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@ -771,6 +771,157 @@ int mac_ul_logical_channel_prioritization_test3()
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return SRSLTE_SUCCESS;
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return SRSLTE_SUCCESS;
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}
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}
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// Manual excecution of TC 7.1.4.6 of 36.523-1
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int mac_ul_logical_channel_prioritization_test4()
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{
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const uint8_t tv1[] = {0x3d, 0x03, 0x86, 0x03}; // Short BSR plus SDU for LCID3
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const uint8_t tv2[] = {0x3d, 0x04, 0x88, 0x04}; // Short BSR plus SDU for LCID4
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const uint8_t tv3[] = {0x1e, 0x00, 0x12, 0x00}; // Long BSR
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srslte::log_filter rlc_log("RLC");
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rlc_log.set_level(srslte::LOG_LEVEL_DEBUG);
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rlc_log.set_hex_limit(100000);
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// dummy layers
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phy_dummy phy;
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rlc_dummy rlc(&rlc_log);
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rrc_dummy rrc;
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stack_dummy stack;
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// the actual MAC
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mac mac("MAC", &stack.task_sched);
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stack.init(&mac, &phy);
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mac.init(&phy, &rlc, &rrc);
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const uint16_t crnti = 0x1001;
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mac.set_ho_rnti(crnti, 0);
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// generate configs for three LCIDs with different priority and PBR (Table 7.1.4.6.1-1 in TS 36.321)
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std::vector<logical_channel_config_t> lcids;
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logical_channel_config_t config = {};
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config.lcid = 3;
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config.lcg = 2;
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config.PBR = 0;
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config.BSD = 1000; // 1000ms
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config.priority = 8;
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lcids.push_back(config);
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config.lcid = 4;
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config.lcg = 2;
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config.PBR = 0;
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config.priority = 7;
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lcids.push_back(config);
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config.lcid = 5;
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config.lcg = 1;
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config.PBR = 0;
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config.priority = 6; // highest prio among the three
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lcids.push_back(config);
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// setup LCIDs in MAC
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for (auto& channel : lcids) {
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mac.setup_lcid(channel.lcid, channel.lcg, channel.priority, channel.PBR, channel.BSD);
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}
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// write dummy data
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rlc.write_sdu(3, 10);
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rlc.write_sdu(3, 10);
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// run TTI to setup Bj, BSR should be generated
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stack.run_tti(0);
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usleep(100);
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// create UL action and grant and push MAC PDU (Step 5 in 7.1.4.6.3.2 in TS 36.523-1)
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{
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mac_interface_phy_lte::tb_action_ul_t ul_action = {};
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mac_interface_phy_lte::mac_grant_ul_t mac_grant = {};
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mac_grant.rnti = crnti; // make sure MAC picks it up as valid UL grant
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mac_grant.tb.ndi_present = true;
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mac_grant.tb.ndi = true;
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mac_grant.tb.tbs = 4; // Enough for Short BSR
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int cc_idx = 0;
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// Send grant to MAC and get action for this TB, then call tb_decoded to unlock MAC
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mac.new_grant_ul(cc_idx, mac_grant, &ul_action);
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// print generated PDU
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mac_log->info_hex(ul_action.tb.payload, mac_grant.tb.tbs, "Generated PDU (%d B)\n", mac_grant.tb.tbs);
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#if HAVE_PCAP
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pcap_handle->write_ul_crnti(ul_action.tb.payload, mac_grant.tb.tbs, 0x1001, true, 1, 0);
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#endif
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TESTASSERT(memcmp(ul_action.tb.payload, tv1, sizeof(tv1)) == 0);
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}
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// Step 6
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rlc.write_sdu(4, 10);
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// run TTI to setup Bj, BSR should be generated
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stack.run_tti(0);
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usleep(100);
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// create UL action and grant and push MAC PDU (Step 8)
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{
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mac_interface_phy_lte::tb_action_ul_t ul_action = {};
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mac_interface_phy_lte::mac_grant_ul_t mac_grant = {};
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mac_grant.rnti = crnti; // make sure MAC picks it up as valid UL grant
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mac_grant.tb.ndi_present = true;
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mac_grant.tb.ndi = false;
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mac_grant.tb.tbs = 4;
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int cc_idx = 0;
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// Send grant to MAC and get action for this TB, then call tb_decoded to unlock MAC
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mac.new_grant_ul(cc_idx, mac_grant, &ul_action);
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// print generated PDU
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mac_log->info_hex(ul_action.tb.payload, mac_grant.tb.tbs, "Generated PDU (%d B)\n", mac_grant.tb.tbs);
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#if HAVE_PCAP
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pcap_handle->write_ul_crnti(ul_action.tb.payload, mac_grant.tb.tbs, 0x1001, true, 1, 0);
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#endif
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// Step 9 (UE report BSR with index 8 or more)
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TESTASSERT(memcmp(ul_action.tb.payload, tv2, sizeof(tv2)) == 0);
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}
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// Step 10
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rlc.write_sdu(5, 2);
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rlc.write_sdu(5, 2);
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// run TTI to setup Bj, BSR should be generated
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stack.run_tti(0);
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usleep(100);
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// create UL action and grant and push MAC PDU (Step 11)
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{
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mac_interface_phy_lte::tb_action_ul_t ul_action = {};
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mac_interface_phy_lte::mac_grant_ul_t mac_grant = {};
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mac_grant.rnti = crnti; // make sure MAC picks it up as valid UL grant
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mac_grant.tb.ndi_present = true;
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mac_grant.tb.ndi = true;
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mac_grant.tb.tbs = 4;
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int cc_idx = 0;
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// Send grant to MAC and get action for this TB, then call tb_decoded to unlock MAC
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mac.new_grant_ul(cc_idx, mac_grant, &ul_action);
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// print generated PDU
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mac_log->info_hex(ul_action.tb.payload, mac_grant.tb.tbs, "Generated PDU (%d B)\n", mac_grant.tb.tbs);
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#if HAVE_PCAP
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pcap_handle->write_ul_crnti(ul_action.tb.payload, mac_grant.tb.tbs, 0x1001, true, 1, 0);
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#endif
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TESTASSERT(memcmp(ul_action.tb.payload, tv3, sizeof(tv3)) == 0);
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}
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// make sure MAC PDU thread picks up before stopping
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stack.run_tti(0);
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mac.stop();
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return SRSLTE_SUCCESS;
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}
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// PDU with single SDU and short BSR (entire RLC buffers are transmitted in MAC PDU)
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// PDU with single SDU and short BSR (entire RLC buffers are transmitted in MAC PDU)
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int mac_ul_sch_pdu_with_short_bsr_test()
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int mac_ul_sch_pdu_with_short_bsr_test()
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{
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{
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@ -1629,6 +1780,11 @@ int main(int argc, char** argv)
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return -1;
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return -1;
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}
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}
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if (mac_ul_logical_channel_prioritization_test4()) {
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printf("mac_ul_logical_channel_prioritization_test4() test failed.\n");
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return -1;
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}
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if (mac_ul_sch_pdu_with_short_bsr_test()) {
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if (mac_ul_sch_pdu_with_short_bsr_test()) {
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printf("mac_ul_sch_pdu_with_short_bsr_test() test failed.\n");
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printf("mac_ul_sch_pdu_with_short_bsr_test() test failed.\n");
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return -1;
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return -1;
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