mirror of https://github.com/PentHertz/srsLTE.git
use tx_window to store the map of rlc sn to pdcp sns
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@ -41,11 +41,12 @@ struct rlc_amd_rx_pdu_segments_t {
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};
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struct rlc_amd_tx_pdu_t {
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rlc_amd_pdu_header_t header;
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unique_byte_buffer_t buf;
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uint32_t retx_count;
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uint32_t rlc_sn;
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bool is_acked;
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rlc_amd_pdu_header_t header;
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unique_byte_buffer_t buf;
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std::vector<uint32_t> pdcp_sns;
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uint32_t retx_count;
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uint32_t rlc_sn;
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bool is_acked;
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};
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struct rlc_amd_retx_t {
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@ -69,7 +70,13 @@ struct pdcp_sdu_info_t {
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};
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struct tx_window_t {
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tx_window_t() { std::fill(active_flag.begin(), active_flag.end(), false); }
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tx_window_t()
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{
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std::fill(active_flag.begin(), active_flag.end(), false);
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for (size_t i = 0; i < window.size(); ++i) {
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window[i].pdcp_sns.reserve(5);
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}
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}
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void add_pdu(size_t sn)
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{
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assert(not active_flag[sn]);
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@ -241,8 +248,7 @@ private:
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srslte::timer_handler::unique_timer status_prohibit_timer;
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// SDU info for PDCP notifications
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std::unordered_map<uint32_t, pdcp_sdu_info_t> undelivered_sdu_info_queue;
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std::unordered_map<uint32_t, std::vector<uint32_t> > rlc_sn_to_pdcp_sn_map;
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std::unordered_map<uint32_t, pdcp_sdu_info_t> undelivered_sdu_info_queue;
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// Callback function for buffer status report
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bsr_callback_t bsr_callback;
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@ -13,7 +13,6 @@
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#include "srslte/upper/rlc_am_lte.h"
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#include <iostream>
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#include <sstream>
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#define MOD 1024
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#define RX_MOD_BASE(x) (((x)-vr_r) % 1024)
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@ -245,7 +244,6 @@ void rlc_am_lte::rlc_am_lte_tx::stop()
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// Drop all SDU info in queue
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undelivered_sdu_info_queue.clear();
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rlc_sn_to_pdcp_sn_map.clear();
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pthread_mutex_unlock(&mutex);
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}
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@ -875,7 +873,7 @@ int rlc_am_lte::rlc_am_lte_tx::build_data_pdu(uint8_t* payload, uint32_t nof_byt
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return 0;
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}
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undelivered_sdu_info_queue.at(tx_sdu->md.pdcp_sn).rlc_sn_info_list.push_back({header.sn, false});
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rlc_sn_to_pdcp_sn_map[header.sn].push_back(tx_sdu->md.pdcp_sn);
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tx_window[header.sn].pdcp_sns.push_back(tx_sdu->md.pdcp_sn);
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if (tx_sdu->N_bytes == 0) {
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logger.debug("%s Complete SDU scheduled for tx.", RB_NAME);
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undelivered_sdu_info_queue[tx_sdu->md.pdcp_sn].fully_txed = true;
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@ -922,7 +920,7 @@ int rlc_am_lte::rlc_am_lte_tx::build_data_pdu(uint8_t* payload, uint32_t nof_byt
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return 0;
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}
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info_it->second.rlc_sn_info_list.push_back({header.sn, false});
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rlc_sn_to_pdcp_sn_map[header.sn].push_back(tx_sdu->md.pdcp_sn);
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tx_window[header.sn].pdcp_sns.push_back(tx_sdu->md.pdcp_sn);
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if (tx_sdu->N_bytes == 0) {
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logger.debug("%s Complete SDU scheduled for tx. PDCP SN=%d", RB_NAME, tx_sdu->md.pdcp_sn);
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info_it->second.fully_txed = true;
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@ -1121,11 +1119,10 @@ void rlc_am_lte::rlc_am_lte_tx::update_notification_ack_info(const rlc_amd_tx_pd
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notify_info_vec.size(),
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undelivered_sdu_info_queue.size());
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// Iterate over all undelivered SDUs
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auto it = rlc_sn_to_pdcp_sn_map.find(tx_pdu.header.sn);
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if (it == rlc_sn_to_pdcp_sn_map.end()) {
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if (not tx_window.has_sn(tx_pdu.header.sn)) {
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return;
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}
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std::vector<uint32_t>& pdcp_sns = it->second;
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std::vector<uint32_t>& pdcp_sns = tx_window[tx_pdu.header.sn].pdcp_sns;
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for (uint32_t pdcp_sn : pdcp_sns) {
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// Iterate over all SNs that were TX'ed
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auto& info = undelivered_sdu_info_queue[pdcp_sn];
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@ -1146,7 +1143,7 @@ void rlc_am_lte::rlc_am_lte_tx::update_notification_ack_info(const rlc_amd_tx_pd
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}
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}
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}
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rlc_sn_to_pdcp_sn_map.erase(it);
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pdcp_sns.clear();
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}
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void rlc_am_lte::rlc_am_lte_tx::debug_state()
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