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@ -129,13 +129,15 @@ bool fill_dci_sib(prb_interval interv,
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si_sched::si_sched(const bwp_params_t& bwp_cfg_) :
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bwp_cfg(&bwp_cfg_), logger(srslog::fetch_basic_logger(bwp_cfg_.sched_cfg.logger_name))
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{
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// TODO: Get SIB1 other SI msgs config from RRC
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for (uint32_t i = 0; i < bwp_cfg->cell_cfg.sibs.size(); ++i) {
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pending_sis.emplace_back();
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pending_sis[0].n = 0;
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pending_sis[0].len = 77;
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pending_sis[0].period = 160;
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pending_sis[0].win_len = 160;
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pending_sis[0].si_softbuffer = harq_softbuffer_pool::get_instance().get_tx(bwp_cfg->nof_prb());
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si_msg_ctxt_t& si = pending_sis.back();
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si.n = i;
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si.len_bytes = bwp_cfg->cell_cfg.sibs[i].len;
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si.period_frames = bwp_cfg->cell_cfg.sibs[i].period_rf;
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si.win_len_slots = bwp_cfg->cell_cfg.sibs[i].si_window_slots;
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si.si_softbuffer = harq_softbuffer_pool::get_instance().get_tx(bwp_cfg->nof_prb());
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}
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}
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void si_sched::run_slot(bwp_slot_allocator& bwp_alloc)
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@ -152,7 +154,7 @@ void si_sched::run_slot(bwp_slot_allocator& bwp_alloc)
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// Update SI windows
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uint32_t N = bwp_cfg->slots.size();
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for (si_msg_ctxt_t& si : pending_sis) {
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uint32_t x = (si.n - 1) * si.win_len;
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uint32_t x = (si.n - 1) * si.win_len_slots;
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if (not si.win_start.valid()) {
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bool start_window;
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@ -161,20 +163,21 @@ void si_sched::run_slot(bwp_slot_allocator& bwp_alloc)
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start_window = sl_pdcch.slot_idx() == 0 and sl_pdcch.sfn() % 2 == 0;
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} else {
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// 5.2.2.3.2 - Acquisition of SI message
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start_window = (sl_pdcch.sfn() % si.period == x / N) and sl_pdcch.slot_idx() == x % bwp_cfg->slots.size();
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start_window =
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(sl_pdcch.sfn() % si.period_frames == x / N) and sl_pdcch.slot_idx() == x % bwp_cfg->slots.size();
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}
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if (start_window) {
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// If start of SI message window
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si.win_start = sl_pdcch;
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si.n_tx = 0;
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}
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} else if (si.win_start + si.win_len >= sl_pdcch) {
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} else if (si.win_start + si.win_len_slots >= sl_pdcch) {
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// If end of SI message window
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if (si.n == 0) {
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logger.error("SCHED: Could not allocate SIB1, len=%d. Cause: %s", si.len, to_string(si.result));
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logger.error("SCHED: Could not allocate SIB1, len=%d. Cause: %s", si.len_bytes, to_string(si.result));
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} else {
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logger.warning(
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"SCHED: Could not allocate SI message idx=%d, len=%d. Cause: %s", si.n, si.len, to_string(si.result));
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"SCHED: Could not allocate SI message idx=%d, len=%d. Cause: %s", si.n, si.len_bytes, to_string(si.result));
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}
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si.win_start.clear();
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}
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@ -205,9 +208,9 @@ void si_sched::run_slot(bwp_slot_allocator& bwp_alloc)
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si.win_start.clear();
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si.n_tx++;
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if (si.n == 0) {
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logger.debug("SCHED: Allocated SIB1, len=%d.", si.n, si.len);
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logger.debug("SCHED: Allocated SIB1, len=%d.", si.n, si.len_bytes);
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} else {
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logger.debug("SCHED: Allocated SI message idx=%d, len=%d.", si.n, si.len);
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logger.debug("SCHED: Allocated SI message idx=%d, len=%d.", si.n, si.len_bytes);
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}
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}
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}
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