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3992 mejdrech 1
/*
2
 * Copyright (c) 2009 Lukas Mejdrech
3
 * All rights reserved.
4
 *
5
 * Redistribution and use in source and binary forms, with or without
6
 * modification, are permitted provided that the following conditions
7
 * are met:
8
 *
9
 * - Redistributions of source code must retain the above copyright
10
 *   notice, this list of conditions and the following disclaimer.
11
 * - Redistributions in binary form must reproduce the above copyright
12
 *   notice, this list of conditions and the following disclaimer in the
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
15
 *   derived from this software without specific prior written permission.
16
 *
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
19
 * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
20
 * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
21
 * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
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
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
26
 * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
27
 */
28
 
29
/** @addtogroup eth
30
 *  @{
31
 */
32
 
33
/** @file
34
 *  Ethernet module implementation.
35
 *  @see eth.h
36
 */
37
 
38
#include <async.h>
39
#include <malloc.h>
4192 mejdrech 40
#include <mem.h>
3992 mejdrech 41
#include <stdio.h>
4582 mejdrech 42
#include <string.h>
3992 mejdrech 43
 
44
#include <ipc/ipc.h>
45
#include <ipc/services.h>
46
 
47
#include "../../err.h"
48
#include "../../messages.h"
49
#include "../../modules.h"
50
 
51
#include "../../include/byteorder.h"
4075 mejdrech 52
#include "../../include/crc.h"
53
#include "../../include/ethernet_lsap.h"
3992 mejdrech 54
#include "../../include/ethernet_protocols.h"
55
#include "../../include/protocol_map.h"
4243 mejdrech 56
#include "../../include/device.h"
4307 mejdrech 57
#include "../../include/netif_interface.h"
4332 mejdrech 58
#include "../../include/net_interface.h"
4307 mejdrech 59
#include "../../include/nil_interface.h"
60
#include "../../include/il_interface.h"
3992 mejdrech 61
 
62
#include "../../structures/measured_strings.h"
63
#include "../../structures/packet/packet_client.h"
64
 
4261 mejdrech 65
#include "../nil_module.h"
66
 
3992 mejdrech 67
#include "eth.h"
68
#include "eth_header.h"
69
 
4350 mejdrech 70
/** Reserved packet prefix length.
71
 */
3992 mejdrech 72
#define ETH_PREFIX      ( sizeof( eth_header_t ) + sizeof( eth_header_lsap_t ) + sizeof( eth_header_snap_t ))
4350 mejdrech 73
 
74
/** Reserved packet suffix length.
75
 */
4075 mejdrech 76
#define ETH_SUFFIX      sizeof( eth_fcs_t )
4350 mejdrech 77
 
78
/** Maximum packet content length.
79
 */
4075 mejdrech 80
#define ETH_MAX_CONTENT 1500
4350 mejdrech 81
 
82
/** Minimum packet content length.
83
 */
4558 mejdrech 84
#define ETH_MIN_CONTENT 46u
4350 mejdrech 85
 
86
/** Maximum tagged packet content length.
87
 */
4332 mejdrech 88
#define ETH_MAX_TAGGED_CONTENT( flags ) ( ETH_MAX_CONTENT - (( IS_8023_2_LSAP( flags ) || IS_8023_2_SNAP( flags )) ? sizeof( eth_header_lsap_t ) : 0 ) - ( IS_8023_2_SNAP( flags ) ? sizeof( eth_header_snap_t ) : 0 ))
4350 mejdrech 89
 
90
/** Minimum tagged packet content length.
91
 */
4332 mejdrech 92
#define ETH_MIN_TAGGED_CONTENT( flags ) ( ETH_MIN_CONTENT - (( IS_8023_2_LSAP( flags ) || IS_8023_2_SNAP( flags )) ? sizeof( eth_header_lsap_t ) : 0 ) - ( IS_8023_2_SNAP( flags ) ? sizeof( eth_header_snap_t ) : 0 ))
3992 mejdrech 93
 
4350 mejdrech 94
/** Dummy flag shift value.
95
 */
4332 mejdrech 96
#define ETH_DUMMY_SHIFT 0
4350 mejdrech 97
 
98
/** Mode flag shift value.
99
 */
4332 mejdrech 100
#define ETH_MODE_SHIFT  1
101
 
102
/** Dummy device flag.
103
 *  Preamble and FCS are mandatory part of the packets.
104
 */
105
#define ETH_DUMMY               ( 1 << ETH_DUMMY_SHIFT )
4350 mejdrech 106
 
107
/** Returns the dummy flag.
108
 *  @see ETH_DUMMY
109
 */
4332 mejdrech 110
#define IS_DUMMY( flags )       (( flags ) & ETH_DUMMY )
111
 
112
/** Device mode flags.
113
 *  @see ETH_DIX
114
 *  @see ETH_8023_2_LSAP
115
 *  @see ETH_8023_2_SNAP
116
 */
117
#define ETH_MODE_MASK           ( 3 << ETH_MODE_SHIFT )
4350 mejdrech 118
 
119
/** DIX Ethernet mode flag.
120
 */
4332 mejdrech 121
#define ETH_DIX                 ( 1 << ETH_MODE_SHIFT )
4350 mejdrech 122
 
123
/** Returns whether the DIX Ethernet mode flag is set.
124
 *  @param flags The ethernet flags. Input parameter.
125
 *  @see ETH_DIX
126
 */
4332 mejdrech 127
#define IS_DIX( flags )         ((( flags ) & ETH_MODE_MASK ) == ETH_DIX )
4350 mejdrech 128
 
129
/** 802.3 + 802.2 + LSAP mode flag.
130
 */
4332 mejdrech 131
#define ETH_8023_2_LSAP         ( 2 << ETH_MODE_SHIFT )
4350 mejdrech 132
 
133
/** Returns whether the 802.3 + 802.2 + LSAP mode flag is set.
134
 *  @param flags The ethernet flags. Input parameter.
135
 *  @see ETH_8023_2_LSAP
136
 */
4332 mejdrech 137
#define IS_8023_2_LSAP( flags ) ((( flags ) & ETH_MODE_MASK ) == ETH_8023_2_LSAP )
4350 mejdrech 138
 
139
/** 802.3 + 802.2 + LSAP + SNAP mode flag.
140
 */
4332 mejdrech 141
#define ETH_8023_2_SNAP         ( 3 << ETH_MODE_SHIFT )
4350 mejdrech 142
 
143
/** Returns whether the 802.3 + 802.2 + LSAP + SNAP mode flag is set.
144
 *  @param flags The ethernet flags. Input parameter.
145
 *  @see ETH_8023_2_SNAP
146
 */
4332 mejdrech 147
#define IS_8023_2_SNAP( flags ) ((( flags ) & ETH_MODE_MASK ) == ETH_8023_2_SNAP )
148
 
4350 mejdrech 149
/** Type definition of the ethernet address type.
150
 *  @see eth_addr_type
151
 */
3992 mejdrech 152
typedef enum eth_addr_type  eth_addr_type_t;
4350 mejdrech 153
 
154
/** Type definition of the ethernet address type pointer.
155
 *  @see eth_addr_type
156
 */
3992 mejdrech 157
typedef eth_addr_type_t *   eth_addr_type_ref;
158
 
4350 mejdrech 159
/** Ethernet address type.
160
 */
3992 mejdrech 161
enum eth_addr_type{
4350 mejdrech 162
    /** Local address.
163
     */
3992 mejdrech 164
    ETH_LOCAL_ADDR,
4350 mejdrech 165
    /** Broadcast address.
166
     */
3992 mejdrech 167
    ETH_BROADCAST_ADDR
168
};
169
 
4350 mejdrech 170
/** Ethernet module global data.
3992 mejdrech 171
 */
172
eth_globals_t   eth_globals;
173
 
174
/** Processes IPC messages from the registered device driver modules in an infinite loop.
175
 *  @param iid The message identifier. Input parameter.
176
 *  @param icall The message parameters. Input/output parameter.
177
 */
178
void    eth_receiver( ipc_callid_t iid, ipc_call_t * icall );
179
 
4350 mejdrech 180
/** Registers new device or updates the MTU of an existing one.
181
 *  Determines the device local hardware address.
182
 *  @param device_id The new device identifier. Input parameter.
183
 *  @param service The device driver service. Input parameter.
184
 *  @param mtu The device maximum transmission unit. Input parameter.
185
 *  @returns EOK on success.
186
 *  @returns EEXIST if the device with the different service exists.
187
 *  @returns ENOMEM if there is not enough memory left.
188
 *  @returns Other error codes as defined for the net_get_device_conf_req() function.
189
 *  @returns Other error codes as defined for the netif_bind_service() function.
190
 *  @returns Other error codes as defined for the netif_get_addr() function.
191
 */
192
int eth_device_message( device_id_t device_id, services_t service, size_t mtu );
3992 mejdrech 193
 
4350 mejdrech 194
/** Registers receiving module service.
195
 *  Passes received packets for this service.
196
 *  @param service The module service. Input parameter.
197
 *  @param phone The service phone. Input parameter.
198
 *  @returns EOK on success.
199
 *  @returns ENOENT if the service is not known.
200
 *  @returns ENOMEM if there is not enough memory left.
201
 */
202
int nil_register_message( services_t service, int phone );
3992 mejdrech 203
 
4350 mejdrech 204
/** Returns the device packet dimensions for sending.
205
 *  @param device_id The device identifier. Input parameter.
206
 *  @param addr_len The minimum reserved address length. Output parameter.
207
 *  @param prefix The minimum reserved prefix size. Output parameter.
208
 *  @param content The maximum content size. Output parameter.
209
 *  @param suffix The minimum reserved suffix size. Output parameter.
210
 *  @returns EOK on success.
211
 *  @returns EBADMEM if either one of the parameters is NULL.
212
 *  @returns ENOENT if there is no such device.
213
 */
3992 mejdrech 214
int eth_packet_space_message( device_id_t device_id, size_t * addr_len, size_t * prefix, size_t * content, size_t * suffix );
4350 mejdrech 215
 
216
/** Returns the device hardware address.
217
 *  @param device_id The device identifier. Input parameter.
218
 *  @param type Type of the desired address. Input parameter
219
 *  @param address The device hardware address. Output parameter.
220
 *  @returns EOK on success.
221
 *  @returns EBADMEM if the address parameter is NULL.
222
 *  @returns ENOENT if there no such device.
223
 */
3992 mejdrech 224
int eth_addr_message( device_id_t device_id, eth_addr_type_t type, measured_string_ref * address );
4350 mejdrech 225
 
226
/** Sends the packet queue.
227
 *  Sends only packet successfully processed by the eth_prepare_packet() function.
228
 *  @param device_id The device identifier. Input parameter.
229
 *  @param packet The packet queue. Input parameter.
230
 *  @param sender The sending module service. Input parameter.
231
 *  @returns EOK on success.
232
 *  @returns ENOENT if there no such device.
233
 *  @returns EINVAL if the service parameter is not known.
234
 */
3992 mejdrech 235
int eth_send_message( device_id_t device_id, packet_t packet, services_t sender );
4350 mejdrech 236
 
237
/** Processes the received packet and chooses the target registered module.
238
 *  @param flags The device flags. Input parameter.
239
 *  @param packet The packet. Input parameter.
240
 *  @returns The target registered module.
241
 *  @returns NULL if the packet is not long enough.
242
 *  @returns NULL if the packet is too long.
243
 *  @returns NULL if the raw ethernet protocol is used.
244
 *  @returns NULL if the dummy device FCS checksum is invalid.
245
 *  @returns NULL if the packet address length is not big enough.
246
 */
4332 mejdrech 247
eth_proto_ref   eth_process_packet( int flags, packet_t packet );
4350 mejdrech 248
 
249
/** Prepares the packet for sending.
250
 *  @param flags The device flags. Input parameter.
251
 *  @param packet The packet. Input parameter.
252
 *  @param src_addr The source hardware address. Input parameter.
253
 *  @param ethertype The ethernet protocol type. Input parameter.
254
 *  @param mtu The device maximum transmission unit. Input parameter.
255
 *  @returns EOK on success.
256
 *  @returns EINVAL if the packet addresses length is not long enough.
257
 *  @returns EINVAL if the packet is bigger than the device MTU.
258
 *  @returns ENOMEM if there is not enough memory in the packet.
259
 */
4351 mejdrech 260
int eth_prepare_packet( int flags, packet_t packet, uint8_t * src_addr, int ethertype, size_t mtu );
3992 mejdrech 261
 
4350 mejdrech 262
DEVICE_MAP_IMPLEMENT( eth_devices, eth_device_t )
263
 
264
INT_MAP_IMPLEMENT( eth_protos, eth_proto_t )
265
 
4307 mejdrech 266
int nil_device_state_msg( int nil_phone, device_id_t device_id, int state ){
4261 mejdrech 267
    int             index;
268
    eth_proto_ref   proto;
269
 
270
    //TODO clear device if off?
4582 mejdrech 271
    fibril_rwlock_read_lock( & eth_globals.protos_lock );
4261 mejdrech 272
    for( index = eth_protos_count( & eth_globals.protos ) - 1; index >= 0; -- index ){
273
        proto = eth_protos_get_index( & eth_globals.protos, index );
4351 mejdrech 274
        if( proto && proto->phone ) il_device_state_msg( proto->phone, device_id, state, proto->service );
4261 mejdrech 275
    }
4582 mejdrech 276
    fibril_rwlock_read_unlock( & eth_globals.protos_lock );
4307 mejdrech 277
    return EOK;
4261 mejdrech 278
}
279
 
4307 mejdrech 280
int nil_initialize( int net_phone ){
3992 mejdrech 281
    ERROR_DECLARE;
282
 
4582 mejdrech 283
    fibril_rwlock_initialize( & eth_globals.devices_lock );
284
    fibril_rwlock_initialize( & eth_globals.protos_lock );
285
    fibril_rwlock_write_lock( & eth_globals.devices_lock );
286
    fibril_rwlock_write_lock( & eth_globals.protos_lock );
4307 mejdrech 287
    eth_globals.net_phone = net_phone;
3992 mejdrech 288
    eth_globals.broadcast_addr = measured_string_create_bulk( "\xFF\xFF\xFF\xFF\xFF\xFF", CONVERT_SIZE( uint8_t, char, ETH_ADDR ));
289
    if( ! eth_globals.broadcast_addr ) return ENOMEM;
290
    ERROR_PROPAGATE( eth_devices_initialize( & eth_globals.devices ));
291
    if( ERROR_OCCURRED( eth_protos_initialize( & eth_globals.protos ))){
292
        eth_devices_destroy( & eth_globals.devices );
293
        return ERROR_CODE;
294
    }
4582 mejdrech 295
    fibril_rwlock_write_unlock( & eth_globals.protos_lock );
296
    fibril_rwlock_write_unlock( & eth_globals.devices_lock );
3992 mejdrech 297
    return EOK;
298
}
299
 
300
int eth_device_message( device_id_t device_id, services_t service, size_t mtu ){
301
    ERROR_DECLARE;
302
 
303
    eth_device_ref  device;
4192 mejdrech 304
    int             index;
4332 mejdrech 305
    measured_string_t   names[ 2 ] = {{ "ETH_MODE", 8 }, { "ETH_DUMMY", 9 }};
306
    measured_string_ref configuration;
4500 mejdrech 307
    size_t              count = sizeof( names ) / sizeof( measured_string_t );
4332 mejdrech 308
    char *              data;
3992 mejdrech 309
 
4582 mejdrech 310
    fibril_rwlock_write_lock( & eth_globals.devices_lock );
3992 mejdrech 311
    // an existing device?
312
    device = eth_devices_find( & eth_globals.devices, device_id );
313
    if( device ){
4163 mejdrech 314
        if( device->service != service ){
4307 mejdrech 315
            printf( "Device %d already exists\n", device->device_id );
4582 mejdrech 316
            fibril_rwlock_write_unlock( & eth_globals.devices_lock );
4163 mejdrech 317
            return EEXIST;
318
        }else{
3992 mejdrech 319
            // update mtu
320
            device->mtu = mtu;
4307 mejdrech 321
            printf( "Device %d already exists:\tMTU\t= %d\n", device->device_id, device->mtu );
3992 mejdrech 322
        }
323
    }else{
324
        // create a new device
325
        device = ( eth_device_ref ) malloc( sizeof( eth_device_t ));
326
        if( ! device ) return ENOMEM;
327
        device->device_id = device_id;
328
        device->service = service;
4332 mejdrech 329
        device->flags = 0;
330
        device->mtu = (( mtu > 0 ) && ( mtu <= ETH_MAX_TAGGED_CONTENT( device->flags ))) ? mtu : ETH_MAX_TAGGED_CONTENT( device->flags );
331
        configuration = & names[ 0 ];
332
        if( ERROR_OCCURRED( net_get_device_conf_req( eth_globals.net_phone, device->device_id, & configuration, count, & data ))){
4582 mejdrech 333
            fibril_rwlock_write_unlock( & eth_globals.devices_lock );
4332 mejdrech 334
            free( device );
335
            return ERROR_CODE;
336
        }
337
        if( configuration ){
338
            if( ! str_lcmp( configuration[ 0 ].value, "DIX", configuration[ 0 ].length )){
339
                device->flags |= ETH_DIX;
340
            }else if( ! str_lcmp( configuration[ 0 ].value, "8023_2_LSAP", configuration[ 0 ].length )){
341
                // TODO 8023_2_LSAP
342
                printf( "8023_2_LSAP is not supported (yet?), DIX used instead\n" );
343
                device->flags |= ETH_DIX;
344
            }else device->flags |= ETH_8023_2_SNAP;
345
            if(( configuration[ 1 ].value ) && ( configuration[ 1 ].value[ 0 ] == 'y' )){
346
                device->flags |= ETH_DUMMY;
347
            }
348
            net_free_settings( configuration, data );
349
        }else{
350
            device->flags |= ETH_8023_2_SNAP;
351
        }
3992 mejdrech 352
        // bind the device driver
4307 mejdrech 353
        device->phone = netif_bind_service( device->service, device->device_id, SERVICE_ETHERNET, eth_receiver );
4163 mejdrech 354
        if( device->phone < 0 ){
4582 mejdrech 355
            fibril_rwlock_write_unlock( & eth_globals.devices_lock );
4163 mejdrech 356
            free( device );
357
            return device->phone;
358
        }
3992 mejdrech 359
        // get hardware address
4243 mejdrech 360
        if( ERROR_OCCURRED( netif_get_addr( device->phone, device->device_id, & device->addr, & device->addr_data ))){
4582 mejdrech 361
            fibril_rwlock_write_unlock( & eth_globals.devices_lock );
3992 mejdrech 362
            free( device );
363
            return ERROR_CODE;
364
        }
365
        // add to the cache
4192 mejdrech 366
        index = eth_devices_add( & eth_globals.devices, device->device_id, device );
367
        if( index < 0 ){
4582 mejdrech 368
            fibril_rwlock_write_unlock( & eth_globals.devices_lock );
3992 mejdrech 369
            free( device->addr );
370
            free( device->addr_data );
371
            free( device );
4192 mejdrech 372
            return index;
3992 mejdrech 373
        }
4332 mejdrech 374
        printf( "New device registered:\n\tid\t= %d\n\tservice\t= %d\n\tMTU\t= %d\n\taddress\t= %X:%X:%X:%X:%X:%X\n\tflags\t= 0x%x\n", device->device_id, device->service, device->mtu, device->addr_data[ 0 ], device->addr_data[ 1 ], device->addr_data[ 2 ], device->addr_data[ 3 ], device->addr_data[ 4 ], device->addr_data[ 5 ], device->flags );
3992 mejdrech 375
    }
4582 mejdrech 376
    fibril_rwlock_write_unlock( & eth_globals.devices_lock );
3992 mejdrech 377
    return EOK;
378
}
379
 
4332 mejdrech 380
eth_proto_ref eth_process_packet( int flags, packet_t packet ){
3992 mejdrech 381
    ERROR_DECLARE;
382
 
383
    eth_header_ex_ref   header;
384
    size_t              length;
4558 mejdrech 385
    eth_type_t          type;
4075 mejdrech 386
    size_t              prefix;
387
    size_t              suffix;
388
    eth_fcs_ref         fcs;
4558 mejdrech 389
    uint8_t *           data;
3992 mejdrech 390
 
391
    length = packet_get_data_length( packet );
4332 mejdrech 392
    if( IS_DUMMY( flags )){
4153 mejdrech 393
        packet_trim( packet, sizeof( eth_preamble_t ), 0 );
394
    }
4332 mejdrech 395
    if( length < sizeof( eth_header_t ) + ETH_MIN_CONTENT + ( IS_DUMMY( flags ) ? ETH_SUFFIX : 0 )) return NULL;
4558 mejdrech 396
    data = packet_get_data( packet );
397
    header = ( eth_header_ex_ref ) data;
3992 mejdrech 398
    type = ntohs( header->header.ethertype );
399
    if( type >= ETH_MIN_PROTO ){
400
        // DIX Ethernet
4075 mejdrech 401
        prefix = sizeof( eth_header_t );
4332 mejdrech 402
        suffix = 0;
4558 mejdrech 403
        fcs = ( eth_fcs_ref ) data + length - sizeof( eth_fcs_t );
404
        length -= sizeof( eth_fcs_t );
4075 mejdrech 405
    }else if( type <= ETH_MAX_CONTENT ){
3992 mejdrech 406
        // translate "LSAP" values
4075 mejdrech 407
        if(( header->lsap.dsap == ETH_LSAP_GLSAP ) && ( header->lsap.ssap == ETH_LSAP_GLSAP )){
3992 mejdrech 408
            // raw packet
409
            // discard
4075 mejdrech 410
            return NULL;
3992 mejdrech 411
        }else if(( header->lsap.dsap == ETH_LSAP_SNAP ) && ( header->lsap.ssap == ETH_LSAP_SNAP )){
4075 mejdrech 412
            // IEEE 802.3 + 802.2 + LSAP + SNAP
3992 mejdrech 413
            // organization code not supported
414
            type = ntohs( header->snap.ethertype );
4243 mejdrech 415
            prefix = sizeof( eth_header_t ) + sizeof( eth_header_lsap_t ) + sizeof( eth_header_snap_t );
3992 mejdrech 416
        }else{
417
            // IEEE 802.3 + 802.2 LSAP
4075 mejdrech 418
            type = lsap_map( header->lsap.dsap );
419
            prefix = sizeof( eth_header_t ) + sizeof( eth_header_lsap_t);
3992 mejdrech 420
        }
4558 mejdrech 421
        suffix = ( type < ETH_MIN_CONTENT ) ? ETH_MIN_CONTENT - type : 0u;
422
        fcs = ( eth_fcs_ref ) data + prefix + type + suffix;
4075 mejdrech 423
        suffix += length - prefix - type;
4558 mejdrech 424
        length = prefix + type + suffix;
4075 mejdrech 425
    }else{
426
        // invalid length/type, should not occurr
427
        return NULL;
3992 mejdrech 428
    }
4332 mejdrech 429
    if( IS_DUMMY( flags )){
4558 mejdrech 430
        if(( ~ compute_crc32( ~ 0u, data, length * 8 )) != ntohl( * fcs )){
4153 mejdrech 431
            return NULL;
432
        }
4332 mejdrech 433
        suffix += sizeof( eth_fcs_t );
3992 mejdrech 434
    }
435
    if( ERROR_OCCURRED( packet_set_addr( packet, header->header.src, header->header.dest, ETH_ADDR ))
4075 mejdrech 436
    || ERROR_OCCURRED( packet_trim( packet, prefix, suffix ))){
437
        return NULL;
3992 mejdrech 438
    }
4075 mejdrech 439
    return eth_protos_find( & eth_globals.protos, type );
440
}
441
 
4307 mejdrech 442
int nil_received_msg( int nil_phone, device_id_t device_id, packet_t packet, services_t target ){
4075 mejdrech 443
    eth_proto_ref   proto;
444
    packet_t        next;
4153 mejdrech 445
    eth_device_ref  device;
4332 mejdrech 446
    int             flags;
4075 mejdrech 447
 
4582 mejdrech 448
    fibril_rwlock_read_lock( & eth_globals.devices_lock );
4153 mejdrech 449
    device = eth_devices_find( & eth_globals.devices, device_id );
450
    if( ! device ){
4582 mejdrech 451
        fibril_rwlock_read_unlock( & eth_globals.devices_lock );
4153 mejdrech 452
        return ENOENT;
453
    }
4332 mejdrech 454
    flags = device->flags;
4582 mejdrech 455
    fibril_rwlock_read_unlock( & eth_globals.devices_lock );
456
    fibril_rwlock_read_lock( & eth_globals.protos_lock );
4075 mejdrech 457
    do{
458
        next = pq_detach( packet );
4332 mejdrech 459
        proto = eth_process_packet( flags, packet );
4075 mejdrech 460
        if( proto ){
4307 mejdrech 461
            il_received_msg( proto->phone, device_id, packet, proto->service );
4075 mejdrech 462
        }else{
463
            // drop invalid/unknown
4307 mejdrech 464
            pq_release( eth_globals.net_phone, packet_get_id( packet ));
4075 mejdrech 465
        }
466
        packet = next;
467
    }while( packet );
4582 mejdrech 468
    fibril_rwlock_read_unlock( & eth_globals.protos_lock );
3992 mejdrech 469
    return EOK;
470
}
471
 
472
int eth_packet_space_message( device_id_t device_id, size_t * addr_len, size_t * prefix, size_t * content, size_t * suffix ){
473
    eth_device_ref  device;
474
 
4350 mejdrech 475
    if( !( addr_len && prefix && content && suffix )) return EBADMEM;
4582 mejdrech 476
    fibril_rwlock_read_lock( & eth_globals.devices_lock );
3992 mejdrech 477
    device = eth_devices_find( & eth_globals.devices, device_id );
478
    if( ! device ){
4582 mejdrech 479
        fibril_rwlock_read_unlock( & eth_globals.devices_lock );
3992 mejdrech 480
        return ENOENT;
481
    }
4243 mejdrech 482
    * content = device->mtu;
4582 mejdrech 483
    fibril_rwlock_read_unlock( & eth_globals.devices_lock );
3992 mejdrech 484
    * addr_len = ETH_ADDR;
485
    * prefix = ETH_PREFIX;
4075 mejdrech 486
    * suffix = ETH_MIN_CONTENT + ETH_SUFFIX;
3992 mejdrech 487
    return EOK;
488
}
489
 
490
int eth_addr_message( device_id_t device_id, eth_addr_type_t type, measured_string_ref * address ){
491
    eth_device_ref  device;
492
 
4350 mejdrech 493
    if( ! address ) return EBADMEM;
3992 mejdrech 494
    if( type == ETH_BROADCAST_ADDR ){
495
        * address = eth_globals.broadcast_addr;
496
    }else{
4582 mejdrech 497
        fibril_rwlock_read_lock( & eth_globals.devices_lock );
3992 mejdrech 498
        device = eth_devices_find( & eth_globals.devices, device_id );
499
        if( ! device ){
4582 mejdrech 500
            fibril_rwlock_read_unlock( & eth_globals.devices_lock );
3992 mejdrech 501
            return ENOENT;
502
        }
503
        * address = device->addr;
4582 mejdrech 504
        fibril_rwlock_read_unlock( & eth_globals.devices_lock );
3992 mejdrech 505
    }
506
    return ( * address ) ? EOK : ENOENT;
507
}
508
 
4261 mejdrech 509
int nil_register_message( services_t service, int phone ){
3992 mejdrech 510
    eth_proto_ref   proto;
511
    int             protocol;
4192 mejdrech 512
    int             index;
3992 mejdrech 513
 
514
    protocol = protocol_map( SERVICE_ETHERNET, service );
515
    if( ! protocol ) return ENOENT;
4582 mejdrech 516
    fibril_rwlock_write_lock( & eth_globals.protos_lock );
3992 mejdrech 517
    proto = eth_protos_find( & eth_globals.protos, protocol );
518
    if( proto ){
519
        proto->phone = phone;
4582 mejdrech 520
        fibril_rwlock_write_unlock( & eth_globals.protos_lock );
3992 mejdrech 521
        return EOK;
522
    }else{
523
        proto = ( eth_proto_ref ) malloc( sizeof( eth_proto_t ));
524
        if( ! proto ){
4582 mejdrech 525
            fibril_rwlock_write_unlock( & eth_globals.protos_lock );
3992 mejdrech 526
            return ENOMEM;
527
        }
528
        proto->service = service;
529
        proto->protocol = protocol;
530
        proto->phone = phone;
4192 mejdrech 531
        index = eth_protos_add( & eth_globals.protos, protocol, proto );
532
        if( index < 0 ){
4582 mejdrech 533
            fibril_rwlock_write_unlock( & eth_globals.protos_lock );
3992 mejdrech 534
            free( proto );
4192 mejdrech 535
            return index;
3992 mejdrech 536
        }
537
    }
4307 mejdrech 538
    printf( "New protocol registered:\n\tprotocol\t= 0x%x\n\tservice\t= %d\n\tphone\t= %d\n", proto->protocol, proto->service, proto->phone );
4582 mejdrech 539
    fibril_rwlock_write_unlock( & eth_globals.protos_lock );
3992 mejdrech 540
    return EOK;
541
}
542
 
4351 mejdrech 543
int eth_prepare_packet( int flags, packet_t packet, uint8_t * src_addr, int ethertype, size_t mtu ){
3992 mejdrech 544
    eth_header_ex_ref   header;
4332 mejdrech 545
    eth_header_ref      header_dix;
4075 mejdrech 546
    eth_fcs_ref         fcs;
3992 mejdrech 547
    uint8_t *           src;
548
    uint8_t *           dest;
4558 mejdrech 549
    size_t              length;
3992 mejdrech 550
    int                 i;
4075 mejdrech 551
    void *              padding;
4153 mejdrech 552
    eth_preamble_ref    preamble;
3992 mejdrech 553
 
4558 mejdrech 554
    i = packet_get_addr( packet, & src, & dest );
555
    if( i < 0 ) return i;
556
    if( i != ETH_ADDR ) return EINVAL;
4243 mejdrech 557
    length = packet_get_data_length( packet );
4351 mejdrech 558
    if( length > mtu ) return EINVAL;
4332 mejdrech 559
    if( length < ETH_MIN_TAGGED_CONTENT( flags )){
560
        padding = packet_suffix( packet, ETH_MIN_TAGGED_CONTENT( flags ) - length );
4243 mejdrech 561
        if( ! padding ) return ENOMEM;
4332 mejdrech 562
        bzero( padding, ETH_MIN_TAGGED_CONTENT( flags ) - length );
4243 mejdrech 563
    }
4332 mejdrech 564
    if( IS_DUMMY( flags )){
4153 mejdrech 565
        preamble = PACKET_PREFIX( packet, eth_preamble_t );
566
        if( ! preamble ) return ENOMEM;
567
        for( i = 0; i < 7; ++ i ) preamble->preamble[ i ] = ETH_PREAMBLE;
568
        preamble->sfd = ETH_SFD;
569
    }
4332 mejdrech 570
    // TODO LSAP only device
571
    if( IS_DIX( flags ) || IS_8023_2_LSAP( flags )){
572
        header_dix = PACKET_PREFIX( packet, eth_header_t );
4500 mejdrech 573
        if( ! header_dix ) return ENOMEM;
4332 mejdrech 574
        header_dix->ethertype = ( uint16_t ) ethertype;
575
        memcpy( header_dix->src, src_addr, ETH_ADDR );
576
        memcpy( header_dix->dest, dest, ETH_ADDR );
577
        src = & header_dix->dest[ 0 ];
578
    }else if( IS_8023_2_SNAP( flags )){
579
        header = PACKET_PREFIX( packet, eth_header_ex_t );
580
        if( ! header ) return ENOMEM;
581
        header->header.ethertype = htons( length + sizeof( eth_header_lsap_t ) + sizeof( eth_header_snap_t ));
582
        header->lsap.dsap = ( uint16_t ) ETH_LSAP_SNAP;
583
        header->lsap.ssap = header->lsap.dsap;
584
        header->lsap.ctrl = 0;
585
        for( i = 0; i < 3; ++ i ) header->snap.proto[ i ] = 0;
586
        header->snap.ethertype = ( uint16_t ) ethertype;
587
        memcpy( header->header.src, src_addr, ETH_ADDR );
588
        memcpy( header->header.dest, dest, ETH_ADDR );
589
        src = & header->header.dest[ 0 ];
590
    }
591
    if( IS_DUMMY( flags )){
4153 mejdrech 592
        fcs = PACKET_SUFFIX( packet, eth_fcs_t );
593
        if( ! fcs ) return ENOMEM;
4558 mejdrech 594
        * fcs = htonl( ~ compute_crc32( ~ 0u, src, length * 8 ));
4153 mejdrech 595
    }
4075 mejdrech 596
    return EOK;
597
}
598
 
599
int eth_send_message( device_id_t device_id, packet_t packet, services_t sender ){
600
    ERROR_DECLARE;
601
 
602
    eth_device_ref      device;
603
    packet_t            next;
604
    packet_t            tmp;
605
    int                 ethertype;
606
 
607
    ethertype = htons( protocol_map( SERVICE_ETHERNET, sender ));
608
    if( ! ethertype ){
4307 mejdrech 609
        pq_release( eth_globals.net_phone, packet_get_id( packet ));
4075 mejdrech 610
        return EINVAL;
3992 mejdrech 611
    }
4582 mejdrech 612
    fibril_rwlock_read_lock( & eth_globals.devices_lock );
4075 mejdrech 613
    device = eth_devices_find( & eth_globals.devices, device_id );
614
    if( ! device ){
4582 mejdrech 615
        fibril_rwlock_read_unlock( & eth_globals.devices_lock );
4075 mejdrech 616
        return ENOENT;
617
    }
4192 mejdrech 618
    // process packet queue
4075 mejdrech 619
    next = packet;
620
    do{
4351 mejdrech 621
        if( ERROR_OCCURRED( eth_prepare_packet( device->flags, next, ( uint8_t * ) device->addr->value, ethertype, device->mtu ))){
4075 mejdrech 622
            // release invalid packet
623
            tmp = pq_detach( next );
4500 mejdrech 624
            if( next == packet ) packet = tmp;
4307 mejdrech 625
            pq_release( eth_globals.net_phone, packet_get_id( next ));
4075 mejdrech 626
            next = tmp;
627
        }else{
628
            next = pq_next( next );
629
        }
630
    }while( next );
631
    // send packet queue
4500 mejdrech 632
    if( packet ){
633
        netif_send_msg( device->phone, device_id, packet, SERVICE_ETHERNET );
634
    }
4582 mejdrech 635
    fibril_rwlock_read_unlock( & eth_globals.devices_lock );
3992 mejdrech 636
    return EOK;
637
}
638
 
4261 mejdrech 639
int nil_message( ipc_callid_t callid, ipc_call_t * call, ipc_call_t * answer, int * answer_count ){
3992 mejdrech 640
    ERROR_DECLARE;
641
 
642
    measured_string_ref address;
643
    packet_t            packet;
644
 
4307 mejdrech 645
//  printf( "message %d - %d\n", IPC_GET_METHOD( * call ), NET_NIL_FIRST );
3992 mejdrech 646
    * answer_count = 0;
647
    switch( IPC_GET_METHOD( * call )){
648
        case IPC_M_PHONE_HUNGUP:
649
            return EOK;
650
        case NET_NIL_DEVICE:
4261 mejdrech 651
            return eth_device_message( IPC_GET_DEVICE( call ), IPC_GET_SERVICE( call ), NIL_GET_MTU( call ));
3992 mejdrech 652
        case NET_NIL_SEND:
4307 mejdrech 653
            ERROR_PROPAGATE( packet_translate( eth_globals.net_phone, & packet, IPC_GET_PACKET( call )));
3992 mejdrech 654
            return eth_send_message( IPC_GET_DEVICE( call ), packet, IPC_GET_SERVICE( call ));
655
        case NET_NIL_PACKET_SPACE:
656
            ERROR_PROPAGATE( eth_packet_space_message( IPC_GET_DEVICE( call ), IPC_SET_ADDR( answer ), IPC_SET_PREFIX( answer ), IPC_SET_CONTENT( answer ), IPC_SET_SUFFIX( answer )));
4500 mejdrech 657
            * answer_count = 4;
3992 mejdrech 658
            return EOK;
659
        case NET_NIL_ADDR:
4192 mejdrech 660
            ERROR_PROPAGATE( eth_addr_message( IPC_GET_DEVICE( call ), ETH_LOCAL_ADDR, & address ));
661
            return measured_strings_reply( address, 1 );
3992 mejdrech 662
        case NET_NIL_BROADCAST_ADDR:
4192 mejdrech 663
            ERROR_PROPAGATE( eth_addr_message( IPC_GET_DEVICE( call ), ETH_BROADCAST_ADDR, & address ));
664
            return measured_strings_reply( address, 1 );
3992 mejdrech 665
        case IPC_M_CONNECT_TO_ME:
4261 mejdrech 666
            return nil_register_message( NIL_GET_PROTO( call ), IPC_GET_PHONE( call ));
3992 mejdrech 667
    }
668
    return ENOTSUP;
669
}
670
 
671
void eth_receiver( ipc_callid_t iid, ipc_call_t * icall ){
672
    ERROR_DECLARE;
673
 
674
    packet_t        packet;
675
 
676
    while( true ){
4332 mejdrech 677
//      printf( "message %d - %d\n", IPC_GET_METHOD( * icall ), NET_NIL_FIRST );
3992 mejdrech 678
        switch( IPC_GET_METHOD( * icall )){
679
            case NET_NIL_DEVICE_STATE:
4307 mejdrech 680
                nil_device_state_msg( 0, IPC_GET_DEVICE( icall ), IPC_GET_STATE( icall ));
4192 mejdrech 681
                ipc_answer_0( iid, EOK );
3992 mejdrech 682
                break;
683
            case NET_NIL_RECEIVED:
4307 mejdrech 684
                if( ! ERROR_OCCURRED( packet_translate( eth_globals.net_phone, & packet, IPC_GET_PACKET( icall )))){
685
                    ERROR_CODE = nil_received_msg( 0, IPC_GET_DEVICE( icall ), packet, 0 );
3992 mejdrech 686
                }
4558 mejdrech 687
                ipc_answer_0( iid, ( ipcarg_t ) ERROR_CODE );
3992 mejdrech 688
                break;
689
            default:
4558 mejdrech 690
                ipc_answer_0( iid, ( ipcarg_t ) ENOTSUP );
3992 mejdrech 691
        }
692
        iid = async_get_call( icall );
693
    }
694
}
695
 
696
/** @}
697
 */