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/**
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*
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* \section COPYRIGHT
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*
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* Copyright 2013-2021 Software Radio Systems Limited
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*
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* By using this file, you agree to the terms and conditions set
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* forth in the LICENSE file which can be found at the top level of
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* the distribution.
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*
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*/
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#ifndef SRSUE_TTCN3_SRB_INTERFACE_H
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#define SRSUE_TTCN3_SRB_INTERFACE_H
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#include "srsran/common/buffer_pool.h"
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#include "srsran/common/common.h"
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#include "srsran/mac/pdu.h"
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#include "ttcn3_interfaces.h"
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#include "ttcn3_port_handler.h"
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#include <srsran/interfaces/ue_interfaces.h>
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using namespace srsran;
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// The SRB interface
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class ttcn3_srb_interface : public ttcn3_port_handler
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{
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public:
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explicit ttcn3_srb_interface(srslog::basic_logger& logger) :
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ttcn3_port_handler(logger), pool(byte_buffer_pool::get_instance())
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{}
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~ttcn3_srb_interface() = default;
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int init(ss_srb_interface* syssim_, std::string net_ip_, uint32_t net_port_)
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{
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syssim = syssim_;
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net_ip = net_ip_;
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net_port = net_port_;
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initialized = true;
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logger.debug("Initialized.");
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return port_listen();
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}
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void tx(const uint8_t* buffer, uint32_t len)
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{
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if (initialized) {
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logger.info(buffer, len, "Sending %d B to Titan", len);
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send(buffer, len);
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} else {
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logger.error("Trying to transmit but port not connected.");
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}
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}
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private:
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///< Main message handler
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int handle_message(const unique_byte_array_t& rx_buf, const uint32_t n)
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{
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logger.debug(rx_buf->begin(), n, "Received %d B from remote.", n);
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// Chop incoming msg, first two bytes are length of the JSON
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// (see IPL4_EUTRA_SYSTEM_Definitions.ttcn
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uint16_t json_len = ((uint16_t)rx_buf->at(0) << 8) | rx_buf->at(1);
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// The data part after the JSON starts right here but handling
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// is done in the respective functions
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uint16_t rx_buf_offset = json_len + 2;
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Document document;
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if (document.Parse((char*)&rx_buf->at(2)).HasParseError() || document.IsObject() == false) {
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logger.error((uint8_t*)&rx_buf->at(2), json_len, "Error parsing incoming data.");
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return SRSRAN_ERROR;
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}
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// Pretty-print
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StringBuffer buffer;
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PrettyWriter<StringBuffer> writer(buffer);
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document.Accept(writer);
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logger.info("Received JSON with %d B\n%s", json_len, (char*)buffer.GetString());
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// check for common
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assert(document.HasMember("Common"));
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assert(document["Common"].IsObject());
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// Check for request type
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assert(document.HasMember("RrcPdu"));
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assert(document["RrcPdu"].IsObject());
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// Get request type
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const Value& rrcpdu = document["RrcPdu"];
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if (rrcpdu.HasMember("Ccch")) {
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rx_buf_offset += 2;
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handle_ccch_pdu(document, &rx_buf->at(rx_buf_offset), n - rx_buf_offset);
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} else if (rrcpdu.HasMember("Dcch")) {
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rx_buf_offset += 2;
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uint32_t lcid = document["Common"]["RoutingInfo"]["RadioBearerId"]["Srb"].GetInt();
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handle_dcch_pdu(
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document, lcid, &rx_buf->at(rx_buf_offset), n - rx_buf_offset, ttcn3_helpers::get_follow_on_flag(document));
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} else {
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logger.error("Received unknown request.");
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}
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return SRSRAN_SUCCESS;
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}
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// Todo: move to SYSSIM
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void handle_ccch_pdu(Document& document, const uint8_t* payload, const uint16_t len)
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{
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logger.info(payload, len, "Received CCCH RRC PDU");
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// pack into byte buffer
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unique_byte_buffer_t pdu = srsran::make_byte_buffer();
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if (pdu == nullptr) {
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logger.error("Couldn't allocate buffer in %s().", __FUNCTION__);
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return;
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}
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pdu->N_bytes = len;
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memcpy(pdu->msg, payload, pdu->N_bytes);
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syssim->add_ccch_pdu(
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ttcn3_helpers::get_timing_info(document), ttcn3_helpers::get_cell_name(document), std::move(pdu));
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// TODO: is there a better way to check for RRCConnectionReestablishment?
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if (ccch_is_rrc_reestablishment(document)) {
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syssim->reestablish_bearer(ttcn3_helpers::get_cell_name(document), 1);
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}
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}
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// Todo: move to SYSSIM
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void
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handle_dcch_pdu(Document& document, const uint16_t lcid, const uint8_t* payload, const uint16_t len, bool follow_on)
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{
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logger.info(payload, len, "Received DCCH RRC PDU (lcid=%d)", lcid);
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// pack into byte buffer
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unique_byte_buffer_t pdu = srsran::make_byte_buffer();
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if (pdu == nullptr) {
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logger.error("Couldn't allocate buffer in %s().", __FUNCTION__);
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return;
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}
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pdu->N_bytes = len;
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memcpy(pdu->msg, payload, pdu->N_bytes);
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syssim->add_dcch_pdu(ttcn3_helpers::get_timing_info(document),
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ttcn3_helpers::get_cell_name(document),
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lcid,
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std::move(pdu),
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follow_on);
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}
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bool ccch_is_rrc_reestablishment(Document& document)
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{
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const Value& dcch = document["RrcPdu"]["Ccch"];
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if (dcch.HasMember("message_")) {
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if (dcch["message_"].HasMember("c1")) {
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if (dcch["message_"]["c1"].HasMember("rrcConnectionReestablishment")) {
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return true;
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}
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}
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}
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return false;
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}
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ss_srb_interface* syssim = nullptr;
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byte_buffer_pool* pool = nullptr;
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};
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#endif // SRSUE_TTCN3_SRB_INTERFACE_H
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