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Harald Welte96f71f22010-05-03 19:28:05 +02001/* GPRS SNDCP protocol implementation as per 3GPP TS 04.65 */
2
3/* (C) 2010 by Harald Welte <laforge@gnumonks.org>
Harald Weltece22f922010-06-03 21:21:21 +02004 * (C) 2010 by On-Waves
Harald Welte96f71f22010-05-03 19:28:05 +02005 *
6 * All Rights Reserved
7 *
8 * This program is free software; you can redistribute it and/or modify
9 * it under the terms of the GNU General Public License as published by
10 * the Free Software Foundation; either version 2 of the License, or
11 * (at your option) any later version.
12 *
13 * This program is distributed in the hope that it will be useful,
14 * but WITHOUT ANY WARRANTY; without even the implied warranty of
15 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
16 * GNU General Public License for more details.
17 *
18 * You should have received a copy of the GNU General Public License along
19 * with this program; if not, write to the Free Software Foundation, Inc.,
20 * 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA.
21 *
22 */
23
24#include <errno.h>
25#include <stdint.h>
26
27#include <osmocore/msgb.h>
28#include <osmocore/linuxlist.h>
29#include <osmocore/timer.h>
30#include <osmocore/talloc.h>
31
32#include <openbsc/gsm_data.h>
33#include <openbsc/debug.h>
34#include <openbsc/gprs_bssgp.h>
35#include <openbsc/gprs_llc.h>
Harald Welteebabdea2010-06-01 18:28:10 +020036#include <openbsc/sgsn.h>
Harald Welte96f71f22010-05-03 19:28:05 +020037
Harald Weltef78a3b22010-06-30 17:21:19 +020038#include "gprs_sndcp.h"
39
Harald Welte96f71f22010-05-03 19:28:05 +020040/* Chapter 7.2: SN-PDU Formats */
41struct sndcp_common_hdr {
42 /* octet 1 */
43 uint8_t nsapi:4;
44 uint8_t more:1;
45 uint8_t type:1;
46 uint8_t first:1;
47 uint8_t spare:1;
Harald Weltece22f922010-06-03 21:21:21 +020048} __attribute__((packed));
49
50/* PCOMP / DCOMP only exist in first fragment */
51struct sndcp_comp_hdr {
Harald Welte96f71f22010-05-03 19:28:05 +020052 /* octet 2 */
Harald Welte5cc2bc32010-06-02 23:17:05 +020053 uint8_t pcomp:4;
54 uint8_t dcomp:4;
Harald Welteebabdea2010-06-01 18:28:10 +020055} __attribute__((packed));
Harald Welte96f71f22010-05-03 19:28:05 +020056
57struct sndcp_udata_hdr {
58 /* octet 3 */
59 uint8_t npdu_high:4;
60 uint8_t seg_nr:4;
61 /* octet 4 */
62 uint8_t npdu_low;
Harald Welteebabdea2010-06-01 18:28:10 +020063} __attribute__((packed));
64
Harald Welteebabdea2010-06-01 18:28:10 +020065
66static void *tall_sndcp_ctx;
67
68/* A fragment queue entry, containing one framgent of a N-PDU */
Harald Weltece22f922010-06-03 21:21:21 +020069struct defrag_queue_entry {
Harald Welteebabdea2010-06-01 18:28:10 +020070 struct llist_head list;
Harald Weltece22f922010-06-03 21:21:21 +020071 /* segment number of this fragment */
72 uint32_t seg_nr;
73 /* length of the data area of this fragment */
Harald Welteebabdea2010-06-01 18:28:10 +020074 uint32_t data_len;
Harald Weltece22f922010-06-03 21:21:21 +020075 /* pointer to the data of this fragment */
76 uint8_t *data;
Harald Welteebabdea2010-06-01 18:28:10 +020077};
78
Harald Weltef78a3b22010-06-30 17:21:19 +020079LLIST_HEAD(gprs_sndcp_entities);
Harald Welte96f71f22010-05-03 19:28:05 +020080
Harald Weltece22f922010-06-03 21:21:21 +020081/* Enqueue a fragment into the defragment queue */
Harald Weltef78a3b22010-06-30 17:21:19 +020082static int defrag_enqueue(struct gprs_sndcp_entity *sne, uint8_t seg_nr,
Harald Weltece22f922010-06-03 21:21:21 +020083 uint32_t data_len, uint8_t *data)
Harald Welteebabdea2010-06-01 18:28:10 +020084{
Harald Weltece22f922010-06-03 21:21:21 +020085 struct defrag_queue_entry *dqe;
Harald Welteebabdea2010-06-01 18:28:10 +020086
Harald Weltece22f922010-06-03 21:21:21 +020087 dqe = talloc_zero(tall_sndcp_ctx, struct defrag_queue_entry);
88 if (!dqe)
89 return -ENOMEM;
90 dqe->data = talloc_zero_size(dqe, data_len);
91 if (!dqe->data) {
92 talloc_free(dqe);
93 return -ENOMEM;
94 }
95 dqe->seg_nr = seg_nr;
96 dqe->data_len = data_len;
97
98 llist_add(&dqe->list, &sne->defrag.frag_list);
99
100 if (seg_nr > sne->defrag.highest_seg)
101 sne->defrag.highest_seg = seg_nr;
102
103 sne->defrag.seg_have |= (1 << seg_nr);
104 sne->defrag.tot_len += data_len;
105
Harald Welte8f0c0a32010-07-02 10:29:06 +0200106 memcpy(dqe->data, data, data_len);
107
Harald Weltece22f922010-06-03 21:21:21 +0200108 return 0;
Harald Welteebabdea2010-06-01 18:28:10 +0200109}
110
Harald Weltece22f922010-06-03 21:21:21 +0200111/* return if we have all segments of this N-PDU */
Harald Weltef78a3b22010-06-30 17:21:19 +0200112static int defrag_have_all_segments(struct gprs_sndcp_entity *sne)
Harald Welteebabdea2010-06-01 18:28:10 +0200113{
Harald Weltece22f922010-06-03 21:21:21 +0200114 uint32_t seg_needed = 0;
115 unsigned int i;
Harald Welteebabdea2010-06-01 18:28:10 +0200116
Harald Weltece22f922010-06-03 21:21:21 +0200117 /* create a bitmask of needed segments */
Harald Welte951a12c2010-07-01 15:09:45 +0200118 for (i = 0; i <= sne->defrag.highest_seg; i++)
Harald Weltece22f922010-06-03 21:21:21 +0200119 seg_needed |= (1 << i);
120
121 if (seg_needed == sne->defrag.seg_have)
122 return 1;
123
124 return 0;
Harald Welteebabdea2010-06-01 18:28:10 +0200125}
126
Harald Weltef78a3b22010-06-30 17:21:19 +0200127static struct defrag_queue_entry *defrag_get_seg(struct gprs_sndcp_entity *sne,
Harald Weltece22f922010-06-03 21:21:21 +0200128 uint32_t seg_nr)
Harald Welteebabdea2010-06-01 18:28:10 +0200129{
Harald Weltece22f922010-06-03 21:21:21 +0200130 struct defrag_queue_entry *dqe;
131
132 llist_for_each_entry(dqe, &sne->defrag.frag_list, list) {
133 if (dqe->seg_nr == seg_nr) {
134 llist_del(&dqe->list);
135 return dqe;
136 }
137 }
138 return NULL;
Harald Welteebabdea2010-06-01 18:28:10 +0200139}
Harald Weltece22f922010-06-03 21:21:21 +0200140
Harald Welte8b705f22010-07-02 16:18:59 +0200141/* Perform actual defragmentation and create an output packet */
Harald Weltef78a3b22010-06-30 17:21:19 +0200142static int defrag_segments(struct gprs_sndcp_entity *sne)
Harald Weltece22f922010-06-03 21:21:21 +0200143{
144 struct msgb *msg;
145 unsigned int seg_nr;
146 uint8_t *npdu;
147
Harald Welteab4094c2010-07-02 16:01:47 +0200148 LOGP(DSNDCP, LOGL_DEBUG, "TLLI=0x%08x NSAPI=%u: Defragment output PDU %u "
149 "num_seg=%u tot_len=%u\n", sne->lle->llme->tlli, sne->nsapi,
150 sne->defrag.npdu, sne->defrag.highest_seg, sne->defrag.tot_len);
Sylvain Munauteda125c2010-06-09 20:56:52 +0200151 msg = msgb_alloc_headroom(sne->defrag.tot_len+256, 128, "SNDCP Defrag");
Harald Weltece22f922010-06-03 21:21:21 +0200152 if (!msg)
153 return -ENOMEM;
154
155 /* FIXME: message headers + identifiers */
156
157 npdu = msg->data;
158
Harald Welte993697c2010-07-02 10:11:42 +0200159 for (seg_nr = 0; seg_nr <= sne->defrag.highest_seg; seg_nr++) {
Harald Weltece22f922010-06-03 21:21:21 +0200160 struct defrag_queue_entry *dqe;
161 uint8_t *data;
162
163 dqe = defrag_get_seg(sne, seg_nr);
164 if (!dqe) {
165 LOGP(DSNDCP, LOGL_ERROR, "Segment %u missing\n", seg_nr);
166 talloc_free(msg);
167 return -EIO;
168 }
169 /* actually append the segment to the N-PDU */
170 data = msgb_put(msg, dqe->data_len);
171 memcpy(data, dqe->data, dqe->data_len);
172
173 /* release memory for the fragment queue entry */
174 talloc_free(dqe);
175 }
176
Harald Welte8b705f22010-07-02 16:18:59 +0200177 /* FIXME: cancel timer */
178
Harald Weltece22f922010-06-03 21:21:21 +0200179 /* actually send the N-PDU to the SGSN core code, which then
180 * hands it off to the correct GTP tunnel + GGSN via gtp_data_req() */
Harald Welte8911cef2010-07-01 19:56:19 +0200181 return sgsn_rx_sndcp_ud_ind(&sne->ra_id, sne->lle->llme->tlli,
182 sne->nsapi, msg, sne->defrag.tot_len, npdu);
Harald Weltece22f922010-06-03 21:21:21 +0200183}
184
Harald Welte60da7d42010-07-02 15:45:12 +0200185static int defrag_input(struct gprs_sndcp_entity *sne, struct msgb *msg, uint8_t *hdr,
186 unsigned int len)
Harald Weltece22f922010-06-03 21:21:21 +0200187{
188 struct sndcp_common_hdr *sch;
189 struct sndcp_comp_hdr *scomph = NULL;
190 struct sndcp_udata_hdr *suh;
191 uint16_t npdu_num;
192 uint8_t *data;
193 int rc;
194
195 sch = (struct sndcp_common_hdr *) hdr;
196 if (sch->first) {
197 scomph = (struct sndcp_comp_hdr *) (hdr + 1);
198 suh = (struct sndcp_udata_hdr *) (hdr + 1 + sizeof(struct sndcp_common_hdr));
199 } else
200 suh = (struct sndcp_udata_hdr *) (hdr + sizeof(struct sndcp_common_hdr));
201
202 data = (uint8_t *)suh + sizeof(struct sndcp_udata_hdr);
203
204 npdu_num = (suh->npdu_high << 8) | suh->npdu_low;
205
Harald Welteab4094c2010-07-02 16:01:47 +0200206 LOGP(DSNDCP, LOGL_DEBUG, "TLLI=0x%08x NSAPI=%u: Input PDU %u Segment %u "
207 "Length %u %s %s\n", sne->lle->llme->tlli, sne->nsapi, npdu_num,
208 suh->seg_nr, len, sch->first ? "F " : "", sch->more ? "M" : "");
Harald Welteb87bc862010-07-01 20:29:20 +0200209
Harald Weltece22f922010-06-03 21:21:21 +0200210 if (sch->first) {
211 /* first segment of a new packet. Discard all leftover fragments of
212 * previous packet */
213 if (!llist_empty(&sne->defrag.frag_list)) {
Harald Welte65d96782010-07-01 12:19:02 +0200214 struct defrag_queue_entry *dqe, *dqe2;
Harald Welteb87bc862010-07-01 20:29:20 +0200215 LOGP(DSNDCP, LOGL_INFO, "TLLI=0x%08x NSAPI=%u: Dropping "
216 "SN-PDU %u due to insufficient segments (%04x)\n",
217 sne->lle->llme->tlli, sne->nsapi, sne->defrag.npdu,
218 sne->defrag.seg_have);
Harald Welte65d96782010-07-01 12:19:02 +0200219 llist_for_each_entry_safe(dqe, dqe2, &sne->defrag.frag_list, list) {
Harald Weltece22f922010-06-03 21:21:21 +0200220 llist_del(&dqe->list);
221 talloc_free(dqe);
222 }
223 }
224 /* store the currently de-fragmented PDU number */
225 sne->defrag.npdu = npdu_num;
Harald Welte8b705f22010-07-02 16:18:59 +0200226
227 /* Re-set fragmentation state */
Harald Weltece22f922010-06-03 21:21:21 +0200228 sne->defrag.no_more = sne->defrag.highest_seg = sne->defrag.seg_have = 0;
Harald Welte8b705f22010-07-02 16:18:59 +0200229 sne->defrag.tot_len = 0;
230 /* FIXME: (re)start timer */
Harald Weltece22f922010-06-03 21:21:21 +0200231 }
232
233 if (sne->defrag.npdu != npdu_num) {
234 LOGP(DSNDCP, LOGL_INFO, "Segment for different SN-PDU "
235 "(%u != %u)\n", npdu_num, sne->defrag.npdu);
236 /* FIXME */
237 }
238
239 /* FIXME: check if seg_nr already exists */
Harald Welte60da7d42010-07-02 15:45:12 +0200240 rc = defrag_enqueue(sne, suh->seg_nr, len, data);
Harald Weltece22f922010-06-03 21:21:21 +0200241 if (rc < 0)
242 return rc;
243
244 if (!sch->more) {
245 /* this is suppsed to be the last segment of the N-PDU, but it
246 * might well be not the last to arrive */
247 sne->defrag.no_more = 1;
248 }
249
250 if (sne->defrag.no_more) {
251 /* we have already received the last segment before, let's check
252 * if all the previous segments exist */
253 if (defrag_have_all_segments(sne))
254 return defrag_segments(sne);
255 }
256
257 return 0;
258}
Harald Welteebabdea2010-06-01 18:28:10 +0200259
Harald Weltef78a3b22010-06-30 17:21:19 +0200260static struct gprs_sndcp_entity *gprs_sndcp_entity_by_lle(const struct gprs_llc_lle *lle,
Harald Welteebabdea2010-06-01 18:28:10 +0200261 uint8_t nsapi)
262{
Harald Weltef78a3b22010-06-30 17:21:19 +0200263 struct gprs_sndcp_entity *sne;
Harald Welteebabdea2010-06-01 18:28:10 +0200264
Harald Weltef78a3b22010-06-30 17:21:19 +0200265 llist_for_each_entry(sne, &gprs_sndcp_entities, list) {
Harald Welteebabdea2010-06-01 18:28:10 +0200266 if (sne->lle == lle && sne->nsapi == nsapi)
267 return sne;
268 }
269 return NULL;
270}
271
Harald Weltef78a3b22010-06-30 17:21:19 +0200272static struct gprs_sndcp_entity *gprs_sndcp_entity_alloc(struct gprs_llc_lle *lle,
Harald Welteebabdea2010-06-01 18:28:10 +0200273 uint8_t nsapi)
274{
Harald Weltef78a3b22010-06-30 17:21:19 +0200275 struct gprs_sndcp_entity *sne;
Harald Welteebabdea2010-06-01 18:28:10 +0200276
Harald Weltef78a3b22010-06-30 17:21:19 +0200277 sne = talloc_zero(tall_sndcp_ctx, struct gprs_sndcp_entity);
Harald Welteebabdea2010-06-01 18:28:10 +0200278 if (!sne)
279 return NULL;
280
281 sne->lle = lle;
282 sne->nsapi = nsapi;
Harald Weltece22f922010-06-03 21:21:21 +0200283 sne->defrag.timer.data = sne;
Harald Welteebabdea2010-06-01 18:28:10 +0200284 //sne->fqueue.timer.cb = FIXME;
285 sne->rx_state = SNDCP_RX_S_FIRST;
Harald Welte362aea02010-07-01 12:31:10 +0200286 INIT_LLIST_HEAD(&sne->defrag.frag_list);
Harald Welteebabdea2010-06-01 18:28:10 +0200287
Harald Weltef78a3b22010-06-30 17:21:19 +0200288 llist_add(&sne->list, &gprs_sndcp_entities);
Harald Welte61444522010-06-02 12:40:48 +0200289
Harald Welteebabdea2010-06-01 18:28:10 +0200290 return sne;
291}
292
293/* Entry point for the SNSM-ACTIVATE.indication */
294int sndcp_sm_activate_ind(struct gprs_llc_lle *lle, uint8_t nsapi)
295{
Harald Welte61444522010-06-02 12:40:48 +0200296 LOGP(DSNDCP, LOGL_INFO, "SNSM-ACTIVATE.ind (lle=%p TLLI=%08x, "
297 "SAPI=%u, NSAPI=%u)\n", lle, lle->llme->tlli, lle->sapi, nsapi);
Harald Welteebabdea2010-06-01 18:28:10 +0200298
Harald Weltef78a3b22010-06-30 17:21:19 +0200299 if (gprs_sndcp_entity_by_lle(lle, nsapi)) {
Harald Welte16836a32010-06-02 10:25:40 +0200300 LOGP(DSNDCP, LOGL_ERROR, "Trying to ACTIVATE "
301 "already-existing entity (TLLI=%08x, NSAPI=%u)\n",
302 lle->llme->tlli, nsapi);
303 return -EEXIST;
304 }
305
Harald Weltef78a3b22010-06-30 17:21:19 +0200306 if (!gprs_sndcp_entity_alloc(lle, nsapi)) {
Harald Welte16836a32010-06-02 10:25:40 +0200307 LOGP(DSNDCP, LOGL_ERROR, "Out of memory during ACTIVATE\n");
Harald Welteebabdea2010-06-01 18:28:10 +0200308 return -ENOMEM;
Harald Welte16836a32010-06-02 10:25:40 +0200309 }
Harald Welteebabdea2010-06-01 18:28:10 +0200310
311 return 0;
312}
313
Harald Weltece22f922010-06-03 21:21:21 +0200314/* Entry point for the SNSM-DEACTIVATE.indication */
315int sndcp_sm_deactivate_ind(struct gprs_llc_lle *lle, uint8_t nsapi)
316{
Harald Weltef78a3b22010-06-30 17:21:19 +0200317 struct gprs_sndcp_entity *sne;
Harald Weltece22f922010-06-03 21:21:21 +0200318
319 LOGP(DSNDCP, LOGL_INFO, "SNSM-DEACTIVATE.ind (lle=%p, TLLI=%08x, "
320 "SAPI=%u, NSAPI=%u)\n", lle, lle->llme->tlli, lle->sapi, nsapi);
321
Harald Weltef78a3b22010-06-30 17:21:19 +0200322 sne = gprs_sndcp_entity_by_lle(lle, nsapi);
Harald Weltece22f922010-06-03 21:21:21 +0200323 if (!sne) {
324 LOGP(DSNDCP, LOGL_ERROR, "SNSM-DEACTIVATE.ind for non-"
325 "existing TLLI=%08x SAPI=%u NSAPI=%u\n", lle->llme->tlli,
326 lle->sapi, nsapi);
327 return -ENOENT;
328 }
329 llist_del(&sne->list);
330 /* frag queue entries are hierarchically allocated, so no need to
331 * free them explicitly here */
332 talloc_free(sne);
333
334 return 0;
335}
336
337/* Fragmenter state */
338struct sndcp_frag_state {
339 uint8_t frag_nr;
340 struct msgb *msg; /* original message */
341 uint8_t *next_byte; /* first byte of next fragment */
342
Harald Weltef78a3b22010-06-30 17:21:19 +0200343 struct gprs_sndcp_entity *sne;
Harald Weltece22f922010-06-03 21:21:21 +0200344 void *mmcontext;
345};
346
347/* returns '1' if there are more fragments to send, '0' if none */
348static int sndcp_send_ud_frag(struct sndcp_frag_state *fs)
349{
Harald Weltef78a3b22010-06-30 17:21:19 +0200350 struct gprs_sndcp_entity *sne = fs->sne;
Harald Weltece22f922010-06-03 21:21:21 +0200351 struct gprs_llc_lle *lle = sne->lle;
352 struct sndcp_common_hdr *sch;
353 struct sndcp_comp_hdr *scomph;
354 struct sndcp_udata_hdr *suh;
355 struct msgb *fmsg;
356 unsigned int max_payload_len;
357 unsigned int len;
358 uint8_t *data;
359 int rc, more;
360
Sylvain Munauteda125c2010-06-09 20:56:52 +0200361 fmsg = msgb_alloc_headroom(fs->sne->lle->params.n201_u+256, 128,
Harald Weltece22f922010-06-03 21:21:21 +0200362 "SNDCP Frag");
363 if (!fmsg)
364 return -ENOMEM;
365
366 /* make sure lower layers route the fragment like the original */
367 msgb_tlli(fmsg) = msgb_tlli(fs->msg);
368 msgb_bvci(fmsg) = msgb_bvci(fs->msg);
369 msgb_nsei(fmsg) = msgb_nsei(fs->msg);
370
371 /* prepend common SNDCP header */
372 sch = (struct sndcp_common_hdr *) msgb_put(fmsg, sizeof(*sch));
373 sch->nsapi = sne->nsapi;
374 /* Set FIRST bit if we are the first fragment in a series */
375 if (fs->frag_nr == 0)
376 sch->first = 1;
377 sch->type = 1;
378
379 /* append the compression header for first fragment */
380 if (sch->first) {
381 scomph = (struct sndcp_comp_hdr *)
382 msgb_put(fmsg, sizeof(*scomph));
383 scomph->pcomp = 0;
384 scomph->dcomp = 0;
385 }
386
387 /* append the user-data header */
388 suh = (struct sndcp_udata_hdr *) msgb_put(fmsg, sizeof(*suh));
389 suh->npdu_low = sne->tx_npdu_nr & 0xff;
390 suh->npdu_high = (sne->tx_npdu_nr >> 8) & 0xf;
391 suh->seg_nr = fs->frag_nr % 0xf;
392
393 /* calculate remaining length to be sent */
394 len = (fs->msg->data + fs->msg->len) - fs->next_byte;
395 /* how much payload can we actually send via LLC? */
396 max_payload_len = lle->params.n201_u - (sizeof(*sch) + sizeof(*suh));
397 if (sch->first)
398 max_payload_len -= sizeof(*scomph);
399 /* check if we're exceeding the max */
400 if (len > max_payload_len)
401 len = max_payload_len;
402
403 /* copy the actual fragment data into our fmsg */
404 data = msgb_put(fmsg, len);
405 memcpy(data, fs->next_byte, len);
406
407 /* Increment fragment number and data pointer to next fragment */
408 fs->frag_nr++;
409 fs->next_byte += len;
410
411 /* determine if we have more fragemnts to send */
412 if ((fs->msg->data + fs->msg->len) <= fs->next_byte)
413 more = 0;
414 else
415 more = 1;
416
417 /* set the MORE bit of the SNDCP header accordingly */
418 sch->more = more;
419
420 rc = gprs_llc_tx_ui(fmsg, lle->sapi, 0, fs->mmcontext);
421 if (rc < 0) {
422 /* abort in case of error, do not advance frag_nr / next_byte */
423 msgb_free(fmsg);
424 return rc;
425 }
426
427 if (!more) {
428 /* we've sent all fragments */
429 msgb_free(fs->msg);
430 memset(fs, 0, sizeof(*fs));
431 /* increment NPDU number for next frame */
432 sne->tx_npdu_nr = (sne->tx_npdu_nr + 1) % 0xfff;
433 return 0;
434 }
435
436 /* default: more fragments to send */
437 return 1;
438}
439
Harald Weltedb2c39f2010-06-03 07:14:59 +0200440/* Request transmission of a SN-PDU over specified LLC Entity + SAPI */
Harald Weltebb1c8052010-06-03 06:38:38 +0200441int sndcp_unitdata_req(struct msgb *msg, struct gprs_llc_lle *lle, uint8_t nsapi,
442 void *mmcontext)
443{
Harald Weltef78a3b22010-06-30 17:21:19 +0200444 struct gprs_sndcp_entity *sne;
Harald Weltebb1c8052010-06-03 06:38:38 +0200445 struct sndcp_common_hdr *sch;
Harald Weltece22f922010-06-03 21:21:21 +0200446 struct sndcp_comp_hdr *scomph;
Harald Weltebb1c8052010-06-03 06:38:38 +0200447 struct sndcp_udata_hdr *suh;
Harald Weltece22f922010-06-03 21:21:21 +0200448 struct sndcp_frag_state fs;
Harald Weltebb1c8052010-06-03 06:38:38 +0200449
450 /* Identifiers from UP: (TLLI, SAPI) + (BVCI, NSEI) */
451
Harald Weltef78a3b22010-06-30 17:21:19 +0200452 sne = gprs_sndcp_entity_by_lle(lle, nsapi);
Harald Weltebb1c8052010-06-03 06:38:38 +0200453 if (!sne) {
454 LOGP(DSNDCP, LOGL_ERROR, "Cannot find SNDCP Entity\n");
455 return -EIO;
456 }
457
Harald Weltece22f922010-06-03 21:21:21 +0200458 /* Check if we need to fragment this N-PDU into multiple SN-PDUs */
459 if (msg->len > lle->params.n201_u -
460 (sizeof(*sch) + sizeof(*suh) + sizeof(*scomph))) {
461 /* initialize the fragmenter state */
462 fs.msg = msg;
463 fs.frag_nr = 0;
464 fs.next_byte = msg->data;
465 fs.sne = sne;
466 fs.mmcontext = mmcontext;
467
468 /* call function to generate and send fragments until all
469 * of the N-PDU has been sent */
470 while (1) {
471 int rc = sndcp_send_ud_frag(&fs);
472 if (rc == 0)
473 return 0;
474 if (rc < 0)
475 return rc;
476 }
477 /* not reached */
478 return 0;
479 }
480
481 /* this is the non-fragmenting case where we only build 1 SN-PDU */
482
Harald Weltebb1c8052010-06-03 06:38:38 +0200483 /* prepend the user-data header */
484 suh = (struct sndcp_udata_hdr *) msgb_push(msg, sizeof(*suh));
Harald Weltece22f922010-06-03 21:21:21 +0200485 suh->npdu_low = sne->tx_npdu_nr & 0xff;
486 suh->npdu_high = (sne->tx_npdu_nr >> 8) & 0xf;
487 suh->seg_nr = 0;
488 sne->tx_npdu_nr = (sne->tx_npdu_nr + 1) % 0xfff;
489
490 scomph = (struct sndcp_comp_hdr *) msgb_push(msg, sizeof(*scomph));
491 scomph->pcomp = 0;
492 scomph->dcomp = 0;
Harald Weltebb1c8052010-06-03 06:38:38 +0200493
494 /* prepend common SNDCP header */
495 sch = (struct sndcp_common_hdr *) msgb_push(msg, sizeof(*sch));
496 sch->first = 1;
497 sch->type = 1;
498 sch->nsapi = nsapi;
499
500 return gprs_llc_tx_ui(msg, lle->sapi, 0, mmcontext);
501}
502
Harald Welteebabdea2010-06-01 18:28:10 +0200503/* Section 5.1.2.17 LL-UNITDATA.ind */
504int sndcp_llunitdata_ind(struct msgb *msg, struct gprs_llc_lle *lle, uint8_t *hdr, uint8_t len)
505{
Harald Weltef78a3b22010-06-30 17:21:19 +0200506 struct gprs_sndcp_entity *sne;
Harald Welteebabdea2010-06-01 18:28:10 +0200507 struct sndcp_common_hdr *sch = (struct sndcp_common_hdr *)hdr;
Harald Weltece22f922010-06-03 21:21:21 +0200508 struct sndcp_comp_hdr *scomph = NULL;
Harald Welteebabdea2010-06-01 18:28:10 +0200509 struct sndcp_udata_hdr *suh;
Harald Welte16836a32010-06-02 10:25:40 +0200510 uint8_t *npdu;
Harald Welteebabdea2010-06-01 18:28:10 +0200511 uint16_t npdu_num;
512 int npdu_len;
513
Harald Weltece22f922010-06-03 21:21:21 +0200514 sch = (struct sndcp_common_hdr *) hdr;
515 if (sch->first) {
516 scomph = (struct sndcp_comp_hdr *) (hdr + 1);
517 suh = (struct sndcp_udata_hdr *) (hdr + 1 + sizeof(struct sndcp_common_hdr));
518 } else
519 suh = (struct sndcp_udata_hdr *) (hdr + sizeof(struct sndcp_common_hdr));
520
Harald Welteebabdea2010-06-01 18:28:10 +0200521 if (sch->type == 0) {
Harald Welte69996cb2010-06-02 10:26:19 +0200522 LOGP(DSNDCP, LOGL_ERROR, "SN-DATA PDU at unitdata_ind() function\n");
Harald Welte96f71f22010-05-03 19:28:05 +0200523 return -EINVAL;
524 }
525
Harald Welte16836a32010-06-02 10:25:40 +0200526 if (len < sizeof(*sch) + sizeof(*suh)) {
Harald Welte69996cb2010-06-02 10:26:19 +0200527 LOGP(DSNDCP, LOGL_ERROR, "SN-UNITDATA PDU too short (%u)\n", len);
Harald Welteebabdea2010-06-01 18:28:10 +0200528 return -EIO;
529 }
530
Harald Weltef78a3b22010-06-30 17:21:19 +0200531 sne = gprs_sndcp_entity_by_lle(lle, sch->nsapi);
Harald Welteebabdea2010-06-01 18:28:10 +0200532 if (!sne) {
Harald Welte69996cb2010-06-02 10:26:19 +0200533 LOGP(DSNDCP, LOGL_ERROR, "Message for non-existing SNDCP Entity "
Harald Welte61444522010-06-02 12:40:48 +0200534 "(lle=%p, TLLI=%08x, SAPI=%u, NSAPI=%u)\n", lle,
535 lle->llme->tlli, lle->sapi, sch->nsapi);
Harald Welteebabdea2010-06-01 18:28:10 +0200536 return -EIO;
537 }
Harald Welte8911cef2010-07-01 19:56:19 +0200538 /* FIXME: move this RA_ID up to the LLME or even higher */
539 bssgp_parse_cell_id(&sne->ra_id, msgb_bcid(msg));
Harald Welteebabdea2010-06-01 18:28:10 +0200540
Harald Welteab4094c2010-07-02 16:01:47 +0200541 /* any non-first segment is by definition something to defragment
542 * as is any segment that tells us there are more segments */
543 if (!sch->first || sch->more)
Harald Welte60da7d42010-07-02 15:45:12 +0200544 return defrag_input(sne, msg, hdr, len);
Harald Welteebabdea2010-06-01 18:28:10 +0200545
Harald Weltece22f922010-06-03 21:21:21 +0200546 if (scomph && (scomph->pcomp || scomph->dcomp)) {
Harald Welte69996cb2010-06-02 10:26:19 +0200547 LOGP(DSNDCP, LOGL_ERROR, "We don't support compression yet\n");
Harald Welteebabdea2010-06-01 18:28:10 +0200548 return -EIO;
549 }
Harald Welteebabdea2010-06-01 18:28:10 +0200550
Harald Welte16836a32010-06-02 10:25:40 +0200551 npdu_num = (suh->npdu_high << 8) | suh->npdu_low;
Harald Welteebabdea2010-06-01 18:28:10 +0200552 npdu = (uint8_t *)suh + sizeof(*suh);
553 npdu_len = (msg->data + msg->len) - npdu;
Harald Welte61444522010-06-02 12:40:48 +0200554 if (npdu_len <= 0) {
Harald Welte69996cb2010-06-02 10:26:19 +0200555 LOGP(DSNDCP, LOGL_ERROR, "Short SNDCP N-PDU: %d\n", npdu_len);
Harald Welteebabdea2010-06-01 18:28:10 +0200556 return -EIO;
557 }
558 /* actually send the N-PDU to the SGSN core code, which then
559 * hands it off to the correct GTP tunnel + GGSN via gtp_data_req() */
Harald Welte8911cef2010-07-01 19:56:19 +0200560 return sgsn_rx_sndcp_ud_ind(&sne->ra_id, lle->llme->tlli, sne->nsapi, msg, npdu_len, npdu);
Harald Welte96f71f22010-05-03 19:28:05 +0200561}
562
Harald Welte2720e732010-05-17 00:44:57 +0200563/* Section 5.1.2.1 LL-RESET.ind */
Harald Weltef78a3b22010-06-30 17:21:19 +0200564static int sndcp_ll_reset_ind(struct gprs_sndcp_entity *se)
Harald Welte2720e732010-05-17 00:44:57 +0200565{
566 /* treat all outstanding SNDCP-LLC request type primitives as not sent */
567 /* reset all SNDCP XID parameters to default values */
568}
569
Harald Welte2720e732010-05-17 00:44:57 +0200570static int sndcp_ll_status_ind()
571{
572 /* inform the SM sub-layer by means of SNSM-STATUS.req */
573}
574
Harald Welteebabdea2010-06-01 18:28:10 +0200575#if 0
Harald Welte2720e732010-05-17 00:44:57 +0200576static struct sndcp_state_list {{
577 uint32_t states;
578 unsigned int type;
Harald Weltef78a3b22010-06-30 17:21:19 +0200579 int (*rout)(struct gprs_sndcp_entity *se, struct msgb *msg);
Harald Welte2720e732010-05-17 00:44:57 +0200580} sndcp_state_list[] = {
581 { ALL_STATES,
582 LL_RESET_IND, sndcp_ll_reset_ind },
583 { ALL_STATES,
584 LL_ESTABLISH_IND, sndcp_ll_est_ind },
585 { SBIT(SNDCP_S_EST_RQD),
586 LL_ESTABLISH_RESP, sndcp_ll_est_ind },
587 { SBIT(SNDCP_S_EST_RQD),
588 LL_ESTABLISH_CONF, sndcp_ll_est_conf },
589 { SBIT(SNDCP_S_
590};
591
592static int sndcp_rx_llc_prim()
593{
594 case LL_ESTABLISH_REQ:
595 case LL_RELEASE_REQ:
596 case LL_XID_REQ:
597 case LL_DATA_REQ:
598 LL_UNITDATA_REQ, /* TLLI, SN-PDU, Ref, QoS, Radio Prio, Ciph */
599
600 switch (prim) {
601 case LL_RESET_IND:
602 case LL_ESTABLISH_IND:
603 case LL_ESTABLISH_RESP:
604 case LL_ESTABLISH_CONF:
605 case LL_RELEASE_IND:
606 case LL_RELEASE_CONF:
607 case LL_XID_IND:
608 case LL_XID_RESP:
609 case LL_XID_CONF:
610 case LL_DATA_IND:
611 case LL_DATA_CONF:
612 case LL_UNITDATA_IND:
613 case LL_STATUS_IND:
614}
Harald Welteebabdea2010-06-01 18:28:10 +0200615#endif