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@ -1070,34 +1070,36 @@ void rrc::send_con_setup_complete(byte_buffer_t *nas_msg) {
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send_ul_dcch_msg();
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}
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void rrc::send_ul_info_transfer(uint32_t lcid, byte_buffer_t *sdu) {
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void rrc::send_ul_info_transfer(byte_buffer_t *nas_msg) {
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rrc_log->debug("Preparing RX Info Transfer\n");
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// Prepare RX INFO packet
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ul_dcch_msg.msg_type = LIBLTE_RRC_UL_DCCH_MSG_TYPE_UL_INFO_TRANSFER;
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ul_dcch_msg.msg.ul_info_transfer.dedicated_info_type = LIBLTE_RRC_UL_INFORMATION_TRANSFER_TYPE_NAS;
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memcpy(ul_dcch_msg.msg.ul_info_transfer.dedicated_info.msg, sdu->msg, sdu->N_bytes);
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ul_dcch_msg.msg.ul_info_transfer.dedicated_info.N_bytes = sdu->N_bytes;
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memcpy(ul_dcch_msg.msg.ul_info_transfer.dedicated_info.msg, nas_msg->msg, nas_msg->N_bytes);
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ul_dcch_msg.msg.ul_info_transfer.dedicated_info.N_bytes = nas_msg->N_bytes;
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send_ul_dcch_msg(sdu);
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pool->deallocate(nas_msg);
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send_ul_dcch_msg();
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}
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void rrc::send_security_mode_complete(uint32_t lcid, byte_buffer_t *pdu) {
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void rrc::send_security_mode_complete() {
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rrc_log->debug("Preparing Security Mode Complete\n");
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ul_dcch_msg.msg_type = LIBLTE_RRC_UL_DCCH_MSG_TYPE_SECURITY_MODE_COMPLETE;
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ul_dcch_msg.msg.security_mode_complete.rrc_transaction_id = transaction_id;
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send_ul_dcch_msg(pdu);
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send_ul_dcch_msg();
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}
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void rrc::send_rrc_con_reconfig_complete(byte_buffer_t *pdu) {
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void rrc::send_rrc_con_reconfig_complete() {
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rrc_log->debug("Preparing RRC Connection Reconfig Complete\n");
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ul_dcch_msg.msg_type = LIBLTE_RRC_UL_DCCH_MSG_TYPE_RRC_CON_RECONFIG_COMPLETE;
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ul_dcch_msg.msg.rrc_con_reconfig_complete.rrc_transaction_id = transaction_id;
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send_ul_dcch_msg(pdu);
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send_ul_dcch_msg();
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}
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bool rrc::ho_prepare() {
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@ -1177,7 +1179,7 @@ bool rrc::ho_prepare() {
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k_rrc_enc, k_rrc_int, k_up_enc, k_up_int, cipher_algo, integ_algo);
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pdcp->config_security_all(k_rrc_enc, k_rrc_int, cipher_algo, integ_algo);
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send_rrc_con_reconfig_complete(NULL);
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send_rrc_con_reconfig_complete();
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}
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return true;
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}
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@ -1229,15 +1231,14 @@ void rrc::ho_failed() {
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send_con_restablish_request(LIBLTE_RRC_CON_REEST_REQ_CAUSE_HANDOVER_FAILURE, ho_src_rnti);
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}
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void rrc::handle_rrc_con_reconfig(uint32_t lcid, LIBLTE_RRC_CONNECTION_RECONFIGURATION_STRUCT *reconfig,
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byte_buffer_t *pdu) {
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void rrc::handle_rrc_con_reconfig(uint32_t lcid, LIBLTE_RRC_CONNECTION_RECONFIGURATION_STRUCT *reconfig) {
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uint32_t i;
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if (reconfig->mob_ctrl_info_present) {
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if (reconfig->mob_ctrl_info.target_pci == phy->get_current_pci()) {
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rrc_log->warning("Received HO command to own cell\n");
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send_rrc_con_reconfig_complete(pdu);
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send_rrc_con_reconfig_complete();
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} else {
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rrc_log->info("Received HO command to target PCell=%d\n", reconfig->mob_ctrl_info.target_pci);
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rrc_log->console("Received HO command to target PCell=%d, NCC=%d\n",
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@ -1259,7 +1260,7 @@ void rrc::handle_rrc_con_reconfig(uint32_t lcid, LIBLTE_RRC_CONNECTION_RECONFIGU
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measurements.parse_meas_config(&reconfig->meas_cnfg);
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}
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send_rrc_con_reconfig_complete(pdu);
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send_rrc_con_reconfig_complete();
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byte_buffer_t *nas_sdu;
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for (i = 0; i < reconfig->N_ded_info_nas; i++) {
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@ -1318,10 +1319,10 @@ void rrc::leave_connected()
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*
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*******************************************************************************/
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void rrc::write_pdu_bcch_bch(byte_buffer_t *pdu) {
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pool->deallocate(pdu);
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if (state == RRC_STATE_PLMN_SELECTION) {
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// Do we need to do something with BCH?
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rrc_log->info_hex(pdu->msg, pdu->N_bytes, "BCCH BCH message received.");
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pool->deallocate(pdu);
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} else {
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rrc_log->warning("Received BCCH BCH in incorrect state\n");
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}
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@ -1523,7 +1524,7 @@ void rrc::write_pdu_pcch(byte_buffer_t *pdu) {
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*
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*
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*******************************************************************************/
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byte_buffer_t* rrc::byte_align_and_pack(byte_buffer_t *pdu)
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byte_buffer_t* rrc::byte_align_and_pack()
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{
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// Byte align and pack the message bits for PDCP
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if ((bit_buf.N_bits % 8) != 0) {
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@ -1533,15 +1534,8 @@ byte_buffer_t* rrc::byte_align_and_pack(byte_buffer_t *pdu)
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}
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// Reset and reuse sdu buffer if provided
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byte_buffer_t *pdcp_buf = pdu;
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byte_buffer_t *pdcp_buf = pool_allocate;
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if (pdcp_buf) {
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pdcp_buf->reset();
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} else {
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pdcp_buf = pool_allocate;
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}
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if (pdcp_buf != NULL) {
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srslte_bit_pack_vector(bit_buf.msg, pdcp_buf->msg, bit_buf.N_bits);
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pdcp_buf->N_bytes = bit_buf.N_bits / 8;
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pdcp_buf->set_timestamp();
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@ -1551,10 +1545,10 @@ byte_buffer_t* rrc::byte_align_and_pack(byte_buffer_t *pdu)
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return pdcp_buf;
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}
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void rrc::send_ul_ccch_msg(byte_buffer_t *pdu)
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void rrc::send_ul_ccch_msg()
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{
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liblte_rrc_pack_ul_ccch_msg(&ul_ccch_msg, (LIBLTE_BIT_MSG_STRUCT *) &bit_buf);
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pdu = byte_align_and_pack(pdu);
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byte_buffer_t *pdu = byte_align_and_pack();
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if (pdu) {
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// Set UE contention resolution ID in MAC
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uint64_t uecri = 0;
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@ -1572,11 +1566,10 @@ void rrc::send_ul_ccch_msg(byte_buffer_t *pdu)
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}
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}
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void rrc::send_ul_dcch_msg(byte_buffer_t *pdu)
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void rrc::send_ul_dcch_msg()
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{
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liblte_rrc_pack_ul_dcch_msg(&ul_dcch_msg, (LIBLTE_BIT_MSG_STRUCT *) &bit_buf);
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pdu = byte_align_and_pack(pdu);
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byte_buffer_t *pdu = byte_align_and_pack();
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if (pdu) {
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rrc_log->info("Sending %s\n", liblte_rrc_ul_dcch_msg_type_text[ul_dcch_msg.msg_type]);
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pdcp->write_sdu(RB_ID_SRB1, pdu);
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@ -1591,7 +1584,7 @@ void rrc::write_sdu(uint32_t lcid, byte_buffer_t *sdu) {
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send_con_setup_complete(sdu);
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break;
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case RRC_STATE_CONNECTED:
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send_ul_info_transfer(lcid, sdu);
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send_ul_info_transfer(sdu);
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break;
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default:
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rrc_log->error("SDU received from NAS while RRC state = %s\n", rrc_state_text[state]);
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@ -1665,11 +1658,15 @@ void rrc::parse_dl_dcch(uint32_t lcid, byte_buffer_t *pdu) {
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get_rb_name(lcid).c_str(),
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liblte_rrc_dl_dcch_msg_type_text[dl_dcch_msg.msg_type]);
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// Reset and reuse pdu buffer if possible
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pdu->reset();
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pool->deallocate(pdu);
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switch (dl_dcch_msg.msg_type) {
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case LIBLTE_RRC_DL_DCCH_MSG_TYPE_DL_INFO_TRANSFER:
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pdu = pool_allocate;
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if (!pdu) {
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rrc_log->error("Fatal error: out of buffers in pool\n");
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return;
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}
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memcpy(pdu->msg, dl_dcch_msg.msg.dl_info_transfer.dedicated_info.msg,
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dl_dcch_msg.msg.dl_info_transfer.dedicated_info.N_bytes);
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pdu->N_bytes = dl_dcch_msg.msg.dl_info_transfer.dedicated_info.N_bytes;
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@ -1696,18 +1693,18 @@ void rrc::parse_dl_dcch(uint32_t lcid, byte_buffer_t *pdu) {
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// Configure PDCP for security
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pdcp->config_security(lcid, k_rrc_enc, k_rrc_int, cipher_algo, integ_algo);
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pdcp->enable_integrity(lcid);
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send_security_mode_complete(lcid, pdu);
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send_security_mode_complete();
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pdcp->enable_encryption(lcid);
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break;
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case LIBLTE_RRC_DL_DCCH_MSG_TYPE_RRC_CON_RECONFIG:
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transaction_id = dl_dcch_msg.msg.rrc_con_reconfig.rrc_transaction_id;
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handle_rrc_con_reconfig(lcid, &dl_dcch_msg.msg.rrc_con_reconfig, pdu);
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handle_rrc_con_reconfig(lcid, &dl_dcch_msg.msg.rrc_con_reconfig);
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break;
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case LIBLTE_RRC_DL_DCCH_MSG_TYPE_UE_CAPABILITY_ENQUIRY:
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transaction_id = dl_dcch_msg.msg.ue_cap_enquiry.rrc_transaction_id;
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for (uint32_t i = 0; i < dl_dcch_msg.msg.ue_cap_enquiry.N_ue_cap_reqs; i++) {
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if (LIBLTE_RRC_RAT_TYPE_EUTRA == dl_dcch_msg.msg.ue_cap_enquiry.ue_capability_request[i]) {
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send_rrc_ue_cap_info(pdu);
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send_rrc_ue_cap_info();
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break;
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}
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}
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@ -1743,7 +1740,7 @@ void rrc::enable_capabilities() {
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phy->set_config_64qam_en(enable_ul_64);
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}
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void rrc::send_rrc_ue_cap_info(byte_buffer_t *pdu) {
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void rrc::send_rrc_ue_cap_info() {
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rrc_log->debug("Preparing UE Capability Info\n");
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ul_dcch_msg.msg_type = LIBLTE_RRC_UL_DCCH_MSG_TYPE_UE_CAPABILITY_INFO;
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@ -1792,7 +1789,7 @@ void rrc::send_rrc_ue_cap_info(byte_buffer_t *pdu) {
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liblte_rrc_pack_ul_dcch_msg(&ul_dcch_msg, (LIBLTE_BIT_MSG_STRUCT *) &bit_buf);
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send_ul_dcch_msg(pdu);
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send_ul_dcch_msg();
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}
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