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@ -536,13 +536,35 @@ static uint32_t Q_prime_ri_ack(srslte_pusch_cfg_t *cfg,
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return Q_prime;
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}
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static void encode_ri_ack(uint8_t data, srslte_uci_bit_type_t q_encoded_bits[6], uint8_t Qm)
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static uint32_t encode_ri_ack(uint8_t data[2], uint32_t data_len, srslte_uci_bit_type_t q_encoded_bits[18], uint8_t Qm)
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{
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q_encoded_bits[0] = data?UCI_BIT_1:UCI_BIT_0;
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q_encoded_bits[1] = UCI_BIT_REPETITION;
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for (uint32_t i=2;i<Qm;i++) {
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q_encoded_bits[i] = UCI_BIT_PLACEHOLDER;
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uint32_t i = 0;
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if (data_len == 1) {
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q_encoded_bits[i++] = data[0] ? UCI_BIT_1 : UCI_BIT_0;
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q_encoded_bits[i++] = UCI_BIT_REPETITION;
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while(i < Qm) {
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q_encoded_bits[i++] = UCI_BIT_PLACEHOLDER;
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}
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} else {
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q_encoded_bits[i++] = data[0] ? UCI_BIT_1 : UCI_BIT_0;
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q_encoded_bits[i++] = data[1] ? UCI_BIT_1 : UCI_BIT_0;
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while(i<Qm) {
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q_encoded_bits[i++] = UCI_BIT_PLACEHOLDER;
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}
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q_encoded_bits[i++] = (data[0]^data[1]) ? UCI_BIT_1 : UCI_BIT_0;
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q_encoded_bits[i++] = data[0] ? UCI_BIT_1 : UCI_BIT_0;
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while(i<Qm*2) {
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q_encoded_bits[i++] = UCI_BIT_PLACEHOLDER;
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}
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q_encoded_bits[i++] = data[1] ? UCI_BIT_1 : UCI_BIT_0;
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q_encoded_bits[i++] = (data[0]^data[1]) ? UCI_BIT_1 : UCI_BIT_0;
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while(i<Qm*3) {
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q_encoded_bits[i++] = UCI_BIT_PLACEHOLDER;
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}
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}
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return i;
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}
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static void decode_ri_ack(int16_t *q_bits, uint8_t *c_seq, srslte_uci_bit_t *pos, uint32_t Qm, int32_t data[2], uint32_t nof_data)
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@ -610,23 +632,23 @@ int srslte_uci_decode_ack(srslte_pusch_cfg_t *cfg, int16_t *q_bits, uint8_t *c_s
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/* Encode UCI HARQ/ACK bits as described in 5.2.2.6 of 36.212
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* Currently only supporting 1-bit HARQ
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*/
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int srslte_uci_encode_ack(srslte_pusch_cfg_t *cfg, uint8_t data,
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int srslte_uci_encode_ack(srslte_pusch_cfg_t *cfg, uint8_t acks[2], uint32_t nof_acks,
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uint32_t O_cqi, float beta, uint32_t H_prime_total,
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srslte_uci_bit_t *ack_bits)
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{
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{
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if (beta < 0) {
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fprintf(stderr, "Error beta is reserved\n");
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return -1;
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}
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uint32_t Qprime = Q_prime_ri_ack(cfg, 1, O_cqi, beta);
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srslte_uci_bit_type_t q_encoded_bits[6];
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uint32_t Qprime = Q_prime_ri_ack(cfg, nof_acks, O_cqi, beta);
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srslte_uci_bit_type_t q_encoded_bits[18];
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encode_ri_ack(data, q_encoded_bits, cfg->grant.Qm);
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uint32_t nof_encoded_bits = encode_ri_ack(acks, nof_acks, q_encoded_bits, cfg->grant.Qm);
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for (uint32_t i=0;i<Qprime;i++) {
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uci_ulsch_interleave_ack_gen(i, cfg->grant.Qm, H_prime_total, cfg->nbits.nof_symb, cfg->cp, &ack_bits[cfg->grant.Qm*i]);
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uci_ulsch_interleave_put(q_encoded_bits, cfg->grant.Qm, &ack_bits[cfg->grant.Qm*i]);
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uci_ulsch_interleave_put(&q_encoded_bits[(i*cfg->grant.Qm)%nof_encoded_bits], cfg->grant.Qm, &ack_bits[cfg->grant.Qm*i]);
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}
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return (int) Qprime;
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@ -666,22 +688,24 @@ int srslte_uci_decode_ri(srslte_pusch_cfg_t *cfg, int16_t *q_bits, uint8_t *c_se
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* Currently only supporting 1-bit RI
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*/
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int srslte_uci_encode_ri(srslte_pusch_cfg_t *cfg,
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uint8_t data,
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uint8_t ri,
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uint32_t O_cqi, float beta, uint32_t H_prime_total,
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srslte_uci_bit_t *ri_bits)
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{
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// FIXME: It supports RI of 1 bit only
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uint8_t data[2] = {ri, 0};
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if (beta < 0) {
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fprintf(stderr, "Error beta is reserved\n");
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return -1;
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}
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uint32_t Qprime = Q_prime_ri_ack(cfg, 1, O_cqi, beta);
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srslte_uci_bit_type_t q_encoded_bits[6];
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srslte_uci_bit_type_t q_encoded_bits[18];
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encode_ri_ack(data, q_encoded_bits, cfg->grant.Qm);
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uint32_t nof_encoded_bits = encode_ri_ack(data, 1, q_encoded_bits, cfg->grant.Qm);
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for (uint32_t i=0;i<Qprime;i++) {
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uci_ulsch_interleave_ri_gen(i, cfg->grant.Qm, H_prime_total, cfg->nbits.nof_symb, cfg->cp, &ri_bits[cfg->grant.Qm*i]);
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uci_ulsch_interleave_put(q_encoded_bits, cfg->grant.Qm, &ri_bits[cfg->grant.Qm*i]);
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uci_ulsch_interleave_put(&q_encoded_bits[(i*cfg->grant.Qm)%nof_encoded_bits], cfg->grant.Qm, &ri_bits[cfg->grant.Qm*i]);
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}
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return (int) Qprime;
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