blob: 7c517aad8a1f76ecb1383f4d680285280f08b11a [file] [log] [blame]
Alexander Couzens6a161492020-07-12 13:45:50 +02001/*! \file gprs_ns2.c
2 * GPRS Networks Service (NS) messages on the Gb interface.
3 * 3GPP TS 08.16 version 8.0.1 Release 1999 / ETSI TS 101 299 V8.0.1 (2002-05)
4 * as well as its successor 3GPP TS 48.016 */
5
6/* (C) 2009-2018 by Harald Welte <laforge@gnumonks.org>
7 * (C) 2016-2017,2020 sysmocom - s.f.m.c. GmbH
8 * Author: Alexander Couzens <lynxis@fe80.eu>
9 *
10 *
11 * All Rights Reserved
12 *
13 * SPDX-License-Identifier: GPL-2.0+
14 *
15 * This program is free software; you can redistribute it and/or modify
16 * it under the terms of the GNU General Public License as published by
17 * the Free Software Foundation; either version 2 of the License, or
18 * (at your option) any later version.
19 *
20 * This program is distributed in the hope that it will be useful,
21 * but WITHOUT ANY WARRANTY; without even the implied warranty of
22 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
23 * GNU General Public License for more details.
24 *
25 * You should have received a copy of the GNU General Public License
26 * along with this program. If not, see <http://www.gnu.org/licenses/>.
27 *
28 */
29
30/*! \addtogroup libgb
31 * @{
32 *
33 * GPRS Networks Service (NS) messages on the Gb interface
34 * 3GPP TS 08.16 version 8.0.1 Release 1999 / ETSI TS 101 299 V8.0.1 (2002-05)
35 *
36 * Some introduction into NS: NS is used typically on top of frame relay,
37 * but in the ip.access world it is encapsulated in UDP packets. It serves
38 * as an intermediate shim betwen BSSGP and the underlying medium. It doesn't
39 * do much, apart from providing congestion notification and status indication.
40 *
41 * Terms:
42 *
43 * NS Network Service
44 * NSVC NS Virtual Connection
45 * NSEI NS Entity Identifier
46 * NSVL NS Virtual Link
47 * NSVLI NS Virtual Link Identifier
48 * BVC BSSGP Virtual Connection
49 * BVCI BSSGP Virtual Connection Identifier
50 * NSVCG NS Virtual Connection Goup
51 * Blocked NS-VC cannot be used for user traffic
52 * Alive Ability of a NS-VC to provide communication
53 *
54 * There can be multiple BSSGP virtual connections over one (group of) NSVC's. BSSGP will
55 * therefore identify the BSSGP virtual connection by a BVCI passed down to NS.
56 * NS then has to figure out which NSVC's are responsible for this BVCI.
57 * Those mappings are administratively configured.
58 *
59 * This implementation has the following limitations:
Alexander Couzens6a161492020-07-12 13:45:50 +020060 * - NSVCI 65535 and 65534 are reserved for internal use
Alexander Couzens6a161492020-07-12 13:45:50 +020061 * - There are no BLOCK and UNBLOCK timers (yet?)
62 *
63 * \file gprs_ns2.c */
64
65#include <stdlib.h>
66#include <unistd.h>
67#include <errno.h>
68#include <stdint.h>
69
70#include <sys/types.h>
71#include <sys/socket.h>
72#include <arpa/inet.h>
73
74#include <osmocom/core/fsm.h>
Daniel Willmann751977b2020-12-02 18:59:44 +010075#include <osmocom/core/logging.h>
Alexander Couzens6a161492020-07-12 13:45:50 +020076#include <osmocom/core/msgb.h>
77#include <osmocom/core/rate_ctr.h>
78#include <osmocom/core/socket.h>
79#include <osmocom/core/sockaddr_str.h>
80#include <osmocom/core/stats.h>
81#include <osmocom/core/stat_item.h>
82#include <osmocom/core/talloc.h>
83#include <osmocom/gprs/gprs_msgb.h>
84#include <osmocom/gsm/prim.h>
85#include <osmocom/gsm/tlv.h>
86
87#include "gprs_ns2_internal.h"
88
89#define ns_set_state(ns_, st_) ns_set_state_with_log(ns_, st_, false, __FILE__, __LINE__)
90#define ns_set_remote_state(ns_, st_) ns_set_state_with_log(ns_, st_, true, __FILE__, __LINE__)
91#define ns_mark_blocked(ns_) ns_set_state(ns_, (ns_)->state | NSE_S_BLOCKED)
92#define ns_mark_unblocked(ns_) ns_set_state(ns_, (ns_)->state & (~NSE_S_BLOCKED));
93#define ns_mark_alive(ns_) ns_set_state(ns_, (ns_)->state | NSE_S_ALIVE)
94#define ns_mark_dead(ns_) ns_set_state(ns_, (ns_)->state & (~NSE_S_ALIVE));
95
96/* HACK: The NS_IE_IP_ADDR does not follow any known TLV rules.
97 * Since it's a hard ABI break to implement 16 bit tag with fixed length entries to workaround it,
98 * the parser will be called with ns_att_tlvdef1 and if it's failed with ns_att_tlvdef2.
99 * The TLV parser depends on 8bit tag in many places.
100 * The NS_IE_IP_ADDR is only valid for SNS_ACK SNS_ADD and SNS_DELETE.
101 */
102static const struct tlv_definition ns_att_tlvdef1 = {
103 .def = {
104 [NS_IE_CAUSE] = { TLV_TYPE_TvLV, 0 },
105 [NS_IE_VCI] = { TLV_TYPE_TvLV, 0 },
106 [NS_IE_PDU] = { TLV_TYPE_TvLV, 0 },
107 [NS_IE_BVCI] = { TLV_TYPE_TvLV, 0 },
108 [NS_IE_NSEI] = { TLV_TYPE_TvLV, 0 },
109 [NS_IE_IPv4_LIST] = { TLV_TYPE_TvLV, 0 },
110 [NS_IE_IPv6_LIST] = { TLV_TYPE_TvLV, 0 },
111 [NS_IE_MAX_NR_NSVC] = { TLV_TYPE_FIXED, 2 },
112 [NS_IE_IPv4_EP_NR] = { TLV_TYPE_FIXED, 2 },
113 [NS_IE_IPv6_EP_NR] = { TLV_TYPE_FIXED, 2 },
114 [NS_IE_RESET_FLAG] = { TLV_TYPE_TV, 0 },
115 /* NS_IE_IP_ADDR in the IPv4 version */
116 [NS_IE_IP_ADDR] = { TLV_TYPE_FIXED, 5 },
117 },
118};
119
120static const struct tlv_definition ns_att_tlvdef2 = {
121 .def = {
122 [NS_IE_CAUSE] = { TLV_TYPE_TvLV, 0 },
123 [NS_IE_VCI] = { TLV_TYPE_TvLV, 0 },
124 [NS_IE_PDU] = { TLV_TYPE_TvLV, 0 },
125 [NS_IE_BVCI] = { TLV_TYPE_TvLV, 0 },
126 [NS_IE_NSEI] = { TLV_TYPE_TvLV, 0 },
127 [NS_IE_IPv4_LIST] = { TLV_TYPE_TvLV, 0 },
128 [NS_IE_IPv6_LIST] = { TLV_TYPE_TvLV, 0 },
129 [NS_IE_MAX_NR_NSVC] = { TLV_TYPE_FIXED, 2 },
130 [NS_IE_IPv4_EP_NR] = { TLV_TYPE_FIXED, 2 },
131 [NS_IE_IPv6_EP_NR] = { TLV_TYPE_FIXED, 2 },
132 [NS_IE_RESET_FLAG] = { TLV_TYPE_TV, 0 },
133 /* NS_IE_IP_ADDR in the IPv6 version */
134 [NS_IE_IP_ADDR] = { TLV_TYPE_FIXED, 17 },
135 },
136};
137
138
139/* Section 10.3.2, Table 13 */
Alexander Couzensb3b837c2020-10-27 15:12:25 +0100140const struct value_string gprs_ns2_cause_strs[] = {
Alexander Couzens6a161492020-07-12 13:45:50 +0200141 { NS_CAUSE_TRANSIT_FAIL, "Transit network failure" },
142 { NS_CAUSE_OM_INTERVENTION, "O&M intervention" },
143 { NS_CAUSE_EQUIP_FAIL, "Equipment failure" },
144 { NS_CAUSE_NSVC_BLOCKED, "NS-VC blocked" },
145 { NS_CAUSE_NSVC_UNKNOWN, "NS-VC unknown" },
146 { NS_CAUSE_BVCI_UNKNOWN, "BVCI unknown" },
147 { NS_CAUSE_SEM_INCORR_PDU, "Semantically incorrect PDU" },
148 { NS_CAUSE_PDU_INCOMP_PSTATE, "PDU not compatible with protocol state" },
149 { NS_CAUSE_PROTO_ERR_UNSPEC, "Protocol error, unspecified" },
150 { NS_CAUSE_INVAL_ESSENT_IE, "Invalid essential IE" },
151 { NS_CAUSE_MISSING_ESSENT_IE, "Missing essential IE" },
152 { NS_CAUSE_INVAL_NR_IPv4_EP, "Invalid Number of IPv4 Endpoints" },
153 { NS_CAUSE_INVAL_NR_IPv6_EP, "Invalid Number of IPv6 Endpoints" },
154 { NS_CAUSE_INVAL_NR_NS_VC, "Invalid Number of NS-VCs" },
155 { NS_CAUSE_INVAL_WEIGH, "Invalid Weights" },
156 { NS_CAUSE_UNKN_IP_EP, "Unknown IP Endpoint" },
157 { NS_CAUSE_UNKN_IP_ADDR, "Unknown IP Address" },
158 { NS_CAUSE_UNKN_IP_TEST_FAILED, "IP Test Failed" },
159 { 0, NULL }
160};
161
Alexander Couzens6a161492020-07-12 13:45:50 +0200162static const struct rate_ctr_desc nsvc_ctr_description[] = {
163 { "packets:in", "Packets at NS Level ( In)" },
164 { "packets:out","Packets at NS Level (Out)" },
165 { "bytes:in", "Bytes at NS Level ( In)" },
166 { "bytes:out", "Bytes at NS Level (Out)" },
167 { "blocked", "NS-VC Block count " },
168 { "dead", "NS-VC gone dead count " },
169 { "replaced", "NS-VC replaced other count" },
170 { "nsei-chg", "NS-VC changed NSEI count " },
171 { "inv-nsvci", "NS-VCI was invalid count " },
172 { "inv-nsei", "NSEI was invalid count " },
173 { "lost:alive", "ALIVE ACK missing count " },
174 { "lost:reset", "RESET ACK missing count " },
175};
176
177static const struct rate_ctr_group_desc nsvc_ctrg_desc = {
178 .group_name_prefix = "ns:nsvc",
179 .group_description = "NSVC Peer Statistics",
180 .num_ctr = ARRAY_SIZE(nsvc_ctr_description),
181 .ctr_desc = nsvc_ctr_description,
182 .class_id = OSMO_STATS_CLASS_PEER,
183};
184
185
186static const struct osmo_stat_item_desc nsvc_stat_description[] = {
187 { "alive.delay", "ALIVE response time ", "ms", 16, 0 },
188};
189
190static const struct osmo_stat_item_group_desc nsvc_statg_desc = {
191 .group_name_prefix = "ns.nsvc",
192 .group_description = "NSVC Peer Statistics",
193 .num_items = ARRAY_SIZE(nsvc_stat_description),
194 .item_desc = nsvc_stat_description,
195 .class_id = OSMO_STATS_CLASS_PEER,
196};
197
Alexander Couzens2498f1d2020-10-27 01:09:01 +0100198const struct value_string gprs_ns2_aff_cause_prim_strs[] = {
199 { NS_AFF_CAUSE_VC_FAILURE, "NSVC failure" },
200 { NS_AFF_CAUSE_VC_RECOVERY, "NSVC recovery" },
201 { NS_AFF_CAUSE_FAILURE, "NSE failure" },
202 { NS_AFF_CAUSE_RECOVERY, "NSE recovery" },
203 { NS_AFF_CAUSE_SNS_CONFIGURED, "NSE SNS configured" },
204 { NS_AFF_CAUSE_SNS_FAILURE, "NSE SNS failure" },
205 { 0, NULL }
206};
207
Alexander Couzens0ab028c2020-11-04 02:41:44 +0100208const struct value_string gprs_ns2_prim_strs[] = {
Alexander Couzens2498f1d2020-10-27 01:09:01 +0100209 { PRIM_NS_UNIT_DATA, "UNIT DATA" },
210 { PRIM_NS_CONGESTION, "CONGESTION" },
211 { PRIM_NS_STATUS, "STATUS" },
212 { 0, NULL }
213};
214
Harald Weltea24e7ee2020-11-29 17:38:48 +0100215const struct value_string gprs_ns2_lltype_strs[] = {
216 { GPRS_NS2_LL_UDP, "UDP" },
217 { GPRS_NS2_LL_FR_GRE, "FR_GRE" },
218 { GPRS_NS2_LL_FR, "FR" },
219 { 0, NULL }
220};
221
Harald Welte5bef2cc2020-09-18 22:33:24 +0200222/*! string-format a given NS-VC into a user-supplied buffer.
223 * \param[in] buf user-allocated output buffer
224 * \param[in] buf_len size of user-allocated output buffer in bytes
225 * \param[in] nsvc NS-VC to be string-formatted
226 * \return pointer to buf on success; NULL on error */
Alexander Couzens6a161492020-07-12 13:45:50 +0200227char *gprs_ns2_ll_str_buf(char *buf, size_t buf_len, struct gprs_ns2_vc *nsvc)
228{
Alexander Couzens9a4cf272020-10-11 20:48:04 +0200229 const struct osmo_sockaddr *local;
230 const struct osmo_sockaddr *remote;
Alexander Couzens6a161492020-07-12 13:45:50 +0200231 struct osmo_sockaddr_str local_str;
232 struct osmo_sockaddr_str remote_str;
233
234 if (!buf_len)
Harald Welte92ad0292020-09-18 22:34:24 +0200235 return NULL;
Alexander Couzens6a161492020-07-12 13:45:50 +0200236
Alexander Couzensaac90162020-11-19 02:44:04 +0100237 switch (nsvc->nse->ll) {
Alexander Couzens24a14ac2020-11-19 02:34:49 +0100238 case GPRS_NS2_LL_UDP:
Alexander Couzens6a161492020-07-12 13:45:50 +0200239 if (!gprs_ns2_is_ip_bind(nsvc->bind)) {
240 buf[0] = '\0';
241 return buf;
242 }
243
244 local = gprs_ns2_ip_bind_sockaddr(nsvc->bind);
Alexander Couzensc4229a42020-10-11 20:58:04 +0200245 remote = gprs_ns2_ip_vc_remote(nsvc);
Alexander Couzens6a161492020-07-12 13:45:50 +0200246 if (osmo_sockaddr_str_from_sockaddr(&local_str, &local->u.sas))
247 strcpy(local_str.ip, "invalid");
248 if (osmo_sockaddr_str_from_sockaddr(&remote_str, &remote->u.sas))
249 strcpy(remote_str.ip, "invalid");
250
251 if (nsvc->nsvci_is_valid)
252 snprintf(buf, buf_len, "udp)[%s]:%u<%u>[%s]:%u",
253 local_str.ip, local_str.port,
254 nsvc->nsvci,
255 remote_str.ip, remote_str.port);
256 else
257 snprintf(buf, buf_len, "udp)[%s]:%u<>[%s]:%u",
258 local_str.ip, local_str.port,
259 remote_str.ip, remote_str.port);
260 break;
Alexander Couzens24a14ac2020-11-19 02:34:49 +0100261 case GPRS_NS2_LL_FR_GRE:
Alexander Couzens6a161492020-07-12 13:45:50 +0200262 snprintf(buf, buf_len, "frgre)");
263 break;
Alexander Couzens24a14ac2020-11-19 02:34:49 +0100264 case GPRS_NS2_LL_FR:
Alexander Couzens841817e2020-11-19 00:41:29 +0100265 snprintf(buf, buf_len, "fr)netif: %s dlci: %u", gprs_ns2_fr_bind_netif(nsvc->bind),
266 gprs_ns2_fr_nsvc_dlci(nsvc));
267 break;
Alexander Couzens6a161492020-07-12 13:45:50 +0200268 default:
Harald Welte6188e002020-12-01 17:20:07 +0100269 snprintf(buf, buf_len, "unknown)");
Alexander Couzens6a161492020-07-12 13:45:50 +0200270 break;
271 }
272
273 buf[buf_len - 1] = '\0';
274
275 return buf;
276}
277
278/* udp is the longest: udp)[IP6]:65536<65536>[IP6]:65536 */
279#define NS2_LL_MAX_STR 4+2*(INET6_ADDRSTRLEN+9)+8
280
Harald Welte5bef2cc2020-09-18 22:33:24 +0200281/*! string-format a given NS-VC to a thread-local static buffer.
282 * \param[in] nsvc NS-VC to be string-formatted
283 * \return pointer to the string on success; NULL on error */
Alexander Couzens6a161492020-07-12 13:45:50 +0200284const char *gprs_ns2_ll_str(struct gprs_ns2_vc *nsvc)
285{
286 static __thread char buf[NS2_LL_MAX_STR];
287 return gprs_ns2_ll_str_buf(buf, sizeof(buf), nsvc);
288}
289
Harald Welte5bef2cc2020-09-18 22:33:24 +0200290/*! string-format a given NS-VC to a dynamically allocated string.
291 * \param[in] ctx talloc context from which to allocate
292 * \param[in] nsvc NS-VC to be string-formatted
293 * \return pointer to the string on success; NULL on error */
Alexander Couzens6a161492020-07-12 13:45:50 +0200294char *gprs_ns2_ll_str_c(const void *ctx, struct gprs_ns2_vc *nsvc)
295{
296 char *buf = talloc_size(ctx, NS2_LL_MAX_STR);
297 if (!buf)
298 return buf;
299 return gprs_ns2_ll_str_buf(buf, NS2_LL_MAX_STR, nsvc);
300}
301
Daniel Willmannf1286542020-11-03 23:03:33 +0100302/*! Return the current state name of a given NS-VC to a thread-local static buffer.
303 * \param[in] nsvc NS-VC to return the state of
304 * \return pointer to the string on success; NULL on error */
305const char *gprs_ns2_nsvc_state_name(struct gprs_ns2_vc *nsvc)
306{
307 return osmo_fsm_inst_state_name(nsvc->fi);
308}
309
Alexander Couzensfc3dd1f2020-11-19 00:41:47 +0100310/* select a signalling NSVC and respect sig_counter
311 * param[out] reset_counter - all counter has to be resetted to their signal weight
312 * return the chosen nsvc or NULL
313 */
314static struct gprs_ns2_vc *ns2_load_sharing_signal(struct gprs_ns2_nse *nse)
315{
316 struct gprs_ns2_vc *nsvc = NULL, *last = NULL, *tmp;
317
318 llist_for_each_entry(tmp, &nse->nsvc, list) {
319 if (tmp->sig_weight == 0)
320 continue;
321 if (!gprs_ns2_vc_is_unblocked(tmp))
322 continue;
323 if (tmp->sig_counter == 0) {
324 last = tmp;
325 continue;
326 }
327
328 tmp->sig_counter--;
329 nsvc = tmp;
330 break;
331 }
332
333 /* all counter were zero, but there are valid nsvc */
334 if (!nsvc && last) {
335 llist_for_each_entry(tmp, &nse->nsvc, list) {
336 tmp->sig_counter = tmp->sig_weight;
337 }
338
339 last->sig_counter--;
340 return last;
341 } else {
342 return nsvc;
343 }
344}
345
346/* 4.4.1 Load Sharing function for the Frame Relay Sub-Network */
347static struct gprs_ns2_vc *ns2_load_sharing_modulor(
348 struct gprs_ns2_nse *nse,
349 uint16_t bvci,
350 uint32_t load_selector)
351{
352 struct gprs_ns2_vc *tmp;
Alexander Couzens8a2a1a42020-12-26 18:00:17 +0100353 uint32_t mod = (bvci + load_selector) % nse->nsvc_count;
Alexander Couzensfc3dd1f2020-11-19 00:41:47 +0100354 uint32_t i = 0;
355
356 llist_for_each_entry(tmp, &nse->nsvc, list) {
357 if (!gprs_ns2_vc_is_unblocked(tmp))
358 continue;
Alexander Couzensfc3dd1f2020-11-19 00:41:47 +0100359 if (i == mod)
360 return tmp;
361 i++;
362 }
363
364 return NULL;
365}
366
367/* pick the first available data NSVC - no load sharing */
368struct gprs_ns2_vc *ns2_load_sharing_first(struct gprs_ns2_nse *nse)
369{
370 struct gprs_ns2_vc *nsvc = NULL, *tmp;
371
372 llist_for_each_entry(tmp, &nse->nsvc, list) {
373 if (!gprs_ns2_vc_is_unblocked(tmp))
374 continue;
375 if (tmp->data_weight == 0)
376 continue;
377
378 nsvc = tmp;
379 break;
380 }
381
382 return nsvc;
383}
384
385
386static struct gprs_ns2_vc *ns2_load_sharing(
387 struct gprs_ns2_nse *nse,
388 uint16_t bvci,
389 uint32_t link_selector)
390{
391 struct gprs_ns2_vc *nsvc = NULL;
392
Alexander Couzens8a2a1a42020-12-26 18:00:17 +0100393 switch (nse->ll) {
394 case GPRS_NS2_LL_FR:
395 nsvc = ns2_load_sharing_modulor(nse, bvci, link_selector);
396 break;
397 case GPRS_NS2_LL_UDP:
398 default:
399 if (bvci == 0) {
400 /* signalling */
401 nsvc = ns2_load_sharing_signal(nse);
402 } else {
403 /* data with load sharing parameter */
Alexander Couzensfc3dd1f2020-11-19 00:41:47 +0100404 nsvc = ns2_load_sharing_first(nse);
Alexander Couzensfc3dd1f2020-11-19 00:41:47 +0100405 }
Alexander Couzens8a2a1a42020-12-26 18:00:17 +0100406 break;
Alexander Couzensfc3dd1f2020-11-19 00:41:47 +0100407 }
408
409 return nsvc;
410}
411
Harald Welte5bef2cc2020-09-18 22:33:24 +0200412/*! Receive a primitive from the NS User (Gb).
413 * \param[in] nsi NS instance to which the primitive is issued
414 * \param[in] oph The primitive
415 * \return 0 on success; negative on error */
Alexander Couzens6a161492020-07-12 13:45:50 +0200416int gprs_ns2_recv_prim(struct gprs_ns2_inst *nsi, struct osmo_prim_hdr *oph)
417{
Alexander Couzens6a161492020-07-12 13:45:50 +0200418 /* TODO: implement resource distribution */
419 /* TODO: check for empty PDUs which can be sent to Request/Confirm
420 * the IP endpoint */
421 struct osmo_gprs_ns2_prim *nsp;
422 struct gprs_ns2_nse *nse = NULL;
Alexander Couzensfc3dd1f2020-11-19 00:41:47 +0100423 struct gprs_ns2_vc *nsvc = NULL;
Alexander Couzens6a161492020-07-12 13:45:50 +0200424 uint16_t bvci, nsei;
425 uint8_t sducontrol = 0;
426
427 if (oph->sap != SAP_NS)
428 return -EINVAL;
429
430 nsp = container_of(oph, struct osmo_gprs_ns2_prim, oph);
431
432 if (oph->operation != PRIM_OP_REQUEST || oph->primitive != PRIM_NS_UNIT_DATA)
433 return -EINVAL;
434
435 if (!oph->msg)
436 return -EINVAL;
437
438 bvci = nsp->bvci;
439 nsei = nsp->nsei;
440
441 nse = gprs_ns2_nse_by_nsei(nsi, nsei);
442 if (!nse)
443 return -EINVAL;
444
Alexander Couzensfc3dd1f2020-11-19 00:41:47 +0100445 nsvc = ns2_load_sharing(nse, bvci, nsp->u.unitdata.link_selector);
Alexander Couzens6a161492020-07-12 13:45:50 +0200446
447 /* TODO: send a status primitive back */
448 if (!nsvc)
449 return 0;
450
451 if (nsp->u.unitdata.change == NS_ENDPOINT_REQUEST_CHANGE)
452 sducontrol = 1;
453 else if (nsp->u.unitdata.change == NS_ENDPOINT_CONFIRM_CHANGE)
454 sducontrol = 2;
455
456 return ns2_tx_unit_data(nsvc, bvci, sducontrol, oph->msg);
457}
458
Harald Welte5bef2cc2020-09-18 22:33:24 +0200459/*! Send a STATUS.ind primitive to the specified NS instance user.
460 * \param[in] nsi NS instance on which we operate
461 * \param[in] nsei NSEI to which the statue relates
462 * \param[in] bvci BVCI to which the status relates
463 * \param[in] cause The cause of the status */
Alexander Couzensbf95f0f2020-10-01 22:56:03 +0200464void ns2_prim_status_ind(struct gprs_ns2_nse *nse,
Daniel Willmann15c09a82020-11-03 23:05:43 +0100465 struct gprs_ns2_vc *nsvc,
Alexander Couzensbf95f0f2020-10-01 22:56:03 +0200466 uint16_t bvci,
Alexander Couzens6a161492020-07-12 13:45:50 +0200467 enum gprs_ns2_affecting_cause cause)
468{
Daniel Willmann15c09a82020-11-03 23:05:43 +0100469 char nsvc_str[NS2_LL_MAX_STR];
Alexander Couzens6a161492020-07-12 13:45:50 +0200470 struct osmo_gprs_ns2_prim nsp = {};
Alexander Couzensbf95f0f2020-10-01 22:56:03 +0200471 nsp.nsei = nse->nsei;
Alexander Couzens6a161492020-07-12 13:45:50 +0200472 nsp.bvci = bvci;
473 nsp.u.status.cause = cause;
Alexander Couzens1c8785d2020-12-17 06:58:53 +0100474 nsp.u.status.transfer = ns2_count_transfer_cap(nse, bvci);
Alexander Couzensda0a2852020-10-01 23:24:07 +0200475 nsp.u.status.first = nse->first;
476 nsp.u.status.persistent = nse->persistent;
Daniel Willmann15c09a82020-11-03 23:05:43 +0100477 if (nsvc)
478 nsp.u.status.nsvc = gprs_ns2_ll_str_buf(nsvc_str, sizeof(nsvc_str), nsvc);
479
Alexander Couzens6a161492020-07-12 13:45:50 +0200480 osmo_prim_init(&nsp.oph, SAP_NS, PRIM_NS_STATUS,
481 PRIM_OP_INDICATION, NULL);
Alexander Couzensbf95f0f2020-10-01 22:56:03 +0200482 nse->nsi->cb(&nsp.oph, nse->nsi->cb_data);
Alexander Couzens6a161492020-07-12 13:45:50 +0200483}
484
Harald Welte5bef2cc2020-09-18 22:33:24 +0200485/*! Allocate a NS-VC within the given bind + NSE.
486 * \param[in] bind The 'bind' on which we operate
487 * \param[in] nse The NS Entity on which we operate
488 * \param[in] initiater - if this is an incoming remote (!initiater) or a local outgoing connection (initater)
Harald Welte603f4042020-11-29 17:39:19 +0100489 * \param[in] id - human-readable identifier
Harald Welte5bef2cc2020-09-18 22:33:24 +0200490 * \return newly allocated NS-VC on success; NULL on error */
Alexander Couzensd923cff2020-12-01 01:03:52 +0100491struct gprs_ns2_vc *ns2_vc_alloc(struct gprs_ns2_vc_bind *bind, struct gprs_ns2_nse *nse, bool initiater,
Harald Welte603f4042020-11-29 17:39:19 +0100492 enum gprs_ns2_vc_mode vc_mode, const char *id)
Alexander Couzens6a161492020-07-12 13:45:50 +0200493{
Daniel Willmannbb899052021-01-16 14:02:45 +0100494 /* Sanity check */
495 OSMO_ASSERT(bind->ll == nse->ll);
496
Alexander Couzens6a161492020-07-12 13:45:50 +0200497 struct gprs_ns2_vc *nsvc = talloc_zero(bind, struct gprs_ns2_vc);
498
499 if (!nsvc)
500 return NULL;
501
502 nsvc->bind = bind;
503 nsvc->nse = nse;
Alexander Couzensd923cff2020-12-01 01:03:52 +0100504 nsvc->mode = vc_mode;
Alexander Couzens6a161492020-07-12 13:45:50 +0200505 nsvc->sig_weight = 1;
506 nsvc->data_weight = 1;
507
508 nsvc->ctrg = rate_ctr_group_alloc(nsvc, &nsvc_ctrg_desc, bind->nsi->rate_ctr_idx);
509 if (!nsvc->ctrg) {
510 goto err;
511 }
512 nsvc->statg = osmo_stat_item_group_alloc(nsvc, &nsvc_statg_desc, bind->nsi->rate_ctr_idx);
513 if (!nsvc->statg)
514 goto err_group;
Harald Welte603f4042020-11-29 17:39:19 +0100515 if (!gprs_ns2_vc_fsm_alloc(nsvc, id, initiater))
Alexander Couzens6a161492020-07-12 13:45:50 +0200516 goto err_statg;
517
518 bind->nsi->rate_ctr_idx++;
519
520 llist_add(&nsvc->list, &nse->nsvc);
521 llist_add(&nsvc->blist, &bind->nsvc);
522
523 return nsvc;
524
525err_statg:
526 osmo_stat_item_group_free(nsvc->statg);
527err_group:
528 rate_ctr_group_free(nsvc->ctrg);
529err:
530 talloc_free(nsvc);
531
532 return NULL;
533}
534
Harald Welte5bef2cc2020-09-18 22:33:24 +0200535/*! Destroy/release given NS-VC.
536 * \param[in] nsvc NS-VC to destroy */
Alexander Couzens6a161492020-07-12 13:45:50 +0200537void gprs_ns2_free_nsvc(struct gprs_ns2_vc *nsvc)
538{
539 if (!nsvc)
540 return;
541
Daniel Willmann15c09a82020-11-03 23:05:43 +0100542 ns2_prim_status_ind(nsvc->nse, nsvc, 0, NS_AFF_CAUSE_VC_FAILURE);
Alexander Couzens6a161492020-07-12 13:45:50 +0200543
544 llist_del(&nsvc->list);
545 llist_del(&nsvc->blist);
546
547 /* notify nse this nsvc is unavailable */
548 ns2_nse_notify_unblocked(nsvc, false);
549
550 /* check if sns is using this VC */
551 ns2_sns_free_nsvc(nsvc);
552 osmo_fsm_inst_term(nsvc->fi, OSMO_FSM_TERM_REQUEST, NULL);
553
554 /* let the driver/bind clean up it's internal state */
555 if (nsvc->priv && nsvc->bind->free_vc)
556 nsvc->bind->free_vc(nsvc);
557
558 osmo_stat_item_group_free(nsvc->statg);
559 rate_ctr_group_free(nsvc->ctrg);
560
561 talloc_free(nsvc);
562}
563
Alexander Couzens47558792020-12-06 03:16:11 +0100564/*! Destroy/release all NS-VC of given NSE
565 * \param[in] nse NSE
566 */
567void gprs_ns2_free_nsvcs(struct gprs_ns2_nse *nse)
568{
569 struct gprs_ns2_vc *nsvc, *tmp;
570
571 if (!nse)
572 return;
573
574 llist_for_each_entry_safe(nsvc, tmp, &nse->nsvc, list) {
575 gprs_ns2_free_nsvc(nsvc);
576 }
577}
578
Harald Welte5bef2cc2020-09-18 22:33:24 +0200579/*! Allocate a message buffer for use with the NS2 stack. */
Alexander Couzens6a161492020-07-12 13:45:50 +0200580struct msgb *gprs_ns2_msgb_alloc(void)
581{
582 struct msgb *msg = msgb_alloc_headroom(NS_ALLOC_SIZE, NS_ALLOC_HEADROOM,
583 "GPRS/NS");
584 if (!msg) {
585 LOGP(DLNS, LOGL_ERROR, "Failed to allocate NS message of size %d\n",
586 NS_ALLOC_SIZE);
587 }
588 return msg;
589}
590
Harald Welte5bef2cc2020-09-18 22:33:24 +0200591/*! Create a status message to be sent over a new connection.
592 * \param[in] orig_msg the original message
593 * \param[in] tp TLVP parsed of the original message
594 * \param[out] reject callee-allocated message buffer of the generated NS-STATUS
595 * \param[in] cause Cause for the rejection
596 * \return 0 on success */
Alexander Couzens6a161492020-07-12 13:45:50 +0200597static int reject_status_msg(struct msgb *orig_msg, struct tlv_parsed *tp, struct msgb **reject, enum ns_cause cause)
598{
599 struct msgb *msg = gprs_ns2_msgb_alloc();
600 struct gprs_ns_hdr *nsh;
601 bool have_vci = false;
602 uint8_t _cause = cause;
603 uint16_t nsei = 0;
604
605 if (!msg)
606 return -ENOMEM;
607
Harald Welte798efea2020-12-03 16:01:02 +0100608 if (TLVP_PRES_LEN(tp, NS_IE_NSEI, 2)) {
Alexander Couzens6a161492020-07-12 13:45:50 +0200609 nsei = tlvp_val16be(tp, NS_IE_NSEI);
610
611 LOGP(DLNS, LOGL_NOTICE, "NSEI=%u Rejecting message without NSVCI. Tx NS STATUS (cause=%s)\n",
612 nsei, gprs_ns2_cause_str(cause));
613 }
614
615 msg->l2h = msgb_put(msg, sizeof(*nsh));
616 nsh = (struct gprs_ns_hdr *) msg->l2h;
617 nsh->pdu_type = NS_PDUT_STATUS;
618
619 msgb_tvlv_put(msg, NS_IE_CAUSE, 1, &_cause);
Harald Welte798efea2020-12-03 16:01:02 +0100620 have_vci = TLVP_PRES_LEN(tp, NS_IE_VCI, 2);
Alexander Couzens6a161492020-07-12 13:45:50 +0200621
622 /* Section 9.2.7.1: Static conditions for NS-VCI */
623 if (cause == NS_CAUSE_NSVC_BLOCKED ||
624 cause == NS_CAUSE_NSVC_UNKNOWN) {
625 if (!have_vci) {
626 msgb_free(msg);
627 return -EINVAL;
628 }
629
630 msgb_tvlv_put(msg, NS_IE_VCI, 2, TLVP_VAL(tp, NS_IE_VCI));
631 }
632
633 /* Section 9.2.7.2: Static conditions for NS PDU */
634 switch (cause) {
635 case NS_CAUSE_SEM_INCORR_PDU:
636 case NS_CAUSE_PDU_INCOMP_PSTATE:
637 case NS_CAUSE_PROTO_ERR_UNSPEC:
638 case NS_CAUSE_INVAL_ESSENT_IE:
639 case NS_CAUSE_MISSING_ESSENT_IE:
640 msgb_tvlv_put(msg, NS_IE_PDU, msgb_l2len(orig_msg),
641 orig_msg->l2h);
642 break;
643 default:
644 break;
645 }
646
647 *reject = msg;
648 return 0;
649}
650
Harald Welte5bef2cc2020-09-18 22:33:24 +0200651/*! Resolve a NS Entity based on its NSEI.
652 * \param[in] nsi NS Instance in which we do the look-up
653 * \param[in] nsei NSEI to look up
654 * \return NS Entity in successful case; NULL if none found */
Alexander Couzens6a161492020-07-12 13:45:50 +0200655struct gprs_ns2_nse *gprs_ns2_nse_by_nsei(struct gprs_ns2_inst *nsi, uint16_t nsei)
656{
657 struct gprs_ns2_nse *nse;
658
659 llist_for_each_entry(nse, &nsi->nse, list) {
660 if (nse->nsei == nsei)
661 return nse;
662 }
663
664 return NULL;
665}
666
Harald Welte5bef2cc2020-09-18 22:33:24 +0200667/*! Resolve a NS-VC Entity based on its NS-VCI.
668 * \param[in] nsi NS Instance in which we do the look-up
669 * \param[in] nsvci NS-VCI to look up
670 * \return NS-VC Entity in successful case; NULL if none found */
Alexander Couzens6a161492020-07-12 13:45:50 +0200671struct gprs_ns2_vc *gprs_ns2_nsvc_by_nsvci(struct gprs_ns2_inst *nsi, uint16_t nsvci)
672{
673 struct gprs_ns2_nse *nse;
674 struct gprs_ns2_vc *nsvc;
675
676 llist_for_each_entry(nse, &nsi->nse, list) {
677 llist_for_each_entry(nsvc, &nse->nsvc, list) {
678 if (nsvc->nsvci_is_valid && nsvc->nsvci == nsvci)
679 return nsvc;
680 }
681 }
682
683 return NULL;
684}
685
Harald Welte5bef2cc2020-09-18 22:33:24 +0200686/*! Create a NS Entity within given NS instance.
687 * \param[in] nsi NS instance in which to create NS Entity
688 * \param[in] nsei NS Entity Identifier of to-be-created NSE
689 * \returns newly-allocated NS-E in successful case; NULL on error */
Alexander Couzensd923cff2020-12-01 01:03:52 +0100690struct gprs_ns2_nse *gprs_ns2_create_nse(struct gprs_ns2_inst *nsi, uint16_t nsei,
691 enum gprs_ns2_ll linklayer, enum gprs_ns2_dialect dialect)
Alexander Couzens6a161492020-07-12 13:45:50 +0200692{
693 struct gprs_ns2_nse *nse;
Alexander Couzens93ad4992020-12-06 03:03:03 +0100694 char sns[16];
Alexander Couzens6a161492020-07-12 13:45:50 +0200695
696 nse = gprs_ns2_nse_by_nsei(nsi, nsei);
697 if (nse) {
698 LOGP(DLNS, LOGL_ERROR, "NSEI:%u Can not create a NSE with already taken NSEI\n", nsei);
699 return nse;
700 }
701
702 nse = talloc_zero(nsi, struct gprs_ns2_nse);
703 if (!nse)
704 return NULL;
705
Alexander Couzens93ad4992020-12-06 03:03:03 +0100706 if (dialect == NS2_DIALECT_SNS) {
707 snprintf(sns, sizeof(sns), "NSE%05u-SNS", nsei);
708 nse->bss_sns_fi = ns2_sns_bss_fsm_alloc(nse, sns);
709 if (!nse->bss_sns_fi) {
710 talloc_free(nse);
711 return NULL;
712 }
713 }
714
Alexander Couzensd923cff2020-12-01 01:03:52 +0100715 nse->dialect = dialect;
Alexander Couzensaac90162020-11-19 02:44:04 +0100716 nse->ll = linklayer;
Alexander Couzens6a161492020-07-12 13:45:50 +0200717 nse->nsei = nsei;
718 nse->nsi = nsi;
Alexander Couzensda0a2852020-10-01 23:24:07 +0200719 nse->first = true;
Alexander Couzens6a161492020-07-12 13:45:50 +0200720 llist_add(&nse->list, &nsi->nse);
721 INIT_LLIST_HEAD(&nse->nsvc);
722
723 return nse;
724}
725
Alexander Couzens05e7f7d2020-10-11 19:51:46 +0200726/*! Return the NSEI
727 * \param[in] nse NS Entity
728 * \return the nsei.
729 */
730uint16_t gprs_ns2_nse_nsei(struct gprs_ns2_nse *nse)
731{
732 return nse->nsei;
733}
734
Harald Welte5bef2cc2020-09-18 22:33:24 +0200735/*! Destroy given NS Entity.
736 * \param[in] nse NS Entity to destroy */
Alexander Couzens6a161492020-07-12 13:45:50 +0200737void gprs_ns2_free_nse(struct gprs_ns2_nse *nse)
738{
Alexander Couzens6a161492020-07-12 13:45:50 +0200739 if (!nse)
740 return;
741
Alexander Couzensd1cd6502021-01-15 02:16:23 +0100742 nse->alive = false;
Alexander Couzens47558792020-12-06 03:16:11 +0100743 gprs_ns2_free_nsvcs(nse);
Daniel Willmann15c09a82020-11-03 23:05:43 +0100744 ns2_prim_status_ind(nse, NULL, 0, NS_AFF_CAUSE_FAILURE);
Alexander Couzens6a161492020-07-12 13:45:50 +0200745
746 llist_del(&nse->list);
747 if (nse->bss_sns_fi)
748 osmo_fsm_inst_term(nse->bss_sns_fi, OSMO_FSM_TERM_REQUEST, NULL);
749 talloc_free(nse);
750}
751
Alexander Couzens4b6c8af2020-10-11 20:15:25 +0200752void gprs_ns2_free_nses(struct gprs_ns2_inst *nsi)
753{
754 struct gprs_ns2_nse *nse, *ntmp;
755
756 llist_for_each_entry_safe(nse, ntmp, &nsi->nse, list) {
757 gprs_ns2_free_nse(nse);
758 }
759}
760
Alexander Couzens6a161492020-07-12 13:45:50 +0200761static inline int ns2_tlv_parse(struct tlv_parsed *dec,
762 const uint8_t *buf, int buf_len, uint8_t lv_tag,
763 uint8_t lv_tag2)
764{
765 /* workaround for NS_IE_IP_ADDR not following any known TLV rules.
766 * See comment of ns_att_tlvdef1. */
767 int rc = tlv_parse(dec, &ns_att_tlvdef1, buf, buf_len, lv_tag, lv_tag2);
768 if (rc < 0)
769 return tlv_parse(dec, &ns_att_tlvdef2, buf, buf_len, lv_tag, lv_tag2);
770 return rc;
771}
772
773
Harald Welte5bef2cc2020-09-18 22:33:24 +0200774/*! Create a new NS-VC based on a [received] message. Depending on the bind it might create a NSE.
775 * \param[in] bind the bind through which msg was received
776 * \param[in] msg the actual received message
777 * \param[in] logname A name to describe the VC. E.g. ip address pair
778 * \param[out] reject A message filled to be sent back. Only used in failure cases.
779 * \param[out] success A pointer which will be set to the new VC on success
780 * \return enum value indicating the status, e.g. GPRS_NS2_CS_CREATED */
Alexander Couzens6a161492020-07-12 13:45:50 +0200781enum gprs_ns2_cs ns2_create_vc(struct gprs_ns2_vc_bind *bind,
782 struct msgb *msg,
783 const char *logname,
784 struct msgb **reject,
785 struct gprs_ns2_vc **success)
786{
787 struct gprs_ns_hdr *nsh = (struct gprs_ns_hdr *)msg->l2h;
788 struct tlv_parsed tp;
789 struct gprs_ns2_vc *nsvc;
790 struct gprs_ns2_nse *nse;
Alexander Couzensd923cff2020-12-01 01:03:52 +0100791 enum gprs_ns2_dialect dialect;
792 enum gprs_ns2_vc_mode vc_mode;
Alexander Couzens6a161492020-07-12 13:45:50 +0200793 uint16_t nsvci;
794 uint16_t nsei;
Harald Welte603f4042020-11-29 17:39:19 +0100795 char idbuf[32];
Alexander Couzens6a161492020-07-12 13:45:50 +0200796
Alexander Couzens12e5e6b2020-12-10 00:18:17 +0100797 int rc, tlv;
Alexander Couzens6a161492020-07-12 13:45:50 +0200798
799 if (msg->len < sizeof(struct gprs_ns_hdr))
800 return GPRS_NS2_CS_ERROR;
801
Alexander Couzens12e5e6b2020-12-10 00:18:17 +0100802 /* parse the tlv early to allow reject status msg to
803 * work with valid tp.
804 * Ignore the return code until the pdu type is parsed because
805 * an unknown pdu type should be ignored */
806 tlv = ns2_tlv_parse(&tp, nsh->data,
Alexander Couzensbac5b012020-12-09 23:32:22 +0100807 msgb_l2len(msg) - sizeof(*nsh), 0, 0);
Alexander Couzensbac5b012020-12-09 23:32:22 +0100808
Alexander Couzensd87a2f12020-11-30 22:20:20 +0100809 switch (nsh->pdu_type) {
810 case NS_PDUT_STATUS:
Alexander Couzens6a161492020-07-12 13:45:50 +0200811 /* Do not respond, see 3GPP TS 08.16, 7.5.1 */
812 LOGP(DLNS, LOGL_INFO, "Ignoring NS STATUS from %s "
813 "for non-existing NS-VC\n",
814 logname);
815 return GPRS_NS2_CS_SKIPPED;
Alexander Couzensd87a2f12020-11-30 22:20:20 +0100816 case NS_PDUT_ALIVE_ACK:
Alexander Couzens6a161492020-07-12 13:45:50 +0200817 /* Ignore this, see 3GPP TS 08.16, 7.4.1 */
818 LOGP(DLNS, LOGL_INFO, "Ignoring NS ALIVE ACK from %s "
819 "for non-existing NS-VC\n",
820 logname);
821 return GPRS_NS2_CS_SKIPPED;
Alexander Couzensd87a2f12020-11-30 22:20:20 +0100822 case NS_PDUT_RESET_ACK:
Alexander Couzens6a161492020-07-12 13:45:50 +0200823 /* Ignore this, see 3GPP TS 08.16, 7.3.1 */
824 LOGP(DLNS, LOGL_INFO, "Ignoring NS RESET ACK from %s "
825 "for non-existing NS-VC\n",
826 logname);
827 return GPRS_NS2_CS_SKIPPED;
Alexander Couzensd87a2f12020-11-30 22:20:20 +0100828 case NS_PDUT_RESET:
829 /* accept PDU RESET when vc_mode matches */
Alexander Couzensd923cff2020-12-01 01:03:52 +0100830 if (bind->accept_ipaccess) {
831 dialect = NS2_DIALECT_IPACCESS;
Alexander Couzensd87a2f12020-11-30 22:20:20 +0100832 break;
Alexander Couzensd923cff2020-12-01 01:03:52 +0100833 }
Alexander Couzens6a161492020-07-12 13:45:50 +0200834
Alexander Couzensd87a2f12020-11-30 22:20:20 +0100835 rc = reject_status_msg(msg, &tp, reject, NS_CAUSE_PDU_INCOMP_PSTATE);
Alexander Couzens3c22f912020-12-10 00:20:18 +0100836 if (rc < 0)
Alexander Couzensd87a2f12020-11-30 22:20:20 +0100837 LOGP(DLNS, LOGL_ERROR, "Failed to generate reject message (%d)\n", rc);
Alexander Couzensd87a2f12020-11-30 22:20:20 +0100838 return GPRS_NS2_CS_REJECTED;
839 default:
Alexander Couzens8ebc1ac2020-10-12 03:57:26 +0200840 rc = reject_status_msg(msg, &tp, reject, NS_CAUSE_PDU_INCOMP_PSTATE);
Alexander Couzens3c22f912020-12-10 00:20:18 +0100841 if (rc < 0)
Alexander Couzens8ebc1ac2020-10-12 03:57:26 +0200842 LOGP(DLNS, LOGL_ERROR, "Failed to generate reject message (%d)\n", rc);
Alexander Couzens8ebc1ac2020-10-12 03:57:26 +0200843 return GPRS_NS2_CS_REJECTED;
Alexander Couzens6a161492020-07-12 13:45:50 +0200844 }
845
Alexander Couzens12e5e6b2020-12-10 00:18:17 +0100846 if (tlv < 0) {
847 /* TODO: correct behaviour would checking what's wrong.
848 * If it's an essential TLV for the PDU return NS_CAUSE_INVAL_ESSENT_IE.
849 * Otherwise ignore the non-essential TLV. */
850 LOGP(DLNS, LOGL_ERROR, "Rx NS RESET Error %d during "
851 "TLV Parse\n", tlv);
852 rc = reject_status_msg(msg, &tp, reject, NS_CAUSE_PROTO_ERR_UNSPEC);
Alexander Couzens3c22f912020-12-10 00:20:18 +0100853 if (rc < 0)
Alexander Couzens12e5e6b2020-12-10 00:18:17 +0100854 LOGP(DLNS, LOGL_ERROR, "Failed to generate reject message (%d)\n", rc);
Alexander Couzens12e5e6b2020-12-10 00:18:17 +0100855 return GPRS_NS2_CS_REJECTED;
856 }
857
Harald Welte798efea2020-12-03 16:01:02 +0100858 if (!TLVP_PRES_LEN(&tp, NS_IE_CAUSE, 1) ||
859 !TLVP_PRES_LEN(&tp, NS_IE_VCI, 2) || !TLVP_PRES_LEN(&tp, NS_IE_NSEI, 2)) {
Alexander Couzens8ebc1ac2020-10-12 03:57:26 +0200860 LOGP(DLNS, LOGL_ERROR, "NS RESET Missing mandatory IE\n");
861 rc = reject_status_msg(msg, &tp, reject, NS_CAUSE_MISSING_ESSENT_IE);
Alexander Couzens3c22f912020-12-10 00:20:18 +0100862 if (rc < 0)
863 LOGP(DLNS, LOGL_ERROR, "Failed to generate reject message (%d)\n", rc);
Alexander Couzens8ebc1ac2020-10-12 03:57:26 +0200864 return GPRS_NS2_CS_REJECTED;
Alexander Couzens6a161492020-07-12 13:45:50 +0200865 }
866
Alexander Couzens6a161492020-07-12 13:45:50 +0200867 nsei = tlvp_val16be(&tp, NS_IE_NSEI);
Alexander Couzens05ac4e52021-01-04 19:07:05 +0100868 nsvci = tlvp_val16be(&tp, NS_IE_VCI);
869
870 /* find or create NSE */
Alexander Couzens6a161492020-07-12 13:45:50 +0200871 nse = gprs_ns2_nse_by_nsei(bind->nsi, nsei);
872 if (!nse) {
Alexander Couzens05ac4e52021-01-04 19:07:05 +0100873 /* only create nse for udp & ipaccess */
874 if (bind->ll != GPRS_NS2_LL_UDP || dialect != NS2_DIALECT_IPACCESS)
Alexander Couzens6a161492020-07-12 13:45:50 +0200875 return GPRS_NS2_CS_SKIPPED;
Alexander Couzens05ac4e52021-01-04 19:07:05 +0100876
877 if (!bind->nsi->create_nse || !bind->accept_ipaccess)
878 return GPRS_NS2_CS_SKIPPED;
Alexander Couzens6a161492020-07-12 13:45:50 +0200879
Alexander Couzensd923cff2020-12-01 01:03:52 +0100880 nse = gprs_ns2_create_nse(bind->nsi, nsei, bind->ll, dialect);
Alexander Couzens6a161492020-07-12 13:45:50 +0200881 if (!nse) {
Alexander Couzens05ac4e52021-01-04 19:07:05 +0100882 LOGP(DLNS, LOGL_ERROR, "Failed to create NSE(%05u)\n", nsei);
Alexander Couzens6a161492020-07-12 13:45:50 +0200883 return GPRS_NS2_CS_ERROR;
884 }
Alexander Couzens05ac4e52021-01-04 19:07:05 +0100885 } else {
886 /* nsei already known */
887 if (nse->ll != bind->ll) {
888 LOGP(DLNS, LOGL_ERROR, "Received NS-RESET NS-VCI(%05u) with wrong linklayer(%s) for already known NSE(%05u/%s)\n",
889 nsei, gprs_ns2_lltype_str(bind->ll), nse->nsei, gprs_ns2_lltype_str(nse->ll));
890 return GPRS_NS2_CS_SKIPPED;
891 }
892 }
893
894 nsvc = gprs_ns2_nsvc_by_nsvci(bind->nsi, nsvci);
895 if (nsvc) {
896 if (nsvc->persistent) {
897 LOGP(DLNS, LOGL_ERROR, "Received NS-RESET for a persistent NSE(%05u) NS-VCI(%05u) over wrong connection.\n",
898 nsei, nsvci);
899 return GPRS_NS2_CS_SKIPPED;
900 }
901 /* destroy old dynamic nsvc */
902 gprs_ns2_free_nsvc(nsvc);
903 }
904
905 /* do nse persistent check late to be more precise on the error message */
906 if (nse->persistent) {
907 LOGP(DLNS, LOGL_ERROR, "Received NS-RESET for a persistent NSE(%05u) but the unknown NS-VCI(%05u)\n",
908 nsei, nsvci);
909 return GPRS_NS2_CS_SKIPPED;
Alexander Couzens6a161492020-07-12 13:45:50 +0200910 }
911
Harald Welte603f4042020-11-29 17:39:19 +0100912 nsvci = tlvp_val16be(&tp, NS_IE_VCI);
Alexander Couzensd923cff2020-12-01 01:03:52 +0100913 vc_mode = gprs_ns2_dialect_to_vc_mode(dialect);
Harald Welte603f4042020-11-29 17:39:19 +0100914 snprintf(idbuf, sizeof(idbuf), "%s-NSE%05u-NSVC%05u", gprs_ns2_lltype_str(nse->ll),
915 nse->nsei, nsvci);
916 nsvc = ns2_vc_alloc(bind, nse, false, vc_mode, idbuf);
Alexander Couzens6a161492020-07-12 13:45:50 +0200917 if (!nsvc)
918 return GPRS_NS2_CS_SKIPPED;
919
Alexander Couzens6a161492020-07-12 13:45:50 +0200920 nsvc->nsvci = nsvci;
921 nsvc->nsvci_is_valid = true;
922
923 *success = nsvc;
924
925 return GPRS_NS2_CS_CREATED;
926}
927
Harald Welte5bef2cc2020-09-18 22:33:24 +0200928/*! Create, and connect an inactive, new IP-based NS-VC
929 * \param[in] bind bind in which the new NS-VC is to be created
930 * \param[in] remote remote address to which to connect
931 * \param[in] nse NS Entity in which the NS-VC is to be created
932 * \param[in] nsvci is only required when bind->vc_mode == NS2_VC_MODE_BLOCKRESET
933 * \return pointer to newly-allocated, connected and inactive NS-VC; NULL on error */
Alexander Couzens6a161492020-07-12 13:45:50 +0200934struct gprs_ns2_vc *gprs_ns2_ip_connect_inactive(struct gprs_ns2_vc_bind *bind,
Vadim Yanitskiya07f25e2020-10-09 21:47:01 +0700935 const struct osmo_sockaddr *remote,
Alexander Couzens6a161492020-07-12 13:45:50 +0200936 struct gprs_ns2_nse *nse,
937 uint16_t nsvci)
938{
939 struct gprs_ns2_vc *nsvc;
940
941 nsvc = gprs_ns2_ip_bind_connect(bind, nse, remote);
942 if (!nsvc)
943 return NULL;
944
945 if (nsvc->mode == NS2_VC_MODE_BLOCKRESET) {
946 nsvc->nsvci = nsvci;
947 nsvc->nsvci_is_valid = true;
948 }
949
950 return nsvc;
951}
952
Harald Welte5bef2cc2020-09-18 22:33:24 +0200953/*! Create, connect and activate a new IP-based NS-VC
954 * \param[in] bind bind in which the new NS-VC is to be created
955 * \param[in] remote remote address to which to connect
956 * \param[in] nse NS Entity in which the NS-VC is to be created
957 * \param[in] nsvci is only required when bind->vc_mode == NS2_VC_MODE_BLOCKRESET
958 * \return pointer to newly-allocated, connected and activated NS-VC; NULL on error */
Alexander Couzens6a161492020-07-12 13:45:50 +0200959struct gprs_ns2_vc *gprs_ns2_ip_connect(struct gprs_ns2_vc_bind *bind,
Vadim Yanitskiya07f25e2020-10-09 21:47:01 +0700960 const struct osmo_sockaddr *remote,
Alexander Couzens6a161492020-07-12 13:45:50 +0200961 struct gprs_ns2_nse *nse,
962 uint16_t nsvci)
963{
964 struct gprs_ns2_vc *nsvc;
965 nsvc = gprs_ns2_ip_connect_inactive(bind, remote, nse, nsvci);
966 if (!nsvc)
967 return NULL;
968
969 gprs_ns2_vc_fsm_start(nsvc);
970
971 return nsvc;
972}
973
Harald Welte5bef2cc2020-09-18 22:33:24 +0200974/*! Create, connect and activate a new IP-based NS-VC
975 * \param[in] bind bind in which the new NS-VC is to be created
976 * \param[in] remote remote address to which to connect
977 * \param[in] nsei NSEI of the NS Entity in which the NS-VC is to be created
978 * \param[in] nsvci is only required when bind->vc_mode == NS2_VC_MODE_BLOCKRESET
979 * \return pointer to newly-allocated, connected and activated NS-VC; NULL on error */
Alexander Couzens6a161492020-07-12 13:45:50 +0200980struct gprs_ns2_vc *gprs_ns2_ip_connect2(struct gprs_ns2_vc_bind *bind,
Vadim Yanitskiya07f25e2020-10-09 21:47:01 +0700981 const struct osmo_sockaddr *remote,
Alexander Couzens6a161492020-07-12 13:45:50 +0200982 uint16_t nsei,
Alexander Couzensd923cff2020-12-01 01:03:52 +0100983 uint16_t nsvci,
984 enum gprs_ns2_dialect dialect)
Alexander Couzens6a161492020-07-12 13:45:50 +0200985{
986 struct gprs_ns2_nse *nse = gprs_ns2_nse_by_nsei(bind->nsi, nsei);
987
988 if (!nse) {
Alexander Couzensd923cff2020-12-01 01:03:52 +0100989 nse = gprs_ns2_create_nse(bind->nsi, nsei, GPRS_NS2_LL_UDP, dialect);
Alexander Couzens6a161492020-07-12 13:45:50 +0200990 if (!nse)
991 return NULL;
992 }
993
994 return gprs_ns2_ip_connect(bind, remote, nse, nsvci);
995}
996
Harald Welte5bef2cc2020-09-18 22:33:24 +0200997/*! Find NS-VC for given socket address.
998 * \param[in] nse NS Entity in which to search
999 * \param[in] sockaddr socket address to search for
1000 * \return NS-VC matching sockaddr; NULL if none found */
Alexander Couzens38b19e82020-09-23 23:56:37 +02001001struct gprs_ns2_vc *gprs_ns2_nsvc_by_sockaddr_nse(struct gprs_ns2_nse *nse,
Vadim Yanitskiya07f25e2020-10-09 21:47:01 +07001002 const struct osmo_sockaddr *sockaddr)
Alexander Couzens6a161492020-07-12 13:45:50 +02001003{
1004 struct gprs_ns2_vc *nsvc;
Alexander Couzens9a4cf272020-10-11 20:48:04 +02001005 const struct osmo_sockaddr *remote;
Alexander Couzens6a161492020-07-12 13:45:50 +02001006
1007 OSMO_ASSERT(nse);
1008 OSMO_ASSERT(sockaddr);
1009
1010 llist_for_each_entry(nsvc, &nse->nsvc, list) {
Alexander Couzensc4229a42020-10-11 20:58:04 +02001011 remote = gprs_ns2_ip_vc_remote(nsvc);
Alexander Couzens6a161492020-07-12 13:45:50 +02001012 if (!osmo_sockaddr_cmp(sockaddr, remote))
1013 return nsvc;
1014 }
1015
1016 return NULL;
1017}
1018
Alexander Couzens6cb5d5f2020-10-11 23:23:31 +02001019/*!
1020 * Iterate over all nsvc of a NS Entity and call the callback.
1021 * If the callback returns < 0 it aborts the loop and returns the callback return code.
1022 * \param[in] nse NS Entity to iterate over all nsvcs
1023 * \param[in] cb the callback to call
1024 * \param[inout] cb_data the private data of the callback
1025 * \return 0 if the loop completes. If a callback returns < 0 it will returns this value.
1026 */
1027int gprs_ns2_nse_foreach_nsvc(struct gprs_ns2_nse *nse, gprs_ns2_foreach_nsvc_cb cb, void *cb_data)
1028{
1029 struct gprs_ns2_vc *nsvc, *tmp;
1030 int rc = 0;
1031 llist_for_each_entry_safe(nsvc, tmp, &nse->nsvc, list) {
1032 rc = cb(nsvc, cb_data);
1033 if (rc < 0)
1034 return rc;
1035 }
1036
1037 return 0;
1038}
1039
1040
Alexander Couzens6a161492020-07-12 13:45:50 +02001041
Harald Welte5bef2cc2020-09-18 22:33:24 +02001042/*! Bottom-side entry-point for received NS PDU from the driver/bind
Harald Welte5bef2cc2020-09-18 22:33:24 +02001043 * \param[in] nsvc NS-VC for which the message was received
1044 * \param msg the received message. Ownership is trasnferred, caller must not free it!
1045 * \return 0 on success; negative on error */
Alexander Couzensffd49d02020-09-24 00:47:17 +02001046int ns2_recv_vc(struct gprs_ns2_vc *nsvc,
Alexander Couzens6a161492020-07-12 13:45:50 +02001047 struct msgb *msg)
1048{
1049 struct gprs_ns_hdr *nsh = (struct gprs_ns_hdr *) msg->l2h;
1050 struct tlv_parsed tp;
1051 int rc = 0;
1052
Daniel Willmann751977b2020-12-02 18:59:44 +01001053 log_set_context(LOG_CTX_GB_NSE, nsvc->nse);
1054 log_set_context(LOG_CTX_GB_NSVC, nsvc);
1055
Alexander Couzens6a161492020-07-12 13:45:50 +02001056 if (msg->len < sizeof(struct gprs_ns_hdr))
1057 return -EINVAL;
1058
1059 switch (nsh->pdu_type) {
1060 case SNS_PDUT_CONFIG:
1061 /* one additional byte ('end flag') before the TLV part starts */
1062 rc = ns2_tlv_parse(&tp, nsh->data+1,
1063 msgb_l2len(msg) - sizeof(*nsh)-1, 0, 0);
1064 if (rc < 0) {
Alexander Couzensbb0a53b2020-10-12 04:18:03 +02001065 LOGP(DLNS, LOGL_NOTICE, "Error during TLV Parse in %s\n", msgb_hexdump(msg));
Alexander Couzens6a161492020-07-12 13:45:50 +02001066 return rc;
1067 }
1068 /* All sub-network service related message types */
1069 rc = gprs_ns2_sns_rx(nsvc, msg, &tp);
1070 break;
1071 case SNS_PDUT_ACK:
1072 case SNS_PDUT_ADD:
1073 case SNS_PDUT_CHANGE_WEIGHT:
1074 case SNS_PDUT_DELETE:
1075 /* weird layout: NSEI TLV, then value-only transaction IE, then TLV again */
Harald Welte36be9d82020-10-09 15:39:25 +02001076 rc = ns2_tlv_parse(&tp, nsh->data+5,
1077 msgb_l2len(msg) - sizeof(*nsh)-5, 0, 0);
Alexander Couzens6a161492020-07-12 13:45:50 +02001078 if (rc < 0) {
Alexander Couzensbb0a53b2020-10-12 04:18:03 +02001079 LOGP(DLNS, LOGL_NOTICE, "Error during TLV Parse in %s\n", msgb_hexdump(msg));
Alexander Couzens6a161492020-07-12 13:45:50 +02001080 return rc;
1081 }
1082 tp.lv[NS_IE_NSEI].val = nsh->data+2;
1083 tp.lv[NS_IE_NSEI].len = 2;
1084 tp.lv[NS_IE_TRANS_ID].val = nsh->data+4;
1085 tp.lv[NS_IE_TRANS_ID].len = 1;
1086 rc = gprs_ns2_sns_rx(nsvc, msg, &tp);
1087 break;
1088 case SNS_PDUT_CONFIG_ACK:
1089 case SNS_PDUT_SIZE:
1090 case SNS_PDUT_SIZE_ACK:
1091 rc = ns2_tlv_parse(&tp, nsh->data,
1092 msgb_l2len(msg) - sizeof(*nsh), 0, 0);
1093 if (rc < 0) {
Alexander Couzensbb0a53b2020-10-12 04:18:03 +02001094 LOGP(DLNS, LOGL_NOTICE, "Error during TLV Parse in %s\n", msgb_hexdump(msg));
Alexander Couzens6a161492020-07-12 13:45:50 +02001095 return rc;
1096 }
1097 /* All sub-network service related message types */
1098 rc = gprs_ns2_sns_rx(nsvc, msg, &tp);
1099 break;
1100
1101 case NS_PDUT_UNITDATA:
1102 rc = gprs_ns2_vc_rx(nsvc, msg, NULL);
1103 break;
1104 default:
1105 rc = ns2_tlv_parse(&tp, nsh->data,
1106 msgb_l2len(msg) - sizeof(*nsh), 0, 0);
1107 if (rc < 0) {
Alexander Couzensbb0a53b2020-10-12 04:18:03 +02001108 LOGP(DLNS, LOGL_NOTICE, "Error during TLV Parse\n");
Alexander Couzens6a161492020-07-12 13:45:50 +02001109 if (nsh->pdu_type != NS_PDUT_STATUS)
1110 ns2_tx_status(nsvc, NS_CAUSE_PROTO_ERR_UNSPEC, 0, msg);
1111 return rc;
1112 }
1113 rc = gprs_ns2_vc_rx(nsvc, msg, &tp);
1114 break;
1115 }
1116
1117 return rc;
1118}
1119
Alexander Couzensfc3dd1f2020-11-19 00:41:47 +01001120/* summarize all active data nsvcs */
1121void ns2_nse_data_sum(struct gprs_ns2_nse *nse)
1122{
1123 struct gprs_ns2_vc *nsvc;
Alexander Couzens8a2a1a42020-12-26 18:00:17 +01001124 nse->nsvc_count = 0;
Alexander Couzensfc3dd1f2020-11-19 00:41:47 +01001125
1126 llist_for_each_entry(nsvc, &nse->nsvc, list) {
1127 if (!gprs_ns2_vc_is_unblocked(nsvc))
1128 continue;
Alexander Couzens8a2a1a42020-12-26 18:00:17 +01001129
1130 nse->nsvc_count++;
Alexander Couzensfc3dd1f2020-11-19 00:41:47 +01001131 }
1132}
1133
Harald Welte5bef2cc2020-09-18 22:33:24 +02001134/*! Notify a nse about the change of a NS-VC.
1135 * \param[in] nsvc NS-VC which has detected the change (and shall not be notified).
1136 * \param[in] unblocked whether the NSE should be marked as unblocked (true) or blocked (false) */
Alexander Couzens6a161492020-07-12 13:45:50 +02001137void ns2_nse_notify_unblocked(struct gprs_ns2_vc *nsvc, bool unblocked)
1138{
1139 struct gprs_ns2_nse *nse = nsvc->nse;
1140 struct gprs_ns2_vc *tmp;
1141
Alexander Couzensfc3dd1f2020-11-19 00:41:47 +01001142 ns2_nse_data_sum(nse);
1143
Alexander Couzens6a161492020-07-12 13:45:50 +02001144 if (unblocked == nse->alive)
1145 return;
1146
1147 if (unblocked) {
1148 /* this is the first unblocked NSVC on an unavailable NSE */
1149 nse->alive = true;
Daniel Willmann15c09a82020-11-03 23:05:43 +01001150 ns2_prim_status_ind(nse, NULL, 0, NS_AFF_CAUSE_RECOVERY);
Alexander Couzensda0a2852020-10-01 23:24:07 +02001151 nse->first = false;
Alexander Couzens6a161492020-07-12 13:45:50 +02001152 return;
1153 }
1154
1155 /* check if there are any remaining alive vcs */
1156 llist_for_each_entry(tmp, &nse->nsvc, list) {
1157 if (tmp == nsvc)
1158 continue;
1159
1160 if (gprs_ns2_vc_is_unblocked(tmp)) {
1161 /* there is at least one remaining alive NSVC */
1162 return;
1163 }
1164 }
1165
1166 /* nse became unavailable */
1167 nse->alive = false;
Daniel Willmann15c09a82020-11-03 23:05:43 +01001168 ns2_prim_status_ind(nse, NULL, 0, NS_AFF_CAUSE_FAILURE);
Alexander Couzens6a161492020-07-12 13:45:50 +02001169}
1170
1171/*! Create a new GPRS NS instance
Harald Welte5bef2cc2020-09-18 22:33:24 +02001172 * \param[in] ctx a talloc context to allocate NS instance from
Alexander Couzenscce88282020-10-26 00:25:50 +01001173 * \param[in] cb Call-back function for dispatching primitives to the user. The Call-back must free all msgb* given in the primitive.
Harald Welte5bef2cc2020-09-18 22:33:24 +02001174 * \param[in] cb_data transparent user data passed to Call-back
1175 * \returns dynamically allocated gprs_ns_inst; NULL on error */
Alexander Couzens6a161492020-07-12 13:45:50 +02001176struct gprs_ns2_inst *gprs_ns2_instantiate(void *ctx, osmo_prim_cb cb, void *cb_data)
1177{
1178 struct gprs_ns2_inst *nsi;
1179
1180 nsi = talloc_zero(ctx, struct gprs_ns2_inst);
1181 if (!nsi)
1182 return NULL;
1183
1184 nsi->cb = cb;
1185 nsi->cb_data = cb_data;
1186 INIT_LLIST_HEAD(&nsi->binding);
1187 INIT_LLIST_HEAD(&nsi->nse);
1188
1189 nsi->timeout[NS_TOUT_TNS_BLOCK] = 3;
1190 nsi->timeout[NS_TOUT_TNS_BLOCK_RETRIES] = 3;
1191 nsi->timeout[NS_TOUT_TNS_RESET] = 3;
1192 nsi->timeout[NS_TOUT_TNS_RESET_RETRIES] = 3;
1193 nsi->timeout[NS_TOUT_TNS_TEST] = 30;
1194 nsi->timeout[NS_TOUT_TNS_ALIVE] = 3;
1195 nsi->timeout[NS_TOUT_TNS_ALIVE_RETRIES] = 10;
1196 nsi->timeout[NS_TOUT_TSNS_PROV] = 3; /* 1..10 */
Alexander Couzens90ee9632020-12-07 06:18:32 +01001197 nsi->timeout[NS_TOUT_TSNS_SIZE_RETRIES] = 3;
1198 nsi->timeout[NS_TOUT_TSNS_CONFIG_RETRIES] = 3;
Alexander Couzens6a161492020-07-12 13:45:50 +02001199
1200 return nsi;
1201}
1202
Harald Welte5bef2cc2020-09-18 22:33:24 +02001203/*! Destroy a NS Instance (including all its NSEs, binds, ...).
1204 * \param[in] nsi NS instance to destroy */
Alexander Couzens6a161492020-07-12 13:45:50 +02001205void gprs_ns2_free(struct gprs_ns2_inst *nsi)
1206{
Alexander Couzens6a161492020-07-12 13:45:50 +02001207 if (!nsi)
1208 return;
1209
Alexander Couzens4b6c8af2020-10-11 20:15:25 +02001210 gprs_ns2_free_nses(nsi);
Alexander Couzens896fcd52020-10-11 19:52:36 +02001211 gprs_ns2_free_binds(nsi);
Alexander Couzens35315042020-10-10 03:28:17 +02001212
1213 talloc_free(nsi);
Alexander Couzens6a161492020-07-12 13:45:50 +02001214}
1215
Harald Welte5bef2cc2020-09-18 22:33:24 +02001216/*! Configure whether a NS Instance should dynamically create NSEs based on incoming traffic.
1217 * \param nsi the instance to modify
1218 * \param create_nse if NSE can be created on receiving package. SGSN set this.
1219 * \return 0 on success; negative on error
Alexander Couzens6a161492020-07-12 13:45:50 +02001220 */
1221int gprs_ns2_dynamic_create_nse(struct gprs_ns2_inst *nsi, bool create_nse)
1222{
1223 nsi->create_nse = create_nse;
1224
1225 return 0;
1226}
1227
Harald Welte5bef2cc2020-09-18 22:33:24 +02001228/*! Start the NS-ALIVE FSM in all NS-VCs of given NSE.
1229 * \param[in] nse NS Entity in whihc to start NS-ALIVE FSMs */
Alexander Couzens6a161492020-07-12 13:45:50 +02001230void gprs_ns2_start_alive_all_nsvcs(struct gprs_ns2_nse *nse)
1231{
1232 struct gprs_ns2_vc *nsvc;
1233 OSMO_ASSERT(nse);
1234
1235 llist_for_each_entry(nsvc, &nse->nsvc, list) {
1236 if (nsvc->sns_only)
1237 continue;
1238
1239 gprs_ns2_vc_fsm_start(nsvc);
1240 }
1241}
1242
Harald Welte5bef2cc2020-09-18 22:33:24 +02001243/*! Destroy a given bind.
1244 * \param[in] bind the bind we want to destroy */
Alexander Couzens6a161492020-07-12 13:45:50 +02001245void gprs_ns2_free_bind(struct gprs_ns2_vc_bind *bind)
1246{
1247 struct gprs_ns2_vc *nsvc, *tmp;
1248 if (!bind)
1249 return;
1250
1251 llist_for_each_entry_safe(nsvc, tmp, &bind->nsvc, blist) {
1252 gprs_ns2_free_nsvc(nsvc);
1253 }
1254
1255 if (bind->driver->free_bind)
1256 bind->driver->free_bind(bind);
1257
1258 llist_del(&bind->list);
Alexander Couzensaaa55a62020-12-03 06:02:03 +01001259 talloc_free((char *)bind->name);
Alexander Couzens6a161492020-07-12 13:45:50 +02001260 talloc_free(bind);
1261}
Alexander Couzens896fcd52020-10-11 19:52:36 +02001262
1263void gprs_ns2_free_binds(struct gprs_ns2_inst *nsi)
1264{
1265 struct gprs_ns2_vc_bind *bind, *tbind;
1266
1267 llist_for_each_entry_safe(bind, tbind, &nsi->binding, list) {
1268 gprs_ns2_free_bind(bind);
1269 }
1270}
Alexander Couzensd923cff2020-12-01 01:03:52 +01001271
Alexander Couzensaaa55a62020-12-03 06:02:03 +01001272/*! Search for a bind with a unique name
1273 * \param[in] nsi NS instance on which we operate
1274 * \param[in] name The unique bind name to search for
1275 * \return the bind or NULL if not found
1276 */
1277struct gprs_ns2_vc_bind *gprs_ns2_bind_by_name(
1278 struct gprs_ns2_inst *nsi, const char *name)
1279{
1280 struct gprs_ns2_vc_bind *bind;
1281
1282 llist_for_each_entry(bind, &nsi->binding, list) {
1283 if (!strcmp(bind->name, name))
1284 return bind;
1285 }
1286
1287 return NULL;
1288}
1289
Alexander Couzensd923cff2020-12-01 01:03:52 +01001290enum gprs_ns2_vc_mode gprs_ns2_dialect_to_vc_mode(
1291 enum gprs_ns2_dialect dialect)
1292{
1293 switch (dialect) {
1294 case NS2_DIALECT_SNS:
1295 case NS2_DIALECT_STATIC_ALIVE:
1296 return NS2_VC_MODE_ALIVE;
1297 case NS2_DIALECT_STATIC_RESETBLOCK:
1298 case NS2_DIALECT_IPACCESS:
1299 return NS2_VC_MODE_BLOCKRESET;
1300 default:
1301 return -1;
1302 }
1303}
1304
Alexander Couzens1c8785d2020-12-17 06:58:53 +01001305static void add_bind_array(struct gprs_ns2_vc_bind **array,
1306 struct gprs_ns2_vc_bind *bind, int size)
1307{
1308 int i;
1309 for (i=0; i < size; i++) {
1310 if (array[i] == bind)
1311 return;
1312 if (!array[i])
1313 break;
1314 }
1315
1316 if (i == size)
1317 return;
1318
1319 array[i] = bind;
1320}
1321
1322/*! calculate the transfer capabilities for a nse
1323 * \param nse the nse to count the transfer capability
1324 * \param bvci a bvci - unused
1325 * \return the transfer capability in mbit. On error < 0.
1326 */
1327int ns2_count_transfer_cap(struct gprs_ns2_nse *nse,
1328 uint16_t bvci)
1329{
1330 struct gprs_ns2_vc *nsvc;
1331 struct gprs_ns2_vc_bind **active_binds;
1332 int i, active_nsvcs = 0, transfer_cap = 0;
1333
1334 /* calculate the transfer capabilities based on the binds.
1335 * A bind has a transfer capability which is shared across all NSVCs.
1336 * Take care the bind cap is not counted twice within a NSE.
1337 * This should be accurate for FR and UDP but not for FR/GRE. */
1338
1339 if (!nse->alive)
1340 return 0;
1341
1342 llist_for_each_entry(nsvc, &nse->nsvc, list) {
1343 if (gprs_ns2_vc_is_unblocked(nsvc))
1344 active_nsvcs++;
1345 }
1346 /* an alive nse should always have active_nsvcs */
1347 OSMO_ASSERT(active_nsvcs);
1348
1349 active_binds = talloc_zero_array(nse, struct gprs_ns2_vc_bind*, active_nsvcs);
1350 if (!active_binds)
1351 return -ENOMEM;
1352
1353 llist_for_each_entry(nsvc, &nse->nsvc, list) {
1354 if (!gprs_ns2_vc_is_unblocked(nsvc))
1355 continue;
1356 add_bind_array(active_binds, nsvc->bind, active_nsvcs);
1357 }
1358
1359 /* TODO: change calcuation for FR/GRE */
1360 for (i = 0; i < active_nsvcs; i++) {
1361 if (active_binds[i])
1362 transfer_cap += active_binds[i]->transfer_capability;
1363 }
1364
1365 talloc_free(active_binds);
1366 return transfer_cap;
1367}
1368
Alexander Couzens6a161492020-07-12 13:45:50 +02001369/*! @} */