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252 lines
6.0 KiB
C
252 lines
6.0 KiB
C
/**
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*
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* \section COPYRIGHT
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*
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* Copyright 2013-2014 The libLTE Developers. See the
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* COPYRIGHT file at the top-level directory of this distribution.
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*
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* \section LICENSE
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*
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* This file is part of the libLTE library.
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*
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* libLTE is free software: you can redistribute it and/or modify
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* it under the terms of the GNU Lesser 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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* libLTE 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 Lesser General Public License for more details.
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*
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* A copy of the GNU Lesser 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 <stdio.h>
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#include <stdlib.h>
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#include <string.h>
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#include <strings.h>
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#include <unistd.h>
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#include <math.h>
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#include <complex.h>
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#include <sys/time.h>
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#include <unistd.h>
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#include <assert.h>
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#include <signal.h>
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#include "liblte/phy/phy.h"
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#include "liblte/cuhd/cuhd.h"
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void *uhd;
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#ifndef DISABLE_GRAPHICS
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#include "liblte/graphics/plot.h"
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plot_real_t poutfft;
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#endif
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int nof_frames = -1;
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float threshold = -1.0;
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float uhd_freq = 0.0, uhd_gain = 20.0;
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char *uhd_args = "";
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int disable_plots = 0;
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void usage(char *prog) {
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printf("Usage: %s [agntdv] -f uhd_freq\n", prog);
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printf("\t-a UHD args [Default %s]\n", uhd_args);
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printf("\t-g UHD RX gain [Default %.2f dB]\n", uhd_gain);
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printf("\t-n nof_frames [Default infinite]\n");
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printf("\t-t threshold [Default %.2f]\n",threshold);
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#ifndef DISABLE_GRAPHICS
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printf("\t-d disable plots [Default enabled]\n");
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#endif
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printf("\t-v [set verbose to debug, default none]\n");
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}
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void parse_args(int argc, char **argv) {
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int opt;
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while ((opt = getopt(argc, argv, "agntdvf")) != -1) {
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switch (opt) {
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case 'n':
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nof_frames = atoi(argv[optind]);
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break;
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case 'a':
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uhd_args = argv[optind];
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break;
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case 'g':
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uhd_gain = atof(argv[optind]);
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break;
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case 'f':
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uhd_freq = atof(argv[optind]);
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break;
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case 't':
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threshold = atof(argv[optind]);
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break;
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case 'd':
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disable_plots = 1;
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break;
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case 'v':
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verbose++;
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break;
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default:
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usage(argv[0]);
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exit(-1);
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}
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}
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if (uhd_freq == 0.0) {
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usage(argv[0]);
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exit(-1);
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}
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}
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void input_init() {
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printf("Opening UHD device...\n");
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if (cuhd_open(uhd_args, &uhd)) {
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fprintf(stderr, "Error opening uhd\n");
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exit(-1);
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}
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cuhd_set_rx_gain(uhd, uhd_gain);
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/* set uhd_freq */
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cuhd_set_rx_freq(uhd, (double) uhd_freq);
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cuhd_rx_wait_lo_locked(uhd);
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DEBUG("Set uhd_freq to %.3f MHz\n", (double ) uhd_freq/1000000);
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DEBUG("Starting receiver...\n", 0);
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cuhd_start_rx_stream(uhd);
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}
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int cuhd_recv_wrapper(void *h, void *data, uint32_t nsamples) {
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DEBUG(" ---- Receive %d samples ---- \n", nsamples);
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return cuhd_recv(h, data, nsamples, 1);
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}
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#ifndef DISABLE_GRAPHICS
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void init_plots() {
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plot_init();
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plot_real_init(&poutfft);
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plot_real_setTitle(&poutfft, "Output FFT - Magnitude");
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plot_real_setLabels(&poutfft, "Index", "dB");
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plot_real_setYAxisScale(&poutfft, -60, 0);
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}
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#endif
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float tmp_plot[100000];
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int main(int argc, char **argv) {
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cf_t *input_buffer, *sf_symbols = NULL;
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int frame_cnt;
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ue_sync_t s;
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int pos;
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pss_synch_t pss;
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float peak;
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struct timeval t[3];
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float mean_ce_time=0;
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bool signal_detected;
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lte_fft_t fft;
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lte_cell_t cell;
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bzero(&cell, sizeof(lte_cell_t));
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parse_args(argc, argv);
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#ifndef DISABLE_GRAPHICS
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if (!disable_plots) {
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init_plots();
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}
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#endif
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input_init();
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if (ue_sync_init(&s, cuhd_set_rx_srate, cuhd_recv_wrapper, uhd)) {
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fprintf(stderr, "Error initiating UE sync module\n");
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exit(-1);
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}
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ue_sync_pbch_enable(&s, true);
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signal_detected = true;
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frame_cnt = 0;
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mean_ce_time=0;
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uint32_t valid_frames=0;
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//uint32_t unaligned = 0;
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while (frame_cnt < nof_frames || nof_frames == -1) {
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int n = ue_sync_get_buffer(&s, &input_buffer);
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if (n < 0) {
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fprintf(stderr, "Error calling sync work()\n");
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exit(-1);
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}
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if (n == 1 && ue_sync_get_sfidx(&s) == 0) {
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if (signal_detected) {
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cell = ue_sync_get_cell(&s);
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pss_synch_init_fft(&pss,
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SF_LEN(lte_symbol_sz(cell.nof_prb), cell.cp),
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lte_symbol_sz(cell.nof_prb));
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pss_synch_set_N_id_2(&pss, cell.id%3);
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sf_symbols = vec_malloc(SLOT_LEN_RE(cell.nof_prb, cell.cp) * sizeof(cf_t));
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if (!sf_symbols) {
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perror("malloc");
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exit(-1);
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}
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lte_fft_init(&fft, cell.cp, cell.nof_prb);
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signal_detected = false;
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}
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mean_ce_time = (float) (mean_ce_time + (float) t[0].tv_usec * valid_frames) / (valid_frames+1);
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valid_frames++;
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#ifndef DISABLE_GRAPHICS
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if (!disable_plots && !(valid_frames % 5) && sf_symbols) {
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/* Run FFT for the second slot */
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lte_fft_run_slot(&fft, input_buffer, sf_symbols);
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int i;
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int nof_re = SLOT_LEN_RE(cell.nof_prb, cell.cp);
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for (i = 0; i < nof_re; i++) {
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tmp_plot[i] = 10 * log10f(cabsf(sf_symbols[i]));
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if (isinf(tmp_plot[i])) {
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tmp_plot[i] = -80;
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}
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}
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plot_real_setNewData(&poutfft, tmp_plot, nof_re);
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}
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#endif
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pos = pss_synch_find_pss(&pss, input_buffer, &peak);
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/*if (pos > 962 || pos < 958) {
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unaligned++;
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}
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*/
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printf("CELL_ID: %3d CFO: %+.4f KHz, SFO: %+.4f Khz, TimeOffset: %4d, Exec: %3.2f\r",
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cell.id, ue_sync_get_cfo(&s)/1000, ue_sync_get_sfo(&s)/1000, pos,
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s.mean_exec_time);
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fflush(stdout);
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if (VERBOSE_ISINFO()) {
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printf("\n");
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}
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}
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frame_cnt++;
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}
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printf("\nBye\n");
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exit(0);
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}
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