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648 lines
22 KiB
C++
648 lines
22 KiB
C++
/*
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* Copyright 2013-2019 Software Radio Systems Limited
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*
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* This file is part of srsLTE.
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*
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* srsLTE is free software: you can redistribute it and/or modify
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* it under the terms of the GNU Affero General Public License as
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* published by the Free Software Foundation, either version 3 of
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* the License, or (at your option) any later version.
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*
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* srsLTE is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU Affero General Public License for more details.
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*
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* A copy of the GNU Affero General Public License can be found in
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* the LICENSE file in the top-level directory of this distribution
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* and at http://www.gnu.org/licenses/.
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*
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*/
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#include "srsepc/hdr/mme/s1ap.h"
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#include "srslte/asn1/gtpc.h"
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#include "srslte/common/bcd_helpers.h"
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#include "srslte/common/liblte_security.h"
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#include <cmath>
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#include <inttypes.h> // for printing uint64_t
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namespace srsepc {
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s1ap* s1ap::m_instance = NULL;
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pthread_mutex_t s1ap_instance_mutex = PTHREAD_MUTEX_INITIALIZER;
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s1ap::s1ap() : m_s1mme(-1), m_next_mme_ue_s1ap_id(1), m_mme_gtpc(NULL), m_pool(NULL)
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{
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return;
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}
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s1ap::~s1ap()
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{
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return;
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}
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s1ap* s1ap::get_instance(void)
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{
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pthread_mutex_lock(&s1ap_instance_mutex);
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if (m_instance == NULL) {
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m_instance = new s1ap();
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}
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pthread_mutex_unlock(&s1ap_instance_mutex);
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return (m_instance);
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}
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void s1ap::cleanup(void)
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{
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pthread_mutex_lock(&s1ap_instance_mutex);
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if (NULL != m_instance) {
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delete m_instance;
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m_instance = NULL;
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}
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pthread_mutex_unlock(&s1ap_instance_mutex);
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}
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int s1ap::init(s1ap_args_t s1ap_args, srslte::log_filter* nas_log, srslte::log_filter* s1ap_log)
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{
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m_pool = srslte::byte_buffer_pool::get_instance();
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m_s1ap_args = s1ap_args;
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srslte::s1ap_mccmnc_to_plmn(s1ap_args.mcc, s1ap_args.mnc, &m_plmn);
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m_next_m_tmsi = rand();
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// Init log
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m_nas_log = nas_log;
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m_s1ap_log = s1ap_log;
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// Get pointer to the HSS
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m_hss = hss::get_instance();
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// Init message handlers
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m_s1ap_mngmt_proc = s1ap_mngmt_proc::get_instance(); // Managment procedures
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m_s1ap_mngmt_proc->init();
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m_s1ap_nas_transport = s1ap_nas_transport::get_instance(); // NAS Transport procedures
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m_s1ap_nas_transport->init();
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m_s1ap_ctx_mngmt_proc = s1ap_ctx_mngmt_proc::get_instance(); // Context Management Procedures
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m_s1ap_ctx_mngmt_proc->init();
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m_s1ap_paging = s1ap_paging::get_instance(); // Paging
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m_s1ap_paging->init();
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// Get pointer to GTP-C class
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m_mme_gtpc = mme_gtpc::get_instance();
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// Initialize S1-MME
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m_s1mme = enb_listen();
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// Init PCAP
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m_pcap_enable = s1ap_args.pcap_enable;
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if (m_pcap_enable) {
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m_pcap.open(s1ap_args.pcap_filename.c_str());
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}
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m_s1ap_log->info("S1AP Initialized\n");
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return 0;
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}
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void s1ap::stop()
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{
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if (m_s1mme != -1) {
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close(m_s1mme);
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}
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std::map<uint16_t, enb_ctx_t*>::iterator enb_it = m_active_enbs.begin();
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while (enb_it != m_active_enbs.end()) {
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m_s1ap_log->info("Deleting eNB context. eNB Id: 0x%x\n", enb_it->second->enb_id);
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m_s1ap_log->console("Deleting eNB context. eNB Id: 0x%x\n", enb_it->second->enb_id);
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delete enb_it->second;
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m_active_enbs.erase(enb_it++);
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}
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std::map<uint64_t, nas*>::iterator ue_it = m_imsi_to_nas_ctx.begin();
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while (ue_it != m_imsi_to_nas_ctx.end()) {
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m_s1ap_log->info("Deleting UE EMM context. IMSI: %015" PRIu64 "\n", ue_it->first);
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m_s1ap_log->console("Deleting UE EMM context. IMSI: %015" PRIu64 "\n", ue_it->first);
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delete ue_it->second;
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m_imsi_to_nas_ctx.erase(ue_it++);
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}
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// Cleanup message handlers
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s1ap_mngmt_proc::cleanup();
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s1ap_nas_transport::cleanup();
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s1ap_ctx_mngmt_proc::cleanup();
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// PCAP
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if (m_pcap_enable) {
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m_pcap.close();
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}
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return;
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}
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int s1ap::get_s1_mme()
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{
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return m_s1mme;
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}
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uint32_t s1ap::get_next_mme_ue_s1ap_id()
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{
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return m_next_mme_ue_s1ap_id++;
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}
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int s1ap::enb_listen()
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{
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/*This function sets up the SCTP socket for eNBs to connect to*/
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int sock_fd, err;
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struct sockaddr_in s1mme_addr;
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struct sctp_event_subscribe evnts;
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m_s1ap_log->info("S1-MME Initializing\n");
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sock_fd = socket(AF_INET, SOCK_SEQPACKET, IPPROTO_SCTP);
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if (sock_fd == -1) {
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m_s1ap_log->console("Could not create SCTP socket\n");
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return -1;
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}
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// Sets the data_io_event to be able to use sendrecv_info
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// Subscribes to the SCTP_SHUTDOWN event, to handle graceful shutdown
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bzero(&evnts, sizeof(evnts));
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evnts.sctp_data_io_event = 1;
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evnts.sctp_shutdown_event = 1;
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if (setsockopt(sock_fd, IPPROTO_SCTP, SCTP_EVENTS, &evnts, sizeof(evnts))) {
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close(sock_fd);
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m_s1ap_log->console("Subscribing to sctp_data_io_events failed\n");
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return -1;
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}
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// S1-MME bind
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bzero(&s1mme_addr, sizeof(s1mme_addr));
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s1mme_addr.sin_family = AF_INET;
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inet_pton(AF_INET, m_s1ap_args.mme_bind_addr.c_str(), &(s1mme_addr.sin_addr));
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s1mme_addr.sin_port = htons(S1MME_PORT);
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err = bind(sock_fd, (struct sockaddr*)&s1mme_addr, sizeof(s1mme_addr));
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if (err != 0) {
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close(sock_fd);
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m_s1ap_log->error("Error binding SCTP socket\n");
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m_s1ap_log->console("Error binding SCTP socket\n");
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return -1;
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}
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// Listen for connections
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err = listen(sock_fd, SOMAXCONN);
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if (err != 0) {
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close(sock_fd);
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m_s1ap_log->error("Error in SCTP socket listen\n");
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m_s1ap_log->console("Error in SCTP socket listen\n");
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return -1;
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}
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return sock_fd;
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}
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bool s1ap::s1ap_tx_pdu(srslte::byte_buffer_t* pdu, struct sctp_sndrcvinfo* enb_sri)
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{
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ssize_t n_sent = sctp_send(m_s1mme, pdu->msg, pdu->N_bytes, enb_sri, 0);
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if (n_sent == -1) {
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m_s1ap_log->console("Failed to send S1AP PDU.\n");
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m_s1ap_log->error("Failed to send S1AP PDU. \n");
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return false;
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}
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if (m_pcap_enable) {
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m_pcap.write_s1ap(pdu->msg, pdu->N_bytes);
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}
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return true;
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}
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bool s1ap::handle_s1ap_rx_pdu(srslte::byte_buffer_t* pdu, struct sctp_sndrcvinfo* enb_sri)
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{
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LIBLTE_S1AP_S1AP_PDU_STRUCT rx_pdu;
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if (liblte_s1ap_unpack_s1ap_pdu((LIBLTE_BYTE_MSG_STRUCT*)pdu, &rx_pdu) != LIBLTE_SUCCESS) {
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m_s1ap_log->error("Failed to unpack received PDU\n");
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return false;
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}
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if (m_pcap_enable) {
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m_pcap.write_s1ap(pdu->msg, pdu->N_bytes);
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}
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switch (rx_pdu.choice_type) {
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case LIBLTE_S1AP_S1AP_PDU_CHOICE_INITIATINGMESSAGE:
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m_s1ap_log->info("Received initiating PDU\n");
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return handle_initiating_message(&rx_pdu.choice.initiatingMessage, enb_sri);
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break;
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case LIBLTE_S1AP_S1AP_PDU_CHOICE_SUCCESSFULOUTCOME:
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m_s1ap_log->info("Received Succeseful Outcome PDU\n");
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return handle_successful_outcome(&rx_pdu.choice.successfulOutcome);
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break;
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case LIBLTE_S1AP_S1AP_PDU_CHOICE_UNSUCCESSFULOUTCOME:
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m_s1ap_log->info("Received Unsucceseful Outcome PDU\n");
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return true; // TODO handle_unsuccessfuloutcome(&rx_pdu.choice.unsuccessfulOutcome);
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break;
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default:
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m_s1ap_log->error("Unhandled PDU type %d\n", rx_pdu.choice_type);
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return false;
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}
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return true;
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}
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bool s1ap::handle_initiating_message(LIBLTE_S1AP_INITIATINGMESSAGE_STRUCT* msg, struct sctp_sndrcvinfo* enb_sri)
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{
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bool reply_flag = false;
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srslte::byte_buffer_t* reply_buffer = m_pool->allocate();
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bool ret = false;
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switch (msg->choice_type) {
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case LIBLTE_S1AP_INITIATINGMESSAGE_CHOICE_S1SETUPREQUEST:
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m_s1ap_log->info("Received S1 Setup Request.\n");
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m_s1ap_mngmt_proc->handle_s1_setup_request(&msg->choice.S1SetupRequest, enb_sri, reply_buffer, &reply_flag);
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break;
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case LIBLTE_S1AP_INITIATINGMESSAGE_CHOICE_INITIALUEMESSAGE:
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m_s1ap_log->info("Received Initial UE Message.\n");
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m_s1ap_nas_transport->handle_initial_ue_message(&msg->choice.InitialUEMessage, enb_sri, reply_buffer,
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&reply_flag);
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break;
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case LIBLTE_S1AP_INITIATINGMESSAGE_CHOICE_UPLINKNASTRANSPORT:
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m_s1ap_log->info("Received Uplink NAS Transport Message.\n");
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m_s1ap_nas_transport->handle_uplink_nas_transport(&msg->choice.UplinkNASTransport, enb_sri, reply_buffer,
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&reply_flag);
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break;
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case LIBLTE_S1AP_INITIATINGMESSAGE_CHOICE_UECONTEXTRELEASEREQUEST:
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m_s1ap_log->info("Received UE Context Release Request Message.\n");
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m_s1ap_ctx_mngmt_proc->handle_ue_context_release_request(&msg->choice.UEContextReleaseRequest, enb_sri,
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reply_buffer, &reply_flag);
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break;
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default:
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m_s1ap_log->error("Unhandled S1AP intiating message: %s\n",
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liblte_s1ap_initiatingmessage_choice_text[msg->choice_type]);
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m_s1ap_log->console("Unhandled S1APintiating message: %s\n",
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liblte_s1ap_initiatingmessage_choice_text[msg->choice_type]);
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}
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// Send Reply to eNB
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if (reply_flag == true) {
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ret = s1ap_tx_pdu(reply_buffer, enb_sri);
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}
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m_pool->deallocate(reply_buffer);
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return ret;
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}
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bool s1ap::handle_successful_outcome(LIBLTE_S1AP_SUCCESSFULOUTCOME_STRUCT* msg)
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{
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switch (msg->choice_type) {
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case LIBLTE_S1AP_SUCCESSFULOUTCOME_CHOICE_INITIALCONTEXTSETUPRESPONSE:
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m_s1ap_log->info("Received Initial Context Setup Response.\n");
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return m_s1ap_ctx_mngmt_proc->handle_initial_context_setup_response(&msg->choice.InitialContextSetupResponse);
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case LIBLTE_S1AP_SUCCESSFULOUTCOME_CHOICE_UECONTEXTRELEASECOMPLETE:
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m_s1ap_log->info("Received UE Context Release Complete\n");
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return m_s1ap_ctx_mngmt_proc->handle_ue_context_release_complete(&msg->choice.UEContextReleaseComplete);
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default:
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m_s1ap_log->error("Unhandled successful outcome message: %s\n",
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liblte_s1ap_successfuloutcome_choice_text[msg->choice_type]);
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}
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return true;
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}
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// eNB Context Managment
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void s1ap::add_new_enb_ctx(const enb_ctx_t& enb_ctx, const struct sctp_sndrcvinfo* enb_sri)
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{
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m_s1ap_log->info("Adding new eNB context. eNB ID %d\n", enb_ctx.enb_id);
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std::set<uint32_t> ue_set;
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enb_ctx_t* enb_ptr = new enb_ctx_t;
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memcpy(enb_ptr, &enb_ctx, sizeof(enb_ctx_t));
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m_active_enbs.insert(std::pair<uint16_t, enb_ctx_t*>(enb_ptr->enb_id, enb_ptr));
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m_sctp_to_enb_id.insert(std::pair<int32_t, uint16_t>(enb_sri->sinfo_assoc_id, enb_ptr->enb_id));
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m_enb_assoc_to_ue_ids.insert(std::pair<int32_t, std::set<uint32_t> >(enb_sri->sinfo_assoc_id, ue_set));
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return;
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}
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enb_ctx_t* s1ap::find_enb_ctx(uint16_t enb_id)
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{
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std::map<uint16_t, enb_ctx_t*>::iterator it = m_active_enbs.find(enb_id);
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if (it == m_active_enbs.end()) {
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return NULL;
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} else {
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return it->second;
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}
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}
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void s1ap::delete_enb_ctx(int32_t assoc_id)
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{
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std::map<int32_t, uint16_t>::iterator it_assoc = m_sctp_to_enb_id.find(assoc_id);
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uint16_t enb_id = it_assoc->second;
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std::map<uint16_t, enb_ctx_t*>::iterator it_ctx = m_active_enbs.find(enb_id);
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if (it_ctx == m_active_enbs.end() || it_assoc == m_sctp_to_enb_id.end()) {
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m_s1ap_log->error("Could not find eNB to delete. Association: %d\n", assoc_id);
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return;
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}
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m_s1ap_log->info("Deleting eNB context. eNB Id: 0x%x\n", enb_id);
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m_s1ap_log->console("Deleting eNB context. eNB Id: 0x%x\n", enb_id);
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// Delete connected UEs ctx
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release_ues_ecm_ctx_in_enb(assoc_id);
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// Delete eNB
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delete it_ctx->second;
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m_active_enbs.erase(it_ctx);
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m_sctp_to_enb_id.erase(it_assoc);
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return;
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}
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//UE Context Management
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bool s1ap::add_nas_ctx_to_imsi_map(nas* nas_ctx)
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{
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std::map<uint64_t, nas*>::iterator ctx_it = m_imsi_to_nas_ctx.find(nas_ctx->m_emm_ctx.imsi);
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if (ctx_it != m_imsi_to_nas_ctx.end()) {
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m_s1ap_log->error("UE Context already exists. IMSI %015" PRIu64 "", nas_ctx->m_emm_ctx.imsi);
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return false;
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}
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if (nas_ctx->m_ecm_ctx.mme_ue_s1ap_id != 0) {
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std::map<uint32_t, nas*>::iterator ctx_it2 = m_mme_ue_s1ap_id_to_nas_ctx.find(nas_ctx->m_ecm_ctx.mme_ue_s1ap_id);
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if (ctx_it2 != m_mme_ue_s1ap_id_to_nas_ctx.end() && ctx_it2->second != nas_ctx) {
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m_s1ap_log->error("Context identified with IMSI does not match context identified by MME UE S1AP Id.\n");
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return false;
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}
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}
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m_imsi_to_nas_ctx.insert(std::pair<uint64_t, nas*>(nas_ctx->m_emm_ctx.imsi, nas_ctx));
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m_s1ap_log->debug("Saved UE context corresponding to IMSI %015" PRIu64 "\n", nas_ctx->m_emm_ctx.imsi);
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return true;
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}
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bool s1ap::add_nas_ctx_to_mme_ue_s1ap_id_map(nas* nas_ctx)
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{
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if (nas_ctx->m_ecm_ctx.mme_ue_s1ap_id == 0) {
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m_s1ap_log->error("Could not add UE context to MME UE S1AP map. MME UE S1AP ID 0 is not valid.");
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return false;
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}
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std::map<uint32_t, nas*>::iterator ctx_it = m_mme_ue_s1ap_id_to_nas_ctx.find(nas_ctx->m_ecm_ctx.mme_ue_s1ap_id);
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if (ctx_it != m_mme_ue_s1ap_id_to_nas_ctx.end()) {
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m_s1ap_log->error("UE Context already exists. MME UE S1AP Id %015" PRIu64 "", nas_ctx->m_emm_ctx.imsi);
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return false;
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}
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if (nas_ctx->m_emm_ctx.imsi != 0) {
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std::map<uint32_t, nas*>::iterator ctx_it2 = m_mme_ue_s1ap_id_to_nas_ctx.find(nas_ctx->m_ecm_ctx.mme_ue_s1ap_id);
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if (ctx_it2 != m_mme_ue_s1ap_id_to_nas_ctx.end() && ctx_it2->second != nas_ctx) {
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m_s1ap_log->error("Context identified with MME UE S1AP Id does not match context identified by IMSI.\n");
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return false;
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}
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}
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m_mme_ue_s1ap_id_to_nas_ctx.insert(std::pair<uint32_t, nas*>(nas_ctx->m_ecm_ctx.mme_ue_s1ap_id, nas_ctx));
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m_s1ap_log->debug("Saved UE context corresponding to MME UE S1AP Id %d\n", nas_ctx->m_ecm_ctx.mme_ue_s1ap_id);
|
|
return true;
|
|
}
|
|
|
|
bool s1ap::add_ue_to_enb_set(int32_t enb_assoc, uint32_t mme_ue_s1ap_id)
|
|
{
|
|
std::map<int32_t, std::set<uint32_t> >::iterator ues_in_enb = m_enb_assoc_to_ue_ids.find(enb_assoc);
|
|
if (ues_in_enb == m_enb_assoc_to_ue_ids.end()) {
|
|
m_s1ap_log->error("Could not find eNB from eNB SCTP association %d", enb_assoc);
|
|
return false;
|
|
}
|
|
std::set<uint32_t>::iterator ue_id = ues_in_enb->second.find(mme_ue_s1ap_id);
|
|
if (ue_id != ues_in_enb->second.end()) {
|
|
m_s1ap_log->error("UE with MME UE S1AP Id already exists %d", mme_ue_s1ap_id);
|
|
return false;
|
|
}
|
|
ues_in_enb->second.insert(mme_ue_s1ap_id);
|
|
m_s1ap_log->debug("Added UE with MME-UE S1AP Id %d to eNB with association %d\n", mme_ue_s1ap_id, enb_assoc);
|
|
return true;
|
|
}
|
|
|
|
nas* s1ap::find_nas_ctx_from_mme_ue_s1ap_id(uint32_t mme_ue_s1ap_id)
|
|
{
|
|
std::map<uint32_t, nas*>::iterator it = m_mme_ue_s1ap_id_to_nas_ctx.find(mme_ue_s1ap_id);
|
|
if (it == m_mme_ue_s1ap_id_to_nas_ctx.end()) {
|
|
return NULL;
|
|
} else {
|
|
return it->second;
|
|
}
|
|
}
|
|
|
|
nas* s1ap::find_nas_ctx_from_imsi(uint64_t imsi)
|
|
{
|
|
std::map<uint64_t, nas*>::iterator it = m_imsi_to_nas_ctx.find(imsi);
|
|
if (it == m_imsi_to_nas_ctx.end()) {
|
|
return NULL;
|
|
} else {
|
|
return it->second;
|
|
}
|
|
}
|
|
|
|
void s1ap::release_ues_ecm_ctx_in_enb(int32_t enb_assoc)
|
|
{
|
|
m_s1ap_log->console("Releasing UEs context\n");
|
|
std::map<int32_t, std::set<uint32_t> >::iterator ues_in_enb = m_enb_assoc_to_ue_ids.find(enb_assoc);
|
|
std::set<uint32_t>::iterator ue_id = ues_in_enb->second.begin();
|
|
if (ue_id == ues_in_enb->second.end()) {
|
|
m_s1ap_log->console("No UEs to be released\n");
|
|
} else {
|
|
while (ue_id != ues_in_enb->second.end()) {
|
|
std::map<uint32_t, nas*>::iterator nas_ctx = m_mme_ue_s1ap_id_to_nas_ctx.find(*ue_id);
|
|
emm_ctx_t* emm_ctx = &nas_ctx->second->m_emm_ctx;
|
|
ecm_ctx_t* ecm_ctx = &nas_ctx->second->m_ecm_ctx;
|
|
|
|
m_s1ap_log->info("Releasing UE context. IMSI: %015" PRIu64 ", UE-MME S1AP Id: %d\n", emm_ctx->imsi,
|
|
ecm_ctx->mme_ue_s1ap_id);
|
|
if (emm_ctx->state == EMM_STATE_REGISTERED) {
|
|
m_mme_gtpc->send_delete_session_request(emm_ctx->imsi);
|
|
emm_ctx->state = EMM_STATE_DEREGISTERED;
|
|
}
|
|
m_s1ap_log->console("Releasing UE ECM context. UE-MME S1AP Id: %d\n", ecm_ctx->mme_ue_s1ap_id);
|
|
ecm_ctx->state = ECM_STATE_IDLE;
|
|
ecm_ctx->mme_ue_s1ap_id = 0;
|
|
ecm_ctx->enb_ue_s1ap_id = 0;
|
|
ues_in_enb->second.erase(ue_id++);
|
|
}
|
|
}
|
|
}
|
|
|
|
bool s1ap::release_ue_ecm_ctx(uint32_t mme_ue_s1ap_id)
|
|
{
|
|
nas* nas_ctx = find_nas_ctx_from_mme_ue_s1ap_id(mme_ue_s1ap_id);
|
|
if (nas_ctx == NULL) {
|
|
m_s1ap_log->error("Cannot release UE ECM context, UE not found. MME-UE S1AP Id: %d\n", mme_ue_s1ap_id);
|
|
return false;
|
|
}
|
|
ecm_ctx_t* ecm_ctx = &nas_ctx->m_ecm_ctx;
|
|
|
|
// Delete UE within eNB UE set
|
|
std::map<int32_t, uint16_t>::iterator it = m_sctp_to_enb_id.find(ecm_ctx->enb_sri.sinfo_assoc_id);
|
|
if (it == m_sctp_to_enb_id.end()) {
|
|
m_s1ap_log->error("Could not find eNB for UE release request.\n");
|
|
return false;
|
|
}
|
|
uint16_t enb_id = it->second;
|
|
std::map<int32_t, std::set<uint32_t> >::iterator ue_set = m_enb_assoc_to_ue_ids.find(ecm_ctx->enb_sri.sinfo_assoc_id);
|
|
if (ue_set == m_enb_assoc_to_ue_ids.end()) {
|
|
m_s1ap_log->error("Could not find the eNB's UEs.\n");
|
|
return false;
|
|
}
|
|
ue_set->second.erase(mme_ue_s1ap_id);
|
|
|
|
// Release UE ECM context
|
|
m_mme_ue_s1ap_id_to_nas_ctx.erase(mme_ue_s1ap_id);
|
|
ecm_ctx->state = ECM_STATE_IDLE;
|
|
ecm_ctx->mme_ue_s1ap_id = 0;
|
|
ecm_ctx->enb_ue_s1ap_id = 0;
|
|
|
|
m_s1ap_log->info("Released UE ECM Context.\n");
|
|
return true;
|
|
}
|
|
|
|
bool s1ap::delete_ue_ctx(uint64_t imsi)
|
|
{
|
|
nas* nas_ctx = find_nas_ctx_from_imsi(imsi);
|
|
if (nas_ctx == NULL) {
|
|
m_s1ap_log->info("Cannot delete UE context, UE not found. IMSI: %" PRIu64 "\n", imsi);
|
|
return false;
|
|
}
|
|
|
|
// Make sure to release ECM ctx
|
|
if (nas_ctx->m_ecm_ctx.mme_ue_s1ap_id != 0) {
|
|
release_ue_ecm_ctx(nas_ctx->m_ecm_ctx.mme_ue_s1ap_id);
|
|
}
|
|
|
|
// Delete UE context
|
|
m_imsi_to_nas_ctx.erase(imsi);
|
|
delete nas_ctx;
|
|
m_s1ap_log->info("Deleted UE Context.\n");
|
|
return true;
|
|
}
|
|
|
|
//UE Bearer Managment
|
|
void s1ap::activate_eps_bearer(uint64_t imsi, uint8_t ebi)
|
|
{
|
|
std::map<uint64_t, nas*>::iterator ue_ctx_it = m_imsi_to_nas_ctx.find(imsi);
|
|
if (ue_ctx_it == m_imsi_to_nas_ctx.end()) {
|
|
m_s1ap_log->error("Could not activate EPS bearer: Could not find UE context\n");
|
|
return;
|
|
}
|
|
// Make sure NAS is active
|
|
uint32_t mme_ue_s1ap_id = ue_ctx_it->second->m_ecm_ctx.mme_ue_s1ap_id;
|
|
std::map<uint32_t, nas*>::iterator it = m_mme_ue_s1ap_id_to_nas_ctx.find(mme_ue_s1ap_id);
|
|
if (it == m_mme_ue_s1ap_id_to_nas_ctx.end()) {
|
|
m_s1ap_log->error("Could not activate EPS bearer: ECM context seems to be missing\n");
|
|
return;
|
|
}
|
|
|
|
ecm_ctx_t* ecm_ctx = &ue_ctx_it->second->m_ecm_ctx;
|
|
esm_ctx_t* esm_ctx = &ue_ctx_it->second->m_esm_ctx[ebi];
|
|
if (esm_ctx->state != ERAB_CTX_SETUP) {
|
|
m_s1ap_log->error(
|
|
"Could not be activate EPS Bearer, bearer in wrong state: MME S1AP Id %d, EPS Bearer id %d, state %d\n",
|
|
mme_ue_s1ap_id, ebi, esm_ctx->state);
|
|
m_s1ap_log->console(
|
|
"Could not be activate EPS Bearer, bearer in wrong state: MME S1AP Id %d, EPS Bearer id %d, state %d\n",
|
|
mme_ue_s1ap_id, ebi, esm_ctx->state);
|
|
return;
|
|
}
|
|
|
|
esm_ctx->state = ERAB_ACTIVE;
|
|
ecm_ctx->state = ECM_STATE_CONNECTED;
|
|
m_s1ap_log->info("Activated EPS Bearer: Bearer id %d\n", ebi);
|
|
return;
|
|
}
|
|
|
|
uint32_t s1ap::allocate_m_tmsi(uint64_t imsi)
|
|
{
|
|
uint32_t m_tmsi = m_next_m_tmsi;
|
|
m_next_m_tmsi = (m_next_m_tmsi + 1) % UINT32_MAX;
|
|
|
|
m_tmsi_to_imsi.insert(std::pair<uint32_t, uint64_t>(m_tmsi, imsi));
|
|
m_s1ap_log->debug("Allocated M-TMSI 0x%x to IMSI %015" PRIu64 ",\n", m_tmsi, imsi);
|
|
return m_tmsi;
|
|
}
|
|
|
|
uint64_t s1ap::find_imsi_from_m_tmsi(uint32_t m_tmsi)
|
|
{
|
|
std::map<uint32_t, uint64_t>::iterator it = m_tmsi_to_imsi.find(m_tmsi);
|
|
if (it != m_tmsi_to_imsi.end()) {
|
|
m_s1ap_log->debug("Found IMSI %015" PRIu64 " from M-TMSI 0x%x\n", it->second, m_tmsi);
|
|
return it->second;
|
|
} else {
|
|
m_s1ap_log->debug("Could not find IMSI from M-TMSI 0x%x\n", m_tmsi);
|
|
return 0;
|
|
}
|
|
}
|
|
|
|
void s1ap::print_enb_ctx_info(const std::string& prefix, const enb_ctx_t& enb_ctx)
|
|
{
|
|
std::string mnc_str, mcc_str;
|
|
|
|
if (enb_ctx.enb_name_present) {
|
|
m_s1ap_log->console("%s - eNB Name: %s, eNB id: 0x%x\n", prefix.c_str(), enb_ctx.enb_name, enb_ctx.enb_id);
|
|
m_s1ap_log->info("%s - eNB Name: %s, eNB id: 0x%x\n", prefix.c_str(), enb_ctx.enb_name, enb_ctx.enb_id);
|
|
} else {
|
|
m_s1ap_log->console("%s - eNB Id 0x%x\n", prefix.c_str(), enb_ctx.enb_id);
|
|
m_s1ap_log->info("%s - eNB Id 0x%x\n", prefix.c_str(), enb_ctx.enb_id);
|
|
}
|
|
srslte::mcc_to_string(enb_ctx.mcc, &mcc_str);
|
|
srslte::mnc_to_string(enb_ctx.mnc, &mnc_str);
|
|
m_s1ap_log->info("%s - MCC:%s, MNC:%s, PLMN: %d\n", prefix.c_str(), mcc_str.c_str(), mnc_str.c_str(), enb_ctx.plmn);
|
|
m_s1ap_log->console("%s - MCC:%s, MNC:%s, PLMN: %d\n", prefix.c_str(), mcc_str.c_str(), mnc_str.c_str(),
|
|
enb_ctx.plmn);
|
|
for (int i = 0; i < enb_ctx.nof_supported_ta; i++) {
|
|
for (int j = 0; i < enb_ctx.nof_supported_ta; i++) {
|
|
m_s1ap_log->info("%s - TAC %d, B-PLMN %d\n", prefix.c_str(), enb_ctx.tac[i], enb_ctx.bplmns[i][j]);
|
|
m_s1ap_log->console("%s - TAC %d, B-PLMN %d\n", prefix.c_str(), enb_ctx.tac[i], enb_ctx.bplmns[i][j]);
|
|
}
|
|
}
|
|
m_s1ap_log->console("%s - Paging DRX %d\n", prefix.c_str(), enb_ctx.drx);
|
|
return;
|
|
}
|
|
|
|
/*
|
|
* Interfaces
|
|
*/
|
|
|
|
// GTP-C -> S1AP interface
|
|
bool s1ap::send_paging(uint64_t imsi, uint16_t erab_to_setup)
|
|
{
|
|
m_s1ap_paging->send_paging(imsi, erab_to_setup);
|
|
return true;
|
|
}
|
|
|
|
// GTP-C || NAS -> S1AP interface
|
|
bool s1ap::send_initial_context_setup_request(uint64_t imsi, uint16_t erab_to_setup)
|
|
{
|
|
nas* nas_ctx = find_nas_ctx_from_imsi(imsi);
|
|
if (nas_ctx == NULL) {
|
|
m_s1ap_log->error("Error finding NAS context when sending initial context Setup Request\n");
|
|
return false;
|
|
}
|
|
m_s1ap_ctx_mngmt_proc->send_initial_context_setup_request(nas_ctx, erab_to_setup);
|
|
return true;
|
|
}
|
|
|
|
// NAS -> S1AP interface
|
|
bool s1ap::send_ue_context_release_command(uint32_t mme_ue_s1ap_id)
|
|
{
|
|
nas* nas_ctx = find_nas_ctx_from_mme_ue_s1ap_id(mme_ue_s1ap_id);
|
|
if (nas_ctx == NULL) {
|
|
m_s1ap_log->error("Error finding NAS context when sending UE Context Setup Release\n");
|
|
return false;
|
|
}
|
|
m_s1ap_ctx_mngmt_proc->send_ue_context_release_command(nas_ctx);
|
|
return true;
|
|
}
|
|
|
|
bool s1ap::send_downlink_nas_transport(uint32_t enb_ue_s1ap_id,
|
|
uint32_t mme_ue_s1ap_id,
|
|
srslte::byte_buffer_t* nas_msg,
|
|
struct sctp_sndrcvinfo enb_sri)
|
|
{
|
|
return m_s1ap_nas_transport->send_downlink_nas_transport(enb_ue_s1ap_id, mme_ue_s1ap_id, nas_msg, enb_sri);
|
|
}
|
|
|
|
bool s1ap::expire_nas_timer(enum nas_timer_type type, uint64_t imsi)
|
|
{
|
|
nas* nas_ctx = find_nas_ctx_from_imsi(imsi);
|
|
if (nas_ctx == NULL) {
|
|
m_s1ap_log->error("Error finding NAS context to handle timer\n");
|
|
return false;
|
|
}
|
|
bool err = nas_ctx->expire_timer(type);
|
|
return err;
|
|
}
|
|
|
|
} // namespace srsepc
|