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@ -36,53 +36,53 @@
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#define SRSLTE_WIENER_LOCAL
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#define SRSLTE_WIENER_LOCAL
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// Constants
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// Constants
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const float hlsv_sum_norm[SRSLTE_WIENER_DL_MIN_RE] = {0.0625,
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const float hlsv_sum_norm[SRSLTE_WIENER_DL_MIN_RE] = {0.0625f,
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0.0638297872326845,
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0.0638297872326845f,
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0.0652173913015123,
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0.0652173913015123f,
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0.0666666666622222,
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0.0666666666622222f,
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0.0681818181756198,
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0.0681818181756198f,
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0.0697674418523526,
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0.0697674418523526f,
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0.0714285714183674,
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0.0714285714183674f,
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0.0731707316948245,
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0.0731707316948245f,
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0.074999999985,
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0.074999999985f,
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0.0769230769053254,
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0.0769230769053254f,
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0.078947368400277,
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0.078947368400277f,
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0.0810810810569759,
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0.0810810810569759f,
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0.0833333333055555,
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0.0833333333055555f,
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0.085714285682449,
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0.085714285682449f,
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0.0882352940813149,
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0.0882352940813149f,
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0.0909090908677686,
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0.0909090908677686f,
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0.093749999953125,
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0.093749999953125f,
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0.0967741934953174,
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0.0967741934953174f,
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0.09999999994,
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0.09999999994f,
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0.103448275794293,
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0.103448275794293f,
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0.107142857066327,
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0.107142857066327f,
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0.111111111024691,
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0.111111111024691f,
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0.115384615286982,
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0.115384615286982f,
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0.1199999998896,
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0.1199999998896f,
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0.124999999875,
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0.124999999875f,
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0.130434782466919,
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0.130434782466919f,
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0.136363636202479,
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0.136363636202479f,
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0.142857142673469,
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0.142857142673469f,
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0.14999999979,
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0.14999999979f,
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0.157894736601108,
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0.157894736601108f,
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0.166666666388889,
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0.166666666388889f,
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0.176470587913495,
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0.176470587913495f,
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0.187499999625,
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0.187499999625f,
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0.19999999956,
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0.19999999956f,
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0.214285713765306,
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0.214285713765306f,
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0.230769230147929,
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0.230769230147929f,
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0.24999999925,
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0.24999999925f,
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0.272727271809917,
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0.272727271809917f,
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0.29999999886,
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0.29999999886f,
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0.333333331888889,
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0.333333331888889f,
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0.374999998125,
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0.374999998125f,
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0.428571426061225,
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0.428571426061225f,
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0.4999999965,
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0.4999999965f,
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0.59999999484,
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0.59999999484f,
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0.74999999175,
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0.74999999175f,
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0.999999985,
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0.999999985f,
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1.4999999655,
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1.4999999655f,
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2.99999985900001};
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2.99999985900001};
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// Local state function prototypes
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// Local state function prototypes
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@ -156,7 +156,7 @@ SRSLTE_WIENER_LOCAL srslte_wiener_dl_state_t* srslte_wiener_dl_state_malloc(srsl
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}
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}
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for (uint32_t i = 0; i < SRSLTE_WIENER_DL_CXFIFO_SIZE && !ret; i++) {
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for (uint32_t i = 0; i < SRSLTE_WIENER_DL_CXFIFO_SIZE && !ret; i++) {
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state->cxfifo[i] = srslte_vec_malloc(NSAMPLES2NBYTES(SRSLTE_WIENER_DL_MIN_RE));
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state->cxfifo[i] = srslte_vec_malloc(NSAMPLES2NBYTES(SRSLTE_WIENER_DL_TIMEFIFO_SIZE));
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if (!state->cxfifo[i]) {
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if (!state->cxfifo[i]) {
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perror("malloc");
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perror("malloc");
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ret = SRSLTE_ERROR;
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ret = SRSLTE_ERROR;
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@ -201,7 +201,7 @@ SRSLTE_WIENER_LOCAL void srslte_wiener_dl_state_reset(srslte_wiener_dl_t* q, srs
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bzero(state->timefifo, NSAMPLES2NBYTES(SRSLTE_WIENER_DL_TIMEFIFO_SIZE));
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bzero(state->timefifo, NSAMPLES2NBYTES(SRSLTE_WIENER_DL_TIMEFIFO_SIZE));
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for (uint32_t i = 0; i < SRSLTE_WIENER_DL_CXFIFO_SIZE; i++) {
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for (uint32_t i = 0; i < SRSLTE_WIENER_DL_CXFIFO_SIZE; i++) {
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bzero(state->cxfifo[i], NSAMPLES2NBYTES(SRSLTE_WIENER_DL_TFIFO_SIZE));
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bzero(state->cxfifo[i], NSAMPLES2NBYTES(SRSLTE_WIENER_DL_TIMEFIFO_SIZE));
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}
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}
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// Initialise counters and variables
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// Initialise counters and variables
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@ -457,8 +457,8 @@ SRSLTE_WIENER_LOCAL uint32_t vec_find_first_smaller_than_cf(cf_t* x, float y, ui
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uint32_t ret = n;
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uint32_t ret = n;
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for (uint32_t i = pos; i < n && ret == n; i++) {
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for (uint32_t i = pos; i < n && ret == n; i++) {
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if (cabsf(x[i]) > y) {
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if (cabsf(x[i]) <= y) {
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ret = i;
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ret = i - pos + 1;
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}
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}
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}
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}
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@ -523,12 +523,11 @@ static void estimate_wiener(srslte_wiener_dl_t* q,
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// Estimate center Resource elements
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// Estimate center Resource elements
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if (q->nof_re > 2 * SRSLTE_WIENER_DL_MIN_RE) {
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if (q->nof_re > 2 * SRSLTE_WIENER_DL_MIN_RE) {
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for (uint32_t prb = SRSLTE_WIENER_DL_MIN_PRB / 2; prb < q->nof_prb - SRSLTE_WIENER_DL_MIN_REF / 2;
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for (uint32_t prb = 2; prb < q->nof_prb - 2; prb += 2) {
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prb += SRSLTE_WIENER_DL_MIN_PRB / 2) {
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p_offset = (prb - 1) * 2;
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uint32_t ref_idx = prb * 2 - SRSLTE_WIENER_DL_MIN_REF / 2;
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r_offset = prb * SRSLTE_NRE;
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uint32_t re_idx = prb * SRSLTE_NRE;
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for (uint32_t i = 0; i < SRSLTE_NRE * 2; i++) {
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for (uint32_t i = SRSLTE_WIENER_DL_MIN_RE / 4; i < (3 * SRSLTE_WIENER_DL_MIN_RE) / 4; i++) {
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h[r_offset + i] = _srslte_vec_dot_prod_ccc_simd(&ref[p_offset], wm[i + SRSLTE_NRE], SRSLTE_WIENER_DL_MIN_REF);
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h[re_idx + i] = _srslte_vec_dot_prod_ccc_simd(&ref[ref_idx], wm[i], SRSLTE_WIENER_DL_MIN_REF);
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}
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}
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}
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}
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}
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}
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@ -555,7 +554,7 @@ srslte_wiener_dl_run_symbol_1_8(srslte_wiener_dl_t* q, srslte_wiener_dl_state_t*
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srslte_vec_sc_prod_cfc(q->tmp, 1.0f / SRSLTE_WIENER_DL_CXFIFO_SIZE, q->tmp, SRSLTE_WIENER_DL_TIMEFIFO_SIZE);
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srslte_vec_sc_prod_cfc(q->tmp, 1.0f / SRSLTE_WIENER_DL_CXFIFO_SIZE, q->tmp, SRSLTE_WIENER_DL_TIMEFIFO_SIZE);
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// Find index of half amplitude
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// Find index of half amplitude
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uint32_t halfcx = vec_find_first_smaller_than_cf(q->tmp, cabsf(q->tmp[1]) * 0.5f, SRSLTE_WIENER_DL_TFIFO_SIZE, 2);
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uint32_t halfcx = vec_find_first_smaller_than_cf(q->tmp, cabsf(q->tmp[1]) * 0.5f, SRSLTE_WIENER_DL_TIMEFIFO_SIZE, 2);
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// Update internal states
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// Update internal states
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state->sumlen = SRSLTE_MAX(1, floorf(halfcx / 8.0f * SRSLTE_MIN(2.0f, 1.0f + 1.0f / snr_lin)));
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state->sumlen = SRSLTE_MAX(1, floorf(halfcx / 8.0f * SRSLTE_MIN(2.0f, 1.0f + 1.0f / snr_lin)));
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@ -621,7 +620,7 @@ SRSLTE_WIENER_LOCAL void srslte_wiener_dl_run_symbol_5_12(srslte_wiener_dl_t*
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} else if (nsbb >= (q->nof_prb / 2) - 1) {
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} else if (nsbb >= (q->nof_prb / 2) - 1) {
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pstart = q->nof_ref - SRSLTE_WIENER_DL_MIN_REF;
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pstart = q->nof_ref - SRSLTE_WIENER_DL_MIN_REF;
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} else {
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} else {
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pstart = (SRSLTE_WIENER_DL_MIN_REF / 2) * nsbb - 1;
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pstart = (SRSLTE_WIENER_DL_MIN_REF / 2) * nsbb - 2;
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}
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}
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bzero(q->hlsv, NSAMPLES2NBYTES(SRSLTE_WIENER_DL_MIN_RE));
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bzero(q->hlsv, NSAMPLES2NBYTES(SRSLTE_WIENER_DL_MIN_RE));
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@ -693,7 +692,12 @@ SRSLTE_WIENER_LOCAL void srslte_wiener_dl_run_symbol_5_12(srslte_wiener_dl_t*
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}
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}
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// Add noise contribution to the square wiener
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// Add noise contribution to the square wiener
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float N = (__real__ q->acV[0] / SRSLTE_MIN(15, snr_lin * state->sumlen));
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float N = 0.0f;
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if (isnormal(__real__ q->acV[0]) && isnormal(snr_lin) && state->sumlen > 0) {
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N = (__real__ q->acV[0] / SRSLTE_MIN(15, snr_lin * state->sumlen));
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}
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for (uint32_t i = 0; i < SRSLTE_WIENER_DL_MIN_REF; i++) {
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for (uint32_t i = 0; i < SRSLTE_WIENER_DL_MIN_REF; i++) {
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q->RH.m[i][i] += N;
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q->RH.m[i][i] += N;
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}
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}
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@ -724,20 +728,14 @@ SRSLTE_WIENER_LOCAL void srslte_wiener_dl_run_symbol_5_12(srslte_wiener_dl_t*
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// Compute Wiener matrices
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// Compute Wiener matrices
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for (uint32_t dim1 = 0; dim1 < SRSLTE_WIENER_DL_MIN_RE; dim1++) {
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for (uint32_t dim1 = 0; dim1 < SRSLTE_WIENER_DL_MIN_RE; dim1++) {
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for (uint32_t dim2 = 0; dim2 < SRSLTE_WIENER_DL_MIN_REF; dim2++) {
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for (uint32_t dim2 = 0; dim2 < SRSLTE_WIENER_DL_MIN_REF; dim2++) {
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#if 0
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q->wm2[dim1][dim2] = 0;
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q->wm2[dim1][dim2] = 0;
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for (int i = 0; i < SRSLTE_WIENER_DL_MIN_REF; i++) {
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for (int i = 0; i < SRSLTE_WIENER_DL_MIN_REF; i++) {
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q->wm2[dim1][dim2] += q->hH2[dim1][i] * q->invRH.m[dim2][i];
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q->wm2[dim1][dim2] += q->hH2[dim1][i] * q->invRH.m[i][dim2];
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}
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}
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q->wm1[dim1][dim2] = 0;
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q->wm1[dim1][dim2] = 0;
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for (int i = 0; i < SRSLTE_WIENER_DL_MIN_REF; i++) {
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for (int i = 0; i < SRSLTE_WIENER_DL_MIN_REF; i++) {
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q->wm1[dim1][dim2] += q->hH1[dim1][i] * q->invRH.m[dim2][i];
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q->wm1[dim1][dim2] += q->hH1[dim1][i] * q->invRH.m[i][dim2];
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}
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}
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#else
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q->wm1[dim1][dim2] = srslte_vec_dot_prod_ccc(q->hH1[dim1], q->invRH.m[dim2], SRSLTE_WIENER_DL_MIN_REF);
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q->wm2[dim1][dim2] = srslte_vec_dot_prod_ccc(q->hH2[dim1], q->invRH.m[dim2], SRSLTE_WIENER_DL_MIN_REF);
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#endif
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}
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}
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}
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}
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q->wm_computed = true;
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q->wm_computed = true;
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