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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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#include "srsenb/hdr/metrics_stdout.h"
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#include "srsran/phy/utils/vector.h"
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#include <float.h>
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#include <iomanip>
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#include <iostream>
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#include <math.h>
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#include <sstream>
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#include <stdlib.h>
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#include <unistd.h>
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#include <stdio.h>
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#include <string.h>
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using namespace std;
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namespace srsenb {
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char const* const prefixes[2][9] = {
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{
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"",
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"m",
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"u",
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"n",
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"p",
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"f",
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"a",
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"z",
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"y",
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},
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{
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"",
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"k",
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"M",
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"G",
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"T",
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"P",
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"E",
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"Z",
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"Y",
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},
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};
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metrics_stdout::metrics_stdout() : do_print(false), n_reports(10), enb(NULL) {}
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void metrics_stdout::set_handle(enb_metrics_interface* enb_)
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{
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enb = enb_;
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}
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void metrics_stdout::toggle_print(bool b)
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{
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do_print = b;
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}
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// Define iszero() here since it's not defined in some platforms
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static bool iszero(float x)
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{
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return fabsf(x) < 2 * DBL_EPSILON;
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}
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void metrics_stdout::set_metrics_helper(uint32_t num_ue,
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const mac_metrics_t& mac,
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const std::vector<phy_metrics_t>& phy,
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bool is_nr)
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{
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for (size_t i = 0; i < num_ue; i++) {
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// make sure we have stats for MAC and PHY layer too
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if (i >= mac.ues.size() || ((i >= phy.size()) && !is_nr)) {
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break;
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}
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if (mac.ues[i].tx_errors > mac.ues[i].tx_pkts) {
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fmt::print("tx caution errors {} > {}\n", mac.ues[i].tx_errors, mac.ues[i].tx_pkts);
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}
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if (mac.ues[i].rx_errors > mac.ues[i].rx_pkts) {
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fmt::print("rx caution errors {} > {}\n", mac.ues[i].rx_errors, mac.ues[i].rx_pkts);
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}
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fmt::print("{:>3.5}", (is_nr) ? "nr" : "lte");
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fmt::print("{:>5x}", mac.ues[i].rnti);
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if (not iszero(mac.ues[i].dl_cqi)) {
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fmt::print(" {:>3}", int(mac.ues[i].dl_cqi));
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} else {
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fmt::print(" {:>3.3}", "n/a");
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}
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fmt::print(" {:>1}", int(mac.ues[i].dl_ri));
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float dl_mcs = (is_nr) ? mac.ues[i].dl_mcs : phy[i].dl.mcs;
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if (not isnan(dl_mcs)) {
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fmt::print(" {:>2}", int(dl_mcs));
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} else {
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fmt::print(" {:>2}", 0);
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}
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if (mac.ues[i].tx_brate > 0) {
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fmt::print(" {:>6.6}", float_to_eng_string((float)mac.ues[i].tx_brate / (mac.ues[i].nof_tti * 1e-3), 1));
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} else {
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fmt::print(" {:>6}", 0);
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}
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fmt::print(" {:>4}", mac.ues[i].tx_pkts - mac.ues[i].tx_errors);
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fmt::print(" {:>4}", mac.ues[i].tx_errors);
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if (mac.ues[i].tx_pkts > 0 && mac.ues[i].tx_errors) {
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fmt::print(" {:>3}%", int((float)100 * mac.ues[i].tx_errors / mac.ues[i].tx_pkts));
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} else {
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fmt::print(" {:>3}%", 0);
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}
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fmt::print(" |");
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auto clamp_sinr = [](float sinr) {
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if (sinr > 99.9f) {
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return 99.9f;
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}
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if (sinr < -99.9f) {
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return -99.9f;
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}
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return sinr;
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};
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float pusch_sinr = (is_nr) ? mac.ues[i].pusch_sinr : phy[i].ul.pusch_sinr;
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if (not isnan(pusch_sinr) and not iszero(pusch_sinr)) {
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fmt::print(" {:>5.1f}", clamp_sinr(pusch_sinr));
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} else {
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fmt::print(" {:>5.5}", "n/a");
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}
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float pucch_sinr = (is_nr) ? mac.ues[i].pucch_sinr : phy[i].ul.pucch_sinr;
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if (not isnan(pucch_sinr) and not iszero(pucch_sinr)) {
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fmt::print(" {:>5.1f}", clamp_sinr(pucch_sinr));
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} else {
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fmt::print(" {:>5.5}", "n/a");
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}
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int phr = (is_nr) ? mac.ues[i].phr : mac.ues[i].phr;
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fmt::print(" {:>3}", int(phr));
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if (not isnan(phr)) {
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fmt::print(" {:>2}", int(phr));
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} else {
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fmt::print(" {:>2}", 0);
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}
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if (mac.ues[i].rx_brate > 0) {
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fmt::print(" {:>6.6}", float_to_eng_string((float)mac.ues[i].rx_brate / (mac.ues[i].nof_tti * 1e-3), 1));
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} else {
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fmt::print(" {:>6}", 0);
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}
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fmt::print(" {:>4}", mac.ues[i].rx_pkts - mac.ues[i].rx_errors);
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fmt::print(" {:>4}", mac.ues[i].rx_errors);
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if (mac.ues[i].rx_pkts > 0 && mac.ues[i].rx_errors > 0) {
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fmt::print(" {:>3}%", int((float)100 * mac.ues[i].rx_errors / mac.ues[i].rx_pkts));
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} else {
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fmt::print(" {:>3}%", 0);
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}
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fmt::print(" {:>6.6}", float_to_eng_string(mac.ues[i].ul_buffer, 2));
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fmt::print("\n");
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}
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}
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void metrics_stdout::set_metrics(const enb_metrics_t& metrics, const uint32_t period_usec)
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{
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if (!do_print || enb == nullptr) {
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return;
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}
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if (metrics.rf.rf_error) {
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fmt::print("RF status: O={}, U={}, L={}\n", metrics.rf.rf_o, metrics.rf.rf_u, metrics.rf.rf_l);
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}
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if (metrics.stack.rrc.ues.size() == 0) {
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return;
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}
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if (++n_reports > 10) {
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n_reports = 0;
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fmt::print("\n");
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fmt::print(" -----------------DL----------------|-------------------------UL-------------------------\n");
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fmt::print("rat rnti cqi ri mcs brate ok nok (%) | pusch pucch phr mcs brate ok nok (%) bsr\n");
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}
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set_metrics_helper(metrics.stack.rrc.ues.size(), metrics.stack.mac, metrics.phy, false);
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set_metrics_helper(metrics.nr_stack.mac.ues.size(), metrics.nr_stack.mac, metrics.phy, true);
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}
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std::string metrics_stdout::float_to_string(float f, int digits, int field_width)
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{
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std::ostringstream os;
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int precision;
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if (isnan(f) or fabs(f) < 0.0001) {
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f = 0.0;
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precision = digits - 1;
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} else {
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precision = digits - (int)(log10f(fabs(f + 0.0001)) - 2 * DBL_EPSILON);
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}
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if (precision == -1) {
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precision = 0;
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}
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os << std::setw(field_width) << std::fixed << std::setprecision(precision) << f;
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return os.str();
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}
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std::string metrics_stdout::float_to_eng_string(float f, int digits)
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{
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const int degree = (f == 0.0) ? 0 : lrint(floor(log10f(fabs(f)) / 3));
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std::string factor;
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if (abs(degree) < 9) {
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if (degree < 0)
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factor = prefixes[0][abs(degree)];
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else
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factor = prefixes[1][abs(degree)];
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} else {
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return "failed";
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}
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const double scaled = f * pow(1000.0, -degree);
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if (degree != 0) {
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return float_to_string(scaled, digits, 5) + factor;
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} else {
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return " " + float_to_string(scaled, digits, 5 - factor.length()) + factor;
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}
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}
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} // namespace srsenb
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