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/**
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*
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* \section COPYRIGHT
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*
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* Copyright 2013-2021 Software Radio Systems Limited
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*
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* By using this file, you agree to the terms and conditions set
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* forth in the LICENSE file which can be found at the top level of
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* the distribution.
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*
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*/
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#include "pdcp_nr_test.h"
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#include <numeric>
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/*
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* Generic class to test transmission of in-sequence packets
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*/
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class test_tx_helper
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{
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public:
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pdcp_nr_test_helper pdcp_hlp_tx;
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srsran::pdcp_entity_nr& pdcp_tx;
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rlc_dummy& rlc_tx;
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srsue::stack_test_dummy& stack;
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srslog::basic_logger& logger;
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test_tx_helper(uint8_t pdcp_sn_len, srslog::basic_logger& logger) :
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pdcp_hlp_tx({1,
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srsran::PDCP_RB_IS_DRB,
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srsran::SECURITY_DIRECTION_UPLINK,
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srsran::SECURITY_DIRECTION_DOWNLINK,
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pdcp_sn_len,
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srsran::pdcp_t_reordering_t::ms500,
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srsran::pdcp_discard_timer_t::ms500,
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false,
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srsran::srsran_rat_t::nr},
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sec_cfg,
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logger),
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pdcp_tx(pdcp_hlp_tx.pdcp),
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rlc_tx(pdcp_hlp_tx.rlc),
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stack(pdcp_hlp_tx.stack),
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logger(logger)
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{}
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int test_tx(uint32_t n_packets,
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const pdcp_initial_state& init_state,
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uint64_t n_pdus_exp,
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srsran::unique_byte_buffer_t pdu_exp)
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{
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pdcp_hlp_tx.set_pdcp_initial_state(init_state);
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// Run test
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for (uint32_t i = 0; i < n_packets; ++i) {
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// Test SDU
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srsran::unique_byte_buffer_t sdu = srsran::make_byte_buffer();
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sdu->append_bytes(sdu1, sizeof(sdu1));
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pdcp_hlp_tx.pdcp.write_sdu(std::move(sdu));
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}
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srsran::unique_byte_buffer_t pdu_act = srsran::make_byte_buffer();
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pdcp_hlp_tx.rlc.get_last_sdu(pdu_act);
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TESTASSERT(pdcp_hlp_tx.rlc.rx_count == n_pdus_exp);
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TESTASSERT(compare_two_packets(pdu_act, pdu_exp) == 0);
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return 0;
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}
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};
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/*
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* TX Test: PDCP Entity with SN LEN = 12 and 18.
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* PDCP entity configured with EIA2 and EEA2
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*/
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int test_tx_all(srslog::basic_logger& logger)
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{
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uint64_t n_packets;
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/*
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* TX Test 1: PDCP Entity with SN LEN = 12
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* TX_NEXT = 0.
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* Input: {0x18, 0xE2}
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* Output: {0x80, 0x00, 0x8f, 0xe3, 0xc7, 0x1b, 0xad, 0x14}
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*/
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{
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auto& test_logger = srslog::fetch_basic_logger("TESTER ");
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srsran::test_delimit_logger delimiter("TX COUNT 0, 12 bit SN");
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test_tx_helper tx_helper(srsran::PDCP_SN_LEN_12, logger);
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n_packets = 1;
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srsran::unique_byte_buffer_t pdu_exp_count0_len12 = srsran::make_byte_buffer();
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pdu_exp_count0_len12->append_bytes(pdu1_count0_snlen12, sizeof(pdu1_count0_snlen12));
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TESTASSERT(tx_helper.test_tx(n_packets, normal_init_state, n_packets, std::move(pdu_exp_count0_len12)) == 0);
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}
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/*
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* TX Test 2: PDCP Entity with SN LEN = 12
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* TX_NEXT = 2048.
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* Input: {0x18, 0xE2}
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* Output: {0x88, 0x00, 0x8d, 0x2c, 0xe5, 0x38, 0xc0, 0x42}
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*/
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{
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auto& test_logger = srslog::fetch_basic_logger("TESTER ");
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srsran::test_delimit_logger delimiter("TX COUNT 2048, 12 bit SN");
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test_tx_helper tx_helper(srsran::PDCP_SN_LEN_12, logger);
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n_packets = 2049;
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srsran::unique_byte_buffer_t pdu_exp_count2048_len12 = srsran::make_byte_buffer();
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pdu_exp_count2048_len12->append_bytes(pdu1_count2048_snlen12, sizeof(pdu1_count2048_snlen12));
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TESTASSERT(tx_helper.test_tx(n_packets, normal_init_state, n_packets, std::move(pdu_exp_count2048_len12)) == 0);
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}
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/*
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* TX Test 3: PDCP Entity with SN LEN = 12
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* TX_NEXT = 4096.
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* Input: {0x18, 0xE2}
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* Output: {0x80, 0x00, 0x97, 0xbe, 0xee, 0x62, 0xf5, 0xe0}
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*/
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{
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auto& test_logger = srslog::fetch_basic_logger("TESTER ");
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srsran::test_delimit_logger delimiter("TX COUNT 4096, 12 bit SN");
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test_tx_helper tx_helper(srsran::PDCP_SN_LEN_12, logger);
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n_packets = 4097;
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srsran::unique_byte_buffer_t pdu_exp_count4096_len12 = srsran::make_byte_buffer();
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pdu_exp_count4096_len12->append_bytes(pdu1_count4096_snlen12, sizeof(pdu1_count4096_snlen12));
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TESTASSERT(tx_helper.test_tx(n_packets, normal_init_state, n_packets, std::move(pdu_exp_count4096_len12)) == 0);
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}
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/*
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* TX Test 4: PDCP Entity with SN LEN = 18
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* TX_NEXT = 0.
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* Input: {0x18, 0xE2}
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* Output: {0x80, 0x00, 0x00, 0x8f, 0xe3, 0x37, 0x33, 0xd5, 0x64}
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*/
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{
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auto& test_logger = srslog::fetch_basic_logger("TESTER ");
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srsran::test_delimit_logger delimiter("TX COUNT 0, 18 bit SN");
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test_tx_helper tx_helper(srsran::PDCP_SN_LEN_18, logger);
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n_packets = 1;
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srsran::unique_byte_buffer_t pdu_exp_count0_len18 = srsran::make_byte_buffer();
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pdu_exp_count0_len18->append_bytes(pdu1_count0_snlen18, sizeof(pdu1_count0_snlen18));
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TESTASSERT(tx_helper.test_tx(n_packets, normal_init_state, n_packets, std::move(pdu_exp_count0_len18)) == 0);
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}
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/*
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* TX Test 5: PDCP Entity with SN LEN = 18
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* TX_NEXT = 131072.
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* Input: {0x18, 0xE2}
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* Output: {0x82, 0x00, 0x00, 0x15, 0x01, 0x99, 0x97, 0xe0, 0x4e}
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*/
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{
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auto& test_logger = srslog::fetch_basic_logger("TESTER ");
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srsran::test_delimit_logger delimiter("TX COUNT 131072, 18 bit SN");
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test_tx_helper tx_helper(srsran::PDCP_SN_LEN_18, logger);
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n_packets = 131073;
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srsran::unique_byte_buffer_t pdu_exp_sn131072_len18 = srsran::make_byte_buffer();
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pdu_exp_sn131072_len18->append_bytes(pdu1_count131072_snlen18, sizeof(pdu1_count131072_snlen18));
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TESTASSERT(tx_helper.test_tx(n_packets, normal_init_state, n_packets, std::move(pdu_exp_sn131072_len18)) == 0);
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}
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/*
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* TX Test 6: PDCP Entity with SN LEN = 18
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* TX_NEXT = 262144.
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* Input: {0x18, 0xE2}
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* Output: {0x80, 0x00, 0x00, 0xc2, 0x47, 0xc2, 0xee, 0x46, 0xd9}
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*/
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{
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auto& test_logger = srslog::fetch_basic_logger("TESTER ");
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srsran::test_delimit_logger delimiter("TX COUNT 262144, 18 bit SN");
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test_tx_helper tx_helper(srsran::PDCP_SN_LEN_18, logger);
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n_packets = 262145;
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srsran::unique_byte_buffer_t pdu_exp_count262144_len18 = srsran::make_byte_buffer();
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pdu_exp_count262144_len18->append_bytes(pdu1_count262144_snlen18, sizeof(pdu1_count262144_snlen18));
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TESTASSERT(tx_helper.test_tx(n_packets, normal_init_state, n_packets, std::move(pdu_exp_count262144_len18)) == 0);
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}
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/*
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* TX Test 7: PDCP Entity with SN LEN = 12
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* Test TX at COUNT wraparound.
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* Should print a warning and drop all packets after wrap around.
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*/
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{
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auto& test_logger = srslog::fetch_basic_logger("TESTER ");
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srsran::test_delimit_logger delimiter("TX COUNT wrap around, 12 bit SN");
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test_tx_helper tx_helper(srsran::PDCP_SN_LEN_12, logger);
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n_packets = 5;
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srsran::unique_byte_buffer_t pdu_exp_count4294967295_len12 = srsran::make_byte_buffer();
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pdu_exp_count4294967295_len12->append_bytes(pdu1_count4294967295_snlen12, sizeof(pdu1_count4294967295_snlen12));
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TESTASSERT(tx_helper.test_tx(n_packets, near_wraparound_init_state, 1, std::move(pdu_exp_count4294967295_len12)) ==
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0);
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}
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/*
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* TX Test 8: PDCP Entity with SN LEN = 18
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* Test TX at COUNT wraparound.
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* Should print a warning and drop all packets after wraparound.
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*/
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{
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auto& test_logger = srslog::fetch_basic_logger("TESTER ");
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srsran::test_delimit_logger delimiter("TX COUNT wrap around, 12 bit SN");
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test_tx_helper tx_helper(srsran::PDCP_SN_LEN_18, logger);
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n_packets = 5;
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srsran::unique_byte_buffer_t pdu_exp_count4294967295_len18 = srsran::make_byte_buffer();
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pdu_exp_count4294967295_len18->append_bytes(pdu1_count4294967295_snlen18, sizeof(pdu1_count4294967295_snlen18));
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TESTASSERT(tx_helper.test_tx(n_packets, near_wraparound_init_state, 1, std::move(pdu_exp_count4294967295_len18)) ==
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0);
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}
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/*
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* TX Test 9: PDCP Entity with SN LEN = 12
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* Test whether discard timers are correctly stopped after receiving a notification from the RLC
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*/
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{
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auto& test_logger = srslog::fetch_basic_logger("TESTER ");
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srsran::test_delimit_logger delimiter("Stop discard timers upon RLC notification, 12 bit SN");
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test_tx_helper tx_helper(srsran::PDCP_SN_LEN_12, logger);
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n_packets = 1;
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srsran::unique_byte_buffer_t pdu_exp_count0_len12 = srsran::make_byte_buffer();
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pdu_exp_count0_len12->append_bytes(pdu1_count0_snlen12, sizeof(pdu1_count0_snlen12));
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TESTASSERT(tx_helper.test_tx(n_packets, normal_init_state, n_packets, std::move(pdu_exp_count0_len12)) == 0);
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TESTASSERT(tx_helper.pdcp_tx.nof_discard_timers() == 1);
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tx_helper.pdcp_tx.notify_delivery({0});
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TESTASSERT(tx_helper.pdcp_tx.nof_discard_timers() == 0);
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}
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return SRSRAN_SUCCESS;
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}
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// Setup all tests
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int run_all_tests()
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{
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// Setup log
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auto& logger = srslog::fetch_basic_logger("PDCP NR Test TX", false);
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logger.set_level(srslog::basic_levels::debug);
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logger.set_hex_dump_max_size(128);
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TESTASSERT(test_tx_all(logger) == 0);
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return 0;
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}
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int main()
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{
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srslog::init();
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if (run_all_tests() != SRSRAN_SUCCESS) {
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fprintf(stderr, "pdcp_nr_tests_tx() failed\n");
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return SRSRAN_ERROR;
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}
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return SRSRAN_SUCCESS;
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}
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