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1
/*
1
/*
2
 * Copyright (c) 2008 Lukas Mejdrech
2
 * Copyright (c) 2008 Lukas Mejdrech
3
 * All rights reserved.
3
 * 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 udp
29
/** @addtogroup udp
30
 *  @{
30
 *  @{
31
 */
31
 */
32
 
32
 
33
/** @file
33
/** @file
34
 *  UDP module implementation.
34
 *  UDP module implementation.
35
 *  @see udp.h
35
 *  @see udp.h
36
 */
36
 */
37
 
37
 
38
#include <async.h>
38
#include <async.h>
39
#include <fibril_sync.h>
39
#include <fibril_sync.h>
40
#include <malloc.h>
40
#include <malloc.h>
41
 
41
 
42
#include <ipc/ipc.h>
42
#include <ipc/ipc.h>
43
#include <ipc/services.h>
43
#include <ipc/services.h>
44
 
44
 
45
#include "../../err.h"
45
#include "../../err.h"
46
#include "../../messages.h"
46
#include "../../messages.h"
47
#include "../../modules.h"
47
#include "../../modules.h"
48
 
48
 
49
#include "../../structures/dynamic_fifo.h"
49
#include "../../structures/dynamic_fifo.h"
50
#include "../../structures/packet/packet_client.h"
50
#include "../../structures/packet/packet_client.h"
51
 
51
 
52
#include "../../include/crc.h"
52
#include "../../include/crc.h"
53
#include "../../include/in.h"
53
#include "../../include/in.h"
54
#include "../../include/in6.h"
54
#include "../../include/in6.h"
55
#include "../../include/inet.h"
55
#include "../../include/inet.h"
56
#include "../../include/ip_client.h"
56
#include "../../include/ip_client.h"
57
#include "../../include/ip_interface.h"
57
#include "../../include/ip_interface.h"
58
#include "../../include/ip_protocols.h"
58
#include "../../include/ip_protocols.h"
59
#include "../../include/icmp_client.h"
59
#include "../../include/icmp_client.h"
60
#include "../../include/icmp_interface.h"
60
#include "../../include/icmp_interface.h"
61
#include "../../include/net_interface.h"
61
#include "../../include/net_interface.h"
62
#include "../../include/socket_codes.h"
62
#include "../../include/socket_codes.h"
63
#include "../../include/socket_errno.h"
63
#include "../../include/socket_errno.h"
64
 
64
 
65
#include "../../socket/socket_core.h"
65
#include "../../socket/socket_core.h"
66
#include "../../socket/socket_messages.h"
66
#include "../../socket/socket_messages.h"
67
 
67
 
68
#include "../tl_common.h"
68
#include "../tl_common.h"
69
#include "../tl_messages.h"
69
#include "../tl_messages.h"
70
 
70
 
71
#include "udp.h"
71
#include "udp.h"
72
#include "udp_header.h"
72
#include "udp_header.h"
73
#include "udp_module.h"
73
#include "udp_module.h"
74
 
74
 
75
/** Default UDP checksum computing.
75
/** Default UDP checksum computing.
76
 */
76
 */
77
#define NET_DEFAULT_UDP_CHECKSUM_COMPUTING  true
77
#define NET_DEFAULT_UDP_CHECKSUM_COMPUTING  true
78
 
78
 
-
 
79
/** Default UDP autobind when sending via unbound sockets.
-
 
80
 */
-
 
81
#define NET_DEFAULT_UDP_AUTOBINDING true
-
 
82
 
79
/** Maximum UDP fragment size.
83
/** Maximum UDP fragment size.
80
 */
84
 */
81
#define MAX_UDP_FRAGMENT_SIZE   65535
85
#define MAX_UDP_FRAGMENT_SIZE   65535
82
 
86
 
83
/** Free ports pool start.
87
/** Free ports pool start.
84
 */
88
 */
85
#define UDP_FREE_PORTS_START    1025
89
#define UDP_FREE_PORTS_START    1025
86
 
90
 
87
/** Free ports pool end.
91
/** Free ports pool end.
88
 */
92
 */
89
#define UDP_FREE_PORTS_END      65535
93
#define UDP_FREE_PORTS_END      65535
90
 
94
 
91
/** Processes the received UDP packet queue.
95
/** Processes the received UDP packet queue.
92
 *  Is used as an entry point from the underlying IP module.
96
 *  Is used as an entry point from the underlying IP module.
93
 *  Notifies the destination socket application.
-
 
94
 *  Releases the packet on error or send an ICMP error notification..
97
 *  Locks the global lock and calls udp_process_packet() function.
95
 *  @param device_id The device identifier. Ignored parameter.
98
 *  @param device_id The device identifier. Ignored parameter.
96
 *  @param packet The received packet queue. Input/output parameter.
99
 *  @param packet The received packet queue. Input/output parameter.
97
 *  @param receiver The target service. Ignored parameter.
100
 *  @param receiver The target service. Ignored parameter.
98
 *  @param error The packet error reporting service. Prefixes the received packet. Input parameter.
101
 *  @param error The packet error reporting service. Prefixes the received packet. Input parameter.
99
 *  @returns EOK on success.
102
 *  @returns EOK on success.
-
 
103
 *  @returns Other error codes as defined for the udp_process_packet() function.
-
 
104
 */
-
 
105
int udp_received_msg( device_id_t device_id, packet_t packet, services_t receiver, services_t error );
-
 
106
 
-
 
107
/** Processes the received UDP packet queue.
-
 
108
 *  Notifies the destination socket application.
-
 
109
 *  Releases the packet on error or sends an ICMP error notification..
-
 
110
 *  @param packet The received packet queue. Input/output parameter.
-
 
111
 *  @param error The packet error reporting service. Prefixes the received packet. Input parameter.
-
 
112
 *  @returns EOK on success.
100
 *  @returns EINVAL if the packet is not valid.
113
 *  @returns EINVAL if the packet is not valid.
101
 *  @returns EINVAL if the stored packet address is not the an_addr_t.
114
 *  @returns EINVAL if the stored packet address is not the an_addr_t.
102
 *  @returns EINVAL if the packet does not contain any data.
115
 *  @returns EINVAL if the packet does not contain any data.
103
 *  @returns NO_DATA if the packet content is shorter than the user datagram header.
116
 *  @returns NO_DATA if the packet content is shorter than the user datagram header.
104
 *  @returns ENOMEM if there is not enough memory left.
117
 *  @returns ENOMEM if there is not enough memory left.
105
 *  @returns EADDRNOTAVAIL if the destination socket does not exist.
118
 *  @returns EADDRNOTAVAIL if the destination socket does not exist.
106
 *  @returns Other error codes as defined for the ip_client_process_packet() function.
119
 *  @returns Other error codes as defined for the ip_client_process_packet() function.
107
 */
120
 */
108
int udp_received_msg( device_id_t device_id, packet_t packet, services_t receiver, services_t error );
121
int udp_process_packet( packet_t packet, services_t error );
109
 
122
 
110
/** Releases the packet and returns the result.
123
/** Releases the packet and returns the result.
111
 *  @param packet The packet queue to be released. Input parameter.
124
 *  @param packet The packet queue to be released. Input parameter.
112
 *  @param result The result to be returned. Input parameter.
125
 *  @param result The result to be returned. Input parameter.
113
 *  @return The result parameter.
126
 *  @return The result parameter.
114
 */
127
 */
115
int udp_release_and_return( packet_t packet, int result );
128
int udp_release_and_return( packet_t packet, int result );
116
 
129
 
117
/** @name Socket messages processing functions
130
/** @name Socket messages processing functions
118
 */
131
 */
119
/*@{*/
132
/*@{*/
120
 
133
 
121
/** Processes the socket client messages.
134
/** Processes the socket client messages.
122
 *  Runs until the client module disconnects.
135
 *  Runs until the client module disconnects.
123
 *  @param callid The message identifier. Input parameter.
136
 *  @param callid The message identifier. Input parameter.
124
 *  @param call The message parameters. Input parameter.
137
 *  @param call The message parameters. Input parameter.
125
 *  @returns EOK on success.
138
 *  @returns EOK on success.
126
 *  @see socket.h
139
 *  @see socket.h
127
 */
140
 */
128
int udp_process_client_messages( ipc_callid_t callid, ipc_call_t call );
141
int udp_process_client_messages( ipc_callid_t callid, ipc_call_t call );
129
 
142
 
130
/** Sends data from the socket to the remote address.
143
/** Sends data from the socket to the remote address.
131
 *  Binds the socket to a free port if not already connected/bound.
144
 *  Binds the socket to a free port if not already connected/bound.
132
 *  Handles the NET_SOCKET_SENDTO message.
145
 *  Handles the NET_SOCKET_SENDTO message.
133
 *  Supports AF_INET and AF_INET6 address families.
146
 *  Supports AF_INET and AF_INET6 address families.
134
 *  @param local_sockets The application local sockets. Input/output parameter.
147
 *  @param local_sockets The application local sockets. Input/output parameter.
135
 *  @param socket_id Socket identifier. Input parameter.
148
 *  @param socket_id Socket identifier. Input parameter.
136
 *  @param addr The destination address. Input parameter.
149
 *  @param addr The destination address. Input parameter.
137
 *  @param addrlen The address length. Input parameter.
150
 *  @param addrlen The address length. Input parameter.
138
 *  @param fragments The number of data fragments. Input parameter.
151
 *  @param fragments The number of data fragments. Input parameter.
139
 *  @param data_fragment_size The data fragment size in bytes. Input parameter.
152
 *  @param data_fragment_size The data fragment size in bytes. Input parameter.
140
 *  @param flags Various send flags. Input parameter.
153
 *  @param flags Various send flags. Input parameter.
141
 *  @returns EOK on success.
154
 *  @returns EOK on success.
142
 *  @returns EAFNOTSUPPORT if the address family is not supported.
155
 *  @returns EAFNOTSUPPORT if the address family is not supported.
143
 *  @returns ENOTSOCK if the socket is not found.
156
 *  @returns ENOTSOCK if the socket is not found.
144
 *  @returns EINVAL if the address is invalid.
157
 *  @returns EINVAL if the address is invalid.
145
 *  @returns ENOTCONN if the sending socket is not and cannot be bound.
158
 *  @returns ENOTCONN if the sending socket is not and cannot be bound.
146
 *  @returns ENOMEM if there is not enough memory left.
159
 *  @returns ENOMEM if there is not enough memory left.
147
 *  @returns Other error codes as defined for the socket_read_packet_data() function.
160
 *  @returns Other error codes as defined for the socket_read_packet_data() function.
148
 *  @returns Other error codes as defined for the ip_client_prepare_packet() function.
161
 *  @returns Other error codes as defined for the ip_client_prepare_packet() function.
149
 *  @returns Other error codes as defined for the ip_send_msg() function.
162
 *  @returns Other error codes as defined for the ip_send_msg() function.
150
 */
163
 */
151
int udp_sendto_message( socket_cores_ref local_sockets, int socket_id, const struct sockaddr * addr, socklen_t addrlen, int fragments, size_t data_fragment_size, int flags );
164
int udp_sendto_message( socket_cores_ref local_sockets, int socket_id, const struct sockaddr * addr, socklen_t addrlen, int fragments, size_t data_fragment_size, int flags );
152
 
165
 
153
/** Receives data to the socket.
166
/** Receives data to the socket.
154
 *  Handles the NET_SOCKET_RECVFROM message.
167
 *  Handles the NET_SOCKET_RECVFROM message.
155
 *  Replies the source address as well.
168
 *  Replies the source address as well.
156
 *  @param local_sockets The application local sockets. Input parameter.
169
 *  @param local_sockets The application local sockets. Input parameter.
157
 *  @param socket_id Socket identifier. Input parameter.
170
 *  @param socket_id Socket identifier. Input parameter.
158
 *  @param flags Various receive flags. Input parameter.
171
 *  @param flags Various receive flags. Input parameter.
159
 *  @param addrlen The source address length. Output parameter.
172
 *  @param addrlen The source address length. Output parameter.
160
 *  @returns The number of bytes received.
173
 *  @returns The number of bytes received.
161
 *  @returns ENOTSOCK if the socket is not found.
174
 *  @returns ENOTSOCK if the socket is not found.
162
 *  @returns NO_DATA if there are no received packets or data.
175
 *  @returns NO_DATA if there are no received packets or data.
163
 *  @returns ENOMEM if there is not enough memory left.
176
 *  @returns ENOMEM if there is not enough memory left.
164
 *  @returns EINVAL if the received address is not an IP address.
177
 *  @returns EINVAL if the received address is not an IP address.
165
 *  @returns Other error codes as defined for the packet_translate() function.
178
 *  @returns Other error codes as defined for the packet_translate() function.
166
 *  @returns Other error codes as defined for the data_reply() function.
179
 *  @returns Other error codes as defined for the data_reply() function.
167
 */
180
 */
168
int udp_recvfrom_message( socket_cores_ref local_sockets, int socket_id, int flags, size_t * addrlen );
181
int udp_recvfrom_message( socket_cores_ref local_sockets, int socket_id, int flags, size_t * addrlen );
169
 
182
 
170
/*@}*/
183
/*@}*/
171
 
184
 
172
/** UDP global data.
185
/** UDP global data.
173
 */
186
 */
174
udp_globals_t   udp_globals;
187
udp_globals_t   udp_globals;
175
 
188
 
176
int udp_initialize( async_client_conn_t client_connection ){
189
int udp_initialize( async_client_conn_t client_connection ){
177
    ERROR_DECLARE;
190
    ERROR_DECLARE;
178
 
191
 
179
    measured_string_t   names[] = {{ "UDP_CHECKSUM_COMPUTING", 22 }};
192
    measured_string_t   names[] = {{ "UDP_CHECKSUM_COMPUTING", 22 }, { "UDP_AUTOBINDING", 15 }};
180
    measured_string_ref configuration;
193
    measured_string_ref configuration;
181
    size_t              count = sizeof( names ) / sizeof( measured_string_t );
194
    size_t              count = sizeof( names ) / sizeof( measured_string_t );
182
    char *              data;
195
    char *              data;
183
 
196
 
184
    fibril_rwlock_initialize( & udp_globals.lock );
197
    fibril_rwlock_initialize( & udp_globals.lock );
185
    fibril_rwlock_write_lock( & udp_globals.lock );
198
    fibril_rwlock_write_lock( & udp_globals.lock );
186
    udp_globals.icmp_phone = icmp_connect_module( SERVICE_ICMP );
199
    udp_globals.icmp_phone = icmp_connect_module( SERVICE_ICMP );
187
    if( udp_globals.icmp_phone < 0 ){
200
    if( udp_globals.icmp_phone < 0 ){
188
        return udp_globals.icmp_phone;
201
        return udp_globals.icmp_phone;
189
    }
202
    }
190
    udp_globals.ip_phone = ip_bind_service( SERVICE_IP, IPPROTO_UDP, SERVICE_UDP, client_connection, udp_received_msg );
203
    udp_globals.ip_phone = ip_bind_service( SERVICE_IP, IPPROTO_UDP, SERVICE_UDP, client_connection, udp_received_msg );
191
    if( udp_globals.ip_phone < 0 ){
204
    if( udp_globals.ip_phone < 0 ){
192
        return udp_globals.ip_phone;
205
        return udp_globals.ip_phone;
193
    }
206
    }
194
    ERROR_PROPAGATE( ip_packet_size_req( udp_globals.ip_phone, -1, & udp_globals.packet_dimension.addr_len, & udp_globals.packet_dimension.prefix, & udp_globals.packet_dimension.content, & udp_globals.packet_dimension.suffix ));
207
    ERROR_PROPAGATE( ip_packet_size_req( udp_globals.ip_phone, -1, & udp_globals.packet_dimension.addr_len, & udp_globals.packet_dimension.prefix, & udp_globals.packet_dimension.content, & udp_globals.packet_dimension.suffix ));
195
    ERROR_PROPAGATE( socket_ports_initialize( & udp_globals.sockets ));
208
    ERROR_PROPAGATE( socket_ports_initialize( & udp_globals.sockets ));
196
    udp_globals.packet_dimension.prefix += sizeof( udp_header_t );
209
    udp_globals.packet_dimension.prefix += sizeof( udp_header_t );
197
    udp_globals.packet_dimension.content -= sizeof( udp_header_t );
210
    udp_globals.packet_dimension.content -= sizeof( udp_header_t );
198
    udp_globals.last_used_port = UDP_FREE_PORTS_START - 1;
211
    udp_globals.last_used_port = UDP_FREE_PORTS_START - 1;
199
    // get configuration
212
    // get configuration
200
    udp_globals.checksum_computing = NET_DEFAULT_UDP_CHECKSUM_COMPUTING;
213
    udp_globals.checksum_computing = NET_DEFAULT_UDP_CHECKSUM_COMPUTING;
-
 
214
    udp_globals.autobinding = NET_DEFAULT_UDP_AUTOBINDING;
201
    configuration = & names[ 0 ];
215
    configuration = & names[ 0 ];
202
    ERROR_PROPAGATE( net_get_conf_req( udp_globals.net_phone, & configuration, count, & data ));
216
    ERROR_PROPAGATE( net_get_conf_req( udp_globals.net_phone, & configuration, count, & data ));
203
    if( configuration ){
217
    if( configuration ){
204
        if( configuration[ 0 ].value ){
218
        if( configuration[ 0 ].value ){
205
            udp_globals.checksum_computing = ( configuration[ 0 ].value[ 0 ] == 'y' );
219
            udp_globals.checksum_computing = ( configuration[ 0 ].value[ 0 ] == 'y' );
206
        }
220
        }
-
 
221
        if( configuration[ 1 ].value ){
-
 
222
            udp_globals.autobinding = ( configuration[ 1 ].value[ 0 ] == 'y' );
-
 
223
        }
207
        net_free_settings( configuration, data );
224
        net_free_settings( configuration, data );
208
    }
225
    }
209
    fibril_rwlock_write_unlock( & udp_globals.lock );
226
    fibril_rwlock_write_unlock( & udp_globals.lock );
210
    return EOK;
227
    return EOK;
211
}
228
}
212
 
229
 
213
int udp_received_msg( device_id_t device_id, packet_t packet, services_t receiver, services_t error ){
230
int udp_received_msg( device_id_t device_id, packet_t packet, services_t receiver, services_t error ){
-
 
231
    int result;
-
 
232
 
-
 
233
    fibril_rwlock_read_lock( & udp_globals.lock );
-
 
234
    result = udp_process_packet( packet, error );
-
 
235
    fibril_rwlock_read_unlock( & udp_globals.lock );
-
 
236
 
-
 
237
    return result;
-
 
238
}
-
 
239
 
-
 
240
int udp_process_packet( packet_t packet, services_t error ){
214
    ERROR_DECLARE;
241
    ERROR_DECLARE;
215
 
242
 
216
    size_t          length;
243
    size_t          length;
217
    size_t          offset;
244
    size_t          offset;
218
    int             result;
245
    int             result;
219
    uint8_t *       data;
246
    uint8_t *       data;
220
    udp_header_ref  header;
247
    udp_header_ref  header;
221
    socket_core_ref *   socket;
248
    socket_core_ref *   socket;
222
    packet_t        next_packet;
249
    packet_t        next_packet;
223
    size_t          total_length;
250
    size_t          total_length;
224
    uint32_t        checksum;
251
    uint32_t        checksum;
225
    int             fragments;
252
    int             fragments;
226
    packet_t        tmp_packet;
253
    packet_t        tmp_packet;
227
    icmp_type_t     type;
254
    icmp_type_t     type;
228
    icmp_code_t     code;
255
    icmp_code_t     code;
229
    ip_pseudo_header_ref    ip_header;
256
    ip_pseudo_header_ref    ip_header;
230
    struct sockaddr *       src;
257
    struct sockaddr *       src;
231
    struct sockaddr *       dest;
258
    struct sockaddr *       dest;
232
 
259
 
233
    if( error ){
260
    if( error ){
234
        switch( error ){
261
        switch( error ){
235
            case SERVICE_ICMP:
262
            case SERVICE_ICMP:
236
                // process error
263
                // process error
237
                // TODO remove debug dump
264
                // TODO remove debug dump
238
                // length = icmp_client_header_length( packet );
265
                // length = icmp_client_header_length( packet );
239
                result = icmp_client_process_packet( packet, & type, & code, NULL, NULL );
266
                result = icmp_client_process_packet( packet, & type, & code, NULL, NULL );
240
                if( result < 0 ){
267
                if( result < 0 ){
241
                    return udp_release_and_return( packet, result );
268
                    return udp_release_and_return( packet, result );
242
                }
269
                }
243
                printf( "ICMP error %d (%d) in packet %d\n", type, code, packet_get_id( packet ) );
270
                printf( "ICMP error %d (%d) in packet %d\n", type, code, packet_get_id( packet ) );
244
                length = ( size_t ) result;
271
                length = ( size_t ) result;
245
                if( ERROR_OCCURRED( packet_trim( packet, length, 0 ))){
272
                if( ERROR_OCCURRED( packet_trim( packet, length, 0 ))){
246
                    return udp_release_and_return( packet, ERROR_CODE );
273
                    return udp_release_and_return( packet, ERROR_CODE );
247
                }
274
                }
248
                break;
275
                break;
249
            default:
276
            default:
250
                return udp_release_and_return( packet, ENOTSUP );
277
                return udp_release_and_return( packet, ENOTSUP );
251
        }
278
        }
252
    }
279
    }
253
    // TODO process received ipopts?
280
    // TODO process received ipopts?
254
    result = ip_client_process_packet( packet, NULL, NULL, NULL, NULL, NULL );
281
    result = ip_client_process_packet( packet, NULL, NULL, NULL, NULL, NULL );
255
    if( result < 0 ){
282
    if( result < 0 ){
256
        return udp_release_and_return( packet, result );
283
        return udp_release_and_return( packet, result );
257
    }
284
    }
258
    offset = ( size_t ) result;
285
    offset = ( size_t ) result;
259
 
286
 
260
    length = packet_get_data_length( packet );
287
    length = packet_get_data_length( packet );
261
    if( length <= 0 ){
288
    if( length <= 0 ){
262
        return udp_release_and_return( packet, EINVAL );
289
        return udp_release_and_return( packet, EINVAL );
263
    }
290
    }
264
    if( length < sizeof( udp_header_t ) + offset ){
291
    if( length < sizeof( udp_header_t ) + offset ){
265
        return udp_release_and_return( packet, NO_DATA );
292
        return udp_release_and_return( packet, NO_DATA );
266
    }
293
    }
267
    data = packet_get_data( packet );
294
    data = packet_get_data( packet );
268
    if( ! data ){
295
    if( ! data ){
269
        return udp_release_and_return( packet, NO_DATA );
296
        return udp_release_and_return( packet, NO_DATA );
270
    }
297
    }
271
    // get udp header
298
    // get udp header
272
    header = ( udp_header_ref )( data + offset );
299
    header = ( udp_header_ref )( data + offset );
273
    // find the destination socket
300
    // find the destination socket
274
    socket = socket_ports_find( & udp_globals.sockets, ntohs( header->destination_port ));
301
    socket = socket_ports_find( & udp_globals.sockets, ntohs( header->destination_port ));
275
    if( ! socket ){
302
    if( ! socket ){
276
        tl_send_icmp_port_unreachable( udp_globals.net_phone, udp_globals.icmp_phone, packet, error );
303
        tl_send_icmp_port_unreachable( udp_globals.net_phone, udp_globals.icmp_phone, packet, error );
277
        return EADDRNOTAVAIL;
304
        return EADDRNOTAVAIL;
278
    }
305
    }
-
 
306
 
279
    // trim after successful processing to be able to send an ICMP error message!
307
    // trim after successful processing to be able to send an ICMP error message!
280
    ERROR_PROPAGATE( packet_trim( packet, offset, 0 ));
308
    ERROR_PROPAGATE( packet_trim( packet, offset, 0 ));
-
 
309
 
281
    // count the received packet fragments
310
    // count the received packet fragments
282
    next_packet = packet;
311
    next_packet = packet;
283
    fragments = 0;
312
    fragments = 0;
284
    total_length = ntohs( header->total_length );
313
    total_length = ntohs( header->total_length );
285
    // compute header checksum if set
314
    // compute header checksum if set
286
    if( header->checksum && ( ! error )){
315
    if( header->checksum && ( ! error )){
287
        result = packet_get_addr( packet, ( uint8_t ** ) & src, ( uint8_t ** ) & dest );
316
        result = packet_get_addr( packet, ( uint8_t ** ) & src, ( uint8_t ** ) & dest );
288
        if( result <= 0 ){
317
        if( result <= 0 ){
289
            return udp_release_and_return( packet, result );
318
            return udp_release_and_return( packet, result );
290
        }
319
        }
291
        if( ERROR_OCCURRED( ip_client_get_pseudo_header( IPPROTO_UDP, src, result, dest, result, total_length, & ip_header, & length ))){
320
        if( ERROR_OCCURRED( ip_client_get_pseudo_header( IPPROTO_UDP, src, result, dest, result, total_length, & ip_header, & length ))){
292
            return udp_release_and_return( packet, ERROR_CODE );
321
            return udp_release_and_return( packet, ERROR_CODE );
293
        }else{
322
        }else{
294
            checksum = compute_checksum( 0, ip_header, length );
323
            checksum = compute_checksum( 0, ip_header, length );
295
            // the udp header checksum will be added with the first fragment later
324
            // the udp header checksum will be added with the first fragment later
296
            free( ip_header );
325
            free( ip_header );
297
        }
326
        }
298
    }else{
327
    }else{
299
        header->checksum = 0;
328
        header->checksum = 0;
300
        checksum = 0;
329
        checksum = 0;
301
    }
330
    }
-
 
331
 
302
    do{
332
    do{
303
        ++ fragments;
333
        ++ fragments;
304
        length = packet_get_data_length( next_packet );
334
        length = packet_get_data_length( next_packet );
305
        if( length <= 0 ){
335
        if( length <= 0 ){
306
            return udp_release_and_return( packet, NO_DATA );
336
            return udp_release_and_return( packet, NO_DATA );
307
        }
337
        }
308
        if( total_length < length ){
338
        if( total_length < length ){
309
            if( ERROR_OCCURRED( packet_trim( next_packet, 0, length - total_length ))){
339
            if( ERROR_OCCURRED( packet_trim( next_packet, 0, length - total_length ))){
310
                return udp_release_and_return( packet, ERROR_CODE );
340
                return udp_release_and_return( packet, ERROR_CODE );
311
            }
341
            }
312
            // add partial checksum if set
342
            // add partial checksum if set
313
            if( header->checksum ){
343
            if( header->checksum ){
314
                checksum = compute_checksum( checksum, packet_get_data( packet ), packet_get_data_length( packet ));
344
                checksum = compute_checksum( checksum, packet_get_data( packet ), packet_get_data_length( packet ));
315
            }
345
            }
316
            // relese the rest of the packet fragments
346
            // relese the rest of the packet fragments
317
            tmp_packet = pq_next( next_packet );
347
            tmp_packet = pq_next( next_packet );
318
            while( tmp_packet ){
348
            while( tmp_packet ){
319
                next_packet = pq_detach( tmp_packet );
349
                next_packet = pq_detach( tmp_packet );
320
                pq_release( udp_globals.net_phone, packet_get_id( tmp_packet ));
350
                pq_release( udp_globals.net_phone, packet_get_id( tmp_packet ));
321
                tmp_packet = next_packet;
351
                tmp_packet = next_packet;
322
            }
352
            }
323
            // exit the loop
353
            // exit the loop
324
            break;
354
            break;
325
        }
355
        }
326
        total_length -= length;
356
        total_length -= length;
327
        // add partial checksum if set
357
        // add partial checksum if set
328
        if( header->checksum ){
358
        if( header->checksum ){
329
            checksum = compute_checksum( checksum, packet_get_data( packet ), packet_get_data_length( packet ));
359
            checksum = compute_checksum( checksum, packet_get_data( packet ), packet_get_data_length( packet ));
330
        }
360
        }
331
    }while(( next_packet = pq_next( next_packet )) && ( total_length > 0 ));
361
    }while(( next_packet = pq_next( next_packet )) && ( total_length > 0 ));
-
 
362
 
332
    // check checksum
363
    // check checksum
333
    if( header->checksum ){
364
    if( header->checksum ){
334
        if( flip_checksum( compact_checksum( checksum ))){
365
        if( flip_checksum( compact_checksum( checksum ))){
335
            // TODO checksum error ICMP?
366
            // TODO checksum error ICMP?
336
            // TODO remove debug dump
367
            // TODO remove debug dump
337
            printf("udp check failed %x => %x\n", header->checksum, flip_checksum( compact_checksum( checksum )));
368
            printf("udp check failed %x => %x\n", header->checksum, flip_checksum( compact_checksum( checksum )));
338
            return udp_release_and_return( packet, EINVAL );
369
            return udp_release_and_return( packet, EINVAL );
339
        }
370
        }
340
    }
371
    }
-
 
372
 
341
    // queue the received packet
373
    // queue the received packet
342
    if( ERROR_OCCURRED( dyn_fifo_push( &( ** socket ).received, packet_get_id( packet ), SOCKET_MAX_RECEIVED_SIZE ))){
374
    if( ERROR_OCCURRED( dyn_fifo_push( &( ** socket ).received, packet_get_id( packet ), SOCKET_MAX_RECEIVED_SIZE ))){
343
        return udp_release_and_return( packet, ERROR_CODE );
375
        return udp_release_and_return( packet, ERROR_CODE );
344
    }
376
    }
345
 
377
 
346
    // notify the destination socket
378
    // notify the destination socket
347
    async_msg_5(( ** socket ).phone, NET_SOCKET_RECEIVED, ( ipcarg_t ) ( ** socket ).socket_id, 0, 0, 0, ( ipcarg_t ) fragments );
379
    async_msg_5(( ** socket ).phone, NET_SOCKET_RECEIVED, ( ipcarg_t ) ( ** socket ).socket_id, 0, 0, 0, ( ipcarg_t ) fragments );
348
    return EOK;
380
    return EOK;
349
}
381
}
350
 
382
 
351
int udp_message( ipc_callid_t callid, ipc_call_t * call, ipc_call_t * answer, int * answer_count ){
383
int udp_message( ipc_callid_t callid, ipc_call_t * call, ipc_call_t * answer, int * answer_count ){
352
    ERROR_DECLARE;
384
    ERROR_DECLARE;
353
 
385
 
354
    packet_t    packet;
386
    packet_t    packet;
355
 
387
 
356
    * answer_count = 0;
388
    * answer_count = 0;
357
    switch( IPC_GET_METHOD( * call )){
389
    switch( IPC_GET_METHOD( * call )){
358
        case NET_TL_RECEIVED:
390
        case NET_TL_RECEIVED:
359
            fibril_rwlock_read_lock( & udp_globals.lock );
-
 
360
            if( ! ERROR_OCCURRED( packet_translate( udp_globals.net_phone, & packet, IPC_GET_PACKET( call )))){
391
            if( ! ERROR_OCCURRED( packet_translate( udp_globals.net_phone, & packet, IPC_GET_PACKET( call )))){
361
                ERROR_CODE = udp_received_msg( IPC_GET_DEVICE( call ), packet, SERVICE_UDP, IPC_GET_ERROR( call ));
392
                ERROR_CODE = udp_received_msg( IPC_GET_DEVICE( call ), packet, SERVICE_UDP, IPC_GET_ERROR( call ));
362
            }
393
            }
363
            fibril_rwlock_read_unlock( & udp_globals.lock );
-
 
364
            return ERROR_CODE;
394
            return ERROR_CODE;
365
        case IPC_M_CONNECT_TO_ME:
395
        case IPC_M_CONNECT_TO_ME:
366
            return udp_process_client_messages( callid, * call );
396
            return udp_process_client_messages( callid, * call );
367
    }
397
    }
368
    return ENOTSUP;
398
    return ENOTSUP;
369
}
399
}
370
 
400
 
371
int udp_process_client_messages( ipc_callid_t callid, ipc_call_t call ){
401
int udp_process_client_messages( ipc_callid_t callid, ipc_call_t call ){
372
    int                     res;
402
    int                     res;
373
    bool                    keep_on_going = true;
403
    bool                    keep_on_going = true;
374
    socket_cores_t          local_sockets;
404
    socket_cores_t          local_sockets;
375
    int                     app_phone = IPC_GET_PHONE( & call );
405
    int                     app_phone = IPC_GET_PHONE( & call );
376
    struct sockaddr *       addr;
406
    struct sockaddr *       addr;
377
    size_t                  addrlen;
407
    size_t                  addrlen;
378
//  fibril_rwlock_t         lock;
408
//  fibril_rwlock_t         lock;
379
    ipc_call_t              answer;
409
    ipc_call_t              answer;
380
    int                     answer_count;
410
    int                     answer_count;
381
 
411
 
382
    /*
412
    /*
383
     * Accept the connection
413
     * Accept the connection
384
     *  - Answer the first IPC_M_CONNECT_ME_TO call.
414
     *  - Answer the first IPC_M_CONNECT_ME_TO call.
385
     */
415
     */
386
    ipc_answer_0( callid, EOK );
416
    ipc_answer_0( callid, EOK );
387
 
417
 
388
    // The client connection is only in one fibril and therefore no additional locks are needed.
418
    // The client connection is only in one fibril and therefore no additional locks are needed.
389
 
419
 
390
    socket_cores_initialize( & local_sockets );
420
    socket_cores_initialize( & local_sockets );
391
//  fibril_rwlock_initialize( & lock );
421
//  fibril_rwlock_initialize( & lock );
392
 
422
 
393
    while( keep_on_going ){
423
    while( keep_on_going ){
394
        // refresh data
424
        // refresh data
395
        refresh_answer( & answer, & answer_count );
425
        refresh_answer( & answer, & answer_count );
396
 
426
 
397
        callid = async_get_call( & call );
427
        callid = async_get_call( & call );
398
//      printf( "message %d\n", IPC_GET_METHOD( * call ));
428
//      printf( "message %d\n", IPC_GET_METHOD( * call ));
399
 
429
 
400
        switch( IPC_GET_METHOD( call )){
430
        switch( IPC_GET_METHOD( call )){
401
            case IPC_M_PHONE_HUNGUP:
431
            case IPC_M_PHONE_HUNGUP:
402
                keep_on_going = false;
432
                keep_on_going = false;
403
                res = EOK;
433
                res = EOK;
404
                break;
434
                break;
405
            case NET_SOCKET:
435
            case NET_SOCKET:
406
//              fibril_rwlock_write_lock( & lock );
436
//              fibril_rwlock_write_lock( & lock );
407
                res = socket_create( & local_sockets, app_phone, NULL, SOCKET_SET_SOCKET_ID( answer ));
437
                res = socket_create( & local_sockets, app_phone, NULL, SOCKET_SET_SOCKET_ID( answer ));
408
//              fibril_rwlock_write_unlock( & lock );
438
//              fibril_rwlock_write_unlock( & lock );
409
                * SOCKET_SET_DATA_FRAGMENT_SIZE( answer ) = MAX_UDP_FRAGMENT_SIZE;
439
                * SOCKET_SET_DATA_FRAGMENT_SIZE( answer ) = MAX_UDP_FRAGMENT_SIZE;
410
                * SOCKET_SET_HEADER_SIZE( answer ) = sizeof( udp_header_t );
440
                * SOCKET_SET_HEADER_SIZE( answer ) = sizeof( udp_header_t );
411
                answer_count = 3;
441
                answer_count = 3;
412
                break;
442
                break;
413
            case NET_SOCKET_BIND:
443
            case NET_SOCKET_BIND:
414
                res = data_receive(( void ** ) & addr, & addrlen );
444
                res = data_receive(( void ** ) & addr, & addrlen );
415
                if( res == EOK ){
445
                if( res == EOK ){
416
//                  fibril_rwlock_write_lock( & lock );
446
//                  fibril_rwlock_write_lock( & lock );
417
                    fibril_rwlock_write_lock( & udp_globals.lock );
447
                    fibril_rwlock_write_lock( & udp_globals.lock );
418
                    res = socket_bind( & local_sockets, & udp_globals.sockets, SOCKET_GET_SOCKET_ID( call ), addr, addrlen, UDP_FREE_PORTS_START, UDP_FREE_PORTS_END, udp_globals.last_used_port );
448
                    res = socket_bind( & local_sockets, & udp_globals.sockets, SOCKET_GET_SOCKET_ID( call ), addr, addrlen, UDP_FREE_PORTS_START, UDP_FREE_PORTS_END, udp_globals.last_used_port );
419
                    fibril_rwlock_write_unlock( & udp_globals.lock );
449
                    fibril_rwlock_write_unlock( & udp_globals.lock );
420
//                  fibril_rwlock_write_unlock( & lock );
450
//                  fibril_rwlock_write_unlock( & lock );
421
                    free( addr );
451
                    free( addr );
422
                }
452
                }
423
                break;
453
                break;
424
            case NET_SOCKET_SENDTO:
454
            case NET_SOCKET_SENDTO:
425
                res = data_receive(( void ** ) & addr, & addrlen );
455
                res = data_receive(( void ** ) & addr, & addrlen );
426
                if( res == EOK ){
456
                if( res == EOK ){
427
//                  fibril_rwlock_read_lock( & lock );
457
//                  fibril_rwlock_read_lock( & lock );
428
                    fibril_rwlock_read_lock( & udp_globals.lock );
458
                    fibril_rwlock_read_lock( & udp_globals.lock );
429
                    res = udp_sendto_message( & local_sockets, SOCKET_GET_SOCKET_ID( call ), addr, addrlen, SOCKET_GET_DATA_FRAGMENTS( call ), SOCKET_GET_DATA_FRAGMENT_SIZE( call ), SOCKET_GET_FLAGS( call ));
459
                    res = udp_sendto_message( & local_sockets, SOCKET_GET_SOCKET_ID( call ), addr, addrlen, SOCKET_GET_DATA_FRAGMENTS( call ), SOCKET_GET_DATA_FRAGMENT_SIZE( call ), SOCKET_GET_FLAGS( call ));
430
                    fibril_rwlock_read_unlock( & udp_globals.lock );
460
                    fibril_rwlock_read_unlock( & udp_globals.lock );
431
//                  fibril_rwlock_read_unlock( & lock );
461
//                  fibril_rwlock_read_unlock( & lock );
432
                    free( addr );
462
                    free( addr );
433
                }
463
                }
434
                break;
464
                break;
435
            case NET_SOCKET_RECVFROM:
465
            case NET_SOCKET_RECVFROM:
436
//              fibril_rwlock_read_lock( & lock );
466
//              fibril_rwlock_read_lock( & lock );
437
                fibril_rwlock_read_lock( & udp_globals.lock );
467
                fibril_rwlock_read_lock( & udp_globals.lock );
438
                res = udp_recvfrom_message( & local_sockets, SOCKET_GET_SOCKET_ID( call ), SOCKET_GET_FLAGS( call ), & addrlen );
468
                res = udp_recvfrom_message( & local_sockets, SOCKET_GET_SOCKET_ID( call ), SOCKET_GET_FLAGS( call ), & addrlen );
439
                fibril_rwlock_read_unlock( & udp_globals.lock );
469
                fibril_rwlock_read_unlock( & udp_globals.lock );
440
//              fibril_rwlock_read_unlock( & lock );
470
//              fibril_rwlock_read_unlock( & lock );
441
                if( res > 0 ){
471
                if( res > 0 ){
442
                    * SOCKET_SET_READ_DATA_LENGTH( answer ) = res;
472
                    * SOCKET_SET_READ_DATA_LENGTH( answer ) = res;
443
                    * SOCKET_SET_ADDRESS_LENGTH( answer ) = addrlen;
473
                    * SOCKET_SET_ADDRESS_LENGTH( answer ) = addrlen;
444
                    answer_count = 2;
474
                    answer_count = 2;
445
                    res = EOK;
475
                    res = EOK;
446
                }
476
                }
447
                break;
477
                break;
448
            case NET_SOCKET_CLOSE:
478
            case NET_SOCKET_CLOSE:
449
//              fibril_rwlock_write_lock( & lock );
479
//              fibril_rwlock_write_lock( & lock );
450
                fibril_rwlock_write_lock( & udp_globals.lock );
480
                fibril_rwlock_write_lock( & udp_globals.lock );
451
                res = socket_destroy( udp_globals.net_phone, SOCKET_GET_SOCKET_ID( call ), & local_sockets, & udp_globals.sockets );
481
                res = socket_destroy( udp_globals.net_phone, SOCKET_GET_SOCKET_ID( call ), & local_sockets, & udp_globals.sockets );
452
                fibril_rwlock_write_unlock( & udp_globals.lock );
482
                fibril_rwlock_write_unlock( & udp_globals.lock );
453
//              fibril_rwlock_write_unlock( & lock );
483
//              fibril_rwlock_write_unlock( & lock );
454
                break;
484
                break;
455
            case NET_SOCKET_GETSOCKOPT:
485
            case NET_SOCKET_GETSOCKOPT:
456
            case NET_SOCKET_SETSOCKOPT:
486
            case NET_SOCKET_SETSOCKOPT:
457
            default:
487
            default:
458
                res = ENOTSUP;
488
                res = ENOTSUP;
459
                break;
489
                break;
460
        }
490
        }
461
 
491
 
462
//      printf( "res = %d\n", res );
492
//      printf( "res = %d\n", res );
463
 
493
 
464
        answer_call( callid, res, & answer, answer_count );
494
        answer_call( callid, res, & answer, answer_count );
465
    }
495
    }
466
 
496
 
467
    // TODO call socket_destroy() on all bound!
497
    // TODO call socket_destroy() on all bound!
468
    socket_cores_destroy( & local_sockets );
498
    socket_cores_destroy( & local_sockets );
469
 
499
 
470
    return EOK;
500
    return EOK;
471
}
501
}
472
 
502
 
473
int udp_sendto_message( socket_cores_ref local_sockets, int socket_id, const struct sockaddr * addr, socklen_t addrlen, int fragments, size_t data_fragment_size, int flags ){
503
int udp_sendto_message( socket_cores_ref local_sockets, int socket_id, const struct sockaddr * addr, socklen_t addrlen, int fragments, size_t data_fragment_size, int flags ){
474
    ERROR_DECLARE;
504
    ERROR_DECLARE;
475
 
505
 
476
    socket_core_ref         socket;
506
    socket_core_ref         socket;
477
    packet_t                packet;
507
    packet_t                packet;
478
    packet_t                next_packet;
508
    packet_t                next_packet;
479
    udp_header_ref          header;
509
    udp_header_ref          header;
480
    int                     index;
510
    int                     index;
481
    size_t                  total_length;
511
    size_t                  total_length;
482
    int                     result;
512
    int                     result;
483
    uint16_t                dest_port;
513
    uint16_t                dest_port;
484
    uint32_t                checksum;
514
    uint32_t                checksum;
485
    ip_pseudo_header_ref    ip_header;
515
    ip_pseudo_header_ref    ip_header;
486
    size_t                  headerlen;
516
    size_t                  headerlen;
487
    device_id_t             device_id;
517
    device_id_t             device_id;
488
 
518
 
489
    ERROR_PROPAGATE( tl_get_address_port( addr, addrlen, & dest_port ));
519
    ERROR_PROPAGATE( tl_get_address_port( addr, addrlen, & dest_port ));
490
 
520
 
491
    socket = socket_cores_find( local_sockets, socket_id );
521
    socket = socket_cores_find( local_sockets, socket_id );
492
    if( ! socket ) return ENOTSOCK;
522
    if( ! socket ) return ENOTSOCK;
493
 
523
 
-
 
524
    if(( socket->port <= 0 ) && udp_globals.autobinding ){
494
    // bind the socket to a random free port if not bound
525
        // bind the socket to a random free port if not bound
495
    while( socket->port <= 0 ){
526
        do{
496
        // try to find a free port
527
            // try to find a free port
497
        fibril_rwlock_read_unlock( & udp_globals.lock );
528
            fibril_rwlock_read_unlock( & udp_globals.lock );
498
        fibril_rwlock_write_lock( & udp_globals.lock );
529
            fibril_rwlock_write_lock( & udp_globals.lock );
-
 
530
            // might be changed in the meantime
499
        if( socket->port <= 0 ){
531
            if( socket->port <= 0 ){
500
            ERROR_PROPAGATE( socket_bind_free_port( & udp_globals.sockets, socket, UDP_FREE_PORTS_START, UDP_FREE_PORTS_END, udp_globals.last_used_port ));
532
                ERROR_PROPAGATE( socket_bind_free_port( & udp_globals.sockets, socket, UDP_FREE_PORTS_START, UDP_FREE_PORTS_END, udp_globals.last_used_port ));
501
            // set the next port as the search starting port number
533
                // set the next port as the search starting port number
502
            udp_globals.last_used_port = socket->port;
534
                udp_globals.last_used_port = socket->port;
503
        }
535
            }
504
        fibril_rwlock_write_unlock( & udp_globals.lock );
536
            fibril_rwlock_write_unlock( & udp_globals.lock );
505
        fibril_rwlock_read_lock( & udp_globals.lock );
537
            fibril_rwlock_read_lock( & udp_globals.lock );
-
 
538
            // might be changed in the meantime
-
 
539
        }while( socket->port <= 0 );
506
    }
540
    }
507
 
541
 
508
    // TODO do not ask all the time
542
    // TODO do not ask all the time
509
    ERROR_PROPAGATE( ip_packet_size_req( udp_globals.ip_phone, -1, & udp_globals.packet_dimension.addr_len, & udp_globals.packet_dimension.prefix, & udp_globals.packet_dimension.content, & udp_globals.packet_dimension.suffix ));
543
    ERROR_PROPAGATE( ip_packet_size_req( udp_globals.ip_phone, -1, & udp_globals.packet_dimension.addr_len, & udp_globals.packet_dimension.prefix, & udp_globals.packet_dimension.content, & udp_globals.packet_dimension.suffix ));
510
 
544
 
511
    // read the first packet fragment
545
    // read the first packet fragment
512
    result = tl_socket_read_packet_data( udp_globals.net_phone, & packet, sizeof( udp_header_t ), & udp_globals.packet_dimension, addr, addrlen );
546
    result = tl_socket_read_packet_data( udp_globals.net_phone, & packet, sizeof( udp_header_t ), & udp_globals.packet_dimension, addr, addrlen );
513
    if( result < 0 ) return result;
547
    if( result < 0 ) return result;
514
    total_length = ( size_t ) result;
548
    total_length = ( size_t ) result;
515
    if( udp_globals.checksum_computing ){
549
    if( udp_globals.checksum_computing ){
516
        checksum = compute_checksum( 0, packet_get_data( packet ), packet_get_data_length( packet ));
550
        checksum = compute_checksum( 0, packet_get_data( packet ), packet_get_data_length( packet ));
517
    }else{
551
    }else{
518
        checksum = 0;
552
        checksum = 0;
519
    }
553
    }
520
    // prefix the udp header
554
    // prefix the udp header
521
    header = PACKET_PREFIX( packet, udp_header_t );
555
    header = PACKET_PREFIX( packet, udp_header_t );
522
    if( ! header ){
556
    if( ! header ){
523
        return udp_release_and_return( packet, ENOMEM );
557
        return udp_release_and_return( packet, ENOMEM );
524
    }
558
    }
525
    bzero( header, sizeof( * header ));
559
    bzero( header, sizeof( * header ));
526
    // read the rest of the packet fragments
560
    // read the rest of the packet fragments
527
    for( index = 1; index < fragments; ++ index ){
561
    for( index = 1; index < fragments; ++ index ){
528
        result = tl_socket_read_packet_data( udp_globals.net_phone, & next_packet, 0, & udp_globals.packet_dimension, addr, addrlen );
562
        result = tl_socket_read_packet_data( udp_globals.net_phone, & next_packet, 0, & udp_globals.packet_dimension, addr, addrlen );
529
        if( result < 0 ){
563
        if( result < 0 ){
530
            return udp_release_and_return( packet, result );
564
            return udp_release_and_return( packet, result );
531
        }
565
        }
532
        packet = pq_add( packet, next_packet, index, 0 );
566
        packet = pq_add( packet, next_packet, index, 0 );
533
        total_length += ( size_t ) result;
567
        total_length += ( size_t ) result;
534
        if( udp_globals.checksum_computing ){
568
        if( udp_globals.checksum_computing ){
535
            checksum = compute_checksum( checksum, packet_get_data( next_packet ), packet_get_data_length( next_packet ));
569
            checksum = compute_checksum( checksum, packet_get_data( next_packet ), packet_get_data_length( next_packet ));
536
        }
570
        }
537
    }
571
    }
538
    // set the udp header
572
    // set the udp header
539
    header->source_port = htons( socket->port );
573
    header->source_port = htons(( socket->port > 0 ) ? socket->port : 0 );
540
    header->destination_port = htons( dest_port );
574
    header->destination_port = htons( dest_port );
541
    header->total_length = htons( total_length + sizeof( udp_header_t ));
575
    header->total_length = htons( total_length + sizeof( * header ));
542
    header->checksum = 0;
576
    header->checksum = 0;
543
    if( udp_globals.checksum_computing ){
577
    if( udp_globals.checksum_computing ){
544
        if( ERROR_OCCURRED( ip_get_route_req( udp_globals.ip_phone, IPPROTO_UDP, addr, addrlen, & device_id, & ip_header, & headerlen ))){
578
        if( ERROR_OCCURRED( ip_get_route_req( udp_globals.ip_phone, IPPROTO_UDP, addr, addrlen, & device_id, & ip_header, & headerlen ))){
545
            return udp_release_and_return( packet, ERROR_CODE );
579
            return udp_release_and_return( packet, ERROR_CODE );
546
        }
580
        }
547
        if( ERROR_OCCURRED( ip_client_set_pseudo_header_data_length( ip_header, headerlen, total_length + sizeof( udp_header_t )))){
581
        if( ERROR_OCCURRED( ip_client_set_pseudo_header_data_length( ip_header, headerlen, total_length + sizeof( udp_header_t )))){
548
            free( ip_header );
582
            free( ip_header );
549
            return udp_release_and_return( packet, ERROR_CODE );
583
            return udp_release_and_return( packet, ERROR_CODE );
550
        }
584
        }
551
/*//        TODO remove debug dump:
585
/*//        TODO remove debug dump:
552
        uint8_t *   data;
586
        uint8_t *   data;
553
        data = ip_header;
587
        data = ip_header;
554
        printf( "ip_header:\tlength\t= %d\n\tdata\t= %.2hhX %.2hhX %.2hhX %.2hhX:%.2hhX %.2hhX %.2hhX %.2hhX:%.2hhX %.2hhX %.2hhX %.2hhX\n", headerlen, data[ 0 ], data[ 1 ], data[ 2 ], data[ 3 ], data[ 4 ], data[ 5 ], data[ 6 ], data[ 7 ], data[ 8 ], data[ 9 ], data[ 10 ], data[ 11 ] );
588
        printf( "ip_header:\tlength\t= %d\n\tdata\t= %.2hhX %.2hhX %.2hhX %.2hhX:%.2hhX %.2hhX %.2hhX %.2hhX:%.2hhX %.2hhX %.2hhX %.2hhX\n", headerlen, data[ 0 ], data[ 1 ], data[ 2 ], data[ 3 ], data[ 4 ], data[ 5 ], data[ 6 ], data[ 7 ], data[ 8 ], data[ 9 ], data[ 10 ], data[ 11 ] );
555
*/      checksum = compute_checksum( checksum, ip_header, headerlen );
589
*/      checksum = compute_checksum( checksum, ip_header, headerlen );
556
        checksum = compute_checksum( checksum, ( uint8_t * ) header, sizeof( * header ));
590
        checksum = compute_checksum( checksum, ( uint8_t * ) header, sizeof( * header ));
557
        header->checksum = htons( flip_checksum( compact_checksum( checksum )));
591
        header->checksum = htons( flip_checksum( compact_checksum( checksum )));
558
        free( ip_header );
592
        free( ip_header );
559
    }else{
593
    }else{
560
        device_id = -1;
594
        device_id = -1;
561
    }
595
    }
562
    // prepare the first packet fragment
596
    // prepare the first packet fragment
563
    if( ERROR_OCCURRED( ip_client_prepare_packet( packet, IPPROTO_UDP, 0, 0, 0, 0 ))){
597
    if( ERROR_OCCURRED( ip_client_prepare_packet( packet, IPPROTO_UDP, 0, 0, 0, 0 ))){
564
        return udp_release_and_return( packet, ERROR_CODE );
598
        return udp_release_and_return( packet, ERROR_CODE );
565
    }
599
    }
566
    // send the packet
600
    // send the packet
567
    return ip_send_msg( udp_globals.ip_phone, device_id, packet, SERVICE_UDP, 0 );
601
    return ip_send_msg( udp_globals.ip_phone, device_id, packet, SERVICE_UDP, 0 );
568
}
602
}
569
 
603
 
570
int udp_recvfrom_message( socket_cores_ref local_sockets, int socket_id, int flags, size_t * addrlen ){
604
int udp_recvfrom_message( socket_cores_ref local_sockets, int socket_id, int flags, size_t * addrlen ){
571
    ERROR_DECLARE;
605
    ERROR_DECLARE;
572
 
606
 
573
    socket_core_ref socket;
607
    socket_core_ref socket;
574
    int             packet_id;
608
    int             packet_id;
575
    packet_t        packet;
609
    packet_t        packet;
576
    udp_header_ref  header;
610
    udp_header_ref  header;
577
    struct sockaddr *   addr;
611
    struct sockaddr *   addr;
578
    size_t          length;
612
    size_t          length;
579
    packet_t        next_packet;
613
    packet_t        next_packet;
580
    uint8_t *       data;
614
    uint8_t *       data;
581
    size_t          fragments;
615
    size_t          fragments;
582
    size_t *        lengths;
616
    size_t *        lengths;
583
    size_t          index;
617
    size_t          index;
584
    int             result;
618
    int             result;
585
 
619
 
586
    // find the socket
620
    // find the socket
587
    socket = socket_cores_find( local_sockets, socket_id );
621
    socket = socket_cores_find( local_sockets, socket_id );
588
    if( ! socket ) return ENOTSOCK;
622
    if( ! socket ) return ENOTSOCK;
589
    // get the next received packet
623
    // get the next received packet
590
    packet_id = dyn_fifo_value( & socket->received );
624
    packet_id = dyn_fifo_value( & socket->received );
591
    if( packet_id < 0 ) return NO_DATA;
625
    if( packet_id < 0 ) return NO_DATA;
592
    ERROR_PROPAGATE( packet_translate( udp_globals.net_phone, & packet, packet_id ));
626
    ERROR_PROPAGATE( packet_translate( udp_globals.net_phone, & packet, packet_id ));
593
    // get udp header
627
    // get udp header
594
    data = packet_get_data( packet );
628
    data = packet_get_data( packet );
595
    if( ! data ){
629
    if( ! data ){
596
        pq_release( udp_globals.net_phone, packet_id );
630
        pq_release( udp_globals.net_phone, packet_id );
597
        return NO_DATA;
631
        return NO_DATA;
598
    }
632
    }
599
    header = ( udp_header_ref ) data;
633
    header = ( udp_header_ref ) data;
600
 
634
 
601
    // set the source address port
635
    // set the source address port
602
    result = packet_get_addr( packet, ( uint8_t ** ) & addr, NULL );
636
    result = packet_get_addr( packet, ( uint8_t ** ) & addr, NULL );
603
    if( ERROR_OCCURRED( tl_set_address_port( addr, result, ntohs( header->source_port )))){
637
    if( ERROR_OCCURRED( tl_set_address_port( addr, result, ntohs( header->source_port )))){
604
        pq_release( udp_globals.net_phone, packet_id );
638
        pq_release( udp_globals.net_phone, packet_id );
605
        return ERROR_CODE;
639
        return ERROR_CODE;
606
    }
640
    }
607
    * addrlen = ( size_t ) result;
641
    * addrlen = ( size_t ) result;
608
    // send the source address
642
    // send the source address
609
    ERROR_PROPAGATE( data_reply( addr, * addrlen ));
643
    ERROR_PROPAGATE( data_reply( addr, * addrlen ));
610
 
644
 
611
    next_packet = pq_next( packet );
645
    next_packet = pq_next( packet );
612
    if( ! next_packet ){
646
    if( ! next_packet ){
613
        // write all if only one fragment
647
        // write all if only one fragment
614
        ERROR_PROPAGATE( data_reply( data + sizeof( udp_header_t ), packet_get_data_length( packet ) - sizeof( udp_header_t )));
648
        ERROR_PROPAGATE( data_reply( data + sizeof( udp_header_t ), packet_get_data_length( packet ) - sizeof( udp_header_t )));
615
        // store the total length
649
        // store the total length
616
        length = packet_get_data_length( packet ) - sizeof( udp_header_t );
650
        length = packet_get_data_length( packet ) - sizeof( udp_header_t );
617
    }else{
651
    }else{
618
        // count the packet fragments
652
        // count the packet fragments
619
        fragments = 1;
653
        fragments = 1;
620
        next_packet = pq_next( packet );
654
        next_packet = pq_next( packet );
621
        while(( next_packet = pq_next( next_packet ))){
655
        while(( next_packet = pq_next( next_packet ))){
622
            ++ fragments;
656
            ++ fragments;
623
        }
657
        }
624
        // compute and store the fragment lengths
658
        // compute and store the fragment lengths
625
        lengths = ( size_t * ) malloc( sizeof( size_t ) * fragments + sizeof( size_t ));
659
        lengths = ( size_t * ) malloc( sizeof( size_t ) * fragments + sizeof( size_t ));
626
        if( ! lengths ) return ENOMEM;
660
        if( ! lengths ) return ENOMEM;
627
        lengths[ 0 ] = packet_get_data_length( packet ) - sizeof( udp_header_t );
661
        lengths[ 0 ] = packet_get_data_length( packet ) - sizeof( udp_header_t );
628
        lengths[ fragments ] = lengths[ 0 ];
662
        lengths[ fragments ] = lengths[ 0 ];
629
        next_packet = pq_next( packet );
663
        next_packet = pq_next( packet );
630
        for( index = 1; index < fragments; ++ index ){
664
        for( index = 1; index < fragments; ++ index ){
631
            lengths[ index ] = packet_get_data_length( next_packet );
665
            lengths[ index ] = packet_get_data_length( next_packet );
632
            lengths[ fragments ] += lengths[ index ];
666
            lengths[ fragments ] += lengths[ index ];
633
            next_packet = pq_next( packet );
667
            next_packet = pq_next( packet );
634
        }while( next_packet );
668
        }while( next_packet );
635
        // write the fragment lengths
669
        // write the fragment lengths
636
        ERROR_PROPAGATE( data_reply( lengths, sizeof( int ) * ( fragments + 1 )));
670
        ERROR_PROPAGATE( data_reply( lengths, sizeof( int ) * ( fragments + 1 )));
637
        // write the first fragment
671
        // write the first fragment
638
        ERROR_PROPAGATE( data_reply( data + sizeof( udp_header_t ), lengths[ 0 ] ));
672
        ERROR_PROPAGATE( data_reply( data + sizeof( udp_header_t ), lengths[ 0 ] ));
639
        next_packet = pq_next( packet );
673
        next_packet = pq_next( packet );
640
        // write the rest of the fragments
674
        // write the rest of the fragments
641
        for( index = 1; index < fragments; ++ index ){
675
        for( index = 1; index < fragments; ++ index ){
642
            ERROR_PROPAGATE( data_reply( packet_get_data( next_packet ), lengths[ index ] ));
676
            ERROR_PROPAGATE( data_reply( packet_get_data( next_packet ), lengths[ index ] ));
643
            next_packet = pq_next( packet );
677
            next_packet = pq_next( packet );
644
        }while( next_packet );
678
        }while( next_packet );
645
        // store the total length
679
        // store the total length
646
        length = lengths[ fragments ];
680
        length = lengths[ fragments ];
647
        free( lengths );
681
        free( lengths );
648
    }
682
    }
649
    // release the packet
683
    // release the packet
650
    dyn_fifo_pop( & socket->received );
684
    dyn_fifo_pop( & socket->received );
651
    pq_release( udp_globals.net_phone, packet_get_id( packet ));
685
    pq_release( udp_globals.net_phone, packet_get_id( packet ));
652
    // return the total length
686
    // return the total length
653
    return ( int ) length;
687
    return ( int ) length;
654
}
688
}
655
 
689
 
656
int udp_release_and_return( packet_t packet, int result ){
690
int udp_release_and_return( packet_t packet, int result ){
657
    pq_release( udp_globals.net_phone, packet_get_id( packet ));
691
    pq_release( udp_globals.net_phone, packet_get_id( packet ));
658
    return result;
692
    return result;
659
}
693
}
660
 
694
 
661
/** @}
695
/** @}
662
 */
696
 */
663
 
697