mirror of https://github.com/PentHertz/srsLTE.git
Merge branch 'next'
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commit
33bae5898a
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@ -528,9 +528,9 @@ int update_radl() {
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srslte_ra_pdsch_fprint(stdout, &ra_dl, cell.nof_prb);
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srslte_ra_dl_grant_t dummy_grant;
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srslte_ra_nbits_t dummy_nbits;
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srslte_ra_nbits_t dummy_nbits[SRSLTE_MAX_CODEWORDS];
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srslte_ra_dl_dci_to_grant(&ra_dl, cell.nof_prb, UE_CRNTI, &dummy_grant);
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srslte_ra_dl_grant_to_nbits(&dummy_grant, cfi, cell, 0, &dummy_nbits);
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srslte_ra_dl_grant_to_nbits(&dummy_grant, cfi, cell, 0, dummy_nbits);
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srslte_ra_dl_grant_fprint(stdout, &dummy_grant);
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dummy_grant.sf_type = SRSLTE_SF_NORM;
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if (pdsch_cfg.mimo_type != SRSLTE_MIMO_TYPE_SINGLE_ANTENNA) {
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@ -133,7 +133,7 @@ void map_simd_dec(map_gen_t * h, int16_t * input[SRSLTE_TDEC_MAX_NPAR], int16_t
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{
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uint32_t nof_cb = 1;
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int16_t *outptr[SRSLTE_TDEC_MAX_NPAR];
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int16_t *outptr[SRSLTE_TDEC_MAX_NPAR] = { NULL, NULL };
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// Compute branch metrics
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switch(cb_mask) {
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@ -85,6 +85,10 @@ void map_sse_inter_beta(srslte_tdec_simd_inter_t * s, int16_t *input, int16_t *p
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__m128i *outputPtr = (__m128i*) output;
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__m128i *alphaPtr = (__m128i*) s->alpha;
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for (int i = 0; i < 8; i++) {
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old[i] = _mm_set1_epi16(0);
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}
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for (int k = end - 1; k >= 0; k--) {
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x = _mm_load_si128(inputPtr++);
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y = _mm_load_si128(parityPtr++);
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@ -97,7 +97,11 @@ char* rf_soapy_devname(void* h)
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bool rf_soapy_rx_wait_lo_locked(void *h)
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{
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printf("TODO: implement rf_soapy_rx_wait_lo_locked()\n");
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rf_soapy_handler_t *handler = (rf_soapy_handler_t*)h;
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char *ret = SoapySDRDevice_readChannelSensor(handler->device, SOAPY_SDR_RX, 0, "lo_locked");
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if (ret != NULL) {
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return (strcmp(ret, "true") == 0 ? true : false);
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}
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return true;
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}
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@ -212,7 +216,7 @@ int rf_soapy_open_multi(char *args, void **h, uint32_t nof_rx_antennas)
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SoapySDRDevice *sdr = SoapySDRDevice_make(&(soapy_args[0]));
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if (sdr == NULL) {
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printf("failed to create SOAPY object\n");
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printf("Failed to create Soapy object\n");
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return SRSLTE_ERROR;
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}
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@ -225,7 +229,7 @@ int rf_soapy_open_multi(char *args, void **h, uint32_t nof_rx_antennas)
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handler->rx_stream_active = false;
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handler->devname = devname;
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if(SoapySDRDevice_getNumChannels(handler->device,SOAPY_SDR_RX) > 0){
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printf("setting up RX stream\n");
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printf("Setting up RX stream\n");
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if(SoapySDRDevice_setupStream(handler->device, &(handler->rxStream), SOAPY_SDR_RX, SOAPY_SDR_CF32, NULL, 0, NULL) != 0) {
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printf("Rx setupStream fail: %s\n", SoapySDRDevice_lastError());
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return SRSLTE_ERROR;
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@ -233,19 +237,27 @@ int rf_soapy_open_multi(char *args, void **h, uint32_t nof_rx_antennas)
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}
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if(SoapySDRDevice_getNumChannels(handler->device,SOAPY_SDR_TX) > 0){
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printf("setting up TX stream\n");
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printf("Setting up TX stream\n");
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if (SoapySDRDevice_setupStream(handler->device, &(handler->txStream), SOAPY_SDR_TX, SOAPY_SDR_CF32, NULL, 0, NULL) != 0) {
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printf("Tx setupStream fail: %s\n", SoapySDRDevice_lastError());
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return SRSLTE_ERROR;
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}
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}
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// list device sensors
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size_t sensor_length;
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char** sensors;
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sensors = SoapySDRDevice_listSensors(handler->device, &sensor_length);
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for(int i = 0; i < sensor_length;i++)
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{
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printf("available sensors are : \n");
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puts(sensors[i]);
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printf("Available device sensors: \n");
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for(int i = 0; i < sensor_length; i++) {
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printf(" - %s\n", sensors[i]);
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}
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// list channel sensors
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sensors = SoapySDRDevice_listChannelSensors(handler->device, SOAPY_SDR_RX, 0, &sensor_length);
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printf("Available sensors for RX channel 0: \n");
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for(int i = 0; i < sensor_length; i++) {
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printf(" - %s\n", sensors[i]);
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}
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return SRSLTE_SUCCESS;
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@ -408,6 +420,7 @@ int rf_soapy_recv_with_time_multi(void *h,
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rf_soapy_handler_t *handler = (rf_soapy_handler_t*) h;
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int flags; //flags set by receive operation
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int num_channels = 1; // temp
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const long timeoutUs = 1000000; // arbitrarily chosen
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int trials = 0;
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int ret = 0;
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@ -424,7 +437,7 @@ int rf_soapy_recv_with_time_multi(void *h,
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cf_t *data_c = (cf_t*) data[i];
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buffs_ptr[i] = &data_c[n];
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}
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ret = SoapySDRDevice_readStream(handler->device, handler->rxStream, buffs_ptr, rx_samples, &flags, &timeNs, 1000000);
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ret = SoapySDRDevice_readStream(handler->device, handler->rxStream, buffs_ptr, rx_samples, &flags, &timeNs, timeoutUs);
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if(ret < 0) {
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// continue when getting overflows
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if (ret == SOAPY_SDR_OVERFLOW) {
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@ -447,8 +460,6 @@ int rf_soapy_recv_with_time_multi(void *h,
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trials++;
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} while (n < nsamples && trials < 100);
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return n;
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}
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@ -212,6 +212,7 @@ bool sched_ue::pucch_sr_collision(uint32_t current_tti, uint32_t n_cce)
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return false;
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}
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srslte_pucch_sched_t pucch_sched;
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pucch_sched.sps_enabled = false;
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pucch_sched.n_pucch_sr = cfg.sr_N_pucch;
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pucch_sched.n_pucch_2 = cfg.n_pucch_cqi;
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pucch_sched.N_pucch_1 = cfg.pucch_cfg.n1_pucch_an;
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