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203 lines
6.3 KiB
C++
203 lines
6.3 KiB
C++
/**
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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 SRSRAN_TPC_H
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#define SRSRAN_TPC_H
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#include "srsran/adt/accumulators.h"
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#include "srsran/common/common.h"
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#include "srsran/srslog/srslog.h"
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namespace srsenb {
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/**
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* Class to handle TPC Commands sent to the UE.
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* The TPC value sent to the UE in each DCI is a result of:
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* - the difference between the target SINR and the windowed average of past UE UL SNR estimates
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* - subtracted by the sum of TPC values sent since the last PHR
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*/
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class tpc
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{
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static constexpr int undefined_phr = std::numeric_limits<int>::max();
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static constexpr float null_snr = std::numeric_limits<float>::max();
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static constexpr uint32_t nof_ul_ch_code = 2;
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public:
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static constexpr uint32_t PUSCH_CODE = 0, PUCCH_CODE = 1;
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static constexpr int PHR_NEG_NOF_PRB = 1;
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explicit tpc(uint32_t cell_nof_prb,
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float target_pucch_snr_dB_ = -1.0,
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float target_pusch_sn_dB_ = -1.0,
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bool phr_handling_flag_ = false) :
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nof_prb(cell_nof_prb),
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target_pucch_snr_dB(target_pucch_snr_dB_),
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target_pusch_snr_dB(target_pusch_sn_dB_),
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snr_estim_list({ul_ch_snr_estim{target_pusch_snr_dB}, ul_ch_snr_estim{target_pucch_snr_dB}}),
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phr_handling_flag(phr_handling_flag_)
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{
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max_prbs_cached = nof_prb;
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}
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void set_cfg(float target_pusch_snr_dB_, float target_pucch_snr_dB_)
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{
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target_pucch_snr_dB = target_pucch_snr_dB_;
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target_pusch_snr_dB = target_pusch_snr_dB_;
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}
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void set_snr(float snr, uint32_t ul_ch_code)
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{
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if (ul_ch_code < nof_ul_ch_code) {
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snr_estim_list[ul_ch_code].pending_snr = snr;
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}
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}
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void set_phr(int phr_)
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{
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last_phr = phr_;
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for (auto& ch_snr : snr_estim_list) {
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ch_snr.phr_flag = false;
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}
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// compute and cache the max nof UL PRBs that avoids overflowing PHR
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if (phr_handling_flag) {
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max_prbs_cached = PHR_NEG_NOF_PRB;
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for (int n = nof_prb; n > PHR_NEG_NOF_PRB; --n) {
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if (last_phr >= 10 * log10(n)) {
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max_prbs_cached = n;
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break;
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}
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}
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}
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}
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void new_tti()
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{
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for (size_t chidx = 0; chidx < 2; ++chidx) {
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float target_snr_dB = chidx == PUSCH_CODE ? target_pusch_snr_dB : target_pucch_snr_dB;
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auto& ch_snr = snr_estim_list[chidx];
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if (target_snr_dB < 0) {
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ch_snr.pending_delta = 0;
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continue;
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}
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// Enqueue pending UL Channel SNR measurement
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if (ch_snr.pending_snr == null_snr) {
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ch_snr.last_snr_sample_count++;
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ch_snr.acc_tpc_values += ch_snr.win_tpc_values.oldest();
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} else {
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ch_snr.acc_tpc_values = 0;
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ch_snr.snr_avg.push(ch_snr.pending_snr, ch_snr.last_snr_sample_count);
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ch_snr.last_snr_sample_count = 1;
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}
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ch_snr.pending_snr = null_snr;
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// Enqueue PUSCH/PUCCH TPC sent in last TTI (zero for both Delta_PUSCH/Delta_PUCCH=0 and TPC not sent)
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ch_snr.win_tpc_values.push(ch_snr.pending_delta);
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ch_snr.pending_delta = 0;
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}
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}
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/**
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* Called during DCI format0 encoding to set PUSCH TPC command
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* @remark See TS 36.213 Section 5.1.1
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* @return accumulated TPC value {-1, 0, 1, 3}
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*/
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uint8_t encode_pusch_tpc() { return enconde_tpc(PUSCH_CODE); }
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/**
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* Called during DCI format1/2A/A encoding to set PUCCH TPC command
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* @remark See TS 36.213 Section 5.1.2
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* @return accumulated TPC value {-1, 0, 1, 3}
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*/
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uint8_t encode_pucch_tpc() { return enconde_tpc(PUCCH_CODE); }
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uint32_t max_ul_prbs() const { return max_prbs_cached; }
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private:
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uint8_t encode_tpc_delta(int8_t delta)
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{
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switch (delta) {
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case -1:
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return 0;
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case 0:
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return 1;
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case 1:
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return 2;
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case 3:
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return 3;
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default:
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srslog::fetch_basic_logger("MAC").warning("Invalid TPC delta value=%d", delta);
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return 1;
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}
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}
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uint8_t enconde_tpc(uint32_t cc)
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{
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float target_snr_dB = cc == PUSCH_CODE ? target_pusch_snr_dB : target_pucch_snr_dB;
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auto& ch_snr = snr_estim_list[cc];
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assert(ch_snr.pending_delta == 0); // ensure called once per {cc,tti}
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if (target_snr_dB < 0) {
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// undefined target SINR case. Increase Tx power once per PHR, considering the number of allocable PRBs remains
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// unchanged
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if (not ch_snr.phr_flag) {
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ch_snr.pending_delta = (max_prbs_cached == nof_prb) ? 1 : (last_phr < 0 ? -1 : 0);
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ch_snr.phr_flag = true;
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}
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} else {
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// target SINR is finite and there is power headroom
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float diff = target_snr_dB - ch_snr.snr_avg.value();
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diff -= ch_snr.win_tpc_values.value() + ch_snr.acc_tpc_values;
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int8_t diff_round = roundf(diff);
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if (diff_round >= 1) {
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ch_snr.pending_delta = diff_round > 3 ? 3 : 1;
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} else if (diff_round <= -1) {
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ch_snr.pending_delta = -1;
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}
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if (last_phr <= 0) {
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// In case there is no headroom, forbid power increases
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ch_snr.pending_delta = std::min(ch_snr.pending_delta, 0);
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}
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}
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return encode_tpc_delta(ch_snr.pending_delta);
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}
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uint32_t nof_prb;
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float target_pucch_snr_dB, target_pusch_snr_dB;
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bool phr_handling_flag;
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// PHR-related variables
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int last_phr = undefined_phr;
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uint32_t max_prbs_cached = 100;
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// SNR estimation
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struct ul_ch_snr_estim {
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// flag used in undefined target SINR case
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bool phr_flag = false;
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// pending new snr sample
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float pending_snr = srsran::null_sliding_average<float>::null_value();
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// SNR average estimation with irregular sample spacing
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uint32_t last_snr_sample_count = 1; // jump in spacing
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srsran::exp_average_irreg_sampling<float> snr_avg;
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// Accumulation of past TPC commands
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srsran::sliding_sum<int> win_tpc_values;
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int pending_delta = 0;
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int acc_tpc_values = 0;
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explicit ul_ch_snr_estim(float target_ul_snr = -1) :
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snr_avg(0.1, target_ul_snr), win_tpc_values(FDD_HARQ_DELAY_UL_MS + FDD_HARQ_DELAY_DL_MS)
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{}
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};
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std::array<ul_ch_snr_estim, nof_ul_ch_code> snr_estim_list;
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};
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} // namespace srsenb
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#endif // SRSRAN_TPC_H
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