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@ -241,6 +241,18 @@ s1ap_nas_transport::handle_uplink_nas_transport(LIBLTE_S1AP_MESSAGE_UPLINKNASTRA
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m_s1ap_log->console("Uplink NAS: Received Authentication Response\n");
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m_s1ap_log->console("Uplink NAS: Received Authentication Response\n");
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handle_nas_authentication_response(nas_msg, ue_ctx, reply_buffer, reply_flag);
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handle_nas_authentication_response(nas_msg, ue_ctx, reply_buffer, reply_flag);
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break;
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break;
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// Authentication failure with the option sync failure can be sent not integrity protected
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case LIBLTE_MME_MSG_TYPE_AUTHENTICATION_FAILURE:
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m_s1ap_log->info("Plain UL NAS: Authentication Failure\n");
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m_s1ap_log->console("Plain UL NAS: Authentication Failure\n");
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handle_authentication_failure(nas_msg, ue_ctx, reply_buffer, reply_flag);
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break;
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// Detach request can be sent not integrity protected when "power off" option is used
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case LIBLTE_MME_MSG_TYPE_DETACH_REQUEST:
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m_s1ap_log->info("Plain Protected UL NAS: Detach Request\n");
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m_s1ap_log->console("Plain Protected UL NAS: Detach Request\n");
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handle_nas_detach_request(nas_msg, ue_ctx, reply_buffer, reply_flag);
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break;
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default:
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default:
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m_s1ap_log->warning("Unhandled Plain NAS message 0x%x\n", msg_type );
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m_s1ap_log->warning("Unhandled Plain NAS message 0x%x\n", msg_type );
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m_s1ap_log->console("Unhandled Plain NAS message 0x%x\n", msg_type );
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m_s1ap_log->console("Unhandled Plain NAS message 0x%x\n", msg_type );
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@ -662,9 +674,10 @@ s1ap_nas_transport::handle_nas_guti_attach_request( uint32_t enb_ue_s1ap_id,
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m_s1ap->add_ue_ctx_to_mme_ue_s1ap_id_map(ue_ctx);
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m_s1ap->add_ue_ctx_to_mme_ue_s1ap_id_map(ue_ctx);
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//Re-generate K_eNB
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//Re-generate K_eNB
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liblte_security_generate_k_enb(emm_ctx->security_ctxt.k_asme, emm_ctx->security_ctxt.ul_nas_count, emm_ctx->security_ctxt.k_enb);
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srslte::security_generate_k_enb(emm_ctx->security_ctxt.k_asme, emm_ctx->security_ctxt.ul_nas_count, emm_ctx->security_ctxt.k_enb);
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m_s1ap_log->info("Generating KeNB with UL NAS COUNT: %d\n",emm_ctx->security_ctxt.ul_nas_count);
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m_s1ap_log->info("Generating KeNB with UL NAS COUNT: %d\n",emm_ctx->security_ctxt.ul_nas_count);
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m_s1ap_log->console("Generating KeNB with UL NAS COUNT: %d\n",emm_ctx->security_ctxt.ul_nas_count);
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m_s1ap_log->console("Generating KeNB with UL NAS COUNT: %d\n",emm_ctx->security_ctxt.ul_nas_count);
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m_s1ap_log->info_hex(emm_ctx->security_ctxt.k_enb, 32, "Key eNodeB (k_enb)\n");
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m_s1ap_log->console("Attach request -- IMSI: %015lu\n", ecm_ctx->imsi);
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m_s1ap_log->console("Attach request -- IMSI: %015lu\n", ecm_ctx->imsi);
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m_s1ap_log->info("Attach request -- IMSI: %015lu\n", ecm_ctx->imsi);
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m_s1ap_log->info("Attach request -- IMSI: %015lu\n", ecm_ctx->imsi);
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@ -861,8 +874,10 @@ s1ap_nas_transport::handle_nas_service_request(uint32_t m_tmsi,
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m_s1ap_log->console("UE previously assigned IP: %s",inet_ntoa(emm_ctx->ue_ip));
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m_s1ap_log->console("UE previously assigned IP: %s",inet_ntoa(emm_ctx->ue_ip));
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//Re-generate K_eNB
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//Re-generate K_eNB
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liblte_security_generate_k_enb(emm_ctx->security_ctxt.k_asme, emm_ctx->security_ctxt.ul_nas_count, emm_ctx->security_ctxt.k_enb);
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srslte::security_generate_k_enb(emm_ctx->security_ctxt.k_asme, emm_ctx->security_ctxt.ul_nas_count, emm_ctx->security_ctxt.k_enb);
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m_s1ap_log->info("Generating KeNB with UL NAS COUNT: %d\n",emm_ctx->security_ctxt.ul_nas_count);
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m_s1ap_log->info("Generating KeNB with UL NAS COUNT: %d\n",emm_ctx->security_ctxt.ul_nas_count);
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m_s1ap_log->console("Generating KeNB with UL NAS COUNT: %d\n",emm_ctx->security_ctxt.ul_nas_count);
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m_s1ap_log->info_hex(emm_ctx->security_ctxt.k_enb, 32, "Key eNodeB (k_enb)\n");
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m_s1ap_log->console("UE Ctr TEID %d\n", emm_ctx->sgw_ctrl_fteid.teid);
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m_s1ap_log->console("UE Ctr TEID %d\n", emm_ctx->sgw_ctrl_fteid.teid);
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//Save UE ctx to MME UE S1AP id
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//Save UE ctx to MME UE S1AP id
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@ -924,8 +939,8 @@ bool
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s1ap_nas_transport::handle_nas_detach_request(srslte::byte_buffer_t *nas_msg, ue_ctx_t* ue_ctx, srslte::byte_buffer_t *reply_msg, bool *reply_flag)
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s1ap_nas_transport::handle_nas_detach_request(srslte::byte_buffer_t *nas_msg, ue_ctx_t* ue_ctx, srslte::byte_buffer_t *reply_msg, bool *reply_flag)
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{
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{
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m_s1ap_log->console("Detach request -- IMSI %015lu", ue_ctx->emm_ctx.imsi);
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m_s1ap_log->console("Detach request -- IMSI %015lu\n", ue_ctx->emm_ctx.imsi);
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m_s1ap_log->info("Detach request -- IMSI %015lu", ue_ctx->emm_ctx.imsi);
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m_s1ap_log->info("Detach request -- IMSI %015lu\n", ue_ctx->emm_ctx.imsi);
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LIBLTE_MME_DETACH_REQUEST_MSG_STRUCT detach_req;
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LIBLTE_MME_DETACH_REQUEST_MSG_STRUCT detach_req;
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LIBLTE_ERROR_ENUM err = liblte_mme_unpack_detach_request_msg((LIBLTE_BYTE_MSG_STRUCT*) nas_msg, &detach_req);
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LIBLTE_ERROR_ENUM err = liblte_mme_unpack_detach_request_msg((LIBLTE_BYTE_MSG_STRUCT*) nas_msg, &detach_req);
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@ -1017,6 +1032,7 @@ s1ap_nas_transport::handle_nas_authentication_response(srslte::byte_buffer_t *na
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m_s1ap_log->console("UE Authentication Accepted.\n");
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m_s1ap_log->console("UE Authentication Accepted.\n");
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m_s1ap_log->info("UE Authentication Accepted.\n");
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m_s1ap_log->info("UE Authentication Accepted.\n");
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//Send Security Mode Command
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//Send Security Mode Command
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emm_ctx->security_ctxt.ul_nas_count = 0; // Reset the NAS uplink counter for the right key k_enb derivation
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pack_security_mode_command(reply_buffer, emm_ctx, ecm_ctx);
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pack_security_mode_command(reply_buffer, emm_ctx, ecm_ctx);
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*reply_flag = true;
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*reply_flag = true;
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m_s1ap_log->console("Downlink NAS: Sending NAS Security Mode Command.\n");
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m_s1ap_log->console("Downlink NAS: Sending NAS Security Mode Command.\n");
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@ -1106,10 +1122,10 @@ s1ap_nas_transport::handle_nas_attach_complete(srslte::byte_buffer_t *nas_msg, u
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//Attach requested from attach request
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//Attach requested from attach request
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m_mme_gtpc->send_modify_bearer_request(emm_ctx->imsi, &ecm_ctx->erabs_ctx[act_bearer.eps_bearer_id]);
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m_mme_gtpc->send_modify_bearer_request(emm_ctx->imsi, &ecm_ctx->erabs_ctx[act_bearer.eps_bearer_id]);
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//Send reply to eNB
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//Send reply to eNB
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m_s1ap_log->console("Packing EMM infromationi\n");
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m_s1ap_log->console("Packing EMM Information\n");
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*reply_flag = pack_emm_information(ue_ctx, reply_msg);
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*reply_flag = pack_emm_information(ue_ctx, reply_msg);
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m_s1ap_log->console("Sending EMM infromation, bytes %d\n",reply_msg->N_bytes);
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m_s1ap_log->console("Sending EMM Information, bytes %d\n",reply_msg->N_bytes);
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m_s1ap_log->info("Sending EMM infromation\n");
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m_s1ap_log->info("Sending EMM Information\n");
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}
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}
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emm_ctx->state = EMM_STATE_REGISTERED;
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emm_ctx->state = EMM_STATE_REGISTERED;
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return true;
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return true;
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@ -1166,8 +1182,8 @@ s1ap_nas_transport::handle_identity_response(srslte::byte_buffer_t *nas_msg, ue_
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ue_emm_ctx_t *emm_ctx = &ue_ctx->emm_ctx;
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ue_emm_ctx_t *emm_ctx = &ue_ctx->emm_ctx;
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ue_ecm_ctx_t *ecm_ctx = &ue_ctx->ecm_ctx;
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ue_ecm_ctx_t *ecm_ctx = &ue_ctx->ecm_ctx;
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m_s1ap_log->info("Id Response -- IMSI: %015lu\n", imsi);
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m_s1ap_log->info("ID response -- IMSI: %015lu\n", imsi);
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m_s1ap_log->console("Id Response -- IMSI: %015lu\n", imsi);
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m_s1ap_log->console("ID Response -- IMSI: %015lu\n", imsi);
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//Set UE's context IMSI
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//Set UE's context IMSI
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emm_ctx->imsi=imsi;
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emm_ctx->imsi=imsi;
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@ -1605,15 +1621,15 @@ s1ap_nas_transport::pack_security_mode_command(srslte::byte_buffer_t *reply_msg,
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ue_emm_ctx->security_ctxt.k_nas_enc,
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ue_emm_ctx->security_ctxt.k_nas_enc,
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ue_emm_ctx->security_ctxt.k_nas_int
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ue_emm_ctx->security_ctxt.k_nas_int
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);
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);
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srslte::security_generate_k_nas( ue_emm_ctx->security_ctxt.k_asme,
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srslte::CIPHERING_ALGORITHM_ID_EEA0,
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m_s1ap_log->info_hex(ue_emm_ctx->security_ctxt.k_nas_enc, 32, "Key NAS Encryption (k_nas_enc)\n");
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srslte::INTEGRITY_ALGORITHM_ID_128_EIA1,
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m_s1ap_log->info_hex(ue_emm_ctx->security_ctxt.k_nas_int, 32, "Key NAS Integrity (k_nas_int)\n");
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ue_emm_ctx->security_ctxt.k_nas_enc,
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ue_emm_ctx->security_ctxt.k_nas_int
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);
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uint8_t key_enb[32];
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uint8_t key_enb[32];
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liblte_security_generate_k_enb(ue_emm_ctx->security_ctxt.k_asme, ue_emm_ctx->security_ctxt.ul_nas_count, ue_emm_ctx->security_ctxt.k_enb);
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srslte::security_generate_k_enb(ue_emm_ctx->security_ctxt.k_asme, ue_emm_ctx->security_ctxt.ul_nas_count, ue_emm_ctx->security_ctxt.k_enb);
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m_s1ap_log->info("Generating KeNB with UL NAS COUNT: %d\n",ue_emm_ctx->security_ctxt.ul_nas_count);
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m_s1ap_log->info("Generating KeNB with UL NAS COUNT: %d\n", ue_emm_ctx->security_ctxt.ul_nas_count);
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m_s1ap_log->console("Generating KeNB with UL NAS COUNT: %d\n", ue_emm_ctx->security_ctxt.ul_nas_count);
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m_s1ap_log->info_hex(ue_emm_ctx->security_ctxt.k_enb, 32, "Key eNodeB (k_enb)\n");
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//Generate MAC for integrity protection
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//Generate MAC for integrity protection
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//FIXME Write wrapper to support EIA1, EIA2, etc.
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//FIXME Write wrapper to support EIA1, EIA2, etc.
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srslte::security_128_eia1 (&ue_emm_ctx->security_ctxt.k_nas_int[16],
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srslte::security_128_eia1 (&ue_emm_ctx->security_ctxt.k_nas_int[16],
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