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@ -549,18 +549,19 @@ srslte_sync_find_ret_t srslte_sync_find(srslte_sync_t *q, cf_t *input, uint32_t
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srslte_vec_prod_ccc(input_cfo, q->cfo_i_corr[q->cfo_i<0?0:1], input_cfo, q->frame_size);
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INFO("Compensating cfo_i=%d\n", q->cfo_i);
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}
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} else {
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srslte_pss_synch_set_N_id_2(&q->pss, q->N_id_2);
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peak_pos = srslte_pss_synch_find_pss(&q->pss, &input_cfo[find_offset], &q->peak_value);
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// this compensates for the constant time shift caused by the low pass filter
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if(q->decimate && peak_pos < 0)
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{
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peak_pos = 0 ;//peak_pos + q->decimate*(2);// replace 2 with q->filter_size -2;
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}
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if (peak_pos < 0) {
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fprintf(stderr, "Error calling finding PSS sequence at : %d \n", peak_pos);
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return SRSLTE_ERROR;
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}
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}
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srslte_pss_synch_set_N_id_2(&q->pss, q->N_id_2);
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peak_pos = srslte_pss_synch_find_pss(&q->pss, &input_cfo[find_offset], &q->peak_value);
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// this compensates for the constant time shift caused by the low pass filter
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if(q->decimate && peak_pos < 0)
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{
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peak_pos = 0 ;//peak_pos + q->decimate*(2);// replace 2 with q->filter_size -2;
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}
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if (peak_pos < 0) {
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fprintf(stderr, "Error calling finding PSS sequence at : %d \n", peak_pos);
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return SRSLTE_ERROR;
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}
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if (peak_position) {
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@ -580,11 +581,14 @@ srslte_sync_find_ret_t srslte_sync_find(srslte_sync_t *q, cf_t *input, uint32_t
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/* If peak is over threshold, compute CFO and SSS */
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if (q->peak_value >= q->threshold) {
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ret = SRSLTE_SYNC_FOUND;
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if (q->detect_cp) {
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if (peak_pos + find_offset >= 2*(q->fft_size + SRSLTE_CP_LEN_EXT(q->fft_size))) {
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srslte_sync_set_cp(q, srslte_sync_detect_cp(q, input_cfo, peak_pos + find_offset));
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} else {
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DEBUG("Not enough room to detect CP length. Peak position: %d\n", peak_pos);
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ret = SRSLTE_SYNC_FOUND_NOSPACE;
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}
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}
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@ -597,8 +601,6 @@ srslte_sync_find_ret_t srslte_sync_find(srslte_sync_t *q, cf_t *input, uint32_t
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} else {
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q->mean_cfo2 = SRSLTE_VEC_EMA(cfo2, q->mean_cfo2, q->cfo_ema_alpha);
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}
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ret = SRSLTE_SYNC_FOUND;
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} else {
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ret = SRSLTE_SYNC_FOUND_NOSPACE;
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}
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