPC_GET_ARG3( call ), & arg1, & arg2, & arg3 );
216
            return ethernet_message( callid, call, answer, answer_count );
221
*/      }else{
217
*/      }else{
222
#endif
218
#endif
-
 
219
            if( IS_NET_PACKET_MESSAGE( call )){
223
            res = networking_message( IPC_GET_METHOD( call ), IPC_GET_ARG1( call ), IPC_GET_ARG2( call ), IPC_GET_ARG3( call ), & arg1, & arg2, & arg3 );
220
                return packet_server_message( callid, call, answer, answer_count );
-
 
221
            }else{
-
 
222
                return net_message( callid, call, answer, answer_count );
-
 
223
            }
224
#ifdef NETWORKING_module
224
#ifdef NETWORKING_module
225
        }
225
        }
226
#endif
226
#endif
227
        ipc_answer_2( callid, res, arg1, arg2 );
-
 
228
    }
-
 
229
}
227
}
230
 
228
 
231
int main( int argc, char * argv[] ){
229
int networking_start_module( async_client_conn_t client_connection ){
232
    ERROR_DECLARE;
230
    ERROR_DECLARE;
233
 
231
 
234
    ipcarg_t    phonehash;
232
    ipcarg_t    phonehash;
235
 
233
 
236
    printf("\nTask %d - HelenOS Networking subsystem", task_get_id());
-
 
237
 
-
 
238
    async_set_client_connection( client_connection );
234
    async_set_client_connection( client_connection );
239
    ERROR_PROPAGATE( networking_initialize());
235
    ERROR_PROPAGATE( networking_initialize());
240
    ERROR_PROPAGATE( REGISTER_ME( SERVICE_NETWORKING, & phonehash ));
236
    ERROR_PROPAGATE( REGISTER_ME( SERVICE_NETWORKING, & phonehash ));
241
 
-
 
-
 
237
    ERROR_PROPAGATE( pm_init());
242
    async_manager();
238
    async_manager();
243
 
239
 
244
    return EOK;
240
    return EOK;
245
}
241
}
246
 
242
 
247
int networking_initialize( void ){
243
int networking_initialize( void ){
248
    ERROR_DECLARE;
244
    ERROR_DECLARE;
249
 
245
 
250
    task_id_t   task_id;
246
    task_id_t   task_id;
251
 
247
 
252
    netifs_initialize( & networking_globals.netifs );
248
    netifs_initialize( & networking_globals.netifs );
253
    char_map_initialize( & networking_globals.netif_names );
249
    char_map_initialize( & networking_globals.netif_names );
254
    modules_initialize( & networking_globals.modules );
250
    modules_initialize( & networking_globals.modules );
255
    measured_strings_initialize( & networking_globals.configuration );
251
    measured_strings_initialize( & networking_globals.configuration );
256
 
252
 
257
    // run self tests
253
    // run self tests
258
//  ERROR_PROPAGATE( self_test());
254
//  ERROR_PROPAGATE( self_test());
259
 
255
 
260
    ERROR_PROPAGATE( add_module( NULL, & networking_globals.modules, LO_NAME, LO_FILENAME, SERVICE_LO, 0 ));
256
    ERROR_PROPAGATE( add_module( NULL, & networking_globals.modules, LO_NAME, LO_FILENAME, SERVICE_LO, 0 ));
261
    ERROR_PROPAGATE( add_module( NULL, & networking_globals.modules, DP8390_ISA_NAME, DP8390_ISA_FILENAME, SERVICE_DP8390_ISA, 0 ));
257
    ERROR_PROPAGATE( add_module( NULL, & networking_globals.modules, DP8390_ISA_NAME, DP8390_ISA_FILENAME, SERVICE_DP8390_ISA, 0 ));
262
    ERROR_PROPAGATE( add_module( NULL, & networking_globals.modules, ETHERNET_NAME, ETHERNET_FILENAME, SERVICE_ETHERNET, 0 ));
258
    ERROR_PROPAGATE( add_module( NULL, & networking_globals.modules, ETHERNET_NAME, ETHERNET_FILENAME, SERVICE_ETHERNET, 0 ));
263
 
259
 
264
#ifdef NETWORKING_modular
260
#ifdef NETWORKING_modular
265
    task_id = spawn( "/sbin/ip" );
261
    task_id = spawn( "/sbin/ip" );
266
    if( ! task_id ) return EINVAL;
262
    if( ! task_id ) return EINVAL;
267
    ERROR_PROPAGATE( add_module( NULL, & networking_globals.modules, IP_NAME, IP_FILENAME, SERVICE_IP, task_id ));
263
    ERROR_PROPAGATE( add_module( NULL, & networking_globals.modules, IP_NAME, IP_FILENAME, SERVICE_IP, task_id ));
268
//  if( ! spawn( "/sbin/udp" )) return EINVAL;
264
//  if( ! spawn( "/sbin/udp" )) return EINVAL;
269
    if( ! spawn( "/sbin/tcp" )) return EINVAL;
265
    if( ! spawn( "/sbin/tcp" )) return EINVAL;
270
//  if( ! spawn( "/sbin/socket" )) return EINVAL;
266
//  if( ! spawn( "/sbin/socket" )) return EINVAL;
271
//  not always necesssary
267
//  not always necesssary
272
//  if( ! spawn( "/sbin/arp" )) return EINVAL;
268
//  if( ! spawn( "/sbin/arp" )) return EINVAL;
273
//  if( ! spawn( "/sbin/rarp" )) return EINVAL;
269
//  if( ! spawn( "/sbin/rarp" )) return EINVAL;
274
//  if( ! spawn( "/sbin/icmp" )) return EINVAL;
270
//  if( ! spawn( "/sbin/icmp" )) return EINVAL;
275
 
271
 
276
#else
272
#else
277
#ifdef NETWORKING_module
273
#ifdef NETWORKING_module
278
    ipcarg_t    phonehash;
274
    ipcarg_t    phonehash;
279
 
275
 
280
    ERROR_PROPAGATE( REGISTER_ME( SERVICE_IP, & phonehash ));
276
    ERROR_PROPAGATE( REGISTER_ME( SERVICE_IP, & phonehash ));
281
    ERROR_PROPAGATE( add_module( NULL, & networking_globals.modules, IP_NAME, IP_FILENAME, SERVICE_IP, task_get_id()));
277
    ERROR_PROPAGATE( add_module( NULL, & networking_globals.modules, IP_NAME, IP_FILENAME, SERVICE_IP, task_get_id()));
282
    ERROR_PROPAGATE( ip_initialize());
278
    ERROR_PROPAGATE( ip_initialize());
283
//  ERROR_PROPAGATE( REGISTER_ME( SERVICE_ARP, & phonehash ));
279
//  ERROR_PROPAGATE( REGISTER_ME( SERVICE_ARP, & phonehash ));
284
//  ERROR_PROPAGATE( arp_initialize());
280
//  ERROR_PROPAGATE( arp_initialize());
285
//  ERROR_PROPAGATE( REGISTER_ME( SERVICE_RARP, & phonehash ));
281
//  ERROR_PROPAGATE( REGISTER_ME( SERVICE_RARP, & phonehash ));
286
//  ERROR_PROPAGATE( rarp_initialize());
282
//  ERROR_PROPAGATE( rarp_initialize());
287
//  ERROR_PROPAGATE( REGISTER_ME( SERVICE_ICMP, & phonehash ));
283
//  ERROR_PROPAGATE( REGISTER_ME( SERVICE_ICMP, & phonehash ));
288
//  ERROR_PROPAGATE( icmp_initialize());
284
//  ERROR_PROPAGATE( icmp_initialize());
289
//  ERROR_PROPAGATE( REGISTER_ME( SERVICE_UDP, & phonehash ));
285
//  ERROR_PROPAGATE( REGISTER_ME( SERVICE_UDP, & phonehash ));
290
//  ERROR_PROPAGATE( udp_initialize());
286
//  ERROR_PROPAGATE( udp_initialize());
291
    ERROR_PROPAGATE( REGISTER_ME( SERVICE_TCP, & phonehash ));
287
    ERROR_PROPAGATE( REGISTER_ME( SERVICE_TCP, & phonehash ));
292
    ERROR_PROPAGATE( tcp_initialize());
288
    ERROR_PROPAGATE( tcp_initialize());
293
//  ERROR_PROPAGATE( REGISTER_ME( SERVICE_SOCKET, & phonehash ));
289
//  ERROR_PROPAGATE( REGISTER_ME( SERVICE_SOCKET, & phonehash ));
294
//  ERROR_PROPAGATE( socket_initialize());
290
//  ERROR_PROPAGATE( socket_initialize());
295
//  ERROR_PROPAGATE( REGISTER_ME( SERVICE_ETHERNET, & phonehash ));
291
//  ERROR_PROPAGATE( REGISTER_ME( SERVICE_ETHERNET, & phonehash ));
296
//  ERROR_PROPAGATE( ethernet_initialize());
292
//  ERROR_PROPAGATE( ethernet_initialize());
297
#endif
293
#endif
298
#endif
294
#endif
299
 
295
 
300
    return EOK;
296
    return EOK;
301
}
297
}
302
 
298
 
-
 
299
//TODO as ip.c
303
int networking_message( ipcarg_t method, ipcarg_t arg1, ipcarg_t arg2, ipcarg_t arg3, ipcarg_t * result1, ipcarg_t * result2, ipcarg_t * result3 ){
300
int net_message( ipc_callid_t callid, ipc_call_t * call, ipc_call_t * answer, int * answer_count ){
304
    ERROR_DECLARE;
301
    ERROR_DECLARE;
305
 
302
 
306
    measured_string_ref strings;
303
    measured_string_ref strings;
307
    char *          data;
304
    char *          data;
308
    int         index;
305
    int         index;
309
    measured_string_ref setting;
306
    measured_string_ref setting;
310
    measured_strings_ref    configuration;
307
    measured_strings_ref    configuration;
311
    netif_ref       netif;
308
    netif_ref       netif;
312
 
309
 
-
 
310
    * answer_count = 0;
313
    switch( method ){
311
    switch( IPC_GET_METHOD( * call )){
314
        case IPC_M_PHONE_HUNGUP:
312
        case IPC_M_PHONE_HUNGUP:
315
            return EOK;
313
            return EOK;
316
        case NET_NET_DEVICE:
314
        case NET_NET_DEVICE:
317
            // TODO configure, register
315
            // TODO configure, register
318
            // arg1 = netif id
-
 
319
            printf( "\nNetworking: new netif %d", arg1 );
316
            printf( "\nNetworking: new netif %d", IPC_GET_DEVICE( call ));
320
            return EOK;
317
            return EOK;
321
        case NET_NET_GET_DEVICE_CONF:
318
        case NET_NET_GET_DEVICE_CONF:
322
            // arg1 = netif id
-
 
323
            // arg2 = count
-
 
324
            ERROR_PROPAGATE( measured_strings_receive( & strings, & data, arg2 ));
319
            ERROR_PROPAGATE( measured_strings_receive( & strings, & data, IPC_GET_COUNT( call )));
325
            netif = netifs_find( & networking_globals.netifs, arg1 );
320
            netif = netifs_find( & networking_globals.netifs, IPC_GET_DEVICE( call ));
326
            if( netif ){
321
            if( netif ){
327
                configuration = & netif->configuration;
322
                configuration = & netif->configuration;
328
            }else{
323
            }else{
329
                configuration = NULL;
324
                configuration = NULL;
330
            }
325
            }
331
            for( index = 0; index < arg2; ++ index ){
326
            for( index = 0; index < IPC_GET_COUNT( call ); ++ index ){
332
                setting = measured_strings_find( configuration, strings[ index ].value, 0 );
327
                setting = measured_strings_find( configuration, strings[ index ].value, 0 );
333
                if( ! setting ){
328
                if( ! setting ){
334
                    setting = measured_strings_find( & networking_globals.configuration, strings[ index ].value, 0 );
329
                    setting = measured_strings_find( & networking_globals.configuration, strings[ index ].value, 0 );
335
                }
330
                }
336
                if( setting ){
331
                if( setting ){
337
                    strings[ index ].length = setting->length;
332
                    strings[ index ].length = setting->length;
338
                    strings[ index ].value = setting->value;
333
                    strings[ index ].value = setting->value;
339
                }else{
334
                }else{
340
                    strings[ index ].length = 0;
335
                    strings[ index ].length = 0;
341
                    strings[ index ].value = NULL;
336
                    strings[ index ].value = NULL;
342
                }
337
                }
343
            }
338
            }
344
            // strings should not contain received data anymore
339
            // strings should not contain received data anymore
345
            free( data );
340
            free( data );
346
            ERROR_CODE = measured_strings_reply( strings, arg2 );
341
            ERROR_CODE = measured_strings_reply( strings, IPC_GET_COUNT( call ));
347
            free( strings );
342
            free( strings );
348
            return ERROR_CODE;
343
            return ERROR_CODE;
349
        case NET_NET_GET_CONF:
344
        case NET_NET_GET_CONF:
350
            // arg1 = count
345
            // arg1 = count
351
            ERROR_PROPAGATE( measured_strings_receive( & strings, & data, arg1 ));
346
            ERROR_PROPAGATE( measured_strings_receive( & strings, & data, IPC_GET_COUNT( call )));
352
            for( index = 0; index < arg1; ++ index ){
347
            for( index = 0; index < IPC_GET_COUNT( call ); ++ index ){
353
                setting = measured_strings_find( & networking_globals.configuration, strings[ index ].value, 0 );
348
                setting = measured_strings_find( & networking_globals.configuration, strings[ index ].value, 0 );
354
                if( setting ){
349
                if( setting ){
355
                    strings[ index ].length = setting->length;
350
                    strings[ index ].length = setting->length;
356
                    strings[ index ].value = setting->value;
351
                    strings[ index ].value = setting->value;
357
                }else{
352
                }else{
358
                    strings[ index ].length = 0;
353
                    strings[ index ].length = 0;
359
                    strings[ index ].value = NULL;
354
                    strings[ index ].value = NULL;
360
                }
355
                }
361
            }
356
            }
362
            // strings should not contain received data anymore
357
            // strings should not contain received data anymore
363
            free( data );
358
            free( data );
364
            ERROR_CODE = measured_strings_reply( strings, arg1 );
359
            ERROR_CODE = measured_strings_reply( strings, IPC_GET_COUNT( call ));
365
            free( strings );
360
            free( strings );
366
            return ERROR_CODE;
361
            return ERROR_CODE;
367
        case NET_NET_STARTUP:
362
        case NET_NET_STARTUP:
368
            return startup();
363
            return startup();
369
    }
364
    }
370
    return ENOTSUP;
365
    return ENOTSUP;
371
}
366
}
372
 
367
 
373
/*
368
/*
374
int parse_line( measured_strings_ref configuration, char * line ){
369
int parse_line( measured_strings_ref configuration, char * line ){
375
    ERROR_DECLARE;
370
    ERROR_DECLARE;
376
 
371
 
377
    measured_string_ref setting;
372
    measured_string_ref setting;
378
    char *          name;
373
    char *          name;
379
    char *          value;
374
    char *          value;
380
 
375
 
381
    // from the beginning
376
    // from the beginning
382
    name = line;
377
    name = line;
383
    // skip spaces
378
    // skip spaces
384
    while( isspace( * name )) ++ name;
379
    while( isspace( * name )) ++ name;
385
    // remember the name start
380
    // remember the name start
386
    value = name;
381
    value = name;
387
    // skip the name
382
    // skip the name
388
    while( isalnum( * value ) || ( * value == '_' )){
383
    while( isalnum( * value ) || ( * value == '_' )){
389
        // make uppercase
384
        // make uppercase
390
//      * value = toupper( * value );
385
//      * value = toupper( * value );
391
        ++ value;
386
        ++ value;
392
    }
387
    }
393
    if( * value == '=' ){
388
    if( * value == '=' ){
394
        // terminate the name
389
        // terminate the name
395
        * value = '\0';
390
        * value = '\0';
396
    }else{
391
    }else{
397
        // terminate the name
392
        // terminate the name
398
        * value = '\0';
393
        * value = '\0';
399
        // skip until '='
394
        // skip until '='
400
        ++ value;
395
        ++ value;
401
        while(( * value ) && ( * value != '=' )) ++ value;
396
        while(( * value ) && ( * value != '=' )) ++ value;
402
        // not found?
397
        // not found?
403
        if( * value != '=' ) return EINVAL;
398
        if( * value != '=' ) return EINVAL;
404
    }
399
    }
405
    ++ value;
400
    ++ value;
406
    // skip spaces
401
    // skip spaces
407
    while( isspace( * value )) ++ value;
402
    while( isspace( * value )) ++ value;
408
    // create a bulk measured string till the end
403
    // create a bulk measured string till the end
409
    setting = measured_string_create_bulk( value, -1 );
404
    setting = measured_string_create_bulk( value, -1 );
410
    if( ! setting ) return ENOMEM;
405
    if( ! setting ) return ENOMEM;
411
    // add the configuration setting
406
    // add the configuration setting
412
    if( ERROR_OCCURED( measured_strings_add( configuration, name, 0, setting ))){
407
    if( ERROR_OCCURED( measured_strings_add( configuration, name, 0, setting ))){
413
        free( setting );
408
        free( setting );
414
        return ERROR_CODE;
409
        return ERROR_CODE;
415
    }
410
    }
416
    return EOK;
411
    return EOK;
417
}
412
}
418
*/
413
*/
419
 
414
 
420
int add_configuration( measured_strings_ref configuration, const char * name, const char * value ){
415
int add_configuration( measured_strings_ref configuration, const char * name, const char * value ){
421
    ERROR_DECLARE;
416
    ERROR_DECLARE;
422
 
417
 
423
    measured_string_ref setting;
418
    measured_string_ref setting;
424
 
419
 
425
    setting = measured_string_create_bulk( value, 0 );
420
    setting = measured_string_create_bulk( value, 0 );
426
    if( ! setting ) return ENOMEM;
421
    if( ! setting ) return ENOMEM;
427
    // add the configuration setting
422
    // add the configuration setting
428
    if( ERROR_OCCURED( measured_strings_add( configuration, name, 0, setting ))){
423
    if( ERROR_OCCURED( measured_strings_add( configuration, name, 0, setting ))){
429
        free( setting );
424
        free( setting );
430
        return ERROR_CODE;
425
        return ERROR_CODE;
431
    }
426
    }
432
    return EOK;
427
    return EOK;
433
}
428
}
434
 
429
 
435
device_id_t generate_new_device_id( void ){
430
device_id_t generate_new_device_id( void ){
436
    return netifs_count( & networking_globals.netifs ) + 1;
431
    return netifs_count( & networking_globals.netifs ) + 1;
437
}
432
}
438
 
433
 
439
int read_configuration( void ){
434
int read_configuration( void ){
440
    ERROR_DECLARE;
435
    ERROR_DECLARE;
441
 
436
 
442
    netif_ref       netif;
437
    netif_ref       netif;
443
    measured_string_ref setting;
438
    measured_string_ref setting;
444
    services_t      internet_service;
439
    services_t      internet_service;
445
    int         index;
440
    int         index;
446
 
441
 
447
    // read general configuration
442
    // read general configuration
448
    ERROR_PROPAGATE( add_configuration( & networking_globals.configuration, "IPV", "4" ));
443
    ERROR_PROPAGATE( add_configuration( & networking_globals.configuration, "IPV", "4" ));
449
 
444
 
450
    // read network interfaces configuration
445
    // read network interfaces configuration
451
 
446
 
452
    // static loopback initialization
447
    // static loopback initialization
453
//  printf( "\nloopback initialization" );
448
//  printf( "\nloopback initialization" );
454
    netif = ( netif_ref ) malloc( sizeof( netif_t ));
449
    netif = ( netif_ref ) malloc( sizeof( netif_t ));
455
    if( ! netif ) return ENOMEM;
450
    if( ! netif ) return ENOMEM;
456
    netif->id = generate_new_device_id();
451
    netif->id = generate_new_device_id();
457
    ERROR_PROPAGATE( measured_strings_initialize( & netif->configuration ));
452
    ERROR_PROPAGATE( measured_strings_initialize( & netif->configuration ));
458
    if( ERROR_OCCURED( add_configuration( & netif->configuration, "NAME", LO_NAME ))
453
    if( ERROR_OCCURED( add_configuration( & netif->configuration, "NAME", LO_NAME ))
459
    || ERROR_OCCURED( add_configuration( & netif->configuration, "NETIF", LO_NAME ))
454
    || ERROR_OCCURED( add_configuration( & netif->configuration, "NETIF", LO_NAME ))
460
    || ERROR_OCCURED( add_configuration( & netif->configuration, "IL", IP_NAME ))
455
    || ERROR_OCCURED( add_configuration( & netif->configuration, "IL", IP_NAME ))
461
    || ERROR_OCCURED( add_configuration( & netif->configuration, "MTU", "1500" ))
456
    || ERROR_OCCURED( add_configuration( & netif->configuration, "MTU", "1500" ))
462
    || ERROR_OCCURED( add_configuration( & netif->configuration, "IP_CONFIG", "STATIC" ))
457
    || ERROR_OCCURED( add_configuration( & netif->configuration, "IP_CONFIG", "STATIC" ))
463
    || ERROR_OCCURED( add_configuration( & netif->configuration, "IP_ADDR", "127.0.0.1" ))
458
    || ERROR_OCCURED( add_configuration( & netif->configuration, "IP_ADDR", "127.0.0.1" ))
464
    || ERROR_OCCURED( add_configuration( & netif->configuration, "NETMASK", "255.0.0.0" ))){
459
    || ERROR_OCCURED( add_configuration( & netif->configuration, "NETMASK", "255.0.0.0" ))){
465
        measured_strings_destroy( & netif->configuration );
460
        measured_strings_destroy( & netif->configuration );
466
        free( netif );
461
        free( netif );
467
        return ERROR_CODE;
462
        return ERROR_CODE;
468
    }
463
    }
469
    // mandatory name
464
    // mandatory name
470
//  printf( "\n\tname" );
465
//  printf( "\n\tname" );
471
    setting = measured_strings_find( & netif->configuration, "NAME", 0 );
466
    setting = measured_strings_find( & netif->configuration, "NAME", 0 );
472
    if( ! setting ){
467
    if( ! setting ){
473
        measured_strings_destroy( & netif->configuration );
468
        measured_strings_destroy( & netif->configuration );
474
        free( netif );
469
        free( netif );
475
        return EINVAL;
470
        return EINVAL;
476
    }
471
    }
477
    netif->name = setting->value;
472
    netif->name = setting->value;
478
//  printf( " %s OK", netif->name );
473
//  printf( " %s OK", netif->name );
479
    // mandatory netif
474
    // mandatory netif
480
//  printf( "\n\tnetif" );
475
//  printf( "\n\tnetif" );
481
    setting = measured_strings_find( & netif->configuration, "NETIF", 0 );
476
    setting = measured_strings_find( & netif->configuration, "NETIF", 0 );
482
    if( ! setting ){
477
    if( ! setting ){
483
//      printf( " unknown" );
478
//      printf( " unknown" );
484
        measured_strings_destroy( & netif->configuration );
479
        measured_strings_destroy( & netif->configuration );
485
        free( netif );
480
        free( netif );
486
        return EINVAL;
481
        return EINVAL;
487
    }
482
    }
488
//  printf( " find %s in %d?", setting->value, modules_count( & networking_globals.modules ));
483
//  printf( " find %s in %d?", setting->value, modules_count( & networking_globals.modules ));
489
    netif->driver = modules_find( & networking_globals.modules, setting->value, 0 );
484
    netif->driver = modules_find( & networking_globals.modules, setting->value, 0 );
490
    if( ! netif->driver ){
485
    if( ! netif->driver ){
491
//      printf( " not found" );
486
//      printf( " not found" );
492
        // TODO register the unknown one
487
        // TODO register the unknown one
493
        measured_strings_destroy( & netif->configuration );
488
        measured_strings_destroy( & netif->configuration );
494
        free( netif );
489
        free( netif );
495
        return EINVAL;
490
        return EINVAL;
496
    }
491
    }
497
//  printf( " found" );
492
//  printf( " found" );
498
    if( ! netif->driver->task_id ){
493
    if( ! netif->driver->task_id ){
499
        netif->driver->task_id = spawn( netif->driver->filename );
494
        netif->driver->task_id = spawn( netif->driver->filename );
500
        if( ! netif->driver->task_id ){
495
        if( ! netif->driver->task_id ){
501
            measured_strings_destroy( & netif->configuration );
496
            measured_strings_destroy( & netif->configuration );
502
            free( netif );
497
            free( netif );
503
            return EINVAL;
498
            return EINVAL;
504
        }
499
        }
505
    }
500
    }
506
//  printf( " OK" );
501
//  printf( " OK" );
507
    // optional link layer
502
    // optional link layer
508
//  printf( "\n\tlink layer" );
503
//  printf( "\n\tlink layer" );
509
    setting = measured_strings_find( & netif->configuration, "NIL", 0 );
504
    setting = measured_strings_find( & netif->configuration, "NIL", 0 );
510
    if( setting ){
505
    if( setting ){
511
        netif->nil = modules_find( & networking_globals.modules, setting->value, 0 );
506
        netif->nil = modules_find( & networking_globals.modules, setting->value, 0 );
512
        if( ! netif->nil ){
507
        if( ! netif->nil ){
513
            // TODO register the unknown one
508
            // TODO register the unknown one
514
            -- netif->driver->usage;
509
            -- netif->driver->usage;
515
            measured_strings_destroy( & netif->configuration );
510
            measured_strings_destroy( & netif->configuration );
516
            free( netif );
511
            free( netif );
517
            return EINVAL;
512
            return EINVAL;
518
        }
513
        }
519
        if( ! netif->nil->task_id ){
514
        if( ! netif->nil->task_id ){
520
            netif->nil->task_id = spawn( netif->nil->filename );
515
            netif->nil->task_id = spawn( netif->nil->filename );
521
            if( ! netif->nil->task_id ){
516
            if( ! netif->nil->task_id ){
522
                -- netif->driver->usage;
517
                -- netif->driver->usage;
523
                measured_strings_destroy( & netif->configuration );
518
                measured_strings_destroy( & netif->configuration );
524
                free( netif );
519
                free( netif );
525
                return EINVAL;
520
                return EINVAL;
526
            }
521
            }
527
        }
522
        }
528
    }else{
523
    }else{
529
        netif->nil = NULL;
524
        netif->nil = NULL;
530
    }
525
    }
531
    // mandatory internet layer
526
    // mandatory internet layer
532
//  printf( "\n\tinternet layer" );
527
//  printf( "\n\tinternet layer" );
533
    setting = measured_strings_find( & netif->configuration, "IL", 0 );
528
    setting = measured_strings_find( & netif->configuration, "IL", 0 );
534
    if( ! setting ){
529
    if( ! setting ){
535
        -- netif->driver->usage;
530
        -- netif->driver->usage;
536
        -- netif->nil->usage;
531
        -- netif->nil->usage;
537
        measured_strings_destroy( & netif->configuration );
532
        measured_strings_destroy( & netif->configuration );
538
        free( netif );
533
        free( netif );
539
        return EINVAL;
534
        return EINVAL;
540
    }
535
    }
541
//  printf( " set %s", setting->value );
536
//  printf( " set %s", setting->value );
542
    netif->il = modules_find( & networking_globals.modules, setting->value, 0 );
537
    netif->il = modules_find( & networking_globals.modules, setting->value, 0 );
543
    if( ! netif->il ){
538
    if( ! netif->il ){
544
        // TODO register the unknown one
539
        // TODO register the unknown one
545
        -- netif->driver->usage;
540
        -- netif->driver->usage;
546
        -- netif->nil->usage;
541
        -- netif->nil->usage;
547
        measured_strings_destroy( & netif->configuration );
542
        measured_strings_destroy( & netif->configuration );
548
        free( netif );
543
        free( netif );
549
        return EINVAL;
544
        return EINVAL;
550
    }
545
    }
551
//  printf( " found" );
546
//  printf( " found" );
552
    if( ! netif->il->task_id ){
547
    if( ! netif->il->task_id ){
553
        netif->il->task_id = spawn( netif->il->filename );
548
        netif->il->task_id = spawn( netif->il->filename );
554
        if( ! netif->il->task_id ){
549
        if( ! netif->il->task_id ){
555
            -- netif->driver->usage;
550
            -- netif->driver->usage;
556
            -- netif->nil->usage;
551
            -- netif->nil->usage;
557
            measured_strings_destroy( & netif->configuration );
552
            measured_strings_destroy( & netif->configuration );
558
            free( netif );
553
            free( netif );
559
            return EINVAL;
554
            return EINVAL;
560
        }
555
        }
561
    }
556
    }
562
    index = netifs_add( & networking_globals.netifs, netif->id, netif );
557
    index = netifs_add( & networking_globals.netifs, netif->id, netif );
563
    if( index < 0 ){
558
    if( index < 0 ){
564
        free( netif );
559
        free( netif );
565
        return ERROR_CODE;
560
        return ERROR_CODE;
566
    }
561
    }
567
    if( ERROR_OCCURED( char_map_add( & networking_globals.netif_names, netif->name, 0, index ))){
562
    if( ERROR_OCCURED( char_map_add( & networking_globals.netif_names, netif->name, 0, index ))){
568
        netifs_exclude_index( & networking_globals.netifs, index );
563
        netifs_exclude_index( & networking_globals.netifs, index );
569
        return ERROR_CODE;
564
        return ERROR_CODE;
570
    }
565
    }
571
//  printf( "\nloopback OK" );
566
//  printf( "\nloopback OK" );
572
    // end of the static loopback initialization
567
    // end of the static loopback initialization
573
    // startup the loopback interface
568
    // startup the loopback interface
574
    if( ! netif->driver->phone ){
569
    if( ! netif->driver->phone ){
575
//      printf( " connect?" );
570
//      printf( " connect?" );
576
        netif->driver->phone = connect_to_service( netif->driver->service );
571
        netif->driver->phone = connect_to_service( netif->driver->service );
577
    }
572
    }
578
//  printf( " connected" );
573
//  printf( " connected" );
579
    // TODO io, irq
574
    // TODO io, irq
580
    ERROR_PROPAGATE( async_req_3_0( netif->driver->phone, NET_NETIF_PROBE, netif->id, 0, 0 ));
575
    ERROR_PROPAGATE( async_req_3_0( netif->driver->phone, NET_NETIF_PROBE, netif->id, 0, 0 ));
581
    ++ netif->driver->usage;
576
    ++ netif->driver->usage;
582
    if( netif->nil ){
577
    if( netif->nil ){
583
        if( ! netif->nil->phone ){
578
        if( ! netif->nil->phone ){
584
            netif->nil->phone = connect_to_service( netif->nil->service );
579
            netif->nil->phone = connect_to_service( netif->nil->service );
585
        }
580
        }
586
        ERROR_PROPAGATE( async_req_2_0( netif->nil->phone, NET_NIL_DEVICE, netif->id, netif->driver->service ));
581
        ERROR_PROPAGATE( async_req_2_0( netif->nil->phone, NET_NIL_DEVICE, netif->id, netif->driver->service ));
587
        ++ netif->nil->usage;
582
        ++ netif->nil->usage;
588
        internet_service = netif->nil->service;
583
        internet_service = netif->nil->service;
589
//      printf( " OK" );
584
//      printf( " OK" );
590
    }else{
585
    }else{
591
        internet_service = netif->driver->service;
586
        internet_service = netif->driver->service;
592
//      printf( " none" );
587
//      printf( " none" );
593
    }
588
    }
594
    if( ! netif->il->phone ){
589
    if( ! netif->il->phone ){
595
//      printf( " connect" );
590
//      printf( " connect" );
596
        netif->il->phone = connect_to_service( netif->il->service );
591
        netif->il->phone = connect_to_service( netif->il->service );
597
    }
592
    }
598
    // TODO IL_BUNDLE
593
    // TODO IL_BUNDLE
599
    ERROR_PROPAGATE( async_req_2_0( netif->il->phone, NET_IL_DEVICE, netif->id, internet_service ));
594
    ERROR_PROPAGATE( async_req_2_0( netif->il->phone, NET_IL_DEVICE, netif->id, internet_service ));
600
    ++ netif->il->usage;
595
    ++ netif->il->usage;
601
    // TODO startup?
596
    // TODO startup?
602
    ERROR_PROPAGATE( async_req_1_0( netif->driver->phone, NET_NETIF_START, netif->id ));
597
    ERROR_PROPAGATE( async_req_1_0( netif->driver->phone, NET_NETIF_START, netif->id ));
603
//  printf( "\n LO OK" );
598
//  printf( "\n LO OK" );
604
    return EOK;
599
    return EOK;
605
}
600
}
606
 
601
 
607
task_id_t spawn( const char * fname ){
602
task_id_t spawn( const char * fname ){
608
    const char  * argv[ 2 ];
603
    const char  * argv[ 2 ];
609
    task_id_t   res;
604
    task_id_t   res;
610
 
605
 
611
//  printf( "Spawning %s\n", fname );
606
//  printf( "Spawning %s\n", fname );
612
    argv[ 0 ] = fname;
607
    argv[ 0 ] = fname;
613
    argv[ 1 ] = NULL;
608
    argv[ 1 ] = NULL;
614
    res = task_spawn( fname, argv );
609
    res = task_spawn( fname, argv );
615
    if( res != 0 ){
610
    if( res != 0 ){
616
        /* Success */
611
        /* Success */
617
        usleep( 50000 );
612
        usleep( 50000 );
618
    }
613
    }
619
    return res;
614
    return res;
620
}
615
}
621
 
616
 
622
int startup( void ){
617
int startup( void ){
623
    ERROR_DECLARE;
618
    ERROR_DECLARE;
624
 
619
 
625
    // read configuration files
620
    // read configuration files
626
    if( ERROR_OCCURED( read_configuration())) return ERROR_CODE;
621
    if( ERROR_OCCURED( read_configuration())) return ERROR_CODE;
627
 
622
 
628
    // start network interfaces and needed modules
623
    // start network interfaces and needed modules
629
//  start_device( "/sbin/lo", "/sbin/dummy_link_layer" );
624
//  start_device( "/sbin/lo", "/sbin/dummy_link_layer" );
630
    return EOK;
625
    return EOK;
631
}
626
}
632
 
627
 
633
/** @}
628
/** @}
634
 */
629
 */
635
 
630