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337 lines
12 KiB
C++
337 lines
12 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 "srslte/srslte.h"
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#include "srslte/asn1/liblte_s1ap.h"
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#include "srslte/asn1/rrc_asn1.h"
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#include "srslte/common/common.h"
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#include "srslte/common/interfaces_common.h"
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#include "srslte/common/security.h"
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#include "srslte/interfaces/sched_interface.h"
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#include "srslte/upper/rlc_interface.h"
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#include <vector>
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#ifndef SRSLTE_ENB_INTERFACES_H
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#define SRSLTE_ENB_INTERFACES_H
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namespace srsenb {
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/* Interface PHY -> MAC */
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class mac_interface_phy_lte
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{
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public:
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const static int MAX_GRANTS = 64;
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typedef struct {
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srslte_dci_dl_t dci;
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srslte_dci_cfg_t dci_cfg;
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uint8_t* data[SRSLTE_MAX_TB];
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srslte_softbuffer_tx_t* softbuffer_tx[SRSLTE_MAX_TB];
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} dl_sched_grant_t;
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typedef struct {
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dl_sched_grant_t pdsch[MAX_GRANTS];
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uint32_t nof_grants;
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uint32_t cfi;
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} dl_sched_t;
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typedef struct {
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uint16_t rnti;
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bool ack;
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} ul_sched_ack_t;
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typedef struct {
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srslte_dci_ul_t dci;
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srslte_dci_cfg_t dci_cfg;
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uint32_t current_tx_nb;
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uint8_t* data;
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bool needs_pdcch;
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srslte_softbuffer_rx_t* softbuffer_rx;
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} ul_sched_grant_t;
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typedef struct {
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ul_sched_grant_t pusch[MAX_GRANTS];
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ul_sched_ack_t phich[MAX_GRANTS];
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uint32_t nof_grants;
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uint32_t nof_phich;
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} ul_sched_t;
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virtual int sr_detected(uint32_t tti, uint16_t rnti) = 0;
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virtual int rach_detected(uint32_t tti, uint32_t preamble_idx, uint32_t time_adv) = 0;
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virtual int ri_info(uint32_t tti, uint16_t rnti, uint32_t ri_value) = 0;
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virtual int pmi_info(uint32_t tti, uint16_t rnti, uint32_t pmi_value) = 0;
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virtual int cqi_info(uint32_t tti, uint16_t rnti, uint32_t cqi_value) = 0;
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virtual int snr_info(uint32_t tti, uint16_t rnti, float snr_db) = 0;
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virtual int ack_info(uint32_t tti, uint16_t rnti, uint32_t tb_idx, bool ack) = 0;
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virtual int crc_info(uint32_t tti, uint16_t rnti, uint32_t nof_bytes, bool crc_res) = 0;
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virtual int get_dl_sched(uint32_t tti, dl_sched_t *dl_sched_res) = 0;
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virtual int get_mch_sched(uint32_t tti, bool is_mcch, dl_sched_t* dl_sched_res) = 0;
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virtual int get_ul_sched(uint32_t tti, ul_sched_t *ul_sched_res) = 0;
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// Radio-Link status
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virtual void rl_failure(uint16_t rnti) = 0;
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virtual void rl_ok(uint16_t rnti) = 0;
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virtual void tti_clock() = 0;
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};
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/* Interface MAC -> PHY */
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class phy_interface_mac_lte
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{
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public:
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/* MAC adds/removes an RNTI to the list of active RNTIs */
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virtual int add_rnti(uint16_t rnti, bool is_temporal = false) = 0;
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virtual void rem_rnti(uint16_t rnti) = 0;
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virtual void set_mch_period_stop(uint32_t stop) = 0;
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};
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/* Interface RRC -> PHY */
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class phy_interface_rrc_lte
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{
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public:
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struct phy_cfg_mbsfn_t {
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asn1::rrc::mbsfn_sf_cfg_s mbsfn_subfr_cnfg;
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asn1::rrc::mbms_notif_cfg_r9_s mbsfn_notification_cnfg;
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asn1::rrc::mbsfn_area_info_r9_s mbsfn_area_info;
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asn1::rrc::mcch_msg_s mcch;
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};
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typedef struct {
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phy_cfg_mbsfn_t mbsfn;
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} phy_rrc_cfg_t;
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virtual void configure_mbsfn(asn1::rrc::sib_type2_s* sib2, asn1::rrc::sib_type13_r9_s* sib13,
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asn1::rrc::mcch_msg_s mcch) = 0;
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virtual void set_config_dedicated(uint16_t rnti, asn1::rrc::phys_cfg_ded_s* dedicated) = 0;
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};
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class mac_interface_rrc
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{
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public:
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/* Provides cell configuration including SIB periodicity, etc. */
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virtual int cell_cfg(sched_interface::cell_cfg_t *cell_cfg) = 0;
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virtual void reset() = 0;
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/* Manages UE configuration context */
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virtual int ue_cfg(uint16_t rnti, sched_interface::ue_cfg_t *cfg) = 0;
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virtual int ue_rem(uint16_t rnti) = 0;
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/* Manages UE bearers and associated configuration */
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virtual int bearer_ue_cfg(uint16_t rnti, uint32_t lc_id, sched_interface::ue_bearer_cfg_t *cfg) = 0;
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virtual int bearer_ue_rem(uint16_t rnti, uint32_t lc_id) = 0;
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virtual int set_dl_ant_info(uint16_t rnti, asn1::rrc::phys_cfg_ded_s::ant_info_c_* dl_ant_info) = 0;
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virtual void phy_config_enabled(uint16_t rnti, bool enabled) = 0;
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virtual void write_mcch(asn1::rrc::sib_type2_s* sib2, asn1::rrc::sib_type13_r9_s* sib13,
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asn1::rrc::mcch_msg_s* mcch) = 0;
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};
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class mac_interface_rlc
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{
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public:
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virtual int rlc_buffer_state(uint16_t rnti, uint32_t lc_id, uint32_t tx_queue, uint32_t retx_queue) = 0;
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};
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//RLC interface for MAC
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class rlc_interface_mac
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{
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public:
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/* MAC calls RLC to get RLC segment of nof_bytes length.
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* Segmentation happens in this function. RLC PDU is stored in payload. */
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virtual int read_pdu(uint16_t rnti, uint32_t lcid, uint8_t *payload, uint32_t nof_bytes) = 0;
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virtual void read_pdu_bcch_dlsch(uint32_t sib_index, uint8_t *payload) = 0;
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virtual void read_pdu_pcch(uint8_t* payload, uint32_t buffer_size) = 0;
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/* MAC calls RLC to push an RLC PDU. This function is called from an independent MAC thread.
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* PDU gets placed into the buffer and higher layer thread gets notified. */
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virtual void write_pdu(uint16_t rnti, uint32_t lcid, uint8_t *payload, uint32_t nof_bytes) = 0;
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};
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// RLC interface for PDCP
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class rlc_interface_pdcp
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{
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public:
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/* PDCP calls RLC to push an RLC SDU. SDU gets placed into the RLC buffer and MAC pulls
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* RLC PDUs according to TB size. */
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virtual void write_sdu(uint16_t rnti, uint32_t lcid, srslte::unique_byte_buffer_t sdu) = 0;
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virtual bool rb_is_um(uint16_t rnti, uint32_t lcid) = 0;
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};
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// RLC interface for RRC
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class rlc_interface_rrc
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{
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public:
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virtual void clear_buffer(uint16_t rnti) = 0;
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virtual void add_user(uint16_t rnti) = 0;
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virtual void rem_user(uint16_t rnti) = 0;
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virtual void add_bearer(uint16_t rnti, uint32_t lcid) = 0;
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virtual void add_bearer(uint16_t rnti, uint32_t lcid, srslte::srslte_rlc_config_t cnfg) = 0;
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virtual void add_bearer_mrb(uint16_t rnti, uint32_t lcid) = 0;
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};
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// PDCP interface for GTPU
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class pdcp_interface_gtpu
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{
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public:
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virtual void write_sdu(uint16_t rnti, uint32_t lcid, srslte::unique_byte_buffer_t sdu) = 0;
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};
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// PDCP interface for RRC
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class pdcp_interface_rrc
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{
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public:
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virtual void reset(uint16_t rnti) = 0;
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virtual void add_user(uint16_t rnti) = 0;
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virtual void rem_user(uint16_t rnti) = 0;
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virtual void write_sdu(uint16_t rnti, uint32_t lcid, srslte::unique_byte_buffer_t sdu) = 0;
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virtual void add_bearer(uint16_t rnti, uint32_t lcid, srslte::srslte_pdcp_config_t cnfg) = 0;
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virtual void config_security(uint16_t rnti,
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uint32_t lcid,
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uint8_t *k_rrc_enc_,
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uint8_t *k_rrc_int_,
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uint8_t *k_up_enc_,
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srslte::CIPHERING_ALGORITHM_ID_ENUM cipher_algo_,
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srslte::INTEGRITY_ALGORITHM_ID_ENUM integ_algo_) = 0;
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virtual void enable_integrity(uint16_t rnti, uint32_t lcid) = 0;
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virtual void enable_encryption(uint16_t rnti, uint32_t lcid) = 0;
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};
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// PDCP interface for RLC
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class pdcp_interface_rlc
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{
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public:
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/* RLC calls PDCP to push a PDCP PDU. */
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virtual void write_pdu(uint16_t rnti, uint32_t lcid, srslte::unique_byte_buffer_t sdu) = 0;
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};
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// RRC interface for RLC
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class rrc_interface_rlc
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{
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public:
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virtual void read_pdu_bcch_dlsch(uint32_t sib_index, uint8_t *payload) = 0;
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virtual void read_pdu_pcch(uint8_t *payload, uint32_t payload_size) = 0;
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virtual void max_retx_attempted(uint16_t rnti) = 0;
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};
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// RRC interface for MAC
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class rrc_interface_mac
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{
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public:
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/* Radio Link failure */
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virtual void rl_failure(uint16_t rnti) = 0;
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virtual void add_user(uint16_t rnti) = 0;
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virtual void upd_user(uint16_t new_rnti, uint16_t old_rnti) = 0;
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virtual void set_activity_user(uint16_t rnti) = 0;
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virtual bool is_paging_opportunity(uint32_t tti, uint32_t *payload_len) = 0;
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};
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// RRC interface for PDCP
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class rrc_interface_pdcp
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{
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public:
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virtual void write_pdu(uint16_t rnti, uint32_t lcid, srslte::unique_byte_buffer_t pdu) = 0;
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};
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// RRC interface for S1AP
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class rrc_interface_s1ap
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{
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public:
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virtual void write_dl_info(uint16_t rnti, srslte::unique_byte_buffer_t sdu) = 0;
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virtual void release_complete(uint16_t rnti) = 0;
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virtual bool setup_ue_ctxt(uint16_t rnti, LIBLTE_S1AP_MESSAGE_INITIALCONTEXTSETUPREQUEST_STRUCT *msg) = 0;
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virtual bool setup_ue_erabs(uint16_t rnti, LIBLTE_S1AP_MESSAGE_E_RABSETUPREQUEST_STRUCT *msg) = 0;
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virtual bool release_erabs(uint32_t rnti) = 0;
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virtual void add_paging_id(uint32_t ueid, LIBLTE_S1AP_UEPAGINGID_STRUCT UEPagingID) = 0;
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};
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// GTPU interface for PDCP
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class gtpu_interface_pdcp
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{
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public:
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virtual void write_pdu(uint16_t rnti, uint32_t lcid, srslte::unique_byte_buffer_t pdu) = 0;
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};
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// GTPU interface for RRC
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class gtpu_interface_rrc
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{
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public:
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virtual void add_bearer(uint16_t rnti, uint32_t lcid, uint32_t addr, uint32_t teid_out, uint32_t *teid_in) = 0;
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virtual void rem_bearer(uint16_t rnti, uint32_t lcid) = 0;
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virtual void rem_user(uint16_t rnti) = 0;
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};
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// S1AP interface for RRC
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class s1ap_interface_rrc
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{
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public:
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virtual void
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initial_ue(uint16_t rnti, LIBLTE_S1AP_RRC_ESTABLISHMENT_CAUSE_ENUM cause, srslte::unique_byte_buffer_t pdu) = 0;
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virtual void initial_ue(uint16_t rnti,
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LIBLTE_S1AP_RRC_ESTABLISHMENT_CAUSE_ENUM cause,
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srslte::unique_byte_buffer_t pdu,
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uint32_t m_tmsi,
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uint8_t mmec) = 0;
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virtual void write_pdu(uint16_t rnti, srslte::unique_byte_buffer_t pdu) = 0;
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virtual bool user_exists(uint16_t rnti) = 0;
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virtual bool user_release(uint16_t rnti, LIBLTE_S1AP_CAUSERADIONETWORK_ENUM cause_radio) = 0;
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virtual void ue_ctxt_setup_complete(uint16_t rnti, LIBLTE_S1AP_MESSAGE_INITIALCONTEXTSETUPRESPONSE_STRUCT *res) = 0;
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virtual void ue_erab_setup_complete(uint16_t rnti, LIBLTE_S1AP_MESSAGE_E_RABSETUPRESPONSE_STRUCT *res) = 0;
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virtual bool is_mme_connected() = 0;
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};
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// Combined interface for PHY to access stack (MAC and RRC)
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class stack_interface_phy_lte : public mac_interface_phy_lte
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{
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};
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// Combined interface for stack (MAC and RRC) to access PHY
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class phy_interface_stack_lte : public phy_interface_mac_lte, public phy_interface_rrc_lte
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{
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};
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typedef struct {
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uint32_t enb_id; // 20-bit id (lsb bits)
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uint8_t cell_id; // 8-bit cell id
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uint16_t tac; // 16-bit tac
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uint16_t mcc; // BCD-coded with 0xF filler
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uint16_t mnc; // BCD-coded with 0xF filler
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std::string mme_addr;
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std::string gtp_bind_addr;
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std::string s1c_bind_addr;
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std::string enb_name;
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} s1ap_args_t;
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typedef struct {
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sched_interface::sched_args_t sched;
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int link_failure_nof_err;
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} mac_args_t;
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}
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#endif // SRSLTE_ENB_INTERFACES_H
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