/*! \file gprs_ns2_vty.c * VTY interface for our GPRS Networks Service (NS) implementation. */ /* (C) 2020 by sysmocom - s.f.m.c. GmbH * Author: Alexander Couzens * (C) 2021 by Harald Welte * * All Rights Reserved * * SPDX-License-Identifier: GPL-2.0+ * * This program is free software; you can redistribute it and/or modify * it under the terms of the GNU General Public License as published by * the Free Software Foundation; either version 2 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 General Public License for more details. * * You should have received a copy of the GNU 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 "gprs_ns2_internal.h" #define SHOW_NS_STR "Display information about the NS protocol\n" #define NSVCI_STR "NS Virtual Connection ID (NS-VCI)\n" #define DLCI_STR "Data Link connection identifier\n" static struct gprs_ns2_inst *vty_nsi = NULL; static struct osmo_fr_network *vty_fr_network = NULL; static struct llist_head binds; static struct llist_head nses; static struct llist_head ip_sns_default_binds; struct vty_bind { struct llist_head list; const char *name; enum gprs_ns2_ll ll; int dscp; uint8_t priority; bool accept_ipaccess; bool accept_sns; uint8_t ip_sns_sig_weight; uint8_t ip_sns_data_weight; }; struct vty_nse { struct llist_head list; uint16_t nsei; /* list of binds which are valid for this nse. Only IP-SNS uses this * to allow `no listen ..` in the bind context. So "half" created binds are valid for * IP-SNS. This allows changing the bind ip without modifying all NSEs afterwards */ struct llist_head binds; }; /* used by IP-SNS to connect multiple vty_nse_bind to a vty_nse */ struct vty_nse_bind { struct llist_head list; struct vty_bind *vbind; }; /* TODO: this should into osmo timer */ const struct value_string gprs_ns_timer_strs[] = { { NS_TOUT_TNS_BLOCK, TNS_BLOCK_STR }, { NS_TOUT_TNS_BLOCK_RETRIES, TNS_BLOCK_RETRIES_STR }, { NS_TOUT_TNS_RESET, TNS_RESET_STR }, { NS_TOUT_TNS_RESET_RETRIES, TNS_RESET_RETRIES_STR }, { NS_TOUT_TNS_TEST, TNS_TEST_STR }, { NS_TOUT_TNS_ALIVE, TNS_ALIVE_STR }, { NS_TOUT_TNS_ALIVE_RETRIES, TNS_ALIVE_RETRIES_STR }, { NS_TOUT_TSNS_PROV, TSNS_PROV_STR }, { NS_TOUT_TSNS_SIZE_RETRIES, TSNS_SIZE_RETRIES_STR }, { NS_TOUT_TSNS_CONFIG_RETRIES, TSNS_CONFIG_RETRIES_STR }, { NS_TOUT_TSNS_PROCEDURES_RETRIES, TSNS_PROCEDURES_RETRIES_STR }, { 0, NULL } }; const struct value_string vty_fr_role_names[] = { { FR_ROLE_USER_EQUIPMENT, "fr" }, { FR_ROLE_NETWORK_EQUIPMENT, "frnet" }, { 0, NULL } }; const struct value_string vty_ll_names[] = { { GPRS_NS2_LL_FR, "fr" }, { GPRS_NS2_LL_FR_GRE, "frgre" }, { GPRS_NS2_LL_UDP, "udp" }, { 0, NULL } }; static struct vty_bind *vty_bind_by_name(const char *name) { struct vty_bind *vbind; llist_for_each_entry(vbind, &binds, list) { if (!strcmp(vbind->name, name)) return vbind; } return NULL; } static struct vty_bind *vty_bind_alloc(const char *name) { struct vty_bind *vbind = talloc_zero(vty_nsi, struct vty_bind); if (!vbind) return NULL; vbind->name = talloc_strdup(vty_nsi, name); if (!vbind->name) { talloc_free(vbind); return NULL; } vbind->ip_sns_sig_weight = 1; vbind->ip_sns_data_weight = 1; llist_add_tail(&vbind->list, &binds); return vbind; } static void vty_bind_free(struct vty_bind *vbind) { if (!vbind) return; llist_del(&vbind->list); talloc_free(vbind); } static struct vty_nse *vty_nse_by_nsei(uint16_t nsei) { struct vty_nse *vnse; llist_for_each_entry(vnse, &nses, list) { if (vnse->nsei == nsei) return vnse; } return NULL; } static struct vty_nse *vty_nse_alloc(uint16_t nsei) { struct vty_nse *vnse = talloc_zero(vty_nsi, struct vty_nse); if (!vnse) return NULL; vnse->nsei = nsei; INIT_LLIST_HEAD(&vnse->binds); llist_add_tail(&vnse->list, &nses); return vnse; } static void vty_nse_free(struct vty_nse *vnse) { if (!vnse) return; llist_del(&vnse->list); /* all vbind of the nse will be freed by talloc */ talloc_free(vnse); } static int vty_nse_add_vbind(struct vty_nse *vnse, struct vty_bind *vbind) { struct vty_nse_bind *vnse_bind; if (vbind->ll != GPRS_NS2_LL_UDP) return -EINVAL; llist_for_each_entry(vnse_bind, &vnse->binds, list) { if (vnse_bind->vbind == vbind) return -EALREADY; } vnse_bind = talloc(vnse, struct vty_nse_bind); if (!vnse_bind) return -ENOMEM; vnse_bind->vbind = vbind; llist_add_tail(&vnse_bind->list, &vnse->binds); return 0; } static int vty_nse_remove_vbind(struct vty_nse *vnse, struct vty_bind *vbind) { struct vty_nse_bind *vnse_bind, *tmp; if (vbind->ll != GPRS_NS2_LL_UDP) return -EINVAL; llist_for_each_entry_safe(vnse_bind, tmp, &vnse->binds, list) { if (vnse_bind->vbind == vbind) { llist_del(&vnse_bind->list); talloc_free(vnse_bind); return 0; } } return -ENOENT; } /* check if the NSE still has SNS configuration */ static bool vty_nse_check_sns(struct gprs_ns2_nse *nse) { struct vty_nse *vnse = vty_nse_by_nsei(nse->nsei); int count = gprs_ns2_sns_count(nse); if (count > 0) { /* there are other sns endpoints */ return true; } if (!vnse) return false; if (llist_empty(&vnse->binds)) return false; return true; } static struct cmd_node ns_node = { L_NS_NODE, "%s(config-ns)# ", 1, }; DEFUN(cfg_ns, cfg_ns_cmd, "ns", "Configure the GPRS Network Service") { vty->node = L_NS_NODE; return CMD_SUCCESS; } DEFUN(cfg_ns_timer, cfg_ns_timer_cmd, "timer " NS_TIMERS " <0-65535>", "Network Service Timer\n" NS_TIMERS_HELP "Timer Value\n") { int idx = get_string_value(gprs_ns_timer_strs, argv[0]); int val = atoi(argv[1]); if (idx < 0 || idx >= ARRAY_SIZE(vty_nsi->timeout)) return CMD_WARNING; vty_nsi->timeout[idx] = val; return CMD_SUCCESS; } DEFUN(cfg_ns_nsei, cfg_ns_nsei_cmd, "nse <0-65535> [ip-sns-role-sgsn]", "Persistent NS Entity\n" "NS Entity ID (NSEI)\n" "Create NSE in SGSN role (default: BSS)\n" ) { struct gprs_ns2_nse *nse; struct vty_nse *vnse; uint16_t nsei = atoi(argv[0]); bool sgsn_role = false; bool free_vnse = false; if (argc > 1 && !strcmp(argv[1], "ip-sns-role-sgsn")) sgsn_role = true; vnse = vty_nse_by_nsei(nsei); if (!vnse) { vnse = vty_nse_alloc(nsei); if (!vnse) { vty_out(vty, "Failed to create vty NSE!%s", VTY_NEWLINE); return CMD_ERR_INCOMPLETE; } free_vnse = true; } nse = gprs_ns2_nse_by_nsei(vty_nsi, nsei); if (!nse) { nse = gprs_ns2_create_nse2(vty_nsi, nsei, GPRS_NS2_LL_UNDEF, GPRS_NS2_DIALECT_UNDEF, sgsn_role); if (!nse) { vty_out(vty, "Failed to create NSE!%s", VTY_NEWLINE); goto err; } nse->persistent = true; } if (!nse->persistent) { /* TODO: should the dynamic NSE removed? */ vty_out(vty, "A dynamic NSE with the specified NSEI already exists%s", VTY_NEWLINE); goto err; } vty->node = L_NS_NSE_NODE; vty->index = nse; return CMD_SUCCESS; err: if (free_vnse) talloc_free(vnse); return CMD_ERR_INCOMPLETE; } DEFUN(cfg_no_ns_nsei, cfg_no_ns_nsei_cmd, "no nse <0-65535>", NO_STR "Delete a Persistent NS Entity\n" "NS Entity ID (NSEI)\n" ) { struct gprs_ns2_nse *nse; struct vty_nse *vnse; uint16_t nsei = atoi(argv[0]); nse = gprs_ns2_nse_by_nsei(vty_nsi, nsei); if (!nse) { vty_out(vty, "Can not find NS Entity %s%s", argv[0], VTY_NEWLINE); return CMD_ERR_NOTHING_TODO; } if (!nse->persistent) { vty_out(vty, "Ignoring non-persistent NS Entity%s", VTY_NEWLINE); return CMD_WARNING; } vty_out(vty, "Deleting NS Entity %u%s", nse->nsei, VTY_NEWLINE); gprs_ns2_free_nse(nse); vnse = vty_nse_by_nsei(nsei); vty_nse_free(vnse); return CMD_SUCCESS; } /* TODO: add fr/gre */ DEFUN(cfg_ns_bind, cfg_ns_bind_cmd, "bind (fr|udp) ID", "Configure local Bind\n" "Frame Relay\n" "UDP/IP\n" "Unique identifier for this bind (to reference from NS-VCs, NSEs, ...)\n" ) { const char *nstype = argv[0]; const char *name = argv[1]; struct vty_bind *vbind; enum gprs_ns2_ll ll; int rc; rc = get_string_value(vty_ll_names, nstype); if (rc < 0) return CMD_WARNING; ll = (enum gprs_ns2_ll) rc; if (!osmo_identifier_valid(name)) { vty_out(vty, "Invalid ID. The ID should be only alphanumeric.%s", VTY_NEWLINE); return CMD_WARNING; } vbind = vty_bind_by_name(name); if (vbind) { if (vbind->ll != ll) { vty_out(vty, "A bind with the specified ID already exists with a different type (fr|frgre|udp)!%s", VTY_NEWLINE); return CMD_WARNING; } } else { vbind = vty_bind_alloc(name); if (!vbind) { vty_out(vty, "Can not create bind - out of memory%s", VTY_NEWLINE); return CMD_WARNING; } vbind->ll = ll; } vty->index = vbind; vty->node = L_NS_BIND_NODE; return CMD_SUCCESS; } DEFUN(cfg_no_ns_bind, cfg_no_ns_bind_cmd, "no bind ID", NO_STR "Delete a bind\n" "Unique identifier for this bind\n" ) { struct vty_bind *vbind; struct gprs_ns2_vc_bind *bind; const char *name = argv[0]; vbind = vty_bind_by_name(name); if (!vbind) { vty_out(vty, "bind %s does not exist!%s", name, VTY_NEWLINE); return CMD_WARNING; } vty_bind_free(vbind); bind = gprs_ns2_bind_by_name(vty_nsi, name); if (bind) gprs_ns2_free_bind(bind); return CMD_SUCCESS; } static void config_write_vbind(struct vty *vty, struct vty_bind *vbind) { struct gprs_ns2_vc_bind *bind; const struct osmo_sockaddr *addr; struct osmo_sockaddr_str addr_str; const char *netif, *frrole_str, *llstr; enum osmo_fr_role frrole; llstr = get_value_string_or_null(vty_ll_names, vbind->ll); if (!llstr) return; vty_out(vty, " bind %s %s%s", llstr, vbind->name, VTY_NEWLINE); bind = gprs_ns2_bind_by_name(vty_nsi, vbind->name); switch (vbind->ll) { case GPRS_NS2_LL_FR: if (bind) { netif = gprs_ns2_fr_bind_netif(bind); if (!netif) return; frrole = gprs_ns2_fr_bind_role(bind); if ((int) frrole == -1) return; frrole_str = get_value_string_or_null(vty_fr_role_names, frrole); if (netif && frrole_str) vty_out(vty, " fr %s %s%s", netif, frrole_str, VTY_NEWLINE); } break; case GPRS_NS2_LL_UDP: if (bind) { addr = gprs_ns2_ip_bind_sockaddr(bind); if (!osmo_sockaddr_str_from_sockaddr(&addr_str, &addr->u.sas)) { vty_out(vty, " listen %s %u%s", addr_str.ip, addr_str.port, VTY_NEWLINE); } } if (vbind->accept_ipaccess) vty_out(vty, " accept-ipaccess%s", VTY_NEWLINE); if (vbind->accept_sns) vty_out(vty, " accept-dynamic-ip-sns%s", VTY_NEWLINE); if (vbind->dscp) vty_out(vty, " dscp %u%s", vbind->dscp, VTY_NEWLINE); if (vbind->priority) vty_out(vty, " socket-priority %u%s", vbind->priority, VTY_NEWLINE); vty_out(vty, " ip-sns signalling-weight %u data-weight %u%s", vbind->ip_sns_sig_weight, vbind->ip_sns_data_weight, VTY_NEWLINE); break; default: return; } } static void config_write_nsvc(struct vty *vty, const struct gprs_ns2_vc *nsvc) { const char *netif; uint16_t dlci; const struct osmo_sockaddr *addr; struct osmo_sockaddr_str addr_str; switch (nsvc->nse->ll) { case GPRS_NS2_LL_UNDEF: break; case GPRS_NS2_LL_UDP: switch (nsvc->nse->dialect) { case GPRS_NS2_DIALECT_IPACCESS: addr = gprs_ns2_ip_vc_remote(nsvc); if (!addr) break; if (osmo_sockaddr_str_from_sockaddr(&addr_str, &addr->u.sas)) break; vty_out(vty, " nsvc ipa %s %s %u nsvci %u%s", nsvc->bind->name, addr_str.ip, addr_str.port, nsvc->nsvci, VTY_NEWLINE); break; case GPRS_NS2_DIALECT_STATIC_ALIVE: addr = gprs_ns2_ip_vc_remote(nsvc); if (!addr) break; if (osmo_sockaddr_str_from_sockaddr(&addr_str, &addr->u.sas)) break; vty_out(vty, " nsvc udp %s %s %u%s", nsvc->bind->name, addr_str.ip, addr_str.port, VTY_NEWLINE); break; default: break; } break; case GPRS_NS2_LL_FR: netif = gprs_ns2_fr_bind_netif(nsvc->bind); if (!netif) break; dlci = gprs_ns2_fr_nsvc_dlci(nsvc); if (!dlci) break; OSMO_ASSERT(nsvc->nsvci_is_valid); vty_out(vty, " nsvc fr %s dlci %u nsvci %u%s", netif, dlci, nsvc->nsvci, VTY_NEWLINE); break; case GPRS_NS2_LL_FR_GRE: break; } } static void _config_write_ns_nse(struct vty *vty, struct gprs_ns2_nse *nse) { struct gprs_ns2_vc *nsvc; struct vty_nse *vnse = vty_nse_by_nsei(nse->nsei); struct vty_nse_bind *vbind; OSMO_ASSERT(vnse); vty_out(vty, " nse %u%s%s", nse->nsei, nse->ip_sns_role_sgsn ? " ip-sns-role-sgsn" : "", VTY_NEWLINE); switch (nse->dialect) { case GPRS_NS2_DIALECT_SNS: ns2_sns_write_vty(vty, nse); llist_for_each_entry(vbind, &vnse->binds, list) { vty_out(vty, " ip-sns-bind %s%s", vbind->vbind->name, VTY_NEWLINE); } break; default: llist_for_each_entry(nsvc, &nse->nsvc, list) { config_write_nsvc(vty, nsvc); } break; } } static int config_write_ns_nse(struct vty *vty) { struct gprs_ns2_nse *nse; llist_for_each_entry(nse, &vty_nsi->nse, list) { if (!nse->persistent) continue; _config_write_ns_nse(vty, nse); } return 0; } static int config_write_ns_bind(struct vty *vty) { struct vty_bind *vbind; llist_for_each_entry(vbind, &binds, list) { config_write_vbind(vty, vbind); } return 0; } static int config_write_ns(struct vty *vty) { struct vty_nse_bind *vbind; unsigned int i; int ret; vty_out(vty, "ns%s", VTY_NEWLINE); for (i = 0; i < ARRAY_SIZE(vty_nsi->timeout); i++) vty_out(vty, " timer %s %u%s", get_value_string(gprs_ns_timer_strs, i), vty_nsi->timeout[i], VTY_NEWLINE); if (vty_nsi->txqueue_max_length != NS_DEFAULT_TXQUEUE_MAX_LENGTH) vty_out(vty, " txqueue-max-length %u%s", vty_nsi->txqueue_max_length, VTY_NEWLINE); ret = config_write_ns_bind(vty); if (ret) return ret; llist_for_each_entry(vbind, &ip_sns_default_binds, list) { vty_out(vty, " ip-sns-default bind %s%s", vbind->vbind->name, VTY_NEWLINE); } ret = config_write_ns_nse(vty); if (ret) return ret; return 0; } static struct cmd_node ns_bind_node = { L_NS_BIND_NODE, "%s(config-ns-bind)# ", 1, }; DEFUN(cfg_ns_bind_listen, cfg_ns_bind_listen_cmd, "listen " VTY_IPV46_CMD " <1-65535>", "Configure local IP + Port of this bind\n" "Local IPv4 Address\n" "Local IPv6 Address\n" "Local UDP Port\n" ) { struct vty_bind *vbind = vty->index; struct gprs_ns2_vc_bind *bind; int rc; const char *addr_str = argv[0]; unsigned int port = atoi(argv[1]); struct osmo_sockaddr_str sockaddr_str; struct osmo_sockaddr sockaddr; if (vbind->ll != GPRS_NS2_LL_UDP) { vty_out(vty, "listen can be only used with UDP bind%s", VTY_NEWLINE); return CMD_WARNING; } if (osmo_sockaddr_str_from_str(&sockaddr_str, addr_str, port)) { vty_out(vty, "Can not parse the Address %s %s%s", argv[0], argv[1], VTY_NEWLINE); return CMD_WARNING; } osmo_sockaddr_str_to_sockaddr(&sockaddr_str, &sockaddr.u.sas); if (gprs_ns2_ip_bind_by_sockaddr(vty_nsi, &sockaddr)) { vty_out(vty, "A bind with the specified address already exists!%s", VTY_NEWLINE); return CMD_WARNING; } rc = gprs_ns2_ip_bind(vty_nsi, vbind->name, &sockaddr, vbind->dscp, &bind); if (rc != 0) { vty_out(vty, "Failed to create the bind (rc %d)!%s", rc, VTY_NEWLINE); return CMD_WARNING; } bind->accept_ipaccess = vbind->accept_ipaccess; bind->accept_sns = vbind->accept_sns; return CMD_SUCCESS; } DEFUN(cfg_no_ns_bind_listen, cfg_no_ns_bind_listen_cmd, "no listen", NO_STR "Delete a IP/Port assignment\n" ) { struct vty_bind *vbind = vty->index; struct gprs_ns2_vc_bind *bind; if (vbind->ll != GPRS_NS2_LL_UDP) { vty_out(vty, "no listen can be only used with UDP bind%s", VTY_NEWLINE); return CMD_WARNING; } bind = gprs_ns2_bind_by_name(vty_nsi, vbind->name); if (!bind) return CMD_ERR_NOTHING_TODO; OSMO_ASSERT(bind->ll == GPRS_NS2_LL_UDP); gprs_ns2_free_bind(bind); return CMD_SUCCESS; } DEFUN(cfg_ns_bind_dscp, cfg_ns_bind_dscp_cmd, "dscp <0-63>", "Set DSCP/TOS on the UDP socket\n" "DSCP Value\n") { struct vty_bind *vbind = vty->index; struct gprs_ns2_vc_bind *bind; uint16_t dscp = atoi(argv[0]); if (vbind->ll != GPRS_NS2_LL_UDP) { vty_out(vty, "dscp can be only used with UDP bind%s", VTY_NEWLINE); return CMD_WARNING; } vbind->dscp = dscp; bind = gprs_ns2_bind_by_name(vty_nsi, vbind->name); if (bind) gprs_ns2_ip_bind_set_dscp(bind, dscp); return CMD_SUCCESS; } DEFUN(cfg_no_ns_bind_dscp, cfg_no_ns_bind_dscp_cmd, "no dscp", "Set DSCP/TOS on the UDP socket\n" "DSCP Value\n") { struct vty_bind *vbind = vty->index; struct gprs_ns2_vc_bind *bind; uint16_t dscp = 0; if (vbind->ll != GPRS_NS2_LL_UDP) { vty_out(vty, "dscp can be only used with UDP bind%s", VTY_NEWLINE); return CMD_WARNING; } vbind->dscp = dscp; bind = gprs_ns2_bind_by_name(vty_nsi, vbind->name); if (bind) gprs_ns2_ip_bind_set_dscp(bind, dscp); return CMD_SUCCESS; } DEFUN(cfg_ns_bind_priority, cfg_ns_bind_priority_cmd, "socket-priority <0-255>", "Set socket priority on the UDP socket\n" "Priority Value (>6 requires CAP_NET_ADMIN)\n") { struct vty_bind *vbind = vty->index; struct gprs_ns2_vc_bind *bind; uint8_t prio = atoi(argv[0]); if (vbind->ll != GPRS_NS2_LL_UDP) { vty_out(vty, "dscp can be only used with UDP bind%s", VTY_NEWLINE); return CMD_WARNING; } vbind->priority = prio; bind = gprs_ns2_bind_by_name(vty_nsi, vbind->name); if (bind) gprs_ns2_ip_bind_set_priority(bind, prio); return CMD_SUCCESS; } DEFUN(cfg_ns_bind_ipaccess, cfg_ns_bind_ipaccess_cmd, "accept-ipaccess", "Allow to create dynamic NS Entity by NS Reset PDU on UDP (ip.access style)\n" ) { struct vty_bind *vbind = vty->index; struct gprs_ns2_vc_bind *bind; if (vbind->ll != GPRS_NS2_LL_UDP) { vty_out(vty, "accept-ipaccess can be only used with UDP bind%s", VTY_NEWLINE); return CMD_WARNING; } vbind->accept_ipaccess = true; bind = gprs_ns2_bind_by_name(vty_nsi, vbind->name); if (bind) bind->accept_ipaccess = true; return CMD_SUCCESS; } DEFUN(cfg_no_ns_bind_ipaccess, cfg_no_ns_bind_ipaccess_cmd, "no accept-ipaccess", NO_STR "Reject NS Reset PDU on UDP (ip.access style)\n" ) { struct vty_bind *vbind = vty->index; struct gprs_ns2_vc_bind *bind; if (vbind->ll != GPRS_NS2_LL_UDP) { vty_out(vty, "no accept-ipaccess can be only used with UDP bind%s", VTY_NEWLINE); return CMD_WARNING; } vbind->accept_ipaccess = false; bind = gprs_ns2_bind_by_name(vty_nsi, vbind->name); if (bind) bind->accept_ipaccess = false; return CMD_SUCCESS; } DEFUN(cfg_ns_bind_accept_sns, cfg_ns_bind_accept_sns_cmd, "accept-dynamic-ip-sns", "Allow to create dynamic NS Entities by IP-SNS PDUs\n" ) { struct vty_bind *vbind = vty->index; struct gprs_ns2_vc_bind *bind; if (vbind->ll != GPRS_NS2_LL_UDP) { vty_out(vty, "accept-dynamic-ip-sns can be only used with UDP bind%s", VTY_NEWLINE); return CMD_WARNING; } vbind->accept_sns = true; bind = gprs_ns2_bind_by_name(vty_nsi, vbind->name); if (bind) bind->accept_sns = true; return CMD_SUCCESS; } DEFUN(cfg_no_ns_bind_accept_sns, cfg_no_ns_bind_accept_sns_cmd, "no accept-dynamic-ip-sns", NO_STR "Disable dynamic creation of NS Entities by IP-SNS PDUs\n" ) { struct vty_bind *vbind = vty->index; struct gprs_ns2_vc_bind *bind; if (vbind->ll != GPRS_NS2_LL_UDP) { vty_out(vty, "no accept-dynamic-ip-sns can be only used with UDP bind%s", VTY_NEWLINE); return CMD_WARNING; } vbind->accept_sns = false; bind = gprs_ns2_bind_by_name(vty_nsi, vbind->name); if (bind) bind->accept_sns = false; return CMD_SUCCESS; } DEFUN(cfg_ns_bind_ip_sns_weight, cfg_ns_bind_ip_sns_weight_cmd, "ip-sns signalling-weight <0-254> data-weight <0-254>", "IP SNS\n" "signalling weight used by IP-SNS dynamic configuration\n" "signalling weight used by IP-SNS dynamic configuration\n" "data weight used by IP-SNS dynamic configuration\n" "data weight used by IP-SNS dynamic configuration\n") { struct vty_bind *vbind = vty->index; struct gprs_ns2_vc_bind *bind; int signalling = atoi(argv[0]); int data = atoi(argv[1]); if (vbind->ll != GPRS_NS2_LL_UDP) { vty_out(vty, "ip-sns signalling-weight <0-254> data-weight <0-254> can be only used with UDP bind%s", VTY_NEWLINE); return CMD_WARNING; } vbind->ip_sns_data_weight = data; vbind->ip_sns_sig_weight = signalling; bind = gprs_ns2_bind_by_name(vty_nsi, vbind->name); if (bind) gprs_ns2_ip_bind_set_sns_weight(bind, signalling, data); return CMD_SUCCESS; } DEFUN(cfg_ns_bind_fr, cfg_ns_bind_fr_cmd, "fr NETIF (fr|frnet)", "frame relay\n" IFNAME_STR "fr (user) is used by BSS or SGSN attached to UNI of a FR network\n" "frnet (network) is used by SGSN if BSS is directly attached\n" ) { struct vty_bind *vbind = vty->index; struct gprs_ns2_vc_bind *bind; const char *netif = argv[0]; const char *role = argv[1]; int rc = 0; enum osmo_fr_role frrole; if (vbind->ll != GPRS_NS2_LL_FR) { vty_out(vty, "fr can be only used with frame relay bind%s", VTY_NEWLINE); return CMD_WARNING; } if (!strcmp(role, "fr")) frrole = FR_ROLE_USER_EQUIPMENT; else if (!strcmp(role, "frnet")) frrole = FR_ROLE_NETWORK_EQUIPMENT; else return CMD_WARNING; bind = gprs_ns2_fr_bind_by_netif(vty_nsi, netif); if (bind) { vty_out(vty, "Interface %s already used.%s", netif, VTY_NEWLINE); return CMD_WARNING; } rc = gprs_ns2_fr_bind(vty_nsi, vbind->name, netif, vty_fr_network, frrole, &bind); if (rc < 0) { LOGP(DLNS, LOGL_ERROR, "Failed to bind interface %s on fr. Err: %d\n", netif, rc); return CMD_WARNING; } return CMD_SUCCESS; } DEFUN(cfg_no_ns_bind_fr, cfg_no_ns_bind_fr_cmd, "no fr NETIF", NO_STR "Delete a frame relay link\n" "Delete a frame relay link\n" IFNAME_STR ) { struct vty_bind *vbind = vty->index; struct gprs_ns2_vc_bind *bind; const char *netif = argv[0]; if (vbind->ll != GPRS_NS2_LL_FR) { vty_out(vty, "fr can be only used with frame relay bind%s", VTY_NEWLINE); return CMD_WARNING; } bind = gprs_ns2_fr_bind_by_netif(vty_nsi, netif); if (!bind) { vty_out(vty, "Interface not found.%s", VTY_NEWLINE); return CMD_WARNING; } if (strcmp(bind->name, vbind->name)) { vty_out(vty, "The specified interface is not bound to this bind.%s", VTY_NEWLINE); return CMD_WARNING; } gprs_ns2_free_bind(bind); return CMD_SUCCESS; } static struct cmd_node ns_nse_node = { L_NS_NSE_NODE, "%s(config-ns-nse)# ", 1, }; DEFUN(cfg_ns_nse_nsvc_fr, cfg_ns_nse_nsvc_fr_cmd, "nsvc fr NETIF dlci <16-1007> nsvci <0-65535>", "NS Virtual Connection\n" "frame relay\n" "frame relay interface. Must be registered via fr vty\n" NSVCI_STR NSVCI_STR DLCI_STR DLCI_STR ) { struct gprs_ns2_vc_bind *bind; struct gprs_ns2_vc *nsvc; struct gprs_ns2_nse *nse = vty->index; const char *netif = argv[0]; uint16_t dlci = atoi(argv[1]); uint16_t nsvci = atoi(argv[2]); bool dialect_modified = false; bool ll_modified = false; if (nse->ll != GPRS_NS2_LL_FR && nse->ll != GPRS_NS2_LL_UNDEF) { vty_out(vty, "Can not mix NS-VC with different link layer%s", VTY_NEWLINE); goto err; } if (nse->dialect != GPRS_NS2_DIALECT_STATIC_RESETBLOCK && nse->dialect != GPRS_NS2_DIALECT_UNDEF) { vty_out(vty, "Can not mix NS-VC with different dialects%s", VTY_NEWLINE); goto err; } if (nse->ll == GPRS_NS2_LL_UNDEF) { nse->ll = GPRS_NS2_LL_FR; ll_modified = true; } if (nse->dialect == GPRS_NS2_DIALECT_UNDEF) { ns2_nse_set_dialect(nse, GPRS_NS2_DIALECT_STATIC_RESETBLOCK); dialect_modified = true; } bind = gprs_ns2_fr_bind_by_netif(vty_nsi, netif); if (!bind) { vty_out(vty, "Can not find fr interface \"%s\". Please configure it via fr vty.%s", netif, VTY_NEWLINE); goto err; } if (gprs_ns2_fr_nsvc_by_dlci(bind, dlci)) { vty_out(vty, "A NS-VC with the specified DLCI already exist!%s", VTY_NEWLINE); goto err; } if (gprs_ns2_nsvc_by_nsvci(vty_nsi, nsvci)) { vty_out(vty, "A NS-VC with the specified NS-VCI already exist!%s", VTY_NEWLINE); goto err; } nsvc = gprs_ns2_fr_connect(bind, nse, nsvci, dlci); if (!nsvc) { /* Could not create NS-VC, connect failed */ vty_out(vty, "Failed to create the NS-VC%s", VTY_NEWLINE); goto err; } nsvc->persistent = true; return CMD_SUCCESS; err: if (ll_modified) nse->ll = GPRS_NS2_LL_UNDEF; if (dialect_modified) ns2_nse_set_dialect(nse, GPRS_NS2_DIALECT_UNDEF); return CMD_WARNING; } DEFUN(cfg_no_ns_nse_nsvc_fr_dlci, cfg_no_ns_nse_nsvc_fr_dlci_cmd, "no nsvc fr NETIF dlci <16-1007>", NO_STR "Delete frame relay NS-VC\n" "frame relay\n" "frame relay interface. Must be registered via fr vty\n" DLCI_STR DLCI_STR ) { struct gprs_ns2_vc_bind *bind; struct gprs_ns2_vc *nsvc; struct gprs_ns2_nse *nse = vty->index; const char *netif = argv[0]; uint16_t dlci = atoi(argv[1]); if (nse->ll != GPRS_NS2_LL_FR) { vty_out(vty, "This NSE doesn't support frame relay.%s", VTY_NEWLINE); return CMD_WARNING; } bind = gprs_ns2_fr_bind_by_netif(vty_nsi, netif); if (!bind) { vty_out(vty, "Can not find fr interface \"%s\"%s", netif, VTY_NEWLINE); return CMD_ERR_NOTHING_TODO; } nsvc = gprs_ns2_fr_nsvc_by_dlci(bind, dlci); if (!nsvc) { vty_out(vty, "Can not find a NS-VC on fr interface %s with dlci %u%s", netif, dlci, VTY_NEWLINE); return CMD_WARNING; } if (nse != nsvc->nse) { vty_out(vty, "The specified NS-VC is not a part of the NSE %u!%s" "To remove this NS-VC go to the vty node 'nse %u'%s", nse->nsei, VTY_NEWLINE, nsvc->nse->nsei, VTY_NEWLINE); return CMD_WARNING; } gprs_ns2_free_nsvc(nsvc); if (llist_empty(&nse->nsvc)) { nse->ll = GPRS_NS2_LL_UNDEF; ns2_nse_set_dialect(nse, GPRS_NS2_DIALECT_UNDEF); } return CMD_SUCCESS; } DEFUN(cfg_no_ns_nse_nsvci, cfg_no_ns_nse_nsvci_cmd, "no nsvc nsvci <0-65535>", NO_STR "Delete NSVC\n" NSVCI_STR NSVCI_STR ) { struct gprs_ns2_vc *nsvc; struct gprs_ns2_nse *nse = vty->index; uint16_t nsvci = atoi(argv[0]); switch (nse->dialect) { case GPRS_NS2_DIALECT_SNS: case GPRS_NS2_DIALECT_STATIC_ALIVE: vty_out(vty, "NSE doesn't support NSVCI.%s", VTY_NEWLINE); return CMD_WARNING; case GPRS_NS2_DIALECT_UNDEF: vty_out(vty, "No NSVCs configured%s", VTY_NEWLINE); return CMD_WARNING; case GPRS_NS2_DIALECT_IPACCESS: case GPRS_NS2_DIALECT_STATIC_RESETBLOCK: break; } nsvc = gprs_ns2_nsvc_by_nsvci(vty_nsi, nsvci); if (!nsvc) { vty_out(vty, "Can not find NS-VC with NS-VCI %u%s", nsvci, VTY_NEWLINE); return CMD_WARNING; } if (nse != nsvc->nse) { vty_out(vty, "NS-VC with NS-VCI %u is not part of this NSE!%s", nsvci, VTY_NEWLINE); return CMD_WARNING; } gprs_ns2_free_nsvc(nsvc); if (llist_empty(&nse->nsvc)) { nse->ll = GPRS_NS2_LL_UNDEF; ns2_nse_set_dialect(nse, GPRS_NS2_DIALECT_UNDEF); } return CMD_SUCCESS; } static int ns_nse_nsvc_udp_cmds(struct vty *vty, const char *bind_name, const char *remote_char, uint16_t port, uint16_t sig_weight, uint16_t data_weight) { struct gprs_ns2_vc_bind *bind; struct gprs_ns2_vc *nsvc; struct gprs_ns2_nse *nse = vty->index; bool dialect_modified = false; bool ll_modified = false; struct osmo_sockaddr_str remote_str; struct osmo_sockaddr remote; if (nse->ll == GPRS_NS2_LL_UNDEF) { nse->ll = GPRS_NS2_LL_UDP; ll_modified = true; } if (nse->dialect == GPRS_NS2_DIALECT_UNDEF) { ns2_nse_set_dialect(nse, GPRS_NS2_DIALECT_STATIC_ALIVE); dialect_modified = true; } if (nse->ll != GPRS_NS2_LL_UDP) { vty_out(vty, "Can not mix NS-VC with different link layer%s", VTY_NEWLINE); goto err; } if (nse->dialect != GPRS_NS2_DIALECT_STATIC_ALIVE) { vty_out(vty, "Can not mix NS-VC with different dialects%s", VTY_NEWLINE); goto err; } if (osmo_sockaddr_str_from_str(&remote_str, remote_char, port)) { vty_out(vty, "Can not parse IPv4/IPv6 or port.%s", VTY_NEWLINE); goto err; } if (osmo_sockaddr_str_to_sockaddr(&remote_str, &remote.u.sas)) { vty_out(vty, "Can not parse IPv4/IPv6 or port.%s", VTY_NEWLINE); goto err; } bind = gprs_ns2_bind_by_name(vty_nsi, bind_name); if (!bind) { vty_out(vty, "Can not find bind with name %s%s", bind_name, VTY_NEWLINE); goto err; } if (bind->ll != GPRS_NS2_LL_UDP) { vty_out(vty, "Bind %s is not an UDP bind.%s", bind_name, VTY_NEWLINE); goto err; } nsvc = gprs_ns2_nsvc_by_sockaddr_bind(bind, &remote); if (nsvc) { if (nsvc->nse == nse) vty_out(vty, "Specified NSVC is already present in this NSE.%s", VTY_NEWLINE); else vty_out(vty, "Specified NSVC is already present in another NSE%05u.%s", nsvc->nse->nsei, VTY_NEWLINE); goto err; } nsvc = gprs_ns2_ip_connect(bind, &remote, nse, 0); if (!nsvc) { vty_out(vty, "Can not create NS-VC.%s", VTY_NEWLINE); goto err; } nsvc->sig_weight = sig_weight; nsvc->data_weight = data_weight; nsvc->persistent = true; return CMD_SUCCESS; err: if (ll_modified) nse->ll = GPRS_NS2_LL_UNDEF; if (dialect_modified) ns2_nse_set_dialect(nse, GPRS_NS2_DIALECT_UNDEF); return CMD_WARNING; } DEFUN(cfg_ns_nse_nsvc_udp, cfg_ns_nse_nsvc_udp_cmd, "nsvc udp BIND " VTY_IPV46_CMD " <1-65535>", "NS Virtual Connection\n" "NS over UDP\n" "A unique bind identifier created by ns bind\n" "Remote IPv4 Address\n" "Remote IPv6 Address\n" "Remote UDP Port\n") { const char *bind_name = argv[0]; const char *remote = argv[1]; uint16_t port = atoi(argv[2]); uint16_t sig_weight = 1; uint16_t data_weight = 1; return ns_nse_nsvc_udp_cmds(vty, bind_name, remote, port, sig_weight, data_weight); } DEFUN(cfg_ns_nse_nsvc_udp_weights, cfg_ns_nse_nsvc_udp_weights_cmd, "nsvc udp BIND " VTY_IPV46_CMD " <1-65535> signalling-weight <0-254> data-weight <0-254>", "NS Virtual Connection\n" "NS over UDP\n" "A unique bind identifier created by ns bind\n" "Remote IPv4 Address\n" "Remote IPv6 Address\n" "Remote UDP Port\n" "Signalling weight of the NSVC (default = 1)\n" "Signalling weight of the NSVC (default = 1)\n" "Data weight of the NSVC (default = 1)\n" "Data weight of the NSVC (default = 1)\n" ) { const char *bind_name = argv[0]; const char *remote = argv[1]; uint16_t port = atoi(argv[2]); uint16_t sig_weight = atoi(argv[3]); uint16_t data_weight = atoi(argv[4]); return ns_nse_nsvc_udp_cmds(vty, bind_name, remote, port, sig_weight, data_weight); } DEFUN(cfg_no_ns_nse_nsvc_udp, cfg_no_ns_nse_nsvc_udp_cmd, "no nsvc udp BIND " VTY_IPV46_CMD " <1-65535>", NO_STR "Delete a NS Virtual Connection\n" "NS over UDP\n" "A unique bind identifier created by ns bind\n" "Remote IPv4 Address\n" "Remote IPv6 Address\n" "Remote UDP Port\n" ) { struct gprs_ns2_vc_bind *bind; struct gprs_ns2_vc *nsvc; struct gprs_ns2_nse *nse = vty->index; const char *bind_name = argv[0]; struct osmo_sockaddr_str remote_str; struct osmo_sockaddr remote; uint16_t port = atoi(argv[2]); if (nse->ll != GPRS_NS2_LL_UDP) { vty_out(vty, "This NSE doesn't support UDP.%s", VTY_NEWLINE); return CMD_WARNING; } if (nse->dialect != GPRS_NS2_DIALECT_STATIC_ALIVE) { vty_out(vty, "This NSE doesn't support UDP with dialect static alive.%s", VTY_NEWLINE); return CMD_WARNING; } bind = gprs_ns2_bind_by_name(vty_nsi, bind_name); if (!bind) { vty_out(vty, "Can not find bind with name %s%s", bind_name, VTY_NEWLINE); return CMD_WARNING; } if (bind->ll != GPRS_NS2_LL_UDP) { vty_out(vty, "Bind %s is not an UDP bind.%s", bind_name, VTY_NEWLINE); return CMD_WARNING; } if (osmo_sockaddr_str_from_str(&remote_str, argv[1], port)) { vty_out(vty, "Can not parse IPv4/IPv6 or port.%s", VTY_NEWLINE); return CMD_WARNING; } if (osmo_sockaddr_str_to_sockaddr(&remote_str, &remote.u.sas)) { vty_out(vty, "Can not parse IPv4/IPv6 or port.%s", VTY_NEWLINE); return CMD_WARNING; } nsvc = gprs_ns2_nsvc_by_sockaddr_bind(bind, &remote); if (!nsvc) { vty_out(vty, "Can not find NS-VC with remote %s:%u%s", remote_str.ip, remote_str.port, VTY_NEWLINE); return CMD_WARNING; } if (!nsvc->persistent) { vty_out(vty, "NS-VC with remote %s:%u is a dynamic NS-VC. Not configured by vty.%s", remote_str.ip, remote_str.port, VTY_NEWLINE); return CMD_WARNING; } if (nsvc->nse != nse) { vty_out(vty, "NS-VC is not part of this NSE!%s", VTY_NEWLINE); return CMD_WARNING; } gprs_ns2_free_nsvc(nsvc); if (llist_empty(&nse->nsvc)) { nse->ll = GPRS_NS2_LL_UNDEF; ns2_nse_set_dialect(nse, GPRS_NS2_DIALECT_UNDEF); } return CMD_SUCCESS; } DEFUN(cfg_ns_nse_nsvc_ipa, cfg_ns_nse_nsvc_ipa_cmd, "nsvc ipa BIND " VTY_IPV46_CMD " <1-65535> nsvci <0-65535>" , "NS Virtual Connection\n" "NS over UDP ip.access style (uses RESET/BLOCK)\n" "A unique bind identifier created by ns bind\n" "Remote IPv4 Address\n" "Remote IPv6 Address\n" "Remote UDP Port\n" NSVCI_STR NSVCI_STR ) { struct gprs_ns2_vc_bind *bind; struct gprs_ns2_vc *nsvc; struct gprs_ns2_nse *nse = vty->index; bool dialect_modified = false; bool ll_modified = false; const char *bind_name = argv[0]; struct osmo_sockaddr_str remote_str; struct osmo_sockaddr remote; uint16_t port = atoi(argv[2]); uint16_t nsvci = atoi(argv[3]); if (nse->ll == GPRS_NS2_LL_UNDEF) { nse->ll = GPRS_NS2_LL_UDP; ll_modified = true; } if (nse->dialect == GPRS_NS2_DIALECT_UNDEF) { ns2_nse_set_dialect(nse, GPRS_NS2_DIALECT_IPACCESS); dialect_modified = true; } if (nse->ll != GPRS_NS2_LL_UDP) { vty_out(vty, "Can not mix NS-VC with different link layer%s", VTY_NEWLINE); goto err; } if (nse->dialect != GPRS_NS2_DIALECT_IPACCESS) { vty_out(vty, "Can not mix NS-VC with different dialects%s", VTY_NEWLINE); goto err; } if (osmo_sockaddr_str_from_str(&remote_str, argv[1], port)) { vty_out(vty, "Can not parse IPv4/IPv6 or port.%s", VTY_NEWLINE); goto err; } if (osmo_sockaddr_str_to_sockaddr(&remote_str, &remote.u.sas)) { vty_out(vty, "Can not parse IPv4/IPv6 or port.%s", VTY_NEWLINE); goto err; } bind = gprs_ns2_bind_by_name(vty_nsi, bind_name); if (!bind) { vty_out(vty, "Can not find bind with name %s%s", bind_name, VTY_NEWLINE); goto err; } if (bind->ll != GPRS_NS2_LL_UDP) { vty_out(vty, "Bind %s is not an UDP bind.%s", bind_name, VTY_NEWLINE); goto err; } nsvc = gprs_ns2_ip_connect(bind, &remote, nse, nsvci); if (!nsvc) { vty_out(vty, "Can not create NS-VC.%s", VTY_NEWLINE); goto err; } nsvc->persistent = true; return CMD_SUCCESS; err: if (ll_modified) nse->ll = GPRS_NS2_LL_UNDEF; if (dialect_modified) ns2_nse_set_dialect(nse, GPRS_NS2_DIALECT_UNDEF); return CMD_WARNING; } DEFUN(cfg_no_ns_nse_nsvc_ipa, cfg_no_ns_nse_nsvc_ipa_cmd, "no nsvc ipa BIND " VTY_IPV46_CMD " <1-65535> nsvci <0-65535>", NO_STR "Delete a NS Virtual Connection\n" "NS over UDP\n" "A unique bind identifier created by ns bind\n" "Remote IPv4 Address\n" "Remote IPv6 Address\n" "Remote UDP Port\n" NSVCI_STR NSVCI_STR ) { struct gprs_ns2_vc_bind *bind; struct gprs_ns2_vc *nsvc; struct gprs_ns2_nse *nse = vty->index; const char *bind_name = argv[0]; struct osmo_sockaddr_str remote_str; struct osmo_sockaddr remote; uint16_t port = atoi(argv[2]); uint16_t nsvci = atoi(argv[3]); if (nse->ll != GPRS_NS2_LL_UDP) { vty_out(vty, "This NSE doesn't support UDP.%s", VTY_NEWLINE); return CMD_WARNING; } if (nse->dialect != GPRS_NS2_DIALECT_IPACCESS) { vty_out(vty, "This NSE doesn't support UDP with dialect ipaccess.%s", VTY_NEWLINE); return CMD_WARNING; } bind = gprs_ns2_bind_by_name(vty_nsi, bind_name); if (!bind) { vty_out(vty, "Can not find bind with name %s%s", bind_name, VTY_NEWLINE); return CMD_WARNING; } if (bind->ll != GPRS_NS2_LL_UDP) { vty_out(vty, "Bind %s is not an UDP bind.%s", bind_name, VTY_NEWLINE); return CMD_WARNING; } if (osmo_sockaddr_str_from_str(&remote_str, argv[1], port)) { vty_out(vty, "Can not parse IPv4/IPv6 or port.%s", VTY_NEWLINE); return CMD_WARNING; } if (osmo_sockaddr_str_to_sockaddr(&remote_str, &remote.u.sas)) { vty_out(vty, "Can not parse IPv4/IPv6 or port.%s", VTY_NEWLINE); return CMD_WARNING; } nsvc = gprs_ns2_nsvc_by_sockaddr_bind(bind, &remote); if (!nsvc) { vty_out(vty, "Can not find NS-VC with remote %s:%u%s", remote_str.ip, remote_str.port, VTY_NEWLINE); return CMD_WARNING; } if (!nsvc->persistent) { vty_out(vty, "NS-VC with remote %s:%u is a dynamic NS-VC. Not configured by vty.%s", remote_str.ip, remote_str.port, VTY_NEWLINE); return CMD_WARNING; } if (nsvc->nse != nse) { vty_out(vty, "NS-VC is not part of this NSE!%s", VTY_NEWLINE); return CMD_WARNING; } if (!nsvc->nsvci_is_valid) { vty_out(vty, "NS-VC doesn't have a nsvci!%s", VTY_NEWLINE); return CMD_WARNING; } if (nsvc->nsvci != nsvci) { vty_out(vty, "NS-VC has a different nsvci (%u)!%s", nsvc->nsvci, VTY_NEWLINE); return CMD_WARNING; } gprs_ns2_free_nsvc(nsvc); if (llist_empty(&nse->nsvc)) { nse->ll = GPRS_NS2_LL_UNDEF; ns2_nse_set_dialect(nse, GPRS_NS2_DIALECT_UNDEF); } return CMD_SUCCESS; } DEFUN(cfg_ns_nse_ip_sns_remote, cfg_ns_nse_ip_sns_remote_cmd, "ip-sns-remote " VTY_IPV46_CMD " <1-65535>", "SNS Initial Endpoint\n" "SGSN IPv4 Address\n" "SGSN IPv6 Address\n" "SGSN UDP Port\n" ) { struct gprs_ns2_nse *nse = vty->index; bool dialect_modified = false; bool ll_modified = false; int rc; /* argv[0] */ struct osmo_sockaddr_str remote_str; struct osmo_sockaddr remote; uint16_t port = atoi(argv[1]); if (nse->ll == GPRS_NS2_LL_UNDEF) { nse->ll = GPRS_NS2_LL_UDP; ll_modified = true; } if (nse->dialect == GPRS_NS2_DIALECT_UNDEF) { if (ns2_nse_set_dialect(nse, GPRS_NS2_DIALECT_SNS) < 0) goto err; dialect_modified = true; } if (nse->ll != GPRS_NS2_LL_UDP) { vty_out(vty, "Can not mix NS-VC with different link layer%s", VTY_NEWLINE); goto err; } if (nse->dialect != GPRS_NS2_DIALECT_SNS) { vty_out(vty, "Can not mix NS-VC with different dialects%s", VTY_NEWLINE); goto err; } if (osmo_sockaddr_str_from_str(&remote_str, argv[0], port)) { vty_out(vty, "Can not parse IPv4/IPv6 or port.%s", VTY_NEWLINE); goto err; } if (osmo_sockaddr_str_to_sockaddr(&remote_str, &remote.u.sas)) { vty_out(vty, "Can not parse IPv4/IPv6 or port.%s", VTY_NEWLINE); goto err; } rc = gprs_ns2_sns_add_endpoint(nse, &remote); switch (rc) { case 0: return CMD_SUCCESS; case -EADDRINUSE: vty_out(vty, "Specified SNS endpoint already part of the NSE.%s", VTY_NEWLINE); return CMD_WARNING; default: vty_out(vty, "Can not add specified SNS endpoint.%s", VTY_NEWLINE); return CMD_WARNING; } err: if (ll_modified) nse->ll = GPRS_NS2_LL_UNDEF; if (dialect_modified) ns2_nse_set_dialect(nse, GPRS_NS2_DIALECT_UNDEF); return CMD_WARNING; } DEFUN(cfg_no_ns_nse_ip_sns_remote, cfg_no_ns_nse_ip_sns_remote_cmd, "no ip-sns-remote " VTY_IPV46_CMD " <1-65535>", NO_STR "Delete a SNS Initial Endpoint\n" "SGSN IPv4 Address\n" "SGSN IPv6 Address\n" "SGSN UDP Port\n" ) { struct gprs_ns2_nse *nse = vty->index; struct osmo_sockaddr_str remote_str; /* argv[0] */ struct osmo_sockaddr remote; uint16_t port = atoi(argv[1]); if (nse->ll != GPRS_NS2_LL_UDP) { vty_out(vty, "This NSE doesn't support UDP.%s", VTY_NEWLINE); return CMD_WARNING; } if (nse->dialect != GPRS_NS2_DIALECT_SNS) { vty_out(vty, "This NSE doesn't support UDP with dialect ip-sns.%s", VTY_NEWLINE); return CMD_WARNING; } if (osmo_sockaddr_str_from_str(&remote_str, argv[0], port)) { vty_out(vty, "Can not parse IPv4/IPv6 or port.%s", VTY_NEWLINE); return CMD_WARNING; } if (osmo_sockaddr_str_to_sockaddr(&remote_str, &remote.u.sas)) { vty_out(vty, "Can not parse IPv4/IPv6 or port.%s", VTY_NEWLINE); return CMD_WARNING; } if (gprs_ns2_sns_del_endpoint(nse, &remote)) { vty_out(vty, "Can not remove specified SNS endpoint.%s", VTY_NEWLINE); return CMD_WARNING; } if (vty_nse_check_sns(nse)) { /* there is still sns configuration valid */ return CMD_SUCCESS; } else { /* clean up nse to allow other nsvc commands */ ns2_nse_set_dialect(nse, GPRS_NS2_DIALECT_UNDEF); nse->ll = GPRS_NS2_LL_UNDEF; } return CMD_SUCCESS; } /* add all IP-SNS default binds to the given NSE */ int ns2_sns_add_sns_default_binds(struct gprs_ns2_nse *nse) { struct vty_nse_bind *vnse_bind; int count = 0; OSMO_ASSERT(nse->ll == GPRS_NS2_LL_UDP); OSMO_ASSERT(nse->dialect == GPRS_NS2_DIALECT_SNS); llist_for_each_entry(vnse_bind, &ip_sns_default_binds, list) { struct gprs_ns2_vc_bind *bind = gprs_ns2_bind_by_name(vty_nsi, vnse_bind->vbind->name); /* the bind might not yet created because "listen" is missing. */ if (!bind) continue; gprs_ns2_sns_add_bind(nse, bind); count++; } return count; } DEFUN(cfg_ns_ip_sns_default_bind, cfg_ns_ip_sns_default_bind_cmd, "ip-sns-default bind ID", "Defaults for dynamically created NSEs created by IP-SNS in SGSN role\n" "IP SNS binds\n" "Name of NS udp bind whose IP endpoint will be used as IP-SNS local endpoint. Can be given multiple times.\n") { struct vty_bind *vbind; struct vty_nse_bind *vnse_bind; const char *name = argv[0]; vbind = vty_bind_by_name(name); if (!vbind) { vty_out(vty, "Can not find the given bind '%s'%s", name, VTY_NEWLINE); return CMD_WARNING; } if (vbind->ll != GPRS_NS2_LL_UDP) { vty_out(vty, "ip-sns-default bind can only be used with UDP bind%s", VTY_NEWLINE); return CMD_WARNING; } llist_for_each_entry(vnse_bind, &ip_sns_default_binds, list) { if (vnse_bind->vbind == vbind) return CMD_SUCCESS; } vnse_bind = talloc(vty_nsi, struct vty_nse_bind); if (!vnse_bind) return CMD_WARNING; vnse_bind->vbind = vbind; llist_add_tail(&vnse_bind->list, &ip_sns_default_binds); return CMD_SUCCESS; } DEFUN(cfg_no_ns_ip_sns_default_bind, cfg_no_ns_ip_sns_default_bind_cmd, "no ip-sns-default bind ID", NO_STR "Defaults for dynamically created NSEs created by IP-SNS in SGSN role\n" "IP SNS binds\n" "Name of NS udp bind whose IP endpoint will be removed as IP-SNS local endpoint.\n") { struct vty_bind *vbind; struct vty_nse_bind *vnse_bind; const char *name = argv[0]; vbind = vty_bind_by_name(name); if (!vbind) { vty_out(vty, "Can not find the given bind '%s'%s", name, VTY_NEWLINE); return CMD_WARNING; } if (vbind->ll != GPRS_NS2_LL_UDP) { vty_out(vty, "ip-sns-default bind can only be used with UDP bind%s", VTY_NEWLINE); return CMD_WARNING; } llist_for_each_entry(vnse_bind, &ip_sns_default_binds, list) { if (vnse_bind->vbind == vbind) { llist_del(&vnse_bind->list); talloc_free(vnse_bind); return CMD_SUCCESS; } } vty_out(vty, "Bind '%s' was not an ip-sns-default bind%s", name, VTY_NEWLINE); return CMD_WARNING; } DEFUN(cfg_ns_txqueue_max_length, cfg_ns_txqueue_max_length_cmd, "txqueue-max-length <1-4096>", "Set the maximum length of the txqueue (for UDP)\n" "Maximum length of the txqueue\n") { struct gprs_ns2_vc_bind *bind; uint32_t max_length = atoi(argv[0]); vty_nsi->txqueue_max_length = max_length; llist_for_each_entry(bind, &vty_nsi->binding, list) { if (!gprs_ns2_is_ip_bind(bind)) continue; ns2_ip_set_txqueue_max_length(bind, max_length); } return CMD_SUCCESS; } DEFUN(cfg_ns_nse_ip_sns_bind, cfg_ns_nse_ip_sns_bind_cmd, "ip-sns-bind BINDID", "IP SNS binds\n" "Name of NS udp bind whose IP endpoint will be used as IP-SNS local endpoint. Can be given multiple times.\n") { struct gprs_ns2_nse *nse = vty->index; struct gprs_ns2_vc_bind *bind; struct vty_bind *vbind; struct vty_nse *vnse; const char *name = argv[0]; bool ll_modified = false; bool dialect_modified = false; int rc; if (nse->ll == GPRS_NS2_LL_UNDEF) { nse->ll = GPRS_NS2_LL_UDP; ll_modified = true; } if (nse->dialect == GPRS_NS2_DIALECT_UNDEF) { if (ns2_nse_set_dialect(nse, GPRS_NS2_DIALECT_SNS) < 0) goto err; dialect_modified = true; } if (nse->ll != GPRS_NS2_LL_UDP) { vty_out(vty, "Can not mix NS-VC with different link layer%s", VTY_NEWLINE); goto err; } if (nse->dialect != GPRS_NS2_DIALECT_SNS) { vty_out(vty, "Can not mix NS-VC with different dialects%s", VTY_NEWLINE); goto err; } vbind = vty_bind_by_name(name); if (!vbind) { vty_out(vty, "Can not find the given bind '%s'%s", name, VTY_NEWLINE); goto err; } if (vbind->ll != GPRS_NS2_LL_UDP) { vty_out(vty, "ip-sns-bind can only be used with UDP bind%s", VTY_NEWLINE); goto err; } /* the vnse has been created together when creating the nse node. The parent node should check this already! */ vnse = vty_nse_by_nsei(nse->nsei); OSMO_ASSERT(vnse); rc = vty_nse_add_vbind(vnse, vbind); switch (rc) { case 0: break; case -EALREADY: vty_out(vty, "Failed to add ip-sns-bind %s already present%s", name, VTY_NEWLINE); goto err; case -ENOMEM: vty_out(vty, "Failed to add ip-sns-bind %s out of memory%s", name, VTY_NEWLINE); goto err; default: vty_out(vty, "Failed to add ip-sns-bind %s! %d%s", name, rc, VTY_NEWLINE); goto err; } /* the bind might not yet created because "listen" is missing. */ bind = gprs_ns2_bind_by_name(vty_nsi, name); if (!bind) return CMD_SUCCESS; rc = gprs_ns2_sns_add_bind(nse, bind); switch (rc) { case 0: break; case -EALREADY: vty_out(vty, "Failed to add ip-sns-bind %s already present%s", name, VTY_NEWLINE); goto err; case -ENOMEM: vty_out(vty, "Failed to add ip-sns-bind %s out of memory%s", name, VTY_NEWLINE); goto err; default: vty_out(vty, "Failed to add ip-sns-bind %s! %d%s", name, rc, VTY_NEWLINE); goto err; } return CMD_SUCCESS; err: if (ll_modified) nse->ll = GPRS_NS2_LL_UNDEF; if (dialect_modified) ns2_nse_set_dialect(nse, GPRS_NS2_DIALECT_UNDEF); return CMD_WARNING; } DEFUN(cfg_no_ns_nse_ip_sns_bind, cfg_no_ns_nse_ip_sns_bind_cmd, "no ip-sns-bind BINDID", NO_STR "IP SNS binds\n" "Name of NS udp bind whose IP endpoint will not be used as IP-SNS local endpoint\n") { struct gprs_ns2_nse *nse = vty->index; struct gprs_ns2_vc_bind *bind; struct vty_bind *vbind; struct vty_nse *vnse; const char *name = argv[0]; int rc; if (nse->ll != GPRS_NS2_LL_UDP) { vty_out(vty, "This NSE doesn't support UDP.%s", VTY_NEWLINE); return CMD_WARNING; } if (nse->dialect != GPRS_NS2_DIALECT_SNS) { vty_out(vty, "This NSE doesn't support UDP with dialect ip-sns.%s", VTY_NEWLINE); return CMD_WARNING; } vbind = vty_bind_by_name(name); if (!vbind) { vty_out(vty, "Can not find the given bind '%s'%s", name, VTY_NEWLINE); return CMD_WARNING; } if (vbind->ll != GPRS_NS2_LL_UDP) { vty_out(vty, "no ip-sns-bind can only be used with UDP bind%s", VTY_NEWLINE); return CMD_WARNING; } /* the vnse has been created together when creating the nse node. The parent node should check this already! */ vnse = vty_nse_by_nsei(nse->nsei); OSMO_ASSERT(vnse); rc = vty_nse_remove_vbind(vnse, vbind); switch(rc) { case 0: break; case -ENOENT: vty_out(vty, "Bind %s is not part of this NSE%s", name, VTY_NEWLINE); return CMD_WARNING; case -EINVAL: vty_out(vty, "no ip-sns-bind can only be used with UDP bind%s", VTY_NEWLINE); return CMD_WARNING; default: return CMD_WARNING; } /* the bind might not exists yet */ bind = gprs_ns2_bind_by_name(vty_nsi, name); if (bind) gprs_ns2_sns_del_bind(nse, bind); if (!vty_nse_check_sns(nse)) { /* clean up nse to allow other nsvc commands */ ns2_nse_set_dialect(nse, GPRS_NS2_DIALECT_UNDEF); nse->ll = GPRS_NS2_LL_UNDEF; } return CMD_SUCCESS; } /* non-config commands */ void ns2_vty_dump_nsvc(struct vty *vty, struct gprs_ns2_vc *nsvc, bool stats) { if (nsvc->nsvci_is_valid) vty_out(vty, " NSVCI %05u: %s %s %s %s %ssince ", nsvc->nsvci, osmo_fsm_inst_state_name(nsvc->fi), nsvc->persistent ? "PERSIST" : "DYNAMIC", gprs_ns2_ll_str(nsvc), ns2_vc_is_unblocked(nsvc) ? "ALIVE" : "DEAD", nsvc->om_blocked ? "(blocked by O&M/vty) " : !ns2_vc_is_unblocked(nsvc) ? "(cause: remote) " : ""); else vty_out(vty, " %s %s sig_weight=%u data_weight=%u %s %s %ssince ", osmo_fsm_inst_state_name(nsvc->fi), nsvc->persistent ? "PERSIST" : "DYNAMIC", nsvc->sig_weight, nsvc->data_weight, gprs_ns2_ll_str(nsvc), ns2_vc_is_unblocked(nsvc) ? "ALIVE" : "DEAD", !ns2_vc_is_unblocked(nsvc) ? "(cause: remote) " : ""); vty_out_uptime(vty, &nsvc->ts_alive_change); vty_out_newline(vty); if (stats) { vty_out_rate_ctr_group(vty, " ", nsvc->ctrg); vty_out_stat_item_group(vty, " ", nsvc->statg); } } static void dump_nse(struct vty *vty, const struct gprs_ns2_nse *nse, bool stats, bool persistent_only) { struct gprs_ns2_vc *nsvc; unsigned int nsvcs = 0; if (persistent_only && !nse->persistent) return; vty_out(vty, "NSEI %05u: %s, %s since ", nse->nsei, gprs_ns2_lltype_str(nse->ll), nse->alive ? "ALIVE" : "DEAD"); vty_out_uptime(vty, &nse->ts_alive_change); vty_out_newline(vty); ns2_sns_dump_vty(vty, " ", nse, stats); llist_for_each_entry(nsvc, &nse->nsvc, list) { nsvcs++; } vty_out(vty, " %u NS-VC:%s", nsvcs, VTY_NEWLINE); llist_for_each_entry(nsvc, &nse->nsvc, list) ns2_vty_dump_nsvc(vty, nsvc, stats); } static void dump_bind(struct vty *vty, const struct gprs_ns2_vc_bind *bind, bool stats) { if (bind->dump_vty) bind->dump_vty(bind, vty, stats); if (stats) { vty_out_stat_item_group(vty, " ", bind->statg); } } static void dump_ns_bind(struct vty *vty, const struct gprs_ns2_inst *nsi, bool stats) { struct gprs_ns2_vc_bind *bind; llist_for_each_entry(bind, &nsi->binding, list) { dump_bind(vty, bind, stats); } } static void dump_ns_entities(struct vty *vty, const struct gprs_ns2_inst *nsi, bool stats, bool persistent_only) { struct gprs_ns2_nse *nse; llist_for_each_entry(nse, &nsi->nse, list) { dump_nse(vty, nse, stats, persistent_only); } } /* Backwards compatibility, among other things for the TestVTYGbproxy which expects * 'show ns' to output something about binds */ DEFUN_HIDDEN(show_ns, show_ns_cmd, "show ns", SHOW_STR SHOW_NS_STR) { dump_ns_entities(vty, vty_nsi, false, false); dump_ns_bind(vty, vty_nsi, false); if (vty_fr_network && llist_count(&vty_fr_network->links)) osmo_fr_network_dump_vty(vty, vty_fr_network); return CMD_SUCCESS; } DEFUN(show_ns_binds, show_ns_binds_cmd, "show ns binds [stats]", SHOW_STR SHOW_NS_STR "Display information about the NS protocol binds\n" "Include statistic\n") { bool stats = false; if (argc > 0) stats = true; dump_ns_bind(vty, vty_nsi, stats); return CMD_SUCCESS; } DEFUN(show_ns_entities, show_ns_entities_cmd, "show ns entities [stats]", SHOW_STR SHOW_NS_STR "Display information about the NS protocol entities (NSEs)\n" "Include statistics\n") { bool stats = false; if (argc > 0) stats = true; dump_ns_entities(vty, vty_nsi, stats, false); return CMD_SUCCESS; } DEFUN(show_ns_pers, show_ns_pers_cmd, "show ns persistent", SHOW_STR SHOW_NS_STR "Show only persistent NS\n") { dump_ns_entities(vty, vty_nsi, true, true); return CMD_SUCCESS; } DEFUN(show_nse, show_nse_cmd, "show ns (nsei|nsvc) <0-65535> [stats]", SHOW_STR SHOW_NS_STR "Select one NSE by its NSE Identifier\n" "Select one NSE by its NS-VC Identifier\n" "The Identifier of selected type\n" "Include Statistics\n") { struct gprs_ns2_inst *nsi = vty_nsi; struct gprs_ns2_nse *nse; struct gprs_ns2_vc *nsvc; uint16_t id = atoi(argv[1]); bool show_stats = false; if (argc >= 3) show_stats = true; if (!strcmp(argv[0], "nsei")) { nse = gprs_ns2_nse_by_nsei(nsi, id); if (!nse) { return CMD_WARNING; } dump_nse(vty, nse, show_stats, false); } else { nsvc = gprs_ns2_nsvc_by_nsvci(nsi, id); if (!nsvc) { vty_out(vty, "No such NS Entity%s", VTY_NEWLINE); return CMD_WARNING; } ns2_vty_dump_nsvc(vty, nsvc, show_stats); } return CMD_SUCCESS; } static int nsvc_force_unconf_cb(struct gprs_ns2_vc *nsvc, void *ctx) { ns2_vc_force_unconfigured(nsvc); ns2_vc_fsm_start(nsvc); return 0; } DEFUN_HIDDEN(nsvc_force_unconf, nsvc_force_unconf_cmd, "nsvc nsei <0-65535> force-unconfigured", "NS Virtual Connection\n" "The NSEI\n" "Reset the NSVCs back to initial state\n" ) { struct gprs_ns2_inst *nsi = vty_nsi; struct gprs_ns2_nse *nse; uint16_t id = atoi(argv[0]); nse = gprs_ns2_nse_by_nsei(nsi, id); if (!nse) { vty_out(vty, "Could not find NSE for NSEI %u%s", id, VTY_NEWLINE); return CMD_WARNING; } if (!nse->persistent) { gprs_ns2_free_nse(nse); } else if (nse->dialect == GPRS_NS2_DIALECT_SNS) { gprs_ns2_free_nsvcs(nse); } else { /* Perform the operation for all nsvc */ gprs_ns2_nse_foreach_nsvc(nse, nsvc_force_unconf_cb, NULL); } return CMD_SUCCESS; } DEFUN(nse_restart_sns, nse_restart_sns_cmd, "nse <0-65535> restart-sns", "NSE specific commands\n" "NS Entity ID (NSEI)\n" "Restart SNS procedure\n") { struct gprs_ns2_inst *nsi = vty_nsi; struct gprs_ns2_nse *nse; uint16_t id = atoi(argv[0]); nse = gprs_ns2_nse_by_nsei(nsi, id); if (!nse) { vty_out(vty, "Could not find NSE for NSEI %u%s", id, VTY_NEWLINE); return CMD_WARNING; } if (nse->dialect != GPRS_NS2_DIALECT_SNS) { vty_out(vty, "Given NSEI %u doesn't use IP-SNS%s", id, VTY_NEWLINE); return CMD_WARNING; } gprs_ns2_free_nsvcs(nse); return CMD_SUCCESS; } DEFUN(nsvc_block, nsvc_block_cmd, "nsvc <0-65535> (block|unblock|reset)", "NS Virtual Connection\n" NSVCI_STR "Block a NSVC. As cause code O&M intervention will be used.\n" "Unblock a NSVC. As cause code O&M intervention will be used.\n" "Reset a NSVC. As cause code O&M intervention will be used.\n") { struct gprs_ns2_inst *nsi = vty_nsi; struct gprs_ns2_vc *nsvc; int rc; uint16_t id = atoi(argv[0]); nsvc = gprs_ns2_nsvc_by_nsvci(nsi, id); if (!nsvc) { vty_out(vty, "Could not find NSVCI %05u%s", id, VTY_NEWLINE); return CMD_WARNING; } if (!strcmp(argv[1], "block")) { rc = ns2_vc_block(nsvc); switch (rc) { case 0: vty_out(vty, "The NS-VC %05u will be blocked.%s", id, VTY_NEWLINE); return CMD_SUCCESS; case -EALREADY: vty_out(vty, "The NS-VC %05u is already blocked.%s", id, VTY_NEWLINE); return CMD_ERR_NOTHING_TODO; default: vty_out(vty, "An unknown error %d happend on NS-VC %05u.%s", rc, id, VTY_NEWLINE); return CMD_WARNING; } } else if (!strcmp(argv[1], "unblock")) { rc = ns2_vc_unblock(nsvc); switch (rc) { case 0: vty_out(vty, "The NS-VC %05u will be unblocked.%s", id, VTY_NEWLINE); return CMD_SUCCESS; case -EALREADY: vty_out(vty, "The NS-VC %05u is already unblocked.%s", id, VTY_NEWLINE); return CMD_ERR_NOTHING_TODO; default: vty_out(vty, "An unknown error %d happend on NS-VC %05u.%s", rc, id, VTY_NEWLINE); return CMD_WARNING; } } else { ns2_vc_reset(nsvc); vty_out(vty, "The NS-VC %05u has been resetted.%s", id, VTY_NEWLINE); } return CMD_SUCCESS; } static void log_set_nse_filter(struct log_target *target, struct gprs_ns2_nse *nse) { if (nse) { target->filter_map |= (1 << LOG_FLT_GB_NSE); target->filter_data[LOG_FLT_GB_NSE] = nse; } else if (target->filter_data[LOG_FLT_GB_NSE]) { target->filter_map = ~(1 << LOG_FLT_GB_NSE); target->filter_data[LOG_FLT_GB_NSE] = NULL; } } static void log_set_nsvc_filter(struct log_target *target, struct gprs_ns2_vc *nsvc) { if (nsvc) { target->filter_map |= (1 << LOG_FLT_GB_NSVC); target->filter_data[LOG_FLT_GB_NSVC] = nsvc; } else if (target->filter_data[LOG_FLT_GB_NSVC]) { target->filter_map = ~(1 << LOG_FLT_GB_NSVC); target->filter_data[LOG_FLT_GB_NSVC] = NULL; } } DEFUN(logging_fltr_nse, logging_fltr_nse_cmd, "logging filter nse nsei <0-65535>", LOGGING_STR FILTER_STR "Filter based on NS Entity\n" "Identify NSE by NSEI\n" "Numeric identifier\n") { struct log_target *tgt; struct gprs_ns2_nse *nse; uint16_t id = atoi(argv[0]); log_tgt_mutex_lock(); tgt = osmo_log_vty2tgt(vty); if (!tgt) { log_tgt_mutex_unlock(); return CMD_WARNING; } nse = gprs_ns2_nse_by_nsei(vty_nsi, id); if (!nse) { vty_out(vty, "No NSE by that identifier%s", VTY_NEWLINE); log_tgt_mutex_unlock(); return CMD_WARNING; } log_set_nse_filter(tgt, nse); log_tgt_mutex_unlock(); return CMD_SUCCESS; } /* TODO: add filter for single connection by description */ DEFUN(logging_fltr_nsvc, logging_fltr_nsvc_cmd, "logging filter nsvc nsvci <0-65535>", LOGGING_STR FILTER_STR "Filter based on NS Virtual Connection\n" "Identify NS-VC by NSVCI\n" "Numeric identifier\n") { struct log_target *tgt; struct gprs_ns2_vc *nsvc; uint16_t id = atoi(argv[0]); log_tgt_mutex_lock(); tgt = osmo_log_vty2tgt(vty); if (!tgt) { log_tgt_mutex_unlock(); return CMD_WARNING; } nsvc = gprs_ns2_nsvc_by_nsvci(vty_nsi, id); if (!nsvc) { vty_out(vty, "No NS-VC by that identifier%s", VTY_NEWLINE); log_tgt_mutex_unlock(); return CMD_WARNING; } log_set_nsvc_filter(tgt, nsvc); log_tgt_mutex_unlock(); return CMD_SUCCESS; } /*! initialized a reduced vty interface which excludes the configuration nodes besides timeouts. * This can be used by the PCU which can be only configured by the BTS/BSC and not by the vty. * \param[in] nsi NS instance on which we operate * \return 0 on success. */ int gprs_ns2_vty_init_reduced(struct gprs_ns2_inst *nsi) { vty_nsi = nsi; INIT_LLIST_HEAD(&binds); INIT_LLIST_HEAD(&nses); INIT_LLIST_HEAD(&ip_sns_default_binds); vty_fr_network = osmo_fr_network_alloc(nsi); if (!vty_fr_network) return -ENOMEM; install_lib_element_ve(&show_ns_cmd); install_lib_element_ve(&show_ns_binds_cmd); install_lib_element_ve(&show_ns_entities_cmd); install_lib_element_ve(&show_ns_pers_cmd); install_lib_element_ve(&show_nse_cmd); install_lib_element_ve(&logging_fltr_nse_cmd); install_lib_element_ve(&logging_fltr_nsvc_cmd); install_lib_element(ENABLE_NODE, &nsvc_force_unconf_cmd); install_lib_element(ENABLE_NODE, &nsvc_block_cmd); install_lib_element(ENABLE_NODE, &nse_restart_sns_cmd); install_lib_element(CFG_LOG_NODE, &logging_fltr_nse_cmd); install_lib_element(CFG_LOG_NODE, &logging_fltr_nsvc_cmd); install_lib_element(CONFIG_NODE, &cfg_ns_cmd); install_node(&ns_node, config_write_ns); /* TODO: convert into osmo timer */ install_lib_element(L_NS_NODE, &cfg_ns_timer_cmd); return 0; } int gprs_ns2_vty_init(struct gprs_ns2_inst *nsi) { int rc = gprs_ns2_vty_init_reduced(nsi); if (rc) return rc; install_lib_element(L_NS_NODE, &cfg_ns_nsei_cmd); install_lib_element(L_NS_NODE, &cfg_no_ns_nsei_cmd); install_lib_element(L_NS_NODE, &cfg_ns_bind_cmd); install_lib_element(L_NS_NODE, &cfg_no_ns_bind_cmd); install_lib_element(L_NS_NODE, &cfg_ns_ip_sns_default_bind_cmd); install_lib_element(L_NS_NODE, &cfg_no_ns_ip_sns_default_bind_cmd); install_lib_element(L_NS_NODE, &cfg_ns_txqueue_max_length_cmd); install_node(&ns_bind_node, NULL); install_lib_element(L_NS_BIND_NODE, &cfg_ns_bind_listen_cmd); install_lib_element(L_NS_BIND_NODE, &cfg_no_ns_bind_listen_cmd); install_lib_element(L_NS_BIND_NODE, &cfg_ns_bind_dscp_cmd); install_lib_element(L_NS_BIND_NODE, &cfg_no_ns_bind_dscp_cmd); install_lib_element(L_NS_BIND_NODE, &cfg_ns_bind_priority_cmd); install_lib_element(L_NS_BIND_NODE, &cfg_ns_bind_ip_sns_weight_cmd); install_lib_element(L_NS_BIND_NODE, &cfg_ns_bind_ipaccess_cmd); install_lib_element(L_NS_BIND_NODE, &cfg_no_ns_bind_ipaccess_cmd); install_lib_element(L_NS_BIND_NODE, &cfg_ns_bind_fr_cmd); install_lib_element(L_NS_BIND_NODE, &cfg_no_ns_bind_fr_cmd); install_lib_element(L_NS_BIND_NODE, &cfg_ns_bind_accept_sns_cmd); install_lib_element(L_NS_BIND_NODE, &cfg_no_ns_bind_accept_sns_cmd); install_node(&ns_nse_node, NULL); install_lib_element(L_NS_NSE_NODE, &cfg_ns_nse_nsvc_fr_cmd); install_lib_element(L_NS_NSE_NODE, &cfg_no_ns_nse_nsvci_cmd); install_lib_element(L_NS_NSE_NODE, &cfg_no_ns_nse_nsvc_fr_dlci_cmd); install_lib_element(L_NS_NSE_NODE, &cfg_ns_nse_nsvc_udp_cmd); install_lib_element(L_NS_NSE_NODE, &cfg_ns_nse_nsvc_udp_weights_cmd); install_lib_element(L_NS_NSE_NODE, &cfg_no_ns_nse_nsvc_udp_cmd); install_lib_element(L_NS_NSE_NODE, &cfg_ns_nse_nsvc_ipa_cmd); install_lib_element(L_NS_NSE_NODE, &cfg_no_ns_nse_nsvc_ipa_cmd); install_lib_element(L_NS_NSE_NODE, &cfg_ns_nse_ip_sns_remote_cmd); install_lib_element(L_NS_NSE_NODE, &cfg_no_ns_nse_ip_sns_remote_cmd); install_lib_element(L_NS_NSE_NODE, &cfg_ns_nse_ip_sns_bind_cmd); install_lib_element(L_NS_NSE_NODE, &cfg_no_ns_nse_ip_sns_bind_cmd); return 0; }