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/**
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*
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* \section COPYRIGHT
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*
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* Copyright 2013-2015 Software Radio Systems Limited
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*
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* \section LICENSE
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*
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* This file is part of the srsUE library.
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*
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* srsUE 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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* srsUE 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 "srslte/upper/pdcp.h"
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namespace srslte {
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pdcp::pdcp()
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{
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rlc = NULL;
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rrc = NULL;
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gw = NULL;
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pdcp_log = NULL;
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default_lcid = 0;
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pthread_rwlock_init(&rwlock, NULL);
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}
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pdcp::~pdcp()
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{
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// destroy all remaining entities
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pthread_rwlock_wrlock(&rwlock);
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for (pdcp_map_t::iterator it = pdcp_array.begin(); it != pdcp_array.end(); ++it) {
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delete(it->second);
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}
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pdcp_array.clear();
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pthread_rwlock_unlock(&rwlock);
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pthread_rwlock_destroy(&rwlock);
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}
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void pdcp::init(srsue::rlc_interface_pdcp *rlc_, srsue::rrc_interface_pdcp *rrc_, srsue::gw_interface_pdcp *gw_, log *pdcp_log_, uint32_t lcid_, uint8_t direction_)
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{
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rlc = rlc_;
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rrc = rrc_;
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gw = gw_;
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pdcp_log = pdcp_log_;
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default_lcid = lcid_;
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// Default config
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default_cnfg.is_control = false;
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default_cnfg.is_data = false;
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default_cnfg.direction = direction_;
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// create default PDCP entity for SRB0
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add_bearer(0, default_cnfg);
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}
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void pdcp::stop()
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{
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// destroy default entity
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pthread_rwlock_wrlock(&rwlock);
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if (valid_lcid(0)) {
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pdcp_map_t::iterator it = pdcp_array.find(0);
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delete(it->second);
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pdcp_array.erase(it);
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}
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pthread_rwlock_unlock(&rwlock);
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}
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void pdcp::reestablish() {
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pthread_rwlock_rdlock(&rwlock);
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for (pdcp_map_t::iterator it = pdcp_array.begin(); it != pdcp_array.end(); ++it) {
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it->second->reestablish();
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}
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pthread_rwlock_unlock(&rwlock);
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}
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void pdcp::reset()
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{
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pthread_rwlock_rdlock(&rwlock);
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for (pdcp_map_t::iterator it = pdcp_array.begin(); it != pdcp_array.end(); ++it) {
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it->second->reset();
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}
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if (valid_lcid(0)) {
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pdcp_array.at(0)->init(rlc, rrc, gw, pdcp_log, default_lcid, default_cnfg);
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}
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pthread_rwlock_unlock(&rwlock);
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}
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/*******************************************************************************
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RRC/GW interface
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*******************************************************************************/
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bool pdcp::is_drb_enabled(uint32_t lcid)
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{
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pthread_rwlock_rdlock(&rwlock);
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bool ret = false;
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if (valid_lcid(lcid)) {
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ret = pdcp_array.at(lcid)->is_active();
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}
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pthread_rwlock_unlock(&rwlock);
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return ret;
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}
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void pdcp::write_sdu(uint32_t lcid, byte_buffer_t *sdu, bool blocking)
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{
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pthread_rwlock_rdlock(&rwlock);
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if (valid_lcid(lcid)) {
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pdcp_array.at(lcid)->write_sdu(sdu, blocking);
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} else {
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pdcp_log->warning("Writing sdu: lcid=%d. Deallocating sdu\n", lcid);
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byte_buffer_pool::get_instance()->deallocate(sdu);
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}
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pthread_rwlock_unlock(&rwlock);
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}
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void pdcp::write_sdu_mch(uint32_t lcid, byte_buffer_t *sdu)
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{
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pthread_rwlock_rdlock(&rwlock);
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if (valid_mch_lcid(lcid)){
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pdcp_array_mrb.at(lcid)->write_sdu(sdu, true);
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}
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pthread_rwlock_unlock(&rwlock);
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}
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void pdcp::add_bearer(uint32_t lcid, srslte_pdcp_config_t cfg)
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{
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pthread_rwlock_wrlock(&rwlock);
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if (not valid_lcid(lcid)) {
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if (not pdcp_array.insert(pdcp_map_pair_t(lcid, new pdcp_entity())).second) {
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pdcp_log->error("Error inserting PDCP entity in to array\n.");
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goto unlock_and_exit;
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}
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pdcp_array.at(lcid)->init(rlc, rrc, gw, pdcp_log, lcid, cfg);
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pdcp_log->info("Added bearer %s\n", rrc->get_rb_name(lcid).c_str());
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} else {
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pdcp_log->warning("Bearer %s already configured. Reconfiguration not supported\n", rrc->get_rb_name(lcid).c_str());
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}
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unlock_and_exit:
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pthread_rwlock_unlock(&rwlock);
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}
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void pdcp::add_bearer_mrb(uint32_t lcid, srslte_pdcp_config_t cfg)
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{
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pthread_rwlock_wrlock(&rwlock);
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if (not valid_mch_lcid(lcid)) {
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if (not pdcp_array_mrb.insert(pdcp_map_pair_t(lcid, new pdcp_entity())).second) {
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pdcp_log->error("Error inserting PDCP entity in to array\n.");
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goto unlock_and_exit;
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}
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pdcp_array_mrb.at(lcid)->init(rlc, rrc, gw, pdcp_log, lcid, cfg);
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pdcp_log->info("Added bearer %s\n", rrc->get_rb_name(lcid).c_str());
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} else {
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pdcp_log->warning("Bearer %s already configured. Reconfiguration not supported\n", rrc->get_rb_name(lcid).c_str());
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}
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unlock_and_exit:
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pthread_rwlock_unlock(&rwlock);
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}
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void pdcp::config_security(uint32_t lcid,
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uint8_t *k_enc,
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uint8_t *k_int,
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CIPHERING_ALGORITHM_ID_ENUM cipher_algo,
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INTEGRITY_ALGORITHM_ID_ENUM integ_algo)
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{
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pthread_rwlock_rdlock(&rwlock);
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if (valid_lcid(lcid)) {
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pdcp_array.at(lcid)->config_security(k_enc, k_int, cipher_algo, integ_algo);
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}
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pthread_rwlock_unlock(&rwlock);
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}
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void pdcp::config_security_all(uint8_t *k_enc,
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uint8_t *k_int,
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CIPHERING_ALGORITHM_ID_ENUM cipher_algo,
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INTEGRITY_ALGORITHM_ID_ENUM integ_algo)
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{
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pthread_rwlock_rdlock(&rwlock);
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for (pdcp_map_t::iterator it = pdcp_array.begin(); it != pdcp_array.end(); ++it) {
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it->second->config_security(k_enc, k_int, cipher_algo, integ_algo);
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}
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pthread_rwlock_unlock(&rwlock);
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}
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void pdcp::enable_integrity(uint32_t lcid)
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{
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pthread_rwlock_rdlock(&rwlock);
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if (valid_lcid(lcid)) {
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pdcp_array.at(lcid)->enable_integrity();
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}
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pthread_rwlock_unlock(&rwlock);
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}
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void pdcp::enable_encryption(uint32_t lcid)
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{
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pthread_rwlock_rdlock(&rwlock);
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if (valid_lcid(lcid)) {
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pdcp_array.at(lcid)->enable_encryption();
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}
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pthread_rwlock_unlock(&rwlock);
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}
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/*******************************************************************************
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RLC interface
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*******************************************************************************/
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void pdcp::write_pdu(uint32_t lcid, byte_buffer_t *pdu)
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{
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pthread_rwlock_rdlock(&rwlock);
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if (valid_lcid(lcid)) {
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pdcp_array.at(lcid)->write_pdu(pdu);
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} else {
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pdcp_log->warning("Writing pdu: lcid=%d. Deallocating pdu\n", lcid);
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byte_buffer_pool::get_instance()->deallocate(pdu);
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}
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pthread_rwlock_unlock(&rwlock);
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}
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void pdcp::write_pdu_bcch_bch(byte_buffer_t *sdu)
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{
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rrc->write_pdu_bcch_bch(sdu);
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}
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void pdcp::write_pdu_bcch_dlsch(byte_buffer_t *sdu)
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{
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rrc->write_pdu_bcch_dlsch(sdu);
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}
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void pdcp::write_pdu_pcch(byte_buffer_t *sdu)
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{
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rrc->write_pdu_pcch(sdu);
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}
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void pdcp::write_pdu_mch(uint32_t lcid, byte_buffer_t *sdu)
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{
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if (0 == lcid) {
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rrc->write_pdu_mch(lcid, sdu);
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} else {
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gw->write_pdu_mch(lcid, sdu);
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}
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}
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/*******************************************************************************
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Helpers (Lock must be hold when calling those)
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*******************************************************************************/
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bool pdcp::valid_lcid(uint32_t lcid)
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{
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if (lcid >= SRSLTE_N_RADIO_BEARERS) {
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pdcp_log->error("Radio bearer id must be in [0:%d] - %d", SRSLTE_N_RADIO_BEARERS, lcid);
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return false;
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}
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if (pdcp_array.find(lcid) == pdcp_array.end()) {
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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 pdcp::valid_mch_lcid(uint32_t lcid)
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{
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if (lcid >= SRSLTE_N_MCH_LCIDS) {
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pdcp_log->error("Radio bearer id must be in [0:%d] - %d", SRSLTE_N_RADIO_BEARERS, lcid);
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return false;
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}
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if (pdcp_array_mrb.find(lcid) == pdcp_array_mrb.end()) {
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return false;
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}
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return true;
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}
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} // namespace srsue
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