/* GPRS SGSN Implementation */ /* (C) 2010 by Harald Welte * (C) 2010 by On-Waves * All Rights Reserved * * This program is free software; you can redistribute it and/or modify * it under the terms of the GNU Affero General Public License as published by * the Free Software Foundation; either version 3 of the License, or * (at your option) any later version. * * This program is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the * GNU Affero General Public License for more details. * * You should have received a copy of the GNU Affero General Public License * along with this program. If not, see . * */ #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include "../../bscconfig.h" #define _GNU_SOURCE #include void *tall_bsc_ctx; struct gprs_ns_inst *sgsn_nsi; static int daemonize = 0; const char *openbsc_copyright = "Copyright (C) 2010 Harald Welte and On-Waves\r\n" "License AGPLv3+: GNU AGPL version 3 or later \r\n" "This is free software: you are free to change and redistribute it.\r\n" "There is NO WARRANTY, to the extent permitted by law.\r\n"; static struct sgsn_instance sgsn_inst = { .config_file = "osmo_sgsn.cfg", .cfg = { .gtp_statedir = "./", .auth_policy = SGSN_AUTH_POLICY_CLOSED, }, }; struct sgsn_instance *sgsn = &sgsn_inst; /* call-back function for the NS protocol */ static int sgsn_ns_cb(enum gprs_ns_evt event, struct gprs_nsvc *nsvc, struct msgb *msg, uint16_t bvci) { int rc = 0; switch (event) { case GPRS_NS_EVT_UNIT_DATA: /* hand the message into the BSSGP implementation */ rc = bssgp_rcvmsg(msg); break; default: LOGP(DGPRS, LOGL_ERROR, "SGSN: Unknown event %u from NS\n", event); if (msg) msgb_free(msg); rc = -EIO; break; } return rc; } /* call-back function for the BSSGP protocol */ int bssgp_prim_cb(struct osmo_prim_hdr *oph, void *ctx) { struct osmo_bssgp_prim *bp; bp = container_of(oph, struct osmo_bssgp_prim, oph); switch (oph->sap) { case SAP_BSSGP_LL: switch (oph->primitive) { case PRIM_BSSGP_UL_UD: return gprs_llc_rcvmsg(oph->msg, bp->tp); } break; case SAP_BSSGP_GMM: switch (oph->primitive) { case PRIM_BSSGP_GMM_SUSPEND: return gprs_gmm_rx_suspend(bp->ra_id, bp->tlli); case PRIM_BSSGP_GMM_RESUME: return gprs_gmm_rx_resume(bp->ra_id, bp->tlli, bp->u.resume.suspend_ref); } break; case SAP_BSSGP_NM: break; } return 0; } static void signal_handler(int signal) { fprintf(stdout, "signal %u received\n", signal); switch (signal) { case SIGINT: osmo_signal_dispatch(SS_L_GLOBAL, S_L_GLOBAL_SHUTDOWN, NULL); sleep(1); exit(0); break; case SIGABRT: /* in case of abort, we want to obtain a talloc report * and then return to the caller, who will abort the process */ case SIGUSR1: talloc_report(tall_vty_ctx, stderr); talloc_report_full(tall_bsc_ctx, stderr); break; case SIGUSR2: talloc_report_full(tall_vty_ctx, stderr); break; default: break; } } /* NSI that BSSGP uses when transmitting on NS */ extern struct gprs_ns_inst *bssgp_nsi; extern int bsc_vty_go_parent(struct vty *vty); static struct vty_app_info vty_info = { .name = "OsmoSGSN", .version = PACKAGE_VERSION, .go_parent_cb = bsc_vty_go_parent, .is_config_node = bsc_vty_is_config_node, }; static void print_help(void) { printf("Some useful help...\n"); printf(" -h --help\tthis text\n"); printf(" -D --daemonize\tFork the process into a background daemon\n"); printf(" -d option --debug\tenable Debugging\n"); printf(" -s --disable-color\n"); printf(" -c --config-file\tThe config file to use [%s]\n", sgsn->config_file); printf(" -e --log-level number\tSet a global log level\n"); } static void handle_options(int argc, char **argv) { while (1) { int option_index = 0, c; static struct option long_options[] = { {"help", 0, 0, 'h'}, {"debug", 1, 0, 'd'}, {"daemonize", 0, 0, 'D'}, {"config-file", 1, 0, 'c'}, {"disable-color", 0, 0, 's'}, {"timestamp", 0, 0, 'T'}, { "version", 0, 0, 'V' }, {"log-level", 1, 0, 'e'}, {NULL, 0, 0, 0} }; c = getopt_long(argc, argv, "hd:Dc:sTVe:", long_options, &option_index); if (c == -1) break; switch (c) { case 'h': //print_usage(); print_help(); exit(0); case 's': log_set_use_color(osmo_stderr_target, 0); break; case 'd': log_parse_category_mask(osmo_stderr_target, optarg); break; case 'D': daemonize = 1; break; case 'c': sgsn_inst.config_file = strdup(optarg); break; case 'T': log_set_print_timestamp(osmo_stderr_target, 1); break; case 'V': print_version(1); exit(0); break; case 'e': log_set_log_level(osmo_stderr_target, atoi(optarg)); break; default: /* ignore */ break; } } } /* default categories */ static struct log_info_cat gprs_categories[] = { [DMM] = { .name = "DMM", .description = "Layer3 Mobility Management (MM)", .color = "\033[1;33m", .enabled = 1, .loglevel = LOGL_NOTICE, }, [DPAG] = { .name = "DPAG", .description = "Paging Subsystem", .color = "\033[1;38m", .enabled = 1, .loglevel = LOGL_NOTICE, }, [DMEAS] = { .name = "DMEAS", .description = "Radio Measurement Processing", .enabled = 0, .loglevel = LOGL_NOTICE, }, [DREF] = { .name = "DREF", .description = "Reference Counting", .enabled = 0, .loglevel = LOGL_NOTICE, }, [DGPRS] = { .name = "DGPRS", .description = "GPRS Packet Service", .enabled = 1, .loglevel = LOGL_DEBUG, }, [DNS] = { .name = "DNS", .description = "GPRS Network Service (NS)", .enabled = 1, .loglevel = LOGL_INFO, }, [DBSSGP] = { .name = "DBSSGP", .description = "GPRS BSS Gateway Protocol (BSSGP)", .enabled = 1, .loglevel = LOGL_DEBUG, }, [DLLC] = { .name = "DLLC", .description = "GPRS Logical Link Control Protocol (LLC)", .enabled = 1, .loglevel = LOGL_DEBUG, }, [DSNDCP] = { .name = "DSNDCP", .description = "GPRS Sub-Network Dependent Control Protocol (SNDCP)", .enabled = 1, .loglevel = LOGL_DEBUG, }, [DRANAP] = { .name = "DRANAP", .description = "RAN Application Part (RANAP)", .enabled = 1, .loglevel = LOGL_DEBUG, }, [DSUA] = { .name = "DSUA", .description = "SCCP User Adaptation (SUA)", .enabled = 1, .loglevel = LOGL_DEBUG, }, [DSLHC] = { .name = "DSLHC", .description = "RFC1144 TCP/IP Header compression (SLHC)", .enabled = 1, .loglevel = LOGL_DEBUG, }, [DV42BIS] = { .name = "DV42BIS", .description = "V.42bis data compression (SNDCP)", .enabled = 1, .loglevel = LOGL_DEBUG, } }; static const struct log_info gprs_log_info = { .filter_fn = gprs_log_filter_fn, .cat = gprs_categories, .num_cat = ARRAY_SIZE(gprs_categories), }; int sgsn_ranap_iu_event(struct ue_conn_ctx *ctx, enum iu_event_type type, void *data); int main(int argc, char **argv) { struct ctrl_handle *ctrl; struct gsm_network dummy_network; int rc; srand(time(NULL)); tall_bsc_ctx = talloc_named_const(NULL, 0, "osmo_sgsn"); msgb_talloc_ctx_init(tall_bsc_ctx, 0); signal(SIGINT, &signal_handler); signal(SIGABRT, &signal_handler); signal(SIGUSR1, &signal_handler); signal(SIGUSR2, &signal_handler); osmo_init_ignore_signals(); osmo_init_logging(&gprs_log_info); osmo_stats_init(tall_bsc_ctx); vty_info.copyright = openbsc_copyright; vty_init(&vty_info); logging_vty_add_cmds(NULL); osmo_stats_vty_add_cmds(&gprs_log_info); sgsn_vty_init(&sgsn_inst.cfg); ctrl_vty_init(tall_bsc_ctx); handle_options(argc, argv); rate_ctr_init(tall_bsc_ctx); gprs_ns_set_log_ss(DNS); bssgp_set_log_ss(DBSSGP); sgsn_nsi = gprs_ns_instantiate(&sgsn_ns_cb, tall_bsc_ctx); if (!sgsn_nsi) { LOGP(DGPRS, LOGL_ERROR, "Unable to instantiate NS\n"); exit(1); } bssgp_nsi = sgsn_inst.cfg.nsi = sgsn_nsi; gprs_llc_init("/usr/local/lib/osmocom/crypt/"); sgsn_rate_ctr_init(); sgsn_inst_init(); gprs_ns_vty_init(bssgp_nsi); bssgp_vty_init(); gprs_llc_vty_init(); gprs_sndcp_vty_init(); sgsn_auth_init(); sgsn_cdr_init(&sgsn_inst); /* FIXME: register signal handler for SS_L_NS */ rc = sgsn_parse_config(sgsn_inst.config_file); if (rc < 0) { LOGP(DGPRS, LOGL_FATAL, "Error in config file\n"); exit(2); } /* start telnet after reading config for vty_get_bind_addr() */ rc = telnet_init_dynif(tall_bsc_ctx, &dummy_network, vty_get_bind_addr(), OSMO_VTY_PORT_SGSN); if (rc < 0) exit(1); /* start control interface after reading config for * ctrl_vty_get_bind_addr() */ ctrl = sgsn_controlif_setup(NULL, ctrl_vty_get_bind_addr(), OSMO_CTRL_PORT_SGSN); if (!ctrl) { LOGP(DGPRS, LOGL_ERROR, "Failed to create CTRL interface.\n"); exit(1); } if (sgsn_ctrl_cmds_install() != 0) { LOGP(DGPRS, LOGL_ERROR, "Failed to install CTRL commands.\n"); exit(1); } rc = sgsn_gtp_init(&sgsn_inst); if (rc) { LOGP(DGPRS, LOGL_FATAL, "Cannot bind/listen on GTP socket\n"); exit(2); } rc = gprs_subscr_init(&sgsn_inst); if (rc < 0) { LOGP(DGPRS, LOGL_FATAL, "Cannot set up subscriber management\n"); exit(2); } rc = gprs_ns_nsip_listen(sgsn_nsi); if (rc < 0) { LOGP(DGPRS, LOGL_FATAL, "Cannot bind/listen on NSIP socket\n"); exit(2); } rc = gprs_ns_frgre_listen(sgsn_nsi); if (rc < 0) { LOGP(DGPRS, LOGL_FATAL, "Cannot bind/listen GRE " "socket. Do you have CAP_NET_RAW?\n"); exit(2); } if (sgsn->cfg.dynamic_lookup) { if (sgsn_ares_init(sgsn) != 0) { LOGP(DGPRS, LOGL_FATAL, "Failed to initialize c-ares(%d)\n", rc); exit(4); } } #ifdef BUILD_IU iu_init(tall_bsc_ctx, "127.0.0.2", 14001, gsm0408_gprs_rcvmsg_iu, sgsn_ranap_iu_event); #endif if (daemonize) { rc = osmo_daemonize(); if (rc < 0) { perror("Error during daemonize"); exit(1); } } while (1) { rc = osmo_select_main(0); if (rc < 0) exit(3); } /* not reached */ exit(0); }