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@ -57,8 +57,7 @@ report_cfg_eutra_s generate_rep1()
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bool is_cell_cfg_equal(const meas_cell_cfg_t& cfg, const cells_to_add_mod_s& cell)
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{
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return cfg.pci == cell.pci and cell.cell_individual_offset.to_number() == (int8_t)round(cfg.q_offset) and
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cell.cell_idx == (cfg.eci & 0xFFu);
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return cfg.pci == cell.pci and cell.cell_individual_offset.to_number() == (int8_t)round(cfg.q_offset);
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}
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int test_correct_insertion()
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@ -105,9 +104,10 @@ int test_correct_insertion()
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TESTASSERT(eutra.carrier_freq == cell1.earfcn);
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TESTASSERT(eutra.cells_to_add_mod_list.size() == 2);
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const cells_to_add_mod_s* cell_it = eutra.cells_to_add_mod_list.begin();
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TESTASSERT(cell_it[0].cell_idx == (cell1.eci & 0xFFu));
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TESTASSERT(cell_it[1].cell_idx == (cell2.eci & 0xFFu));
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TESTASSERT(cell_it[1].pci == cell2.pci);
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TESTASSERT(cell_it[0].cell_idx == 1);
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TESTASSERT(cell_it[1].cell_idx == 2);
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TESTASSERT(cell_it[0].pci == cell2.pci);
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TESTASSERT(cell_it[1].pci == cell1.pci);
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// TEST 3: insertion of cell in another frequency
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auto ret1 = var_cfg.add_cell_cfg(cell3);
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@ -115,7 +115,9 @@ int test_correct_insertion()
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TESTASSERT(objs.size() == 2 and objs[1].meas_obj_id == 2);
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const auto& eutra2 = objs[1].meas_obj.meas_obj_eutra();
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TESTASSERT(eutra2.carrier_freq == cell3.earfcn);
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TESTASSERT(eutra2.cells_to_add_mod_list.size() == 1);
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TESTASSERT(eutra2.cells_to_add_mod_list_present and eutra2.cells_to_add_mod_list.size() == 1);
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TESTASSERT(eutra2.cells_to_add_mod_list[0].cell_idx == 1);
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TESTASSERT(eutra2.cells_to_add_mod_list[0].pci == cell3.pci);
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// TEST 4: update of existing cell
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auto ret2 = var_cfg.add_cell_cfg(cell4);
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@ -124,8 +126,9 @@ int test_correct_insertion()
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TESTASSERT(objs.size() == 2 and objs[0].meas_obj_id == 1);
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TESTASSERT(eutra3.carrier_freq == cell4.earfcn);
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TESTASSERT(eutra3.cells_to_add_mod_list.size() == 2);
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TESTASSERT(eutra3.cells_to_add_mod_list[0].cell_idx == (cell1.eci & 0xFFu));
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TESTASSERT(eutra3.cells_to_add_mod_list[0].cell_individual_offset.to_number() == 1);
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TESTASSERT(eutra3.cells_to_add_mod_list[1].cell_idx == 2);
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TESTASSERT(eutra3.cells_to_add_mod_list[1].pci == cell4.pci);
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TESTASSERT(eutra3.cells_to_add_mod_list[1].cell_individual_offset.to_number() == 1);
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}
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return 0;
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@ -197,7 +200,7 @@ int test_correct_meascfg_calculation()
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TESTASSERT(result_meascfg.report_cfg_to_add_mod_list.size() == 0);
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// TEST 3: Cell is added to cellsToAddModList if just a field was updated
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cell1.pci = 3;
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cell1.q_offset = 5;
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src_var = target_var;
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target_var.add_cell_cfg(cell1);
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src_var.compute_diff_meas_cfg(target_var, &result_meascfg);
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@ -214,6 +217,8 @@ int test_correct_meascfg_calculation()
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// TEST 4: Removal of cell/rep from target propagates to the resulting meas_cfg_s
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src_var = target_var;
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TESTASSERT(src_var.meas_objs().size() == 1);
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TESTASSERT(src_var.meas_objs()[0].meas_obj.meas_obj_eutra().cells_to_add_mod_list.size() == 2);
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target_var = var_meas_cfg_t{};
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target_var.add_cell_cfg(cell2);
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target_var.add_report_cfg(rep1);
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@ -225,9 +230,10 @@ int test_correct_meascfg_calculation()
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TESTASSERT(item->meas_obj_id == 1 and
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item->meas_obj.type().value == meas_obj_to_add_mod_s::meas_obj_c_::types_opts::meas_obj_eutra);
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eutra = item->meas_obj.meas_obj_eutra();
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TESTASSERT(not eutra.cells_to_add_mod_list_present and eutra.cells_to_rem_list_present);
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TESTASSERT(eutra.cells_to_rem_list.size() == 1);
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TESTASSERT(eutra.cells_to_rem_list[0] == (cell1.eci & 0xFFu));
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TESTASSERT(eutra.cells_to_add_mod_list_present and eutra.cells_to_add_mod_list.size() == 1);
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TESTASSERT(eutra.cells_to_add_mod_list[0].pci == cell2.pci);
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TESTASSERT(eutra.cells_to_rem_list_present and eutra.cells_to_rem_list.size() == 1);
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TESTASSERT(eutra.cells_to_rem_list[0] == 2);
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TESTASSERT(result_meascfg.report_cfg_to_add_mod_list_present and not result_meascfg.report_cfg_to_rem_list_present);
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TESTASSERT(result_meascfg.report_cfg_to_add_mod_list.size() == 1);
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TESTASSERT(result_meascfg.report_cfg_to_add_mod_list[0].report_cfg_id == 2);
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