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@ -39,7 +39,9 @@
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#include "srslte/utils/vector.h"
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#include "srslte/utils/debug.h"
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/*******************************************************
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* PACKING FUNCTIONS *
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*******************************************************/
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int srslte_cqi_hl_subband_pack(srslte_cqi_hl_subband_t *msg, uint8_t buff[SRSLTE_CQI_MAX_BITS])
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{
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uint8_t *body_ptr = buff;
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@ -89,6 +91,74 @@ int srslte_cqi_value_pack(srslte_cqi_value_t *value, uint8_t buff[SRSLTE_CQI_MAX
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return -1;
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}
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/*******************************************************
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* UNPACKING FUNCTIONS *
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*******************************************************/
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int srslte_cqi_hl_subband_unpack(uint8_t buff[SRSLTE_CQI_MAX_BITS], srslte_cqi_hl_subband_t *msg)
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{
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uint8_t *body_ptr = buff;
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msg->wideband_cqi = srslte_bit_pack(&body_ptr, 4);
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msg->subband_diff_cqi = srslte_bit_pack(&body_ptr, 2*msg->N);
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return 4+2*msg->N;
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}
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int srslte_cqi_ue_subband_unpack(uint8_t buff[SRSLTE_CQI_MAX_BITS], srslte_cqi_ue_subband_t *msg)
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{
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uint8_t *body_ptr = buff;
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msg->wideband_cqi = srslte_bit_pack(&body_ptr, 4);
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msg->subband_diff_cqi = srslte_bit_pack(&body_ptr, 2);
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msg->subband_diff_cqi = srslte_bit_pack(&body_ptr, msg->L);
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return 4+2+msg->L;
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}
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int srslte_cqi_format2_wideband_unpack(uint8_t buff[SRSLTE_CQI_MAX_BITS], srslte_cqi_format2_wideband_t *msg)
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{
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uint8_t *body_ptr = buff;
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msg->wideband_cqi = srslte_bit_pack(&body_ptr, 4);
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return 4;
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}
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int srslte_cqi_format2_subband_unpack(uint8_t buff[SRSLTE_CQI_MAX_BITS], srslte_cqi_format2_subband_t *msg)
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{
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uint8_t *body_ptr = buff;
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msg->subband_cqi = srslte_bit_pack(&body_ptr, 4);
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msg->subband_label = srslte_bit_pack(&body_ptr, msg->subband_label_2_bits?2:1);
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return 4+(msg->subband_label_2_bits)?2:1;
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}
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int srslte_cqi_value_unpack(uint8_t buff[SRSLTE_CQI_MAX_BITS], srslte_cqi_value_t *value)
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{
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switch(value->type) {
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case SRSLTE_CQI_TYPE_WIDEBAND:
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return srslte_cqi_format2_wideband_unpack(buff, &value->wideband);
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case SRSLTE_CQI_TYPE_SUBBAND:
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return srslte_cqi_format2_subband_unpack(buff, &value->subband);
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case SRSLTE_CQI_TYPE_SUBBAND_UE:
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return srslte_cqi_ue_subband_unpack(buff, &value->subband_ue);
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case SRSLTE_CQI_TYPE_SUBBAND_HL:
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return srslte_cqi_hl_subband_unpack(buff, &value->subband_hl);
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}
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return -1;
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}
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int srslte_cqi_size(srslte_cqi_value_t *value) {
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switch(value->type) {
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case SRSLTE_CQI_TYPE_WIDEBAND:
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return 4;
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case SRSLTE_CQI_TYPE_SUBBAND:
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return 4+(value->subband.subband_label_2_bits)?2:1;
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case SRSLTE_CQI_TYPE_SUBBAND_UE:
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return 4+2+value->subband_ue.L;
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case SRSLTE_CQI_TYPE_SUBBAND_HL:
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return 4+2*value->subband_hl.N;
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}
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return -1;
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}
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bool srslte_cqi_send(uint32_t I_cqi_pmi, uint32_t tti) {
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uint32_t N_p = 0;
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@ -138,6 +208,17 @@ bool srslte_cqi_send(uint32_t I_cqi_pmi, uint32_t tti) {
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}
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// CQI-to-Spectral Efficiency: 36.213 Table 7.2.3-1 */
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static float cqi_to_coderate[16] = {0, 0.1523, 0.2344, 0.3770, 0.6016, 0.8770, 1.1758, 1.4766, 1.9141, 2.4063, 2.7305, 3.3223, 3.9023, 4.5234, 5.1152, 5.5547};
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float srslte_cqi_to_coderate(uint32_t cqi) {
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if (cqi < 16) {
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return cqi_to_coderate[cqi];
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} else {
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return 0;
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}
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}
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/* SNR-to-CQI conversion, got from "Downlink SNR to CQI Mapping for Different Multiple Antenna Techniques in LTE"
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* Table III.
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*/
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