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/*
* Copyright 2013-2020 Software Radio Systems Limited
*
* This file is part of srsLTE.
*
* srsLTE is free software: you can redistribute it and/or modify
* it under the terms of the GNU Affero General Public License as
* published by the Free Software Foundation, either version 3 of
* the License, or (at your option) any later version.
*
* srsLTE is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
* GNU Affero General Public License for more details.
*
* A copy of the GNU Affero General Public License can be found in
* the LICENSE file in the top-level directory of this distribution
* and at http://www.gnu.org/licenses/.
*
*/
#ifndef SRSLTE_PHY_CONTROLLER_H
#define SRSLTE_PHY_CONTROLLER_H
#include "srslte/adt/observer.h"
#include "srslte/common/fsm.h"
#include "srslte/common/logmap.h"
#include "srslte/interfaces/ue_interfaces.h"
#include <bitset>
namespace srsue {
class phy_controller : public srslte::fsm_t<phy_controller>
{
using cell_search_ret_t = rrc_interface_phy_lte::cell_search_ret_t;
public:
static const uint32_t wait_sync_timeout_ms = 50;
// events
struct cell_srch_res {
cell_search_ret_t cs_ret;
phy_cell_t found_cell;
};
struct cell_sel_res {
bool result;
};
struct cell_sel_cmd {
phy_cell_t phy_cell;
};
struct cell_search_cmd {};
struct in_sync_ev {};
struct out_sync_ev {};
explicit phy_controller(phy_interface_rrc_lte* phy_,
srslte::task_sched_handle task_sched_,
std::function<void(uint32_t, uint32_t, bool)> on_cell_selection = {});
// PHY procedures interfaces
bool start_cell_select(const phy_cell_t& phy_cell, srslte::event_observer<bool> observer = {});
bool start_cell_search(srslte::event_observer<cell_srch_res> observer);
void cell_search_completed(cell_search_ret_t cs_ret, phy_cell_t found_cell);
void cell_selection_completed(bool outcome);
void in_sync();
void out_sync() { trigger(out_sync_ev{}); }
bool set_cell_config(const srslte::phy_cfg_t& config, uint32_t cc_idx = 0);
void set_phy_to_default();
void set_phy_to_default_dedicated();
void set_config_complete();
// state getters
bool cell_is_camping() { return phy->cell_is_camping(); }
bool is_in_sync() const { return is_in_state<in_sync_st>(); }
bool is_config_pending() const { return nof_pending_configs == 0; }
srslte::span<const srslte::phy_cfg_t> current_cell_config() const { return current_cells_cfg; }
srslte::span<srslte::phy_cfg_t> current_cell_config() { return current_cells_cfg; }
const std::bitset<SRSLTE_MAX_CARRIERS>& current_config_scells() const { return current_scells_cfg; }
// FSM states
struct unknown_st {};
struct in_sync_st {};
struct out_sync_st {};
struct selecting_cell : public subfsm_t<selecting_cell> {
struct timeout_ev {};
struct wait_csel_res {};
struct wait_in_sync {
void enter(selecting_cell* f);
};
explicit selecting_cell(phy_controller* parent_);
void enter(phy_controller* f, const cell_sel_cmd& ev);
void exit(phy_controller* f);
srslte::timer_handler::unique_timer wait_in_sync_timer;
phy_cell_t target_cell = {};
cell_sel_res csel_res = {};
protected:
// guard functions
bool is_cell_selected(wait_csel_res& s, const cell_sel_res& ev) { return ev.result; }
// event handlers
void set_success(wait_in_sync& s, const in_sync_ev& ev) { csel_res.result = true; }
state_list<wait_csel_res, wait_in_sync> states{this};
// clang-format off
using c = selecting_cell;
using transitions = transition_table<
// Start Target Event Action Guard
// +----------------+---------------+--------------+------------------+----------------------+
row< wait_csel_res, wait_in_sync, cell_sel_res, nullptr, &c::is_cell_selected >,
row< wait_csel_res, unknown_st, cell_sel_res >,
// +----------------+---------------+--------------+------------------+----------------------+
row< wait_in_sync, in_sync_st, in_sync_ev, &c::set_success >,
row< wait_in_sync, unknown_st, timeout_ev >
// +----------------+---------------+--------------+------------------+----------------------+
>;
// clang-format on
};
struct searching_cell {
void enter(phy_controller* f);
};
private:
phy_interface_rrc_lte* phy = nullptr;
srslte::task_sched_handle task_sched;
srslte::event_observer<bool> cell_selection_once_observer;
std::function<void(uint32_t, uint32_t, bool)> cell_selection_always_observer;
srslte::event_dispatcher<cell_srch_res> cell_search_observers;
uint32_t nof_pending_configs = 0;
std::array<srslte::phy_cfg_t, SRSLTE_MAX_CARRIERS> current_cells_cfg = {};
std::bitset<SRSLTE_MAX_CARRIERS> current_scells_cfg = {};
bool set_cell_config_common(const srslte::phy_cfg_t& cfg, uint32_t cc_idx, bool is_set);
protected:
state_list<unknown_st, in_sync_st, out_sync_st, searching_cell, selecting_cell> states{this,
unknown_st{},
in_sync_st{},
out_sync_st{},
searching_cell{},
selecting_cell{this}};
// event handlers
void handle_cell_search_res(searching_cell& s, const cell_srch_res& result);
// clang-format off
using c = phy_controller;
using transitions = transition_table<
// Start Target Event Action
// +----------------+-----------------+------------------+------------------------------+
row< unknown_st, selecting_cell, cell_sel_cmd >,
row< unknown_st, searching_cell, cell_search_cmd >,
row< unknown_st, in_sync_st, in_sync_ev >,
row< unknown_st, out_sync_st, out_sync_ev >,
// +----------------+-----------------+------------------+------------------------------+
row< in_sync_st, selecting_cell, cell_sel_cmd >,
row< in_sync_st, searching_cell, cell_search_cmd >,
row< in_sync_st, out_sync_st, out_sync_ev >,
// +----------------+-----------------+------------------+------------------------------+
row< out_sync_st, selecting_cell, cell_sel_cmd >,
row< out_sync_st, searching_cell, cell_search_cmd >,
row< out_sync_st, in_sync_st, in_sync_ev >,
// +----------------+-----------------+------------------+------------------------------+
row< searching_cell, unknown_st, cell_srch_res, &c::handle_cell_search_res >
// +----------------+-----------------+------------------+------------------------------+
>;
// clang-format on
};
} // namespace srsue
#endif // SRSLTE_PHY_CONTROLLER_H